-
1 limiting ray
Акустика: тангенциальный звуковой луч -
2 limiting ray
акуст. тангенциальный звуковой лучEnglish-Russian dictionary of telecommunications and their abbreviations > limiting ray
-
3 ray
луч; пучок- ducted ray
- gamma rays
- guided ray
- infrared rays
- leaky ray
- Lenard ray
- limiting ray
- meridional ray
- normal ray
- positive rays
- primary rays
- primary-cosmic rays
- principal visual rays
- reflected ray
- refracted ray
- skew ray
- ultraviolet raysEnglish-Russian dictionary of telecommunications and their abbreviations > ray
-
4 method
метод; способ; средство; приём; технология; система; порядокconstant casing pressure method — метод борьбы с выбросом поддержанием постоянного давления в затрубном пространстве
displacement method of plugging — цементирование через заливочные трубы (без пробок, с вытеснением цементного раствора буровым)
gas-drive liquid propane method — процесс закачки в пласт газа под высоким давлением с предшествующим нагнетанием жидкого пропана
single core dynamic method — динамический метод определения относительной проницаемости по отдельному образцу
transient method of electrical prospecting — метод электроразведки, использующий неустановившиеся электрические явления
— colour band method
* * *
метод; способ; приёмbullhead well control method — способ глушения скважины с вытеснением пластового флюида в пласт из кольцевого пространства
constant bottomhole pressure well control method — способ глушения скважины при постоянном забойном давлении
driller's well control method — способ глушения скважины с раздельным удалением пластового флюида и сменой бурового раствора
one-circulation well control method — способ глушения скважины с одновременным удалением пластового флюида и сменой бурового раствора
reliability matrix index method — метод контроля за обеспечением надёжности путём задания показателей надёжности
two-circulation well control method — способ глушения скважины с разделёнными удалением пластового флюида и сменой бурового раствора
Vlugter method of structural group analysis — структурно-групповой метод анализа (углеводородов) по Флюгтеру
wait and weight well-control method — способ глушения скважины с одновременным удалением пластового флюида и сменой бурового раствора
* * *
метод, способ
* * *
метод; способ; приём- method of assurancemethod for determination relative water wettability — метод определения относительной водосмачиваемости ( пород);
- method of borehole section correlation
- method of calculating gas reserves
- method of circles
- method of defining petroleum reserves
- method of defining reserves
- method of determining static corrections
- method of drilling
- method of drilling with hydraulic turbine downhole motor
- method of drilling with hydraulic turbine downhole unit
- method of estimating reserves
- method of evaluating petroleum reserves
- method of formation
- method of formation damage analysis
- method of formation heterogeneity analysis
- method of formation nonuniformity analysis
- method of increasing oil mobility
- method of limiting well production rate
- method of liquid saturation determination
- method of maintaining reservoir pressure
- method of maintaining reservoir pressure by air injection
- method of maintaining reservoir pressure by gas injection
- method of maintaining reservoir pressure by water injection
- method of measuring critical water saturation
- method of mirror
- method of operation
- method of planting
- method of sample taking
- method of sampling
- method of sharpening
- method of stimulating production
- method of strong formation explosions
- method of testing
- method of three coefficients
- airborne magnetometer method
- air-hammer drilling method
- airlift well operation method
- alcohol-slug method
- arc refraction method
- aromatic adsorption method
- average velocity method
- average velocity approximation method
- bailer method of cementing
- band method
- barrel per acre method
- Barthelmes method
- basic volume method of estimating reserves
- beam pumping well operation method
- blasthole method
- bomb method
- borderline method
- borehole method
- borehole wall consolidation method
- bottom-packer method
- bottom water isolation method
- bottom water shutoff method
- bottomhole pressure build-up method
- broadside refraction method
- cable tool percussion drilling method
- Cabot method
- building method
- bullhead well control method
- capillarimetric method for determination wettability
- carbonized water injection method
- casing method of cementing
- casing-pressure method
- catenary pipe laying method
- cementing method
- cetane test method
- charcoal method
- chemical method of borehole wall consolidation
- chemical method of borehole wall lining
- circulating method
- clean recirculation method
- cold method of oil fractionation
- combination drilling method
- common-depth-point method
- common-midpoint method
- common-reflection-point method
- compressional-wave method
- concurrent method
- concurrent method of well killing
- constant bottomhole pressure well control method
- constant casing pressure method
- constant pit level method
- continuous-correlation method
- continuous-profiling method
- controlled directivity reception method
- converted wave method
- copper dish method
- correlation method of refracted waves
- correlation refraction method
- countercirculation-wash-boring method
- crosshole method
- cube method
- curved-path method
- cyclic steam-soaking secondary oil recovery method
- cycloidal ray-path method
- cylinder method
- deep-hole method
- deep-refraction method
- delay-and-sum method
- derrick assembling method
- derrick erection method
- desalting method
- development method
- dewatering method
- diesel cetane method
- differential liberation method
- diffraction stack method
- dipole profiling method
- direct method of orientation
- directional survey method
- dispersed gas injection method
- displacement method of plugging
- distillation method
- distillation method of liquid saturation determination
- double control method
- downhole method
- downhole sucker-rod pump well operation method
- down-the-hole induced polarization method
- drill steam method of coke removal
- driller's method
- driller's well control method
- drilling method
- drilling-in method
- dual coil ratiometer method
- effusion method
- electrical method of geophysical prospecting
- electrical-audibility method
- electrical-exploration method
- electrical-logging method
- electrical-prospecting method
- electrical-sounding method
- electrical-surveying method
- electrochemical method of borehole wall consolidation
- electrochemical method of borehole wall lining
- electromagnetic method of orientation
- electromagnetic-exploration method
- electromagnetic-prospecting method
- electromagnetic-profiling method
- electromagnetic-sounding method
- electromagnetic-surveying method
- enhanced recovery method
- enriched gas injection method
- Eshka method
- evaporation method of measuring critical water saturation
- exploration method
- exploration prospecting survey method
- exploration seismic method
- explosion drilling method
- explosion seismic method
- express method
- express method of production calculation
- filter-and-sum method
- fire flooding method
- firing line method
- first-break method
- first-event method
- float-and-chains method
- float-on method
- formation evaluation method
- four-point control method
- fracture method
- freepoint-string shot method
- freezing method
- freezing point depression method
- from-bottom-upward method of derrick assembling
- from-top-downward method of derrick assembling
- frontal advance gas-oil displacement method
- Galician method
- gamma-ray method
- gas blow-around method
- gas-chromatography method
- gas-drive liquid propane method
- gaslift well operation method
- gas-production test method
- gas-recovery method
- geological petroleum exploration method
- geological petroleum prospecting method
- geophysical petroleum exploration method
- grasshopper pipeline coupling method
- gravity method of geophysical prospecting
- gravity exploration method
- heat injection secondary oil recovery method
- hectare method of estimating reserves
- hesitation method
- high-pressure dry gas injection method
- high-resolution method
- hit-and-miss method
- holoseismic method
- horizontal-loop method
- hot-water drive method
- hydraulic drilling method
- hydraulic fracturing method
- hydraulic hammer drilling method
- hydraulic jet drilling method
- hydrodynamic method of calculating oil production
- hydrodynamic drilling method
- ice-plug method
- image method
- indirect method of orientation
- induction logging method
- infiltration method
- injection flow method
- in-situ combustion method
- interval change method
- isolation method
- isoline method of reserves estimation
- Kiruna method
- knock intensity method
- lamp method
- lean mixture rating method
- liquid solvent injection method
- logging method
- long-hole method
- long-interval method
- long-wire transmitter method
- luminescent-bitumen method
- magnesium-hydroxide method
- magnetic method of geophysical prospecting
- magnetic-exploration method
- magnetic-flaw detection method
- magnetic-particle method
- magnetic-particle flaw detection method
- magnetoelectrical control method
- magnetometrical method
- magnetotelluric method
- magnetotelluric-exploration method
- magnetotelluric-sounding method
- maintenance method
- mercury injection method of measuring critical water saturation
- micrometric method of rock analysis
- microseismic method
- migration method
- mining method
- moving-plug method of cementing
- moving-source method
- mud-balance method
- mudcap method
- mudflush drilling method
- multiple detection method
- nonionic surfactant water solution injection method
- nonreplacement method
- Norwegian method
- oil drive method
- oil production method
- oil recovery method
- oil withdrawal method
- one-agent borehole wall consolidation method
- one-agent borehole wall lining method
- one-circulation well control method
- outage method
- oxygen-bomb method
- parabolic method
- passive method
- pattern method
- pattern-type gas injection method
- penetration method
- penetrating fluid method
- percussion method
- perforation method
- Perkins method
- phase-velocity method
- physicochemical method of borehole wall consolidation
- physicochemical method of borehole wall lining
- picric acid method
- pipe-bridge method
- pipe-driving method
- pipeline-assembly method
- pipeline-coupling method
- placement method
- plane front method
- plasma drilling method
- polarization method
- Poulter method
- pour point depression method
- pressure build-up method of formation damage analysis
- pressure build-up method of formation heterogeneity analysis
- pressure-drop method of estimating gas reserves
- primary oil recovery method
- probe method
- producing method
- producing well testing method
- production method
- production test method
- profiling method
- projected-vertical-plane method of orienting
- prospecting method
- pump-out method
- punching method
- radioactive method
- radioactive method of geophysical prospecting
- radio-direction-finder method
- ray-path method
- ray-stretching method
- ray-tracing method
- record presentation method
- recovery method
- rectilinear ray-path method
- reflection method
- reflection interpretation method
- refracted wave method
- refraction method
- refraction correlation method
- refraction interpretation method
- reliability method
- reliability matrix index method
- remedial cementing method
- replacement method
- repressuring method
- resistivity method
- restored-state method of measuring critical water saturation
- retort method of liquid saturation determination
- reversed refraction method
- ring-and-ball method
- rod tool percussion drilling method
- rodless pump well operation method
- roll-on method
- rope-and-drop pull method
- rotary drilling method
- rotation drilling method
- sampling method
- sand jet method
- saturation method
- saturation method of pore volume measurement
- secondary oil recovery method
- sectional method of pipeline assembly
- sectional pipe-coupling method
- sectorial pipe-coupling method
- sedimentology method of measuring particle size distribution
- seismic method
- seismic method of geophysical prospecting
- seismic-detection method
- seismic-exploration method
- seismic-identification method
- seismic-interpretation method
- seismic-reflection method
- seismic-refraction method
- self-potential method
- sequence firing method
- shear-wave method
- short-hole method
- shot-drilling method
- shot-popping method
- side-tracking method
- side-wall coring method
- single-core dynamic method
- single-fold continuous-coverage method
- slalom-line method
- small-bore deep-hole method
- soap suds method
- sounding method
- spontaneous polarization method
- squeeze cementing method
- squeezing method
- standardizing performance method
- standby method
- stationary liquid method of relative permeability determination
- statistical method of calculating oil production
- statistical method of estimating reserves
- steam oil drive method
- stepwise method of McCabe and Thiele
- stimulation method
- stove pipe method
- stove pipe flange method of rolling beams
- straight ray-path method
- subsurface method of geophysical prospecting
- suction method of cleaning
- summation method
- surface method of geophysical prospecting
- surface-wave method
- swabbing method
- swinging-gage method
- tertiary oil recovery method
- testing method
- thermal-acid formation treatment method
- thermal-recovery method
- thickened water injection method
- three-dimensional seismic method
- thumper method
- top-packer method
- towing method
- transient method of electrical prospecting
- transmitted wave method
- transposed method
- triaxial test method
- tubing method of cementing
- two-agent borehole wall consolidation method
- two-agent borehole wall lining method
- two-circulation well control method
- ultrasonic method
- ultrasonic flaw detection method
- variable-area method
- velocity-analysis method
- vertical loop method
- Vibroseis method
- Vlugter method of structural group analysis
