Overview
The Intersil 5962R9572601VXC is a high-reliability, radiation-hardened operational amplifier designed for use in aerospace, defense, and other mission-critical applications. Built to withstand harsh environmental conditions, including radiation exposure, this device ensures consistent performance in demanding situations. It adheres to MIL-PRF-38535 standards, making it suitable for high-reliability systems.
Key Features
- Radiation-Hardened Design: Built to withstand high levels of radiation for space and defense applications.
- High Reliability: Meets stringent military specifications for operational consistency and durability.
- Wide Operating Range: Functions effectively across a broad range of voltages and temperatures.
- Low Offset Voltage: Provides precise signal amplification with minimal error.
- Hermetically Sealed Package: Ensures protection against environmental factors.
Specifications (General; refer to datasheet for precise details)
- Type: Operational Amplifier (Op-Amp)
- Radiation Tolerance: Resistant to both total ionizing dose (TID) and single-event effects (SEE).
- Supply Voltage Range: Suitable for high-performance systems requiring stable operation.
- Input Offset Voltage: Low offset for accurate signal processing.
- Operating Temperature Range: -55°C to +125°C (extended for harsh environments).
Applications
- Space Systems: Satellite and spacecraft electronics where radiation tolerance is critical.
- Defense Electronics: Missile guidance, radar systems, and other military-grade systems.
- Avionics: High-reliability amplifiers for aircraft systems.
- Industrial Control: Precision amplification in extreme environments.
- Research and Development: Used in applications requiring high-stability performance
Conclusion
The Intersil 5962R9572601VXC is a high-performance, radiation-hardened operational amplifier tailored for applications requiring the utmost reliability. Its robust design and adherence to military standards make it indispensable for space, defense, and other critical systems.



