| Part | RoHS | Manufacturer | Optoelectronic Type | Mounting Feature | Terminal Finish | Configuration | Size | Maximum Dark Current | No. of Functions | Infrared (IR) Range | Peak Wavelength (nm) | Nominal Supply Voltage | Packing Method | Maximum Response Time | Sub-Category | Maximum Operating Temperature | Shape | Minimum Operating Temperature | Minimum Collector-emitter Breakdown Voltage | Maximum Power Dissipation | Additional Features | Nominal Light Current | JESD-609 Code | Maximum On State Current |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
|
Osram Opto Semiconductors |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
.35 mm |
50 nA |
1 |
YES |
870 |
TR, 7 INCH |
85 Cel |
SQUARE |
-25 Cel |
15 V |
100 mA |
.015 A |
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|
|
Honeywell Sensing And Control |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
100 nA |
1 |
YES |
880 |
Photo Transistors |
125 Cel |
ROUND |
-55 Cel |
30 V |
.125 W |
1.5 mA |
|||||||||
|
|
Honeywell Sensing And Control |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
100 nA |
1 |
YES |
880 |
Photo Transistors |
125 Cel |
ROUND |
-55 Cel |
30 V |
.125 W |
3 mA |
|||||||||
|
|
Honeywell Sensing And Control |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
100 nA |
1 |
YES |
880 |
Photo Transistors |
125 Cel |
ROUND |
-55 Cel |
30 V |
.125 W |
1.5 mA |
|||||||||
|
|
Everlight Electronics |
PHOTO TRANSISTOR |
SINGLE |
1.9 mm |
100 nA |
1 |
YES |
940 |
85 Cel |
ROUND |
-25 Cel |
30 V |
HIGH SENSITIVITY |
1.5 mA |
||||||||||
|
|
Vishay Intertechnology |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
2.4 mm |
200 nA |
1 |
YES |
940 |
Photo Transistors |
100 Cel |
ROUND |
-40 Cel |
70 V |
.1 W |
DAY LIGHT FILTER, HIGH SENSITIVITY |
.5 mA |
.05 A |
||||||
|
|
Everlight Electronics |
PHOTO TRANSISTOR |
SINGLE |
3 mm |
100 nA |
1 |
YES |
940 |
85 Cel |
ROUND |
-25 Cel |
30 V |
.7 mA |
|||||||||||
|
|
Everlight Electronics |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
1.6 mm |
50 nA |
1 |
YES |
940 |
Photo Transistors |
85 Cel |
ROUND |
-25 Cel |
60 V |
.075 W |
2.6 mA |
.02 A |
|||||||
|
|
Everlight Electronics |
PHOTO TRANSISTOR |
THROUGH HOLE MOUNT |
SINGLE |
5 mm |
100 nA |
1 |
YES |
940 |
Photo Transistors |
85 Cel |
ROUND |
-25 Cel |
30 V |
.075 W |
3.5 mA |
.02 A |
|||||||
|
|
Everlight Electronics |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
1.9 mm |
100 nA |
1 |
YES |
940 |
Photo Transistors |
85 Cel |
ROUND |
-25 Cel |
30 V |
.075 W |
1.5 mA |
.02 A |
|||||||
|
|
Everlight Electronics |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
1.9 mm |
100 nA |
1 |
YES |
940 |
Photo Transistors |
85 Cel |
ROUND |
-25 Cel |
30 V |
.075 W |
1.5 mA |
.02 A |
|||||||
|
|
Everlight Electronics |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
1.9 mm |
100 nA |
1 |
YES |
940 |
Photo Transistors |
85 Cel |
ROUND |
-25 Cel |
30 V |
.075 W |
1.5 mA |
.02 A |
|||||||
|
|
Osram Opto Semiconductors |
PHOTO TRANSISTOR |
THROUGH HOLE MOUNT |
Tin (Sn) |
SINGLE |
4.7 mm |
100 nA |
1 |
YES |
880 |
.000018 s |
Photo Transistors |
125 Cel |
ROUND |
-40 Cel |
.22 W |
15 mA |
e3 |
.05 A |
|||||
|
|
Sharp Corporation |
PHOTO TRANSISTOR |
Tin/Silver/Copper (Sn/Ag/Cu) |
SINGLE |
1.6 mm |
100 nA |
1 |
YES |
860 |
85 Cel |
ROUND |
-25 Cel |
35 V |
SIDE VIEW |
.8 mA |
e1 |
||||||||
|
|
Osram Opto Semiconductors |
PHOTO TRANSISTOR |
Tin (Sn) |
SINGLE |
2 mm |
100 nA |
1 |
YES |
850 |
100 Cel |
SQUARE |
-40 Cel |
20 V |
.1 mA |
e3 |
|||||||||
|
|
Osram Opto Semiconductors |
PHOTO TRANSISTOR |
SINGLE |
2 mm |
100 nA |
1 |
YES |
850 |
100 Cel |
SQUARE |
-40 Cel |
20 V |
.063 mA |
|||||||||||
|
|
Osram Opto Semiconductors |
PHOTO TRANSISTOR |
SINGLE |
.29 mm |
50 nA |
1 |
NO |
570 |
85 Cel |
SQUARE |
-40 Cel |
.35 mA |
||||||||||||
|
|
Osram Opto Semiconductors |
PHOTO TRANSISTOR |
SURFACE MOUNT |
SINGLE |
50 nA |
1 |
YES |
990 |
TR, 7 INCH |
100 Cel |
ROUND |
-40 Cel |
.13 W |
AEC-Q101 |
.18 mA |
.015 A |
A phototransistor is an electronic component that uses light to control the flow of electrical current. It is a type of bipolar transistor that is designed to respond to the presence of light by amplifying the current flowing through it. Phototransistors are widely used in a variety of applications, including in optical communication systems, photodetectors, and motion detectors.
Phototransistors work by using light to generate a flow of electrons that controls the flow of current through the transistor. When light hits the phototransistor, it causes electrons to be released, which flow through the transistor and control the current flowing through it. The current flowing through the transistor can be amplified and used to control other components in a circuit.