- volume method of estimating reserves
- volume-statistical method of estimating reserves
- volume-weight method of estimating reserves
- volumetric method of estimating reserves
- volumetric-genetic method of estimating reserves
- wait-and-weight well-control method
- Walker's method
- wash-and-drive method
- washing method
- water flooding method
- water influx location method
- weathering computation method
- weight-drop method
- weight-saturation method
- well-casing method
- well-completion method
- well-control method
- well-drill method
- well-geophone method
- well-operation method
- well-shooting method
- well-testing method
- wireline method
- X-ray diffraction method* * * -
5 device
устройство, приспособление, аппарат, прибор, механизмdrill string compensating device — компенсирующее устройство бурильной колонны, компенсатор бурильной колонны
* * *
устройство; приспособление; прибор; механизм; аппаратcavitating jet kerfing device — буровой инструмент, использующий эффект опережающих канавок на забое, получаемых за счёт струй бурового раствора с кавитационным действием
drill string compensating device — компенсирующее устройство бурильной колонны, компенсатор бурильной колонны
hydraulically actuated retaining device — трубодержатель с гидравлическим приводом (для работы с обсадными трубами)
* * *
устройство; аппарат; приспособление; механизм; прибор
* * *
устройство; прибор; установка, зонд
* * *
1) устройство; приспособление; аппарат; прибор; механизм2) план, схема; проект•- ancillary sighting device
- anticrash device
- automatic retraction device
- automatic safety device
- backup device
- bending device
- bit rotation device
- blocking device
- borehole deviation device
- bottom unloading device
- bottomhole rotation device
- breakout device
- built-in diagnostic device
- casing-rotating device
- catching device
- cavitating jet kerfing device
- changeover device
- clean sweep device
- constant hydrostatic head device
- constant tension device
- contact device
- control device
- controlling device
- core interpreting device
- core receiver locking device
- damaged device
- defective device
- density device
- depth-measuring device
- derrick raising device
- desanding device
- deviation device
- diagnostic device
- disengaging device
- diverting device
- downhole device
- downhole surveying device
- drill string compensating device
- drilling device
- drilling bit feed device
- drilling mud device
- drilling mud agitating device
- drilling mud flow measuring device
- drilling pipe racking device
- drive-type split-tube soil-sampling device
- electrical logging device
- electrical resistivity logging device
- electrical survey device
- electromagnetic logging device
- epithermal neutron device
- external diagnostic device
- fail-active device
- fail-passive device
- failure-detection device
- failure-indicating device
- failure-sensing device
- fault-isolation device
- fault-locating device
- fixed stand-off device
- flaw-detecting device
- flow-control device
- flow-diverting device
- focused logging device
- four-arm device
- gamma-gamma logging device
- gamma-ray counting device
- gas-partitioning device
- go-no-go device
- gripping device
- guard device
- hoisting device
- hydraulic releasing device
- hydraulic retaining device
- hydraulically actuated retaining device
- induction logging device
- interlocking device
- jarring device
- kerfing device
- lateral device
- laterolog device
- laterologging device
- leveling device
- lifting device
- limiting device
- load safety device
- locating device
- locking device
- logging device
- long lateral device
- long normal device
- magnetic testing device
- make-and-break device
- marine loading device
- microfocused device
- microlaterolog device
- microlog device
- microresistivity device
- microspacing device
- microspherically focused logging device
- multiple-measurement device
- neutron device
- neutron-gamma device
- nondeteriorating device
- normal device
- normal logging device
- normal resistivity device
- nuclear logging device
- nuclear magnetic resonance device
- open-hole device
- overload-protection device
- pad device
- pad-mounted device
- personal protective device
- pipe collapsing device
- pipe hoisting device
- pipe makeup and breakout automatic device
- pipe stabber device
- pipeline tension device
- pit level device
- plugging device
- porosity-estimating device
- porosity-sensitive device
- pressure-sensing device
- pressure-sensitive device
- production control device
- protecting device
- protective device
- proximity log device
- ratcheting device
- rathole kelly guiding device
- ready-not-ready device
- redundancy device
- redundant device
- releasing device
- repairable device
- resistivity device
- resistivity logging device
- resistivity measuring device
- retaining device
- rod-handling device
- rotary power-torque device
- safety device
- safety alarm device
- sample-splitting device
- sampling device
- screw derrick raising device
- screw locking device
- scrolling device
- seafloor rocket coring device
- seismic detection device
- selective chargeover device
- self-healing device
- self-repair device
- sensing device
- sensing-switching device
- short lateral device
- short normal device
- shutdown device
- sidewall device
- sidewall coring device
- single receiver acoustic logging device
- skid device
- skimming device
- sound emitting device
- sound receiving device
- sounding device
- spherically focused logging device
- spooling device
- stand racking device
- stirring device
- stop device
- subsurface device
- sucker-rod hanging device
- surface-readout device
- tensioner device
- tensioning device
- testing device
- tripping device
- trouble-location device
- trouble-shooting device
- tubing suspension device
- two-electrode device
- underwater scour prevention device
- vacuum-hydraulic mixing device
- water locating device
- well-head pressure reducing automatic device
- well-logging device
- withdrawing device -
6 angle
1) угол2) уголок ( металлический профиль)3) угол, фаза ( колебаний)•angle at a circumference — вписанный угол;at right angles — под прямым углом;angle is subtended by arc — угол стягивается дугой;angle is subtended by chord — угол опирается на хорду;to be at a proper phase angle — быть в фазе, совпадать по фазе;to bisect angle — делить угол пополам:to lay off angle — откладывать угол;angle to left — геод. круг лево;to make an angle — составлять угол;angle to right — геод. круг право-
acceptance angle
-
acute angle
-
addendum angle
-
adjacent angles
-
aircraft impact angle
-
airflow angle
-
alternate angles
-
angle of action
-
angle of advance
-
angle of approach
-
angle of arrival
-
angle of attack
-
angle of azimuth
-
angle of backing-off
-
angle of bell
-
angle of bevel
-
angle of boom
-
angle of climb
-
angle of convergency
-
angle of crossing
-
angle of cut
-
angle of deflection
-
angle of departure
-
angle of descent
-
angle of deviation
-
angle of dig
-
angle of dip
-
angle of divergence
-
angle of draw
-
angle of effective rotation
-
angle of elevation
-
angle of exaggeration
-
angle of exit
-
angle of extinction
-
angle of flare
-
angle of floor
-
angle of flow
-
angle of flute helix
-
angle of friction
-
angle of glide
-
angle of heel
-
angle of helm
-
angle of hip
-
angle of ignition
-
angle of incidence
-
angle of internal friction
-
angle of internal reflection
-
angle of lag
-
angle of lead
-
angle of list
-
angle of loading
-
angle of loll
-
angle of main stream
-
angle of pitch
-
angle of plane
-
angle of preparation
-
angle of prism
-
angle of propagation
-
angle of radiation
-
angle of reflection
-
angle of refraction
-
angle of repose
-
angle of rest
-
angle of retard
-
angle of roll
-
angle of rotation
-
angle of rupture
-
angle of scan
-
angle of shear
-
angle of shearing resistance
-
angle of shock
-
angle of sight
-
angle of site
-
angle of slide
-
angle of slope
-
angle of stall
-
angle of torsion
-
angle of transit
-
angle of trim
-
angle of twist
-
angle of vanishing
-
angle of vel
-
angle of view
-
angle of wall friction
-
angle of yaw
-
angle or flange
-
aperture angle
-
apparent visual angle
-
approach noise angle
-
aspect angle
-
attack angle
-
automatic advance angle
-
axes angle
-
azimuthal angle
-
azimuth angle
-
back angle
-
back relief angle
-
back-to-back angles
-
base angle
-
base helix angle
-
beam angle of scattering
-
beam angle
-
beam deflection angle
-
beam spread angle
-
bearing angle
-
best climb angle
-
bistatic angle
-
blade angle
-
blade-entrance angle
-
blade-exit angle
-
bond angle
-
borehole drift angle
-
boresight angle
-
bosh angle
-
Bragg angle
-
Brewster angle
-
brush shift angle
-
bucket diggings
-
bunching angle
-
burble angle
-
cam angle
-
camber angle
-
camera angle
-
canting angle
-
capsizing angle
-
carrier angle
-
caster angle
-
caving angle
-
central angle
-
clearance angle
-
cockpit cutoff angle
-
combined angle
-
commutating angle
-
commutation delay angle
-
complementary angles
-
complete angle
-
conduction angle
-
cone angle
-
constant climb angle
-
convergence angle
-
cord angle
-
corresponding angles
-
course angle
-
crab angle
-
crack angle
-
crank angle
-
crater angle
-
creascrecovery angle
-
critical angle
-
crown angle
-
current transformer phase angle
-
cut angle
-
cutoff angle
-
cutting angle
-
cutting edge angle
-
dead angle of shutter
-
dead angle
-
deadrise angle
-
decay angle
-
decrement angle
-
deflection angle
-
delay angle
-
depression angle
-
deviation angle
-
dielectric loss angle
-
dielectric phase angle
-
diffraction angle
-
diffusion angle
-
dip angle
-
direct angle
-
direction angle
-
discharge angle
-
displacement angle
-
divergence angle
-
dozer blade angle
-
draft lug angle
-
drift angle
-
dumping angle
-
dwell angle
-
effective angle of rotation
-
electrical angle
-
electric angle
-
electrode angle
-
elevation angle
-
elevation scan angle
-
emergent beam angle
-
end cutting edge angle
-
end relief angle
-
end-clearance angle
-
entering angle of driving pin
-
entering angle
-
entrance angle
-
epoch angle
-
Euler angle
-
exit angle
-
exterior angle
-
exterior opposite angles
-
face angle
-
fiber orientation angle
-
field angle
-
firing delay angle
-
fixer advance angle
-
flange angle
-
flap angle
-
flare angle
-
flat angle
-
flex angle
-
flow angle
-
frame toe-in angle
-
frame toe-out angle
-
front angle
-
front clearance angle
-
full angle
-
glancing angle
-
gradient angle
-
grain-boundary angle
-
grazing angle
-
Greenwich hour angle
-
groove angle
-
half-intensity beam angle
-
Hall angle
-
head-wrap angle
-
helix angle
-
hock angle
-
hole angle
-
horizontal angle
-
hose orientation angle
-
hour angle
-
hysteretic angle
-
idler tilt angle
-
ignition dwell angle
-
image angle
-
impedance angle
-
impinging angle
-
included die angle
-
inherent delay angle
-
input phase angle
-
inscribed angle
-
interfacial angle
-
interference angle
-
interhollow angle
-
interior angle
-
interior opposite angles
-
intersection angle
-
interslot angle
-
jet angle
-
lag angle
-
large bell angle
-
launch angle
-
lead angle
-
left deflection angle
-
light angle
-
limiting wetting angle
-
lip angle
-
list angle
-
listening angle
-
lock angle
-
locking angle
-
look angle
-
lose angle
-
magnetic hysteresis angle
-
magnetic loss angle
-
major cutting edge angle
-
making angle
-
margin angle
-
minor cutting edge angle
-
minor-lobe angle
-
miter angle
-
n-edged angle
-
nip angle
-
nominal angle of rotation
-
nozzle convergence angle
-
nozzle divergence angle
-
nutation angle
-
oblique angle
-
obtuse angle
-
off-axis angle
-
off-boresight angle
-
offset angle
-
opening angle
-
operating angle
-
opposite angle
-
optimum angle
-
orbital plane angle
-
out angle of claw mechanism
-
overlap angle
-
overlapping angle of maltese mechanism
-
perigon angle
-
phase angle
-
pickup angle
-
pitch angle
-
pivot angle
-
pivot stud angle
-
plan approach angle
-
plane angle
-
pointing angle
-
polar angle
-
polarization angle
-
polyhedral angle
-
position angle
-
potential transformer phase angle
-
power angle
-
power flow angle
-
precession angle
-
preset diggings
-
pressure angle
-
projection angle
-
pull-down angle
-
radiation angle
-
rake angle
-
ray angle
-
reciprocal angle
-
reclining seat angle
-
reentering angle
-
reentrant angle
-
reference angle
-
reflex angle
-
regular polyhedral angle
-
relief angle
-
retard angle
-
right angle
-
right deflection angle
-
ripper tilt angle
-
rise-of-floor angle
-
rocking angle
-
roll angle
-
rotation angle
-
rotor coning angle
-
round angle
-
rudder angle
-
running pitch angle
-
safety guard angle
-
salient angle
-
scanning angle
-
scan angle
-
scattering angle
-
screen angle
-
screening angle
-
search angle
-
seat angle
-
shadow angle
-
shearing angle
-
shooting angle
-
shutter aperture angle
-
shutter angle
-
side clearance angle
-
side cutting edge angle
-
side rake angle
-
side sill angle
-
sideslip angle
-
sieve angle
-
sine-wave angle
-
slant angle
-
slewing angle
-
slip angle
-
solid angle of the sun
-
solid angle
-
space angle
-
spanning angle
-
spatial angle
-
spherical angle
-
spray angle
-
staff angle
-
steering angle
-
step angle
-
stiffening angle
-
straight angle
-
subtended angle
-
supplementary angles
-
swirl angle
-
switch angle
-
swivel angle
-
takeoff angle
-
takeoff noise angle
-
taking angle
-
taper angle
-
tape-wrap angle
-
tilt angle of-polarization ellipse
-
tilt angle
-
timing angle
-
toe-in angle
-
tool angle
-
tool cutting edge angle
-
tool included angle
-
torque angle
-
torsion angle
-
total angle of rotation
-
total internal reflection angle
-
track angle
-
track cant angle
-
track tilt angle
-
tracking error angle
-
transit angle
-
triangulation angle
-
truck swivel angle
-
up angle
-
valve face angle
-
vectorial angle
-
vertex angle
-
vertical angles
-
video record track angle
-
viewing angle
-
vision angle
-
wall angle
-
wave angle
-
wave-front angle
-
wheel alignment angle
-
wheel leaning angle
-
winding angle
-
wing setting angle
-
wing sweep angle
-
wiping angle
-
work angle
-
working angle
-
working lead angle
-
zenith angle
-
zero-lift angle -
7 device
1) устройство2) установка; агрегат3) аппарат4) механизм5) прибор; измерительное устройство7) компонент; элемент8) схема•devices identical in design — конструктивные аналоги;-
