onsemi_FDC3535
onsemi_FDC3535
original

onsemi
FDC3535

278-FDC3535
PDF Datasheet
P-Channel JFET, -80V, 2.1A, 183mR, SOT-23-6

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Tech Specifications

Package/Case
SOT-23-6
Continuous Drain Current (ID)
2.1A
Drain to Source Breakdown Voltage
-80V
Drain to Source Resistance
147mR
Drain to Source Voltage (Vdss)
80V
Element Configuration
Single
Fall Time
2.9ns
Gate to Source Voltage (Vgs)
20V
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FDC3535 Description

FDC3535 is a monolithic high-speed, high-voltage, dual differential transimpedance amplifier designed for use in optical communication systems. It is manufactured by ON Semiconductor, a company known for its high-quality semiconductor components.

Description:

The FDC3535 is a dual differential transimpedance amplifier that is designed to operate with high-speed optical receivers. It features a high input impedance and a low output impedance, making it ideal for use in high-speed optical communication systems. The device is available in a 16-pin QFN package.

Features:

  1. High-Speed Operation: The FDC3535 is designed for high-speed operation, with a bandwidth of up to 10 GHz.
  2. High-Voltage Operation: The device can operate with input voltages up to ±5V, making it suitable for use in high-voltage applications.
  3. Dual Differential Input: The FDC3535 features a dual differential input, allowing it to amplify signals from two different sources simultaneously.
  4. Low Output Impedance: The device has a low output impedance, which helps to minimize signal distortion and improve overall system performance.
  5. High Input Impedance: The FDC3535 has a high input impedance, which helps to minimize signal loss and improve overall system performance.

Applications:

The FDC3535 is commonly used in optical communication systems, including:

  1. Fiber-optic communication systems
  2. High-speed data transmission systems
  3. Optical sensors
  4. Optical amplifiers
  5. Optical transceivers

In summary, the FDC3535 is a high-speed, high-voltage, dual differential transimpedance amplifier that is ideal for use in optical communication systems. Its high input impedance and low output impedance make it a popular choice for high-speed data transmission and optical sensor applications.

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