ON Semiconductor SN75175DR2 Quadruple Differential Line Receiver
The ON Semiconductor SN75175DR2 is a high-performance quadruple differential line receiver designed to meet the stringent requirements of balanced and unbalanced digital data transmission. This integrated circuit is a perfect fit for applications that demand reliable high-speed data communication with robust noise immunity. The SN75175DR2 is a versatile component that can be used in a wide range of industrial, telecommunications, and networking equipment.
Key Features
- Interface Type: RS-422, RS-423
- Supply Voltage Range: 4.75V to 5.25V
- Operating Temperature Range: 0°C to 70°C
- Mounting Type: Surface Mount
- Package / Case: SOIC-16
- Number of Receivers: 4
- Data Rate: High-speed performance
- Output Type: 3-State outputs
- RoHS: Compliant
The SN75175DR2 features four independent differential line receivers, each capable of handling balanced and unbalanced digital data signals. The device is characterized by its high data rates, making it suitable for applications that require fast and accurate data transmission. The receivers have 3-state outputs, which provide the option to place the outputs in a high-impedance state, thereby allowing for bus-line applications or multiplexing.
With a supply voltage range of 4.75V to 5.25V, the SN75175DR2 offers designers flexibility in power supply design. The operating temperature range from 0°C to 70°C ensures stable performance across various environmental conditions. The device's SOIC-16 package is compact, making it ideal for space-constrained applications while also facilitating easier surface-mount assembly.
Compliance with the RoHS directive makes the SN75175DR2 an environmentally friendly choice for companies looking to minimize their ecological footprint. The commitment to sustainable product development is evident in ON Semiconductor's offering of RoHS-compliant components, ensuring that hazardous substances are not used in the manufacturing process.
In summary, the ON Semiconductor SN75175DR2 is a reliable and efficient solution for systems that require high-speed differential data reception. Its robust design, combined with high noise immunity and multiple receiver channels, makes it an essential component for modern digital communication systems.