alphanumeric display device-
automatic exposure control device-
bubble memory device-
bucket brigade charge-coupled device-
decision-making device-
drilling bit feed device-
electrical device-
exposure control device-
Gunn-effect device-
Hall-effect device-
hard-copy output device-
household electrical device-
humidity detecting device-
hybrid-type device-
Josephson-effect device-
maneuvering propulsion device-
materials-handling device-
multiport device-
night observation device-
noise dampening device-
photoconducting device-
propulsion device-
protection device-
raster-display device-
registering pin device-
reversible film feeding device-
seed-feeding device-
supply reel braking device-
three-axis device -
8 exposure
1) горн. выход на поверхность, обнажение ( пород)2) экспозиция4) (фото)съёмка5) (фото)кадр; (фото)снимок6) облучение7) незащищённость от воздействия8) воздействие9) дефект (в программе, обнаруженный при структурном контроле)•-
acceleration exposure
-
accidental exposure
-
allowable exposure
-
ambient exposure
-
artificial light exposure
-
automatic exposure
-
blanket exposure
-
bump exposure
-
chronic exposure
-
cine exposure
-
close-up exposure
-
contact exposure
-
controlled-flash exposure
-
diamond exposure
-
direct wafer exposure
-
discrete exposure
-
double exposure
-
electron-beam exposure
-
exposure of instruments
-
flash exposure
-
flood exposure
-
focal plane exposure
-
fogging exposure
-
highlighting exposure
-
imagewise exposure
-
lethal exposure
-
light exposure
-
limiting exposure
-
long exposure
-
main exposure
-
mask exposure
-
maximum permissible exposure
-
multiple exposure
-
noscreen exposure
-
occupational exposure
-
optical exposure
-
outdoor exposure
-
post exposure
-
projection exposure
-
proximity exposure
-
radiant exposure
-
radiation exposure
-
rock exposure
-
roof exposure
-
saturation exposure
-
step-and-repeat exposure
-
stepped exposure
-
surface exposure
-
ultraviolet exposure
-
wedge exposure
-
X-ray exposure -
9 device
1) устройство
2) прибор
3) приспособление
4) аппарат
5) орган
6) орудие
7) механизм
– adjusting device
– alarm device
– analog device
– analogue device
– antijamming device
– antiskid device
– arc control device
– artificial device
– ash sluicing device
– ash-sluicing device
– azimuthal device
– batching device
– calling device
– catching device
– charge-coupled device
– charging device
– checking device
– clamping device
– coding device
– coding device
– computing device
– covering device
– cryoelectronic device
– damping device
– device coordinates
– digital device
– distance-measuring device
– distribution device
– electronic device
– encryption device
– etching device
– fail-safe device
– feeding device
– fifth-wheel device
– gas-discharge device
– gas-filled device
– height-measuring device
– height-warning device
– high-lift device
– hoisting device
– input device
– input-output device
– input/output device
– jet device
– levelling device
– loading device
– locking device
– louver-damper device
– magnetizing device
– matching device
– measuring device
– metering device
– microautomatic device
– microphone-earphone device
– mixing device
– nonreciprocal device
– optoelectron device
– origin-shift device
– output device
– peripheral device
– pointing device
– pressure-difference device
– primary device
– protection device
– protective device
– puller device
– pushing device
– put-down device
– ray-locking device
– reclosing device
– regulator device
– safely device
– safety device
– sealing device
– self-reacting device
– semiautomatic device
– semiconductor device
– sensing device
– separation device
– shaker device
– shearing device
– shorting device
– sighting device
– signal device
– signaling device
– signalling device
– sound-imaging device
– speed-limiting device
– spinning device
– spraying device
– spreading device
– squelch device
– starting device
– stopper-rod device
– stopping device
– surface-mounted device
– surface-mounted device
– swirling device
– switching device
– tape-moving device
– telechiric device
– telemetering device
– telephone device
– tensioning device
– test device
– testing device
– through-hole device
– thrust-vectoring device
– tripping device
– turn-over device
– unwinding device
– upsetting device
automatic tracking device — <comput.> устройство сопровождения автоматическое
finger-type levelling device — пальчатый выравнивающий аппарат
graphic device interface — интерфейс графического устройства
hybrid protection device — гибридное СВЧ защитное устройство
package of a semiconductor device — корпус полупроводникового прибора
star tracking device — <astr.> астроориентатор
telephone switching device — телефонное коммутационное устройство
terminal of a semiconductor device — вывод полупроводникового прибора
waveguide protection device — волноводное защитное устройство
-
10 current
1) (электрический) ток || токовый2) поток; течение || текущий; протекающий3) скорость потока; скорость течения4) течение; ход событий || текущий; относящийся к рассматриваемому моменту времени; современный6) общая тенденция; курс || общепринятый; общераспространённый•- acoustoelectric current
- action current
- active current
- alternating current
- anode current
- antenna current
- arc current
- armature current
- avalanche current
- average current
- back current
- balanced currents
- band-to-band current
- base current
- beam current
- bias current
- biasing current
- bidirectional current
- biphase current
- bleeder current
- blowing current
- branch current
- breakaway current
- breakaway starting current
- breakdown current
- breaking current
- breakover current
- bulk current
- carrier current
- catcher current
- cathode current
- cathode covering current
- cathode-ray current
- channel current
- charging current
- collector current
- collector cutoff current
- collector-junction current
- collector leakage current
- collector-saturation current
- complex current
- complex sinusoidal current
- conduction current
- conjugate complex current
- conjugate complex sinusoidal current
- constant current
- continuous current
- control current
- convection current
- conventional fusing current
- conventional nonfusing current
- critical current
- critical controlling current
- critical grid current
- crystal current
- cutoff current
- cyclic current
- damped current
- dark current
- decaying current
- demarcation current
- diacritical current
- dielectric current
- diffusion current
- digit current
- direct current
- discharge current
- displacement current
- double-injection current
- drain current
- drift current
- drop-away current
- drop-out current
- earth current
- echo current
- eddy currents
- edge leakage current
- effective current
- electric current
- electric induction current
- electrode current
- electrode dark current
- electrode inverse current
- electron current
- emission current
- emitter current
- equivalent input offset current
- equivalent noise current
- erasing current
- excess current
- excitation current
- exciting current
- exponential excess current
- external current
- extra current
- extraction current
- extraneous current
- faradic current
- fault current
- fault electrode current
- feedback current
- field-free emission current
- filament starting current
- filament surge current
- firing current
- flash current
- flection-point emission current
- fluctuating current
- focus current
- focusing current
- follow current
- forward current
- forward-bias current
- Foucault currents
- Frenkel-Poole current
- full-select current
- fusing current
- galvanic current
- gap current
- gas current
- gas ionization current
- gate current
- gate-body leakage current
- gate holding current
- gate nontrigger current
- gate trigger current
- gate turn-off current
- generation-recombination current
- grid current
- ground current
- gun current
- half-select current
- Hall current
- harmonic current
- heater current
- heater-cathode current
- heater-cathode insulation current
- heater starting current
- heater surge current
- heavy current
- high-frequency current
- high-tension current
- high-voltage direct current
- hold current
- holding current
- hole current
- hot-electron current
- hump current
- idle current
- idling current
- image current
- impurity diffusion current
- incident current
- induced current
- inflection-point emission current
- initial symmetrical short-circuit current
- initial-velocity current
- injection current
- input offset current
- interbase current
- intermittent current
- inverse current
- ion current
- ionic current
- ionization current
- irradiation saturation current
- Josephson tunnel current
- lagging current
- latching current
- leading current
- leakage current
- leakage tube current
- Leduc current
- light current
- limiting slider current
- load current
- local current
- locked-rotor current
- longitudinal current
- loop current
- magnetization current
- magnetizing current
- majority current
- majority-carrier current
- make-and-break current
- making current
- marker current
- marking current
- mesh current
- minority current
- minority-carrier current
- Morton wave current
- nerve-action current
- net current
- noise current
- no-load current
- offset current
- off-state current
- one-carrier current
- one-particle current
- open-circuit current
- operating current
- oscillating current
- oscillatory current
- over current
- paired-electron current
- particle current
- peak inverse anode current
- peak plate current
- peak-point current
- peak-switching current
- peak-withstand current
- pedestal current
- periodic current
- persistent current
- phasor current
- photoelectric current
- photon-induced current
- pick-up current
- piezoelectric current
- pinch current
- pinch-off current
- plate current
- poloidal current
- post-arc current
- prebreakdown current
- preconduction current
- preionization current
- preoscillation current
- primary current
- probability current
- probe current
- prospective current
- pull-in current
- pulsating current
- push-pull currents
- push-push currents
- pyroelectric current
- quiescent current
- radiation-induced current
- radiation-induced thermally activated current
- rated current
- rated ac discharge current
- rated coil current
- rated contact current
- rated follow current
- reactive current
- read current
- read-out current
- recombination-generation current
- recording audio-frequency current
- recovery current
- rectified current
- reflected current
- regeneration current
- release current
- residual current
- residual stored current
- resistor-substrate leakage current
- return current
- reverse current
- reverse-bias current
- reverse blocking current
- reverse leakage current
- reverse recovery current
- reverse saturation current
- reversible absorption current
- RF current
- ringing current
- ripple current
- saturation current
- sawtooth current
- SCL current
- secondary current
- selection current
- short-circuit current
- short-circuit current per unit wavelength
- short-time withstand current
- signal output current
- simple harmonic current
- single-electron current
- single-injection current
- sinusoidal current
- skinned current
- sneak current
- source current
- space current
- space-charge-limited current
- spacing current
- spin-polarized current
- split-phase current
- sputtering current
- standing current
- starter transfer current
- starting current
- steady current
- steady short-circuit current
- steady-state current
- stray current
- subthreshold current
- surface current
- surge current
- surge electrode current
- sustaining current
- sweeping-out current
- switching current
- synaptic current
- take-off current
- target current
- telephone current
- telephone carrier current
- telluric current
- thermal current
- thermal-convection current
- thermally activated current
- thermionic current
- three-phase current
- threshold current
- toroidal current
- total current
- transfer current
- transient current
- transient-decay current
- tree-branch current
- tunnel current
- tunneling current
- turn-on base current
- turnover current
- two-carrier current
- undulating current
- undulatory current
- unidirectional current
- unit-step current
- vacancy current
- valley current
- valley-point current
- vector current
- video current
- video record current
- voltage saturation current
- voltaic current
- write current
- Zener current
- zero-field emission current
- zero-voltage current -
11 diode
1) диод•- absorber diode
- ac heated diode
- adjustable diode
- alloy diode
- alloyed-junction diode
- antireflective coated diode
- antireflective coated laser diode
- apertured diode
- avalanche diode
- avalanche breakdown diode
- avalanche injection diode
- avalanche-oscillator diode
- avalanche photosensitive diode
- avalanche transit-time diode
- back diode
- back-biased diode
- back-to-back diodes
- backward diode
- BARITT diode
- barrier diode - beam-lead diode
- bidirectional diode
- bidirectional breakdown diode
- blooming inhibitor diode
- blue light-emitting diode
- Boff diode
- bonded diode
- booster diode
- breakdown diode
- bulk diode
- bulk-barrier diode
- bulk NC diode
- bulk negative conductivity diode
- bypass diode
- catching diode
- CATT diode
- catwhisker diode
- centering diode
- ceramic package diode
- charge-storage diode
- charging diode
- chip diode
- circular laser diode
- clamping diode
- clipper diode
- coaxial diode
- cold-cathode gas diode
- collector diode
- collector-junction diode
- commutating diode
- complementary diodes
- conductivity modulated diode
- constant-current diode
- contact diode
- controlled avalanche-transit-time diode
- crystal diode
- current-regulator diode
- cylindrical diode
- damper diode
- damping diode
- dc clamp diode
- dc restorer diode
- DDR diode
- deep diode
- degenerate tunnel diode
- demodulator diode
- detector diode
- dielectric diode
- diffused diode
- diffused p-n junction diode
- discharge diode
- discrete diode
- distributed diode
- double diode
- double-base diode
- double-base junction diode
- double-diffused diode
- double-drift diode
- double-drift-region diode
- double-epitaxial diode
- double-glass seal diode
- double-injection diode
- double-saturation diode - drain diode
- drift diode
