Phototransistors

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RPI-124
ROHM
10μs Phototransistor 1 10μs 4mm*2.6mm*3.3mm
Quantity: 5368
Ship Date: 6-13 working days
1+ $1.6905
10+ $1.196
100+ $0.8481
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Ext. Price: $1.69
MOQ: 1
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RPI-221A
ROHM
10μs Phototransistor 1 30mA 10μs 400mV DIP-4 Through hole mounting 4.9mm*2.6mm*3.3mm
Quantity: 2000
In Stock
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1+ $0.2358
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Ext. Price: $0.23
MOQ: 1
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SPQ: 2000
RPI-578NF
ROHM
1.3V 10μs Phototransistor 10μs Through hole mounting
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Ship Date: 7-12 working days
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MOQ: 1
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Phototransistors

A phototransistor is a type of light-sensitive semiconductor device that functions as a transistor with the added ability to control its current based on the intensity of light it receives. Here's a concise introduction to phototransistors:

Definition:
A phototransistor is a semiconductor device that combines the properties of a photodiode and a bipolar junction transistor (BJT). It consists of an emitter, base, and collector, similar to a standard transistor, but with the base-emitter junction designed to be sensitive to light.

Function:
The primary function of a phototransistor is to convert light energy into an electrical signal. When light falls on the base-emitter junction, it generates electron-hole pairs, which increase the base current. This, in turn, amplifies the collector current, allowing the device to act as a light-controlled switch or amplifier.

Applications:
1. Light Detection and Ranging (LIDAR): Phototransistors are used in LIDAR systems for distance measurement and mapping.
2. Optical Sensors: They are employed in various sensors for detecting light levels, motion, and proximity.
3. Cameras: Phototransistors can be found in the light metering circuits of cameras.
4. Automotive Sensors: Used in light-based safety systems and headlight control.
5. Industrial Automation: For controlling machinery based on light signals or for detecting objects in manufacturing processes.

Selection Criteria:
When choosing a phototransistor, consider the following:
1. Spectral Response: Ensure it matches the wavelength of the light source.
2. Sensitivity: The device should have adequate sensitivity for the light levels expected in the application.
3. Response Time: For fast-changing light conditions, a phototransistor with a quick response is necessary.
4. Operating Voltage and Current: Must be compatible with the circuit design.
5. Package Type: Should suit the physical requirements of the application, such as size and mounting options.
6. Temperature Range: The device should operate reliably within the expected environmental conditions.

In summary, phototransistors are versatile components that leverage the principles of both light detection and transistor amplification, making them valuable in a wide range of applications where light control is required.
Please refer to the product rule book for details.