
Vishay / Dale
MSP10C011K00GEJ
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MSP10C011K00GEJ Description
MSP10C011K00GEJ Description
The MSP10C011K00GEJ from Vishay Dale is a high-performance 9-resistor bussed network designed for precision applications. Housed in a compact 10-pin SIP (Single In-Line Package), it features a 1kΩ resistance per element with a tight ±2% tolerance and a low ±100ppm/°C temperature coefficient, ensuring stable performance across varying environmental conditions. The device operates at 250mW power per element and is rated for ±50ppm/°C resistor-ratio drift, making it ideal for circuits requiring consistent voltage division or current limiting. Its through-hole mounting and ROHS3 compliance align with modern environmental and assembly standards.
MSP10C011K00GEJ Features
- 9-resistor bussed array in a space-saving 0.990" x 0.090" (25.15mm x 2.29mm) footprint.
- 1kΩ resistance with ±2% tolerance for precision applications.
- Low TCR (±100ppm/°C) and ±50ppm/°C ratio drift for thermal stability.
- 250mW power rating per resistor, suitable for moderate-load circuits.
- Through-hole SIP package for robust mechanical attachment.
- ROHS3 compliant and MSL 1 (unlimited) for easy handling and storage.
- Wide operating temperature range (derived from MSP series reliability).
MSP10C011K00GEJ Applications
This resistor network excels in:
- Voltage dividers and current-limiting circuits in industrial controls.
- Signal conditioning for sensors and analog front-ends.
- Pull-up/pull-down networks in digital systems (e.g., microcontrollers).
- Power supply feedback loops requiring stable resistance ratios.
- Automotive and aerospace electronics where thermal stability is critical.
Conclusion of MSP10C011K00GEJ
The MSP10C011K00GEJ combines Vishay Dale’s legacy of precision with a robust design, offering exceptional thermal performance, tight tolerances, and ease of integration. Its bussed configuration and SIP packaging make it a versatile choice for both prototyping and production, particularly in high-reliability systems where consistency and durability are paramount. Ideal for engineers seeking a balance of accuracy, power handling, and compactness.



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