- dual diode
- dummy diode
- EBS diode
- efficiency diode
- EL diode
- electrochemical diode
- electroluminescent diode
- electron-beam semiconductor diode
- electron-bombarded semiconductor diode
- emitter diode
- emitter-junction diode
- epitaxial diode
- equivalent diode
- Esaki tunnel diode
- evaporated thin-film diode
- fast diode
- fast-recovery diode
- field-effect diode
- flangeless package diode
- flexible-lead diode - forward-biased diode
- four-layer diode
- four-region diode
- fuse diode
- gallium arsenide diode
- gallium phosphide diode
- gas diode
- gas-filled diode
- gate-controlled diode
- gate-to-channel diode
- gate-triggered diode
- gating diode
- germanium diode
- glass diode
- glass-ambient diode
- glass-sealed diode
- gold-bonded diode
- graded-junction diode
- green emitting diode
- grid-cathode diode
- grown diode
- grown-junction diode
- guard-ring diode
- Gunn diode
- Gunn-effect diode
- hard-lead diode
- heavily doped diode
- heterojunction diode - high-current diode
- high-power diode
- high-pressure gas diode
- high-pressure gas-filled diode
- high-radiance electroluminescent diode
- hold-off diode
- honeycomb diode
- hot-carrier diode
- hot-cathode gas diode
- hot-cathode gas-filled diode
- hot-cathode X-ray diode
- hot-electron diode
- hot-hole diode
- ideal noise diode
- impact avalanche transit-time diode
- impact ionization avalanche transit-time diode
- IMPATT diode
- infrared diode
- infrared-emitting diode - integrated diode
- intrinsic-barrier diode
- inversed diode
- inverted mesa diode
- ion-implanted planar mesa diode
- I2-PLASA diode
- isolating diode
- isolation diode
- isolation-substrate junction diode
- junction diode
- junction-type diode
- lambda diode
- laminar diode
- laser diode
- lasing diode - lightly doped diode
- light-proof package diode
- limited space-charge accumulation diode
- limiter diode
- limiting-velocity diode
- logarithmic diode
- long-base diode
- low-barrier diode - low-voltage diode
- LSA diode
- luminescent diode
- magnetic diode
- majority-carrier diode
- matched diodes
- mesa diode
- mesa-type diode
- metal-film semiconductor diode
- metal package diode
- metal-semiconductor diode
- metal-semiconductor barrier diode
- microglass diode
- microplasma-free diode
- microwave diode
- Miller-Ebers diode
- MIM diode
- minority-carrier diode
- MIS diode
- Misawa diode
- mixer diode
- mm-wave diode
- MNS diode
- Moll diode
- MOM diode
- monolithic diode
- MOS diode
- Mott diode
- MSM diode
- multicurrent-range diode
- multielement diode
- narrow-base diode
- negative-resistance diode - nonlinear capacitance diode
- optical diode - overcritically doped diode
- packaged diode
- packageless diode
- parallel emitter-collector junction diode
- parametric diode
- passivated metal-semiconductor diode
- phosphor-coated electroluminescent diode
- photoemissive diode
- photomixer diode
- photoparametric diode
- photosensitive diode
- pick-off diode
- pill diode
- p-i-n diode
- pinhead diode
- planar diode
- planar-doped barrier diode
- planar epitaxial passivated diode
- plasma diode
- plastic-encapsulated diode
- pneumatic diode
- p-n junction diode
- point diode
- point-contact diode
- point-junction diode
- pressure-sensitive diode
- p-semi-insulating-n diode
- pulse diode
- punch-through diode
- quenched-domain Gunn diode
- reactance diode
- Read diode
- rectifier diode
- red light-emitting diode
- reference diode
- refrigerated diode
- retarded field diode
- reverse-biased diode
- reverse-polarity silicon diode
- Riesz diode
- Riesz-type diode
- saturated diode
- Schottky diode
- Schottky-barrier diode
- Schottky power diode
- Schottky-Read diode
- SCL diode
- SDR diode
- sealed diode
- semiconducting glass diode
- semiconductor diode
- shallow diode
- Shockley diode
- short-base diode
- side-emitting laser diode
- silicon diode
- silicon-on-sapphire diode
- silver-bonded diode
- single-drift diode
- single-drift-region diode
- single-injection diode
- smoke-emitting diode
- snap-action diode
- snapback diode
- snap-off diode
- solion diode
- solion liquid diode
- SOS diode
- space-charge-limited diode - subtransit-time IMPATT diode
- superconducting diode
- superluminescent diode
- surface-barrier diode
- surface-emitting laser diode
- surface-passivated diode
- switching diode
- temperature-compensated Zener diode
- thermionic diode
- thick-film diode
- thin-film diode
- transferred-electron diode
- transit-time microwave diode - triple diode
- tube diode
- tunnel diode
- tunnel-emission diode
- twin diode
- two-base diode
- ultrafast-recovery diode
- uniformly avalanching diode
- uniplanar diode
- unitunnel diode
- vacuum diode
- vacuum-deposited diode
- varactor diode - vertical-cavity laser diode
- visible light-emitting diode
- voltage-reference diode
- voltage-regulator diode
- voltage variable-capacitance diode
- waveguide diode
- welded-junction diode
- whisker diode
- wide-base diode
- yellow emitting diode
- Zener diode
- Zener breakdown diode -
12 current
1) (электрический) ток || токовый2) поток; течение || текущий; протекающий3) скорость потока; скорость течения4) течение; ход событий || текущий; относящийся к рассматриваемому моменту времени; современный5) вчт. рабочий (напр. о файле); текущий (напр. о записи)6) общая тенденция; курс || общепринятый; общераспространённый•- acoustoelectric current
- action current
- active current
- alternating current
- anode current
- antenna current
- arc current
- armature current
- avalanche current
- average current
- back current
- balanced currents
- band-to-band current
- base current
- beam current
- bias current
- biasing current
- bidirectional current
- biphase current
- bleeder current
- blowing current
- branch current
- breakaway current
- breakaway starting current
- breakdown current
- breaking current
- breakover current
- bulk current
- carrier current
- catcher current
- cathode covering current
- cathode current
- cathode-ray current
- channel current
- charging current
- collector current
- collector cutoff current
- collector leakage current
- collector-junction current
- collector-saturation current
- complex current
- complex sinusoidal current
- conduction current
- conjugate complex current
- conjugate complex sinusoidal current
- constant current
- continuous current
- control current
- convection current
- conventional fusing current
- conventional nonfusing current
- critical controlling current
- critical current
- critical grid current
- crystal current
- cutoff current
- cyclic current
- damped current
- dark current
- decaying current
- demarcation current
- diacritical current
- dielectric current
- diffusion current
- digit current
- direct current
- discharge current
- displacement current
- double-injection current
- drain current
- drift current
- drop-away current
- drop-out current
- earth current
- echo current
- eddy currents
- edge leakage current
- effective current
- electric current
- electric induction current
- electrode current
- electrode dark current
- electrode inverse current
- electron current
- emission current
- emitter current
- equivalent input offset current
- equivalent noise current
- erasing current
- excess current
- excitation current
- exciting current
- exponential excess current
- external current
- extra current
- extraction current
- extraneous current
- faradic current
- fault current
- fault electrode current
- feedback current
- field-free emission current
- filament starting current
- filament surge current
- firing current
- flash current
- flection-point emission current
- fluctuating current
- focus current
- focusing current
- follow current
- forward current
- forward-bias current
- Foucault currents
- Frenkel-Poole current
- full-select current
- fusing current
- galvanic current
- gap current
- gas current
- gas ionization current
- gate current
- gate holding current
- gate nontrigger current
- gate trigger current
- gate turn-off current
- gate-body leakage current
- generation-recombination current
- grid current
- ground current
- gun current
- half-select current
- Hall current
- harmonic current
- heater current
- heater starting current
- heater surge current
- heater-cathode current
- heater-cathode insulation current
- heavy current
- high-frequency current
- high-tension current
- high-voltage direct current
- hold current
- holding current
- hole current
- hot-electron current
- hump current
- idle current
- idling current
- image current
- impurity diffusion current
- incident current
- induced current
- inflection-point emission current
- initial symmetrical short-circuit current
- initial-velocity current
- injection current
- input offset current
- interbase current
- intermittent current
- inverse current
- ion current
- ionic current
- ionization current
- irradiation saturation current
- Josephson tunnel current
- lagging current
- latching current
- leading current
- leakage current
- leakage tube current
- Leduc current
- light current
- limiting slider current
- load current
- local current
- locked-rotor current
- longitudinal current
- loop current
- magnetization current
- magnetizing current
- majority current
- majority-carrier current
- make-and-break current
- making current
- marker current
- marking current
- mesh current
- minority current
- minority-carrier current
- Morton wave current
- nerve-action current
- net current
- noise current
- no-load current
- offset current
- off-state current
- one-carrier current
- one-particle current
- open-circuit current
- operating current
- oscillating current
- oscillatory current
- over current
- paired-electron current
- particle current
- peak inverse anode current
- peak plate current
- peak-point current
- peak-switching current
- peak-withstand current
- pedestal current
- periodic current
- persistent current
- phasor current
- photoelectric current
- photon-induced current
- pick-up current
- piezoelectric current
- pinch current
- pinch-off current
- plate current
- poloidal current
- post-arc current
- prebreakdown current
- preconduction current
- preionization current
- preoscillation current
- primary current
- probability current
- probe current
- prospective current
- pull-in current
- pulsating current
- push-pull currents
- push-push currents
- pyroelectric current
- quiescent current
- radiation-induced current
- radiation-induced thermally activated current
- rated ac discharge current
- rated coil current
- rated contact current
- rated current
- rated follow current
- reactive current
- read current
- read-out current
- recombination-generation current
- recording audio-frequency current
- recovery current
- rectified current
- reflected current
- regeneration current
- release current
- residual current
- residual stored current
- resistor-substrate leakage current
- return current
- reverse blocking current
- reverse current
- reverse leakage current
- reverse recovery current
- reverse saturation current
- reverse-bias current
- reversible absorption current
- RF current
- ringing current
- ripple current
- saturation current
- sawtooth current
- SCL current
- secondary current
- selection current
- short-circuit current per unit wavelength
- short-circuit current
- short-time withstand current
- signal output current
- simple harmonic current
- single-electron current
- single-injection current
- sinusoidal current
- skinned current
- sneak current
- source current
- space current
- space-charge-limited current
- spacing current
- spin-polarized current
- split-phase current
- sputtering current
- standing current
- starter transfer current
- starting current
- steady current
- steady short-circuit current
- steady-state current
- stray current
- subthreshold current
- surface current
- surge current
- surge electrode current
- sustaining current
- sweeping-out current
- switching current
- synaptic current
- take-off current
- target current
- telephone carrier current
- telephone current
- telluric current
- thermal current
- thermal-convection current
- thermally activated current
- thermionic current
- three-phase current
- threshold current
- toroidal current
- total current
- transfer current
- transient current
- transient-decay current
- tree-branch current
- tunnel current
- tunneling current
- turn-on base current
- turnover current
- two-carrier current
- undulating current
- undulatory current
- unidirectional current
- unit-step current
- vacancy current
- valley current
- valley-point current
- vector current
- video current
- video record current
- voltage saturation current
- voltaic current
- write current
- Zener current
- zero-field emission current
- zero-voltage currentThe New English-Russian Dictionary of Radio-electronics > current
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13 diode
1) диод•- absorber diode
- ac heated diode
- adjustable diode
- alloy diode
- alloyed-junction diode
- antireflective coated diode
- antireflective coated laser diode
- apertured diode
- avalanche breakdown diode
- avalanche diode
- avalanche injection diode
- avalanche photosensitive diode
- avalanche transit-time diode
- avalanche-oscillator diode
- back diode
- back-biased diode
- back-to-back diodes
- backward diode
- BARITT diode
- barrier diode
- barrier-injection and transit-time diode
- base-emitter diode
- beam-lead diode
- bidirectional breakdown diode
- bidirectional diode
- blooming inhibitor diode
- blue light-emitting diode
- Boff diode
- bonded diode
- booster diode
- breakdown diode
- bulk diode
- bulk NC diode
- bulk negative conductivity diode
- bulk-barrier diode
- bypass diode
- catching diode
- CATT diode
- catwhisker diode
- centering diode
- ceramic package diode
- charge-storage diode
- charging diode
- chip diode
- circular laser diode
- clamping diode
- clipper diode
- coaxial diode
- cold-cathode gas diode
- collector diode
- collector-junction diode
- commutating diode
- complementary diodes
- conductivity modulated diode
- constant-current diode
- contact diode
- controlled avalanche-transit-time diode
- crystal diode
- current-regulator diode
- cylindrical diode
- damper diode
- damping diode
- dc clamp diode
- dc restorer diode
- DDR diode
- deep diode
- degenerate tunnel diode
- demodulator diode
- detector diode
- dielectric diode
