PD8932, PD8933, PD8933SERIES Selling Leads, Datasheet
MFG:MITSUBISHI Package Cooled:TO-200AB D/C:2009
PD8932, PD8933, PD8933SERIES Datasheet download
Part Number: PD8932
MFG: MITSUBISHI
Package Cooled: TO-200AB
D/C: 2009
MFG:MITSUBISHI Package Cooled:TO-200AB D/C:2009
PD8932, PD8933, PD8933SERIES Datasheet download
MFG: MITSUBISHI
Package Cooled: TO-200AB
D/C: 2009
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Datasheet: PD8932
File Size: 54345 KB
Manufacturer: MITSUBISHI [Mitsubishi Electric Semiconductor]
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PDF/DataSheet Download
Datasheet: PD8933
File Size: 131758 KB
Manufacturer: MITSUBISHI [Mitsubishi Electric Semiconductor]
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PDF/DataSheet Download
Datasheet: PD8001
File Size: 93514 KB
Manufacturer: MITSUBISHI [Mitsubishi Electric Semiconductor]
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PD8XX2 is an InGaAs avalanche photodiode suitable for receiving the light having low noise, a wavelength band of 1000 to 1600nm. This photodiode features low noise, a high quantum efficiency and a very small dark current and is suitable for the light receiving elements for long-distance optical communications.
Symbol |
Parameter |
Conditions |
Ratings |
Unit |
IR |
Reverse current |
- |
500 |
A |
IF |
Forward current |
- |
2 |
mA |
TC |
Case temperature |
- |
-40~+85 |
|
Tstg |
Storage temperature |
- |
-40~+100 |
` Active diameter 50m
` Low noise
` High speed response
` Very small dark current
` High quantum efficiency
· Receiver for long-distance fiber - optic communication systems
PD8XX3 series are InGaAs avalanche photodiode which has a sensitive area of 35 m, PD8XX3 is suitable for receiving the light having a wavelength band of 1000 to 1600nm. This photodiode features low noise, a high quantum efficiency and a high speed response is suitable for the light receiving element for long - distance optical communications.
Symbol |
Parameter |
Conditions |
Ratings |
Unit |
IR |
Reverse current |
- |
500 |
A |
IF |
Forward current |
- |
2 |
mA |
TC |
Case temperature |
- |
-40~+85 |
|
Tstg |
Storage temperature |
- |
-40~+100 |
` 35 m active diameter
` Low noise
` High speed response
` Small dark current
` High quantum efficiency
· Receiber for long-distance fiber-optic communication systems