- diffused diode
- diffused p-n junction diode
- discharge diode
- discrete diode
- distributed diode
- double diode
- double velocity transit time diode
- double-base diode
- double-base junction diode
- double-diffused diode
- double-drift diode
- double-drift-region diode
- double-epitaxial diode
- double-glass seal diode
- double-injection diode
- double-saturation diode
- DOVETT diode
- drain diode
- drift diode
- dual diode
- dummy diode
- EBS diode
- efficiency diode
- EL diode
- electrochemical diode
- electroluminescent diode
- electron-beam semiconductor diode
- electron-bombarded semiconductor diode
- emitter diode
- emitter-junction diode
- epitaxial diode
- equivalent diode
- Esaki tunnel diode
- evaporated thin-film diode
- fast diode
- fast-recovery diode
- field-effect diode
- flangeless package diode
- flexible transparent organic light-emitting diode
- flexible-lead diode
- formed diode
- forward-biased diode
- four-layer diode
- four-region diode
- fuse diode
- gallium arsenide diode
- gallium phosphide diode
- gas diode
- gas-filled diode
- gate-controlled diode
- gate-to-channel diode
- gate-triggered diode
- gating diode
- germanium diode
- glass diode
- glass-ambient diode
- glass-sealed diode
- gold-bonded diode
- graded-junction diode
- green emitting diode
- grid-cathode diode
- grown diode
- grown-junction diode
- guard-ring diode
- Gunn diode
- Gunn-effect diode
- hard-lead diode
- heavily doped diode
- heterojunction diode
- heterojunction light-emitting diode
- high-burnout diode
- high-current diode
- high-power diode
- high-pressure gas diode
- high-pressure gas-filled diode
- high-radiance electroluminescent diode
- hold-off diode
- honeycomb diode
- hot-carrier diode
- hot-cathode gas diode
- hot-cathode gas-filled diode
- hot-cathode X-ray diode
- hot-electron diode
- hot-hole diode
- I2-PLASA diode
- ideal noise diode
- impact avalanche transit-time diode
- impact ionization avalanche transit-time diode
- IMPATT diode
- infrared diode
- infrared-emitting diode
- injection laser diode
- injection luminescent diode
- integrated diode
- intrinsic-barrier diode
- inversed diode
- inverted mesa diode
- ion-implanted planar mesa diode
- isolating diode
- isolation diode
- isolation-substrate junction diode
- junction diode
- junction-type diode
- lambda diode
- laminar diode
- laser diode
- lasing diode
- light-emitting diode
- lighthouse diode
- lightly doped diode
- light-proof package diode
- limited space-charge accumulation diode
- limiter diode
- limiting-velocity diode
- logarithmic diode
- long-base diode
- low-barrier diode
- low-barrier hot-carrier diode
- low-power diode
- low-voltage diode
- LSA diode
- luminescent diode
- magnetic diode
- majority-carrier diode
- matched diodes
- mesa diode
- mesa-type diode
- metal package diode
- metal-film semiconductor diode
- metal-semiconductor barrier diode
- metal-semiconductor diode
- microglass diode
- microplasma-free diode
- microwave diode
- Miller-Ebers diode
- MIM diode
- minority-carrier diode
- MIS diode
- Misawa diode
- mixer diode
- mm-wave diode
- MNS diode
- Moll diode
- MOM diode
- monolithic diode
- MOS diode
- Mott diode
- MSM diode
- multicurrent-range diode
- multielement diode
- narrow-base diode
- negative-resistance diode
- noise diode
- noise-generator diode
- nonlinear capacitance diode
- optical diode
- organic light-emitting diode
- oscillator diode
- overcritically doped diode
- packaged diode
- packageless diode
- parallel emitter-collector junction diode
- parametric diode
- passivated metal-semiconductor diode
- phosphor-coated electroluminescent diode
- photoemissive diode
- photomixer diode
- photoparametric diode
- photosensitive diode
- pick-off diode
- pill diode
- p-i-n diode
- pinhead diode
- planar diode
- planar epitaxial passivated diode
- planar-doped barrier diode
- plasma diode
- plastic-encapsulated diode
- p-n junction diode
- pneumatic diode
- point diode
- point-contact diode
- point-junction diode
- pressure-sensitive diode
- p-semi-insulating-n diode
- pulse diode
- punch-through diode
- quenched-domain Gunn diode
- reactance diode
- Read diode
- rectifier diode
- red light-emitting diode
- reference diode
- refrigerated diode
- retarded field diode
- reverse-biased diode
- reverse-polarity silicon diode
- Riesz diode
- Riesz-type diode
- saturated diode
- Schottky diode
- Schottky power diode
- Schottky-barrier diode
- Schottky-Read diode
- SCL diode
- SDR diode
- sealed diode
- semiconducting glass diode
- semiconductor diode
- shallow diode
- Shockley diode
- short-base diode
- side-emitting laser diode
- silicon diode
- silicon-on-sapphire diode
- silver-bonded diode
- single-drift diode
- single-drift-region diode
- single-injection diode
- smoke-emitting diode
- snap-action diode
- snapback diode
- snap-off diode
- solion diode
- solion liquid diode
- SOS diode
- space-charge-limited diode
- stacked organic light-emitting diode
- steering diode
- step-recovery diode
- storage diode
- subtransit-time IMPATT diode
- superconducting diode
- superluminescent diode
- surface-barrier diode
- surface-emitting laser diode
- surface-passivated diode
- switching diode
- temperature-compensated Zener diode
- thermionic diode
- thick-film diode
- thin-film diode
- transferred-electron diode
- transit-time microwave diode
- transparent organic light-emitting diode
- TRAPATT diode
- trapped plasma avalanche transit-time diode
- trigger diode
- triple diode
- tube diode
- tunnel diode
- tunnel-emission diode
- twin diode
- two-base diode
- ultrafast-recovery diode
- uniformly avalanching diode
- uniplanar diode
- unitunnel diode
- vacuum diode
- vacuum-deposited diode
- varactor diode
- variable-capacitance diode
- variable-reactance diode
- vertical-cavity laser diode
- visible light-emitting diode
- voltage variable-capacitance diode
- voltage-reference diode
- voltage-regulator diode
- waveguide diode
- welded-junction diode
- whisker diode
- wide-base diode
- yellow emitting diode
- Zener breakdown diode
- Zener diodeThe New English-Russian Dictionary of Radio-electronics > diode
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14 test
1) испытание; опыт; проба; проверка2) критерий; мерило, пробный камень3) испытательный, контрольный, пробный4) испытывать; делать опыты; подвергать испытанию5) брать пробы•test for soundness — испытание ( цемента) на равномерность изменения объёма
- abruption test - absorption test - accelerated corrosion test - accelerated wear test - acceptance test - acid test - adhesion test - adverse field test - ageing test - air test - air-content test - air-pressure test - alkalimetric test - alternate stress test - alternating bending test - alternating impact test - alternating torsion fatigue test - altitude test - angular test - appearance test - approval test - arbitration test - Atterberg test - autoclave test - axial test - back-and-forth bending test - bacteriological test - ball test - ball hardness test - ball rebound test - beam test - beam rotating fatigue test - beam-strength test - bearing test of soil - bench test - bending test - bending and unbending test - bloating test - blow test - blow-bending test - blowpipe test - bounce test - breakdown test - breaking test - Brinell hardness test - brittleness test - buckling test - burning test - bursting test - calibration test - calorimeter test - cannon test - carbon residue test - Charpy test - check test - chemical test of drain - cleavage test - closure test - coating test - cold test - cold bending test - colorimetric test for organic impurities - commercial test - commissioning tests - compaction test - comparative test - comprehensive test - compression test - compression-compression test - consistency test of concrete - continuous test - continuity of test - corrosion test - corrosive wear test - crack test - crash test - creep test - cross-bending test - crushing test - cupping test - cyclic test - damp test - decantation test - deep test - deflection test - deformation test - degradation rate test - density test - destruction test - destructive test - Deval abrasion test - doubling test - drain test - drill test - drop test - dummy test - duplicate test - dynamic breaking test - elongation test - endurance test - end-use test - evaluation test - extraction test on Portland cement - factory test - failure test - fatigue test - field tests - field in-place test - file test - fire hose reel test - fire resistance test - flange test - flattening test - flexion test - flexure test - float test - flow test - folding test - fracture test - free-bend test - freezing test - freezing and thawing test - fuel test - full-scale test - green test - grinding test - guarantee test - hardness test - hot bend test - hot twist test - immersion test - impact test - impact bend test - indentation test - ink test - intermittent test - internal pressure test - Izod impact test - knock test - Knoop microhardness test - laboratory test - leak test - leakage test - life test - limiting pressure test - load test on pile - load test - loading test - long run tests - minimum flow rate test - model test - moment test - mortar bar test - non-destructive test - notch bar test - notch bending test - on-the-road test - organic impurities test - pat test - pendulum test - penetration test - percentage test - performance test - physical endurance test - pile test - pile loading test - pneumatic test - preliminary test - pressure test - prototype test - pull-out bond test - pumping test - puncture test - qualification test - quality test - rattler test - reduced section tension test - reduction-in-alkalinity test - reduction-in-expansion test - reheat test - relaxation test - remolding test - repair test - repetition test - resistance to corrosion test - resistance to impact test - reversed bend test - ride test - rig test - road tests - rod test - running test - running-in test - salt spray tests - scale test - scratch test - sedimentation test - service test - settleability test - severe test - shear test - shear test of soil - shock test - shop test - Shore's scleroscope hardness test - short-circuit test - size test - sizing test - skid test - slump test - smell test - smoke test - soap test - sodium solution test - soil test - soundness test - spray angle test - spring closure test - squeeze test - stain test - static test - strength test - strip-off adhesion test - subgrade test - subzero test - sugar test of cement - taking over tests - tear test - tee-bend test - tensile test - tension test - throw range test - time-of-setting test - torsion test - transverse test - twisting test - ultrasonic test - unit-weight test - vane test - Vicat needle test - warpage test - warranty test - water test - water absorption test - water retention test - wear test - weather exposure test - weldability test - X-ray testto test the instrument — проверять прибор, эталонировать прибор
* * *испытание; проверка; тест; опыт; проба; анализ; исследование; эксперимент || испытывать; проверять; исследовать- test of timetest by immersion in boiling water — проба [испытание] кипячением в воде
- AASHO density test
- Abbot compaction test
- Abrams' test
- abrasion test
- absorption test
- accelerated test
- accelerated test for compressive strength
- accelerated strength test
- acceptance test
- accredited tests
- acid test
- aggregate crushing test
- aggregate impact test
- air test
- air content test
- air entrainment test
- air filter blackness test
- air leakage test
- air permeability test
- air permeability fineness test
- alternating bending test
- anchorage shear test
- aptitude test
- Atterberg test
- attrition test
- autoclave test
- baling-out permeability test
- ball test
- ball hardness test
- barium sulphate test
- beam test
- bearing test
- bending test
- bending tensile test
- bit wear test
- blackness air filter test
- Blain test
- block shear test
- blow flexure test
- boiling test
- bond test
- bootstrap test
- borehole shear test
- breaking test
- Brinell hardness test
- California bearing ratio test
- cement tests
- Charpy test
- Charpy V-notch impact test
- checking test
- check test
- COLE volume change test
- colorimetric test
- color test
- compacting factor test
- compaction test
- complience test
- compression test
- cone penetration test
- consistency test
- consolidated quick test
- consolidation test
- constant head permeability test
- constant rate of penetration test
- constant rate of uplift test
- constant volume test
- control test
- core test
- creep test
- C.R.P. test
- crushing test
- cube strength test
- cube test
- cylinder test
- dehydration test
- diametral compression test
- diamond pyramid hardness test
- dioctylphthalate test
- direct shear test
- dispersion test
- dissipation test
- DOP test
- Dorry test
- drain test
- drained triaxial test
- driving test
- drop-weight test
- durability test
- dust spot test
- Dutch sounding test
- dynamic penetration test
- expandable sleeve concrete test
- exposure tests
- fast field tests
- fatigue test
- field tests
- field density test
- field loading test
- field percolation test
- field vane test
- flexure test
- flow-table test
- flow test
- four-point bending test
- fracture test
- freeze-thaw test
- freeze-thaw durability test
- freezing test
- gravimetric air filter test
- hardening test of concrete
- hardness test
- Herbert cloudburst test
- hollow cylinder test
- hydraulic drain test
- hydraulic flat-jack test
- hydraulic pressure test
- hydraulic test
- hydrostatic test
- impact test
- impact crushing value test
- indentation test
- ink test
- in-place test
- in-place slump test
- in-situ test
- in-situ soil tests
- insulation test
- integrity test
- Izod impact test
- Izod test
- jolt test
- Kelly ball test
- Knoop hardness test
- laboratory test
- leakage test
- life test
- line-load test
- load test of structures
- loading test
- long-term test
- long-time creep test
- maintained load test
- manufacturer test
- methylene blue test
- model test
- needle test
- notch bending test
- notched bar test
- nuclear density test
- operational test
- organic test
- organic test for fine aggregate
- orifice tube test
- penetration test
- percussion test
- performance test
- photoelastic test
- pile load test
- pile pulling test
- pile redriving test
- plate-bearing test
- pneumatic test
- point-load test
- preliminary test
- pressure test
- pressure meter test
- proof test
- proof load test
- pumping test
- punching shear test
- pycnometer test
- Q-test
- quick test
- R-test
- Ro test
- radial percolation test
- Raymond standard test
- reception test
- reference test
- reliability test
- repeated load test
- resonant-column test
- reverse bend test
- rock bolts convergence test
- Rockwell hardness test
- Rockwell superficial hardness test
- S-test
- saponification test
- scratch test
- shearing test
- shear test
- shock bending test
- short-term test
- single point test
- site test for cement content of mortars
- slow test
- slump test
- smoke test
- soap test
- splitting tensile test
- standard-density test
- standard penetration test
- static penetration test
- strength test
- stress-relaxation test
- stress-rupture test
- tensile test
- tightness test
- time-of-set test
- torsion test
- triaxial compression test
- triaxial test
- two-point test
- type test
- ultrasonic test
- undrained test
- vacuum test
- vane test
- vibrated mortar cube test
- vibrating crushing test
- Vicat needle test
- water test
- water loading test
- water retention test
- wind loading test
- wind-tunnel test
- works beam test
- works cube test
- yield test -
15 device
1) устройство; механизм; приспособление2) прибор; аппарат3) установка, агрегат• -
16 function
1) функция, действие || функционировать; действовать- essential functions - routine function - safety-related functions2) функциональное назначение; роль- circuit function - intrinsic function - metering function - primary function - robot function - planning function - service function - support function4) функциональный узел ( машины)5) матем. функциональная зависимость, функция- absolutely additive function - absolutely bounded function - absolutely continuous function - absolutely integrable function - absolutely monotone function - absolutely summable function - absolutely symmetric function - almost complex function - almost continuous function - almost convex function - almost everywhere defined function - almost everywhere finite function - almost invariant function - almost periodic function - almost recursive function - almost separably-valued function - almost separating function - almost universal function - analytically independent function - analytically representable function - approximately differentiable function - asymptotically differentiable function - asymptotically finite function - asymptotically uniformly optimal function - bounded below function - cellwise continuous function - circumferentially mean p-valent function - comparison function - complementary error function - complete analytic function - completely additive function - completely computable function - completely monotone function - completely multiplicative function - completely productive function - completely subadditive function - completely symmetrical function - completely undefined function - complex hyperbolic function - conditional risk function - countably multiplicative function - countably valued function - covariant function - cumulative distribution function - cumulative frequency function - deficiency function - double limit function - doubly periodic function - doubly recursive function - effectively computable function - effectively constant function - effectively decidable function - effectively variable function - elementarily symmetric function - entire function of maximum type - entire function of mean type - entire function of potential type - entire function of zero type - entire rational function - essentially increasing function - essentially integrable function - essentially real function - essentially smooth function - everywhere differentiable function - everywhere smooth function - expansible function - explicitly definable function - exponentially convex function - exponentially decreasing function - exponentially increasing function - exponentially multiplicative function - exponentially vanishing function - finitely mean valent function - finitely measurable function - function of appropriate behavior - function of bounded characteristic - function of bounded type - function of bounded variation - function of complex variable - function of exponential type - function of finite genus - function of finite variation - function of fractional order - function of infinite type - function of integral order - function of maximal type - function of minimal type - function of mixed variables - function of normal type - function of number theory - function of one variable - function of rapid descent - function of rapid growth - function of real variable - general universal function - geometric carrier function - implicitly definable function - incomplete dibeta function - incomplete gamma function - incomplete tribeta function - incompletely defined function - inductively defined function - inductively integrable function - infinitely divisible function - infinitely many-valued function - integral logarithmic function - inverse trigonometric function - inverted beta function - iterative function - joint correlation function - joint density function - linearly separable function - locally bounded function - locally constant function - locally holomorphic function - locally homogeneous function - locally integrable function - locally negligible function - locally regular function - locally summable function - logarithmic generating function - logarithmic integral function - logarithmically infinite function - logarithmically plurisubharmonic function - logarithmically subharmonic function - lower semicontinuous function - monotone non-decreasing function - monotone non-increasing function - multiply periodic function - multiply recursive function - negative definite function - negative infinite function - nontangentially bounded function - normalized function - normed function - nowhere continuous function - nowhere differentiable function - nowhere monotonic function - n-times differentiable function - n-tuply periodic function - numeralwise expressible function - numeralwise representable function - numerical function - numerically valued function - oblate spheroidal function - operating characteristic function - optimal policy function - parametrically definable function - partially symmetric function - piecewise constant function - piecewise continuously differentiable function - piecewise linear function - piecewise monotonic function - piecewise polynomial function - piecewise quadratic function - piecewise regular function - piecewise smooth function - pointwise approximated function - positive homogeneous function - positive infinite function - positive monotone function - positive monotonic function - positive semidefinite function - potentially calculable function - potentially recursive function - power series function - probability generating function - quadratically summable function - rapidly damped function - rapidly decreasing function - rapidly oscillatory function - recursively continuous function - recursively convergent function - recursively defined function - recursively differentiable function - recursively divergent function - recursively extensible function - relative distribution function - relative frequency function - representing function - reproducing kernel function - residual function - residue function - scalarwise integrable function - scalarwise measurable function - sectionally smooth function - simply periodic function - singly recursive function - slowly increasing function - slowly oscillating function - slowly varying function - smoothly varying function - solid spherical harmonic function - solid zonal harmonic function - steadily increasing function - stopped random function - strictly convex function - strictly decreasing function - strictly increasing function - strictly integrable function - strictly monotone function - strongly differentiable function - strongly holomorphic function - strongly integrable function - strongly measurable function - strongly plurisubharmonic function - totally additive function - totally continuous function - totally measurable function - totally multiplicative function - totally positive function - triangular function - uniformly best decision function - uniformly bounded function - uniformly definable function - uniformly differentiable function - uniformly homotopic function - uniformly integrable function - uniformly limited function - uniformly measurable function - uniformly smooth function - unit step function - unitary divisor function - upper measurable function - upper semicontinuous function - weakly analytic function - weakly continuous function - weakly differentiable function - weakly holomorphic function - weakly measurable function - weakly singular function - weighted random functiondomain of a function — область определения функции, область изменения независимой переменной
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17 modular data center
модульный центр обработки данных (ЦОД)
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[Интент]Параллельные тексты EN-RU
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Data Centers are a hot topic these days. No matter where you look, this once obscure aspect of infrastructure is getting a lot of attention. For years, there have been cost pressures on IT operations and this, when the need for modern capacity is greater than ever, has thrust data centers into the spotlight. Server and rack density continues to rise, placing DC professionals and businesses in tighter and tougher situations while they struggle to manage their IT environments. And now hyper-scale cloud infrastructure is taking traditional technologies to limits never explored before and focusing the imagination of the IT industry on new possibilities.
В настоящее время центры обработки данных являются широко обсуждаемой темой. Куда ни посмотришь, этот некогда малоизвестный аспект инфраструктуры привлекает все больше внимания. Годами ИТ-отделы испытывали нехватку средств и это выдвинуло ЦОДы в центр внимания, в то время, когда необходимость в современных ЦОДах стала как никогда высокой. Плотность серверов и стоек продолжают расти, все больше усложняя ситуацию для специалистов в области охлаждения и организаций в их попытках управлять своими ИТ-средами. И теперь гипермасштабируемая облачная инфраструктура подвергает традиционные технологии невиданным ранее нагрузкам, и заставляет ИТ-индустрию искать новые возможности.
At Microsoft, we have focused a lot of thought and research around how to best operate and maintain our global infrastructure and we want to share those learnings. While obviously there are some aspects that we keep to ourselves, we have shared how we operate facilities daily, our technologies and methodologies, and, most importantly, how we monitor and manage our facilities. Whether it’s speaking at industry events, inviting customers to our “Microsoft data center conferences” held in our data centers, or through other media like blogging and white papers, we believe sharing best practices is paramount and will drive the industry forward. So in that vein, we have some interesting news to share.
В компании MicroSoft уделяют большое внимание изучению наилучших методов эксплуатации и технического обслуживания своей глобальной инфраструктуры и делятся результатами своих исследований. И хотя мы, конечно, не раскрываем некоторые аспекты своих исследований, мы делимся повседневным опытом эксплуатации дата-центров, своими технологиями и методологиями и, что важнее всего, методами контроля и управления своими объектами. Будь то доклады на отраслевых событиях, приглашение клиентов на наши конференции, которые посвящены центрам обработки данных MicroSoft, и проводятся в этих самых дата-центрах, или использование других средств, например, блоги и спецификации, мы уверены, что обмен передовым опытом имеет первостепенное значение и будет продвигать отрасль вперед.
Today we are sharing our Generation 4 Modular Data Center plan. This is our vision and will be the foundation of our cloud data center infrastructure in the next five years. We believe it is one of the most revolutionary changes to happen to data centers in the last 30 years. Joining me, in writing this blog are Daniel Costello, my director of Data Center Research and Engineering and Christian Belady, principal power and cooling architect. I feel their voices will add significant value to driving understanding around the many benefits included in this new design paradigm.
Сейчас мы хотим поделиться своим планом модульного дата-центра четвертого поколения. Это наше видение и оно будет основанием для инфраструктуры наших облачных дата-центров в ближайшие пять лет. Мы считаем, что это одно из самых революционных изменений в дата-центрах за последние 30 лет. Вместе со мной в написании этого блога участвовали Дэниел Костелло, директор по исследованиям и инжинирингу дата-центров, и Кристиан Белади, главный архитектор систем энергоснабжения и охлаждения. Мне кажется, что их авторитет придаст больше веса большому количеству преимуществ, включенных в эту новую парадигму проектирования.
Our “Gen 4” modular data centers will take the flexibility of containerized servers—like those in our Chicago data center—and apply it across the entire facility. So what do we mean by modular? Think of it like “building blocks”, where the data center will be composed of modular units of prefabricated mechanical, electrical, security components, etc., in addition to containerized servers.
Was there a key driver for the Generation 4 Data Center?Наши модульные дата-центры “Gen 4” будут гибкими с контейнерами серверов – как серверы в нашем чикагском дата-центре. И гибкость будет применяться ко всему ЦОД. Итак, что мы подразумеваем под модульностью? Мы думаем о ней как о “строительных блоках”, где дата-центр будет состоять из модульных блоков изготовленных в заводских условиях электрических систем и систем охлаждения, а также систем безопасности и т.п., в дополнение к контейнеризованным серверам.
Был ли ключевой стимул для разработки дата-центра четвертого поколения?
If we were to summarize the promise of our Gen 4 design into a single sentence it would be something like this: “A highly modular, scalable, efficient, just-in-time data center capacity program that can be delivered anywhere in the world very quickly and cheaply, while allowing for continued growth as required.” Sounds too good to be true, doesn’t it? Well, keep in mind that these concepts have been in initial development and prototyping for over a year and are based on cumulative knowledge of previous facility generations and the advances we have made since we began our investments in earnest on this new design.Если бы нам нужно было обобщить достоинства нашего проекта Gen 4 в одном предложении, это выглядело бы следующим образом: “Центр обработки данных с высоким уровнем модульности, расширяемости, и энергетической эффективности, а также возможностью постоянного расширения, в случае необходимости, который можно очень быстро и дешево развертывать в любом месте мира”. Звучит слишком хорошо для того чтобы быть правдой, не так ли? Ну, не забывайте, что эти концепции находились в процессе начальной разработки и создания опытного образца в течение более одного года и основываются на опыте, накопленном в ходе развития предыдущих поколений ЦОД, а также успехах, сделанных нами со времени, когда мы начали вкладывать серьезные средства в этот новый проект.
One of the biggest challenges we’ve had at Microsoft is something Mike likes to call the ‘Goldilock’s Problem’. In a nutshell, the problem can be stated as:
The worst thing we can do in delivering facilities for the business is not have enough capacity online, thus limiting the growth of our products and services.Одну из самых больших проблем, с которыми приходилось сталкиваться Майкрософт, Майк любит называть ‘Проблемой Лютика’. Вкратце, эту проблему можно выразить следующим образом:
Самое худшее, что может быть при строительстве ЦОД для бизнеса, это не располагать достаточными производственными мощностями, и тем самым ограничивать рост наших продуктов и сервисов.The second worst thing we can do in delivering facilities for the business is to have too much capacity online.
А вторым самым худшим моментом в этой сфере может слишком большое количество производственных мощностей.
This has led to a focus on smart, intelligent growth for the business — refining our overall demand picture. It can’t be too hot. It can’t be too cold. It has to be ‘Just Right!’ The capital dollars of investment are too large to make without long term planning. As we struggled to master these interesting challenges, we had to ensure that our technological plan also included solutions for the business and operational challenges we faced as well.
So let’s take a high level look at our Generation 4 designЭто заставило нас сосредоточиваться на интеллектуальном росте для бизнеса — refining our overall demand picture. Это не должно быть слишком горячим. И это не должно быть слишком холодным. Это должно быть ‘как раз, таким как надо!’ Нельзя делать такие большие капиталовложения без долгосрочного планирования. Пока мы старались решить эти интересные проблемы, мы должны были гарантировать, что наш технологический план будет также включать решения для коммерческих и эксплуатационных проблем, с которыми нам также приходилось сталкиваться.
Давайте рассмотрим наш проект дата-центра четвертого поколенияAre you ready for some great visuals? Check out this video at Soapbox. Click here for the Microsoft 4th Gen Video.
It’s a concept video that came out of my Data Center Research and Engineering team, under Daniel Costello, that will give you a view into what we think is the future.
From a configuration, construct-ability and time to market perspective, our primary goals and objectives are to modularize the whole data center. Not just the server side (like the Chicago facility), but the mechanical and electrical space as well. This means using the same kind of parts in pre-manufactured modules, the ability to use containers, skids, or rack-based deployments and the ability to tailor the Redundancy and Reliability requirements to the application at a very specific level.
Посмотрите это видео, перейдите по ссылке для просмотра видео о Microsoft 4th Gen:
Это концептуальное видео, созданное командой отдела Data Center Research and Engineering, возглавляемого Дэниелом Костелло, которое даст вам наше представление о будущем.
С точки зрения конфигурации, строительной технологичности и времени вывода на рынок, нашими главными целями и задачами агрегатирование всего дата-центра. Не только серверную часть, как дата-центр в Чикаго, но также системы охлаждения и электрические системы. Это означает применение деталей одного типа в сборных модулях, возможность использования контейнеров, салазок, или стоечных систем, а также возможность подстраивать требования избыточности и надежности для данного приложения на очень специфичном уровне.Our goals from a cost perspective were simple in concept but tough to deliver. First and foremost, we had to reduce the capital cost per critical Mega Watt by the class of use. Some applications can run with N-level redundancy in the infrastructure, others require a little more infrastructure for support. These different classes of infrastructure requirements meant that optimizing for all cost classes was paramount. At Microsoft, we are not a one trick pony and have many Online products and services (240+) that require different levels of operational support. We understand that and ensured that we addressed it in our design which will allow us to reduce capital costs by 20%-40% or greater depending upon class.
Нашими целями в области затрат были концептуально простыми, но трудно реализуемыми. В первую очередь мы должны были снизить капитальные затраты в пересчете на один мегаватт, в зависимости от класса резервирования. Некоторые приложения могут вполне работать на базе инфраструктуры с резервированием на уровне N, то есть без резервирования, а для работы других приложений требуется больше инфраструктуры. Эти разные классы требований инфраструктуры подразумевали, что оптимизация всех классов затрат имеет преобладающее значение. В Майкрософт мы не ограничиваемся одним решением и располагаем большим количеством интерактивных продуктов и сервисов (240+), которым требуются разные уровни эксплуатационной поддержки. Мы понимаем это, и учитываем это в своем проекте, который позволит нам сокращать капитальные затраты на 20%-40% или более в зависимости от класса.For example, non-critical or geo redundant applications have low hardware reliability requirements on a location basis. As a result, Gen 4 can be configured to provide stripped down, low-cost infrastructure with little or no redundancy and/or temperature control. Let’s say an Online service team decides that due to the dramatically lower cost, they will simply use uncontrolled outside air with temperatures ranging 10-35 C and 20-80% RH. The reality is we are already spec-ing this for all of our servers today and working with server vendors to broaden that range even further as Gen 4 becomes a reality. For this class of infrastructure, we eliminate generators, chillers, UPSs, and possibly lower costs relative to traditional infrastructure.
Например, некритичные или гео-избыточные системы имеют низкие требования к аппаратной надежности на основе местоположения. В результате этого, Gen 4 можно конфигурировать для упрощенной, недорогой инфраструктуры с низким уровнем (или вообще без резервирования) резервирования и / или температурного контроля. Скажем, команда интерактивного сервиса решает, что, в связи с намного меньшими затратами, они будут просто использовать некондиционированный наружный воздух с температурой 10-35°C и влажностью 20-80% RH. В реальности мы уже сегодня предъявляем эти требования к своим серверам и работаем с поставщиками серверов над еще большим расширением диапазона температур, так как наш модуль и подход Gen 4 становится реальностью. Для подобного класса инфраструктуры мы удаляем генераторы, чиллеры, ИБП, и, возможно, будем предлагать более низкие затраты, по сравнению с традиционной инфраструктурой.
Applications that demand higher level of redundancy or temperature control will use configurations of Gen 4 to meet those needs, however, they will also cost more (but still less than traditional data centers). We see this cost difference driving engineering behavioral change in that we predict more applications will drive towards Geo redundancy to lower costs.
Системы, которым требуется более высокий уровень резервирования или температурного контроля, будут использовать конфигурации Gen 4, отвечающие этим требованиям, однако, они будут также стоить больше. Но все равно они будут стоить меньше, чем традиционные дата-центры. Мы предвидим, что эти различия в затратах будут вызывать изменения в методах инжиниринга, и по нашим прогнозам, это будет выражаться в переходе все большего числа систем на гео-избыточность и меньшие затраты.
Another cool thing about Gen 4 is that it allows us to deploy capacity when our demand dictates it. Once finalized, we will no longer need to make large upfront investments. Imagine driving capital costs more closely in-line with actual demand, thus greatly reducing time-to-market and adding the capacity Online inherent in the design. Also reduced is the amount of construction labor required to put these “building blocks” together. Since the entire platform requires pre-manufacture of its core components, on-site construction costs are lowered. This allows us to maximize our return on invested capital.
Еще одно достоинство Gen 4 состоит в том, что он позволяет нам разворачивать дополнительные мощности, когда нам это необходимо. Как только мы закончим проект, нам больше не нужно будет делать большие начальные капиталовложения. Представьте себе возможность более точного согласования капитальных затрат с реальными требованиями, и тем самым значительного снижения времени вывода на рынок и интерактивного добавления мощностей, предусматриваемого проектом. Также снижен объем строительных работ, требуемых для сборки этих “строительных блоков”. Поскольку вся платформа требует предварительного изготовления ее базовых компонентов, затраты на сборку также снижены. Это позволит нам увеличить до максимума окупаемость своих капиталовложений.
Мы все подвергаем сомнениюIn our design process, we questioned everything. You may notice there is no roof and some might be uncomfortable with this. We explored the need of one and throughout our research we got some surprising (positive) results that showed one wasn’t needed.
В своем процессе проектирования мы все подвергаем сомнению. Вы, наверное, обратили внимание на отсутствие крыши, и некоторым специалистам это могло не понравиться. Мы изучили необходимость в крыше и в ходе своих исследований получили удивительные результаты, которые показали, что крыша не нужна.
Серийное производство дата центров
In short, we are striving to bring Henry Ford’s Model T factory to the data center. http://en.wikipedia.org/wiki/Henry_Ford#Model_T. Gen 4 will move data centers from a custom design and build model to a commoditized manufacturing approach. We intend to have our components built in factories and then assemble them in one location (the data center site) very quickly. Think about how a computer, car or plane is built today. Components are manufactured by different companies all over the world to a predefined spec and then integrated in one location based on demands and feature requirements. And just like Henry Ford’s assembly line drove the cost of building and the time-to-market down dramatically for the automobile industry, we expect Gen 4 to do the same for data centers. Everything will be pre-manufactured and assembled on the pad.Мы хотим применить модель автомобильной фабрики Генри Форда к дата-центру. Проект Gen 4 будет способствовать переходу от модели специализированного проектирования и строительства к товарно-производственному, серийному подходу. Мы намерены изготавливать свои компоненты на заводах, а затем очень быстро собирать их в одном месте, в месте строительства дата-центра. Подумайте о том, как сегодня изготавливается компьютер, автомобиль или самолет. Компоненты изготавливаются по заранее определенным спецификациям разными компаниями во всем мире, затем собираются в одном месте на основе спроса и требуемых характеристик. И точно так же как сборочный конвейер Генри Форда привел к значительному уменьшению затрат на производство и времени вывода на рынок в автомобильной промышленности, мы надеемся, что Gen 4 сделает то же самое для дата-центров. Все будет предварительно изготавливаться и собираться на месте.
Невероятно энергоэффективный ЦОД
And did we mention that this platform will be, overall, incredibly energy efficient? From a total energy perspective not only will we have remarkable PUE values, but the total cost of energy going into the facility will be greatly reduced as well. How much energy goes into making concrete? Will we need as much of it? How much energy goes into the fuel of the construction vehicles? This will also be greatly reduced! A key driver is our goal to achieve an average PUE at or below 1.125 by 2012 across our data centers. More than that, we are on a mission to reduce the overall amount of copper and water used in these facilities. We believe these will be the next areas of industry attention when and if the energy problem is solved. So we are asking today…“how can we build a data center with less building”?А мы упоминали, что эта платформа будет, в общем, невероятно энергоэффективной? С точки зрения общей энергии, мы получим не только поразительные значения PUE, но общая стоимость энергии, затраченной на объект будет также значительно снижена. Сколько энергии идет на производство бетона? Нам нужно будет столько энергии? Сколько энергии идет на питание инженерных строительных машин? Это тоже будет значительно снижено! Главным стимулом является достижение среднего PUE не больше 1.125 для всех наших дата-центров к 2012 году. Более того, у нас есть задача сокращения общего количества меди и воды в дата-центрах. Мы думаем, что эти задачи станут следующей заботой отрасли после того как будет решена энергетическая проблема. Итак, сегодня мы спрашиваем себя…“как можно построить дата-центр с меньшим объемом строительных работ”?
Строительство дата центров без чиллеровWe have talked openly and publicly about building chiller-less data centers and running our facilities using aggressive outside economization. Our sincerest hope is that Gen 4 will completely eliminate the use of water. Today’s data centers use massive amounts of water and we see water as the next scarce resource and have decided to take a proactive stance on making water conservation part of our plan.
Мы открыто и публично говорили о строительстве дата-центров без чиллеров и активном использовании в наших центрах обработки данных технологий свободного охлаждения или фрикулинга. Мы искренне надеемся, что Gen 4 позволит полностью отказаться от использования воды. Современные дата-центры расходуют большие объемы воды и так как мы считаем воду следующим редким ресурсом, мы решили принять упреждающие меры и включить экономию воды в свой план.
By sharing this with the industry, we believe everyone can benefit from our methodology. While this concept and approach may be intimidating (or downright frightening) to some in the industry, disclosure ultimately is better for all of us.
Делясь этим опытом с отраслью, мы считаем, что каждый сможет извлечь выгоду из нашей методологией. Хотя эта концепция и подход могут показаться пугающими (или откровенно страшными) для некоторых отраслевых специалистов, раскрывая свои планы мы, в конечном счете, делаем лучше для всех нас.
Gen 4 design (even more than just containers), could reduce the ‘religious’ debates in our industry. With the central spine infrastructure in place, containers or pre-manufactured server halls can be either AC or DC, air-side economized or water-side economized, or not economized at all (though the sanity of that might be questioned). Gen 4 will allow us to decommission, repair and upgrade quickly because everything is modular. No longer will we be governed by the initial decisions made when constructing the facility. We will have almost unlimited use and re-use of the facility and site. We will also be able to use power in an ultra-fluid fashion moving load from critical to non-critical as use and capacity requirements dictate.
Проект Gen 4 позволит уменьшить ‘религиозные’ споры в нашей отрасли. Располагая базовой инфраструктурой, контейнеры или сборные серверные могут оборудоваться системами переменного или постоянного тока, воздушными или водяными экономайзерами, или вообще не использовать экономайзеры. Хотя можно подвергать сомнению разумность такого решения. Gen 4 позволит нам быстро выполнять работы по выводу из эксплуатации, ремонту и модернизации, поскольку все будет модульным. Мы больше не будем руководствоваться начальными решениями, принятыми во время строительства дата-центра. Мы сможем использовать этот дата-центр и инфраструктуру в течение почти неограниченного периода времени. Мы также сможем применять сверхгибкие методы использования электрической энергии, переводя оборудование в режимы критической или некритической нагрузки в соответствии с требуемой мощностью.
Gen 4 – это стандартная платформаFinally, we believe this is a big game changer. Gen 4 will provide a standard platform that our industry can innovate around. For example, all modules in our Gen 4 will have common interfaces clearly defined by our specs and any vendor that meets these specifications will be able to plug into our infrastructure. Whether you are a computer vendor, UPS vendor, generator vendor, etc., you will be able to plug and play into our infrastructure. This means we can also source anyone, anywhere on the globe to minimize costs and maximize performance. We want to help motivate the industry to further innovate—with innovations from which everyone can reap the benefits.
Наконец, мы уверены, что это будет фактором, который значительно изменит ситуацию. Gen 4 будет представлять собой стандартную платформу, которую отрасль сможет обновлять. Например, все модули в нашем Gen 4 будут иметь общепринятые интерфейсы, четко определяемые нашими спецификациями, и оборудование любого поставщика, которое отвечает этим спецификациям можно будет включать в нашу инфраструктуру. Независимо от того производите вы компьютеры, ИБП, генераторы и т.п., вы сможете включать свое оборудование нашу инфраструктуру. Это означает, что мы также сможем обеспечивать всех, в любом месте земного шара, тем самым сводя до минимума затраты и максимальной увеличивая производительность. Мы хотим создать в отрасли мотивацию для дальнейших инноваций – инноваций, от которых каждый сможет получать выгоду.
Главные характеристики дата-центров четвертого поколения Gen4To summarize, the key characteristics of our Generation 4 data centers are:
Scalable
Plug-and-play spine infrastructure
Factory pre-assembled: Pre-Assembled Containers (PACs) & Pre-Manufactured Buildings (PMBs)
Rapid deployment
De-mountable
Reduce TTM
Reduced construction
Sustainable measuresНиже приведены главные характеристики дата-центров четвертого поколения Gen 4:
Расширяемость;
Готовая к использованию базовая инфраструктура;
Изготовление в заводских условиях: сборные контейнеры (PAC) и сборные здания (PMB);
Быстрота развертывания;
Возможность демонтажа;
Снижение времени вывода на рынок (TTM);
Сокращение сроков строительства;
Экологичность;Map applications to DC Class
We hope you join us on this incredible journey of change and innovation!
Long hours of research and engineering time are invested into this process. There are still some long days and nights ahead, but the vision is clear. Rest assured however, that we as refine Generation 4, the team will soon be looking to Generation 5 (even if it is a bit farther out). There is always room to get better.
Использование систем электропитания постоянного тока.
Мы надеемся, что вы присоединитесь к нам в этом невероятном путешествии по миру изменений и инноваций!
На этот проект уже потрачены долгие часы исследований и проектирования. И еще предстоит потратить много дней и ночей, но мы имеем четкое представление о конечной цели. Однако будьте уверены, что как только мы доведем до конца проект модульного дата-центра четвертого поколения, мы вскоре начнем думать о проекте дата-центра пятого поколения. Всегда есть возможность для улучшений.So if you happen to come across Goldilocks in the forest, and you are curious as to why she is smiling you will know that she feels very good about getting very close to ‘JUST RIGHT’.
Generations of Evolution – some background on our data center designsТак что, если вы встретите в лесу девочку по имени Лютик, и вам станет любопытно, почему она улыбается, вы будете знать, что она очень довольна тем, что очень близко подошла к ‘ОПИМАЛЬНОМУ РЕШЕНИЮ’.
Поколения эволюции – история развития наших дата-центровWe thought you might be interested in understanding what happened in the first three generations of our data center designs. When Ray Ozzie wrote his Software plus Services memo it posed a very interesting challenge to us. The winds of change were at ‘tornado’ proportions. That “plus Services” tag had some significant (and unstated) challenges inherent to it. The first was that Microsoft was going to evolve even further into an operations company. While we had been running large scale Internet services since 1995, this development lead us to an entirely new level. Additionally, these “services” would span across both Internet and Enterprise businesses. To those of you who have to operate “stuff”, you know that these are two very different worlds in operational models and challenges. It also meant that, to achieve the same level of reliability and performance required our infrastructure was going to have to scale globally and in a significant way.
Мы подумали, что может быть вам будет интересно узнать историю первых трех поколений наших центров обработки данных. Когда Рэй Оззи написал свою памятную записку Software plus Services, он поставил перед нами очень интересную задачу. Ветра перемен двигались с ураганной скоростью. Это окончание “plus Services” скрывало в себе какие-то значительные и неопределенные задачи. Первая заключалась в том, что Майкрософт собиралась в еще большей степени стать операционной компанией. Несмотря на то, что мы управляли большими интернет-сервисами, начиная с 1995 г., эта разработка подняла нас на абсолютно новый уровень. Кроме того, эти “сервисы” охватывали интернет-компании и корпорации. Тем, кому приходится всем этим управлять, известно, что есть два очень разных мира в области операционных моделей и задач. Это также означало, что для достижения такого же уровня надежности и производительности требовалось, чтобы наша инфраструктура располагала значительными возможностями расширения в глобальных масштабах.
It was that intense atmosphere of change that we first started re-evaluating data center technology and processes in general and our ideas began to reach farther than what was accepted by the industry at large. This was the era of Generation 1. As we look at where most of the world’s data centers are today (and where our facilities were), it represented all the known learning and design requirements that had been in place since IBM built the first purpose-built computer room. These facilities focused more around uptime, reliability and redundancy. Big infrastructure was held accountable to solve all potential environmental shortfalls. This is where the majority of infrastructure in the industry still is today.
Именно в этой атмосфере серьезных изменений мы впервые начали переоценку ЦОД-технологий и технологий вообще, и наши идеи начали выходить за пределы общепринятых в отрасли представлений. Это была эпоха ЦОД первого поколения. Когда мы узнали, где сегодня располагается большинство мировых дата-центров и где находятся наши предприятия, это представляло весь опыт и навыки проектирования, накопленные со времени, когда IBM построила первую серверную. В этих ЦОД больше внимания уделялось бесперебойной работе, надежности и резервированию. Большая инфраструктура была призвана решать все потенциальные экологические проблемы. Сегодня большая часть инфраструктуры все еще находится на этом этапе своего развития.
We soon realized that traditional data centers were quickly becoming outdated. They were not keeping up with the demands of what was happening technologically and environmentally. That’s when we kicked off our Generation 2 design. Gen 2 facilities started taking into account sustainability, energy efficiency, and really looking at the total cost of energy and operations.
Очень быстро мы поняли, что стандартные дата-центры очень быстро становятся устаревшими. Они не поспевали за темпами изменений технологических и экологических требований. Именно тогда мы стали разрабатывать ЦОД второго поколения. В этих дата-центрах Gen 2 стали принимать во внимание такие факторы как устойчивое развитие, энергетическая эффективность, а также общие энергетические и эксплуатационные.
No longer did we view data centers just for the upfront capital costs, but we took a hard look at the facility over the course of its life. Our Quincy, Washington and San Antonio, Texas facilities are examples of our Gen 2 data centers where we explored and implemented new ways to lessen the impact on the environment. These facilities are considered two leading industry examples, based on their energy efficiency and ability to run and operate at new levels of scale and performance by leveraging clean hydro power (Quincy) and recycled waste water (San Antonio) to cool the facility during peak cooling months.
Мы больше не рассматривали дата-центры только с точки зрения начальных капитальных затрат, а внимательно следили за работой ЦОД на протяжении его срока службы. Наши объекты в Куинси, Вашингтоне, и Сан-Антонио, Техас, являются образцами наших ЦОД второго поколения, в которых мы изучали и применяли на практике новые способы снижения воздействия на окружающую среду. Эти объекты считаются двумя ведущими отраслевыми примерами, исходя из их энергетической эффективности и способности работать на новых уровнях производительности, основанных на использовании чистой энергии воды (Куинси) и рециклирования отработанной воды (Сан-Антонио) для охлаждения объекта в самых жарких месяцах.
As we were delivering our Gen 2 facilities into steel and concrete, our Generation 3 facilities were rapidly driving the evolution of the program. The key concepts for our Gen 3 design are increased modularity and greater concentration around energy efficiency and scale. The Gen 3 facility will be best represented by the Chicago, Illinois facility currently under construction. This facility will seem very foreign compared to the traditional data center concepts most of the industry is comfortable with. In fact, if you ever sit around in our container hanger in Chicago it will look incredibly different from a traditional raised-floor data center. We anticipate this modularization will drive huge efficiencies in terms of cost and operations for our business. We will also introduce significant changes in the environmental systems used to run our facilities. These concepts and processes (where applicable) will help us gain even greater efficiencies in our existing footprint, allowing us to further maximize infrastructure investments.
Так как наши ЦОД второго поколения строились из стали и бетона, наши центры обработки данных третьего поколения начали их быстро вытеснять. Главными концептуальными особенностями ЦОД третьего поколения Gen 3 являются повышенная модульность и большее внимание к энергетической эффективности и масштабированию. Дата-центры третьего поколения лучше всего представлены объектом, который в настоящее время строится в Чикаго, Иллинойс. Этот ЦОД будет выглядеть очень необычно, по сравнению с общепринятыми в отрасли представлениями о дата-центре. Действительно, если вам когда-либо удастся побывать в нашем контейнерном ангаре в Чикаго, он покажется вам совершенно непохожим на обычный дата-центр с фальшполом. Мы предполагаем, что этот модульный подход будет способствовать значительному повышению эффективности нашего бизнеса в отношении затрат и операций. Мы также внесем существенные изменения в климатические системы, используемые в наших ЦОД. Эти концепции и технологии, если применимо, позволят нам добиться еще большей эффективности наших существующих дата-центров, и тем самым еще больше увеличивать капиталовложения в инфраструктуру.
This is definitely a journey, not a destination industry. In fact, our Generation 4 design has been under heavy engineering for viability and cost for over a year. While the demand of our commercial growth required us to make investments as we grew, we treated each step in the learning as a process for further innovation in data centers. The design for our future Gen 4 facilities enabled us to make visionary advances that addressed the challenges of building, running, and operating facilities all in one concerted effort.
Это определенно путешествие, а не конечный пункт назначения. На самом деле, наш проект ЦОД четвертого поколения подвергался серьезным испытаниям на жизнеспособность и затраты на протяжении целого года. Хотя необходимость в коммерческом росте требовала от нас постоянных капиталовложений, мы рассматривали каждый этап своего развития как шаг к будущим инновациям в области дата-центров. Проект наших будущих ЦОД четвертого поколения Gen 4 позволил нам делать фантастические предположения, которые касались задач строительства, управления и эксплуатации объектов как единого упорядоченного процесса.
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Англо-русский словарь нормативно-технической терминологии > modular data center
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