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767141824G
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767141824G Description
767141824G Description
The 767141824G from CTS Resistor Products (a division of CTS Corporation) is a high-density 13-resistor bussed network designed for precision surface-mount applications. Encased in a compact 14-pin SOIC package (9.91mm x 5.59mm), this obsolete but reliable component offers a 820kΩ resistance per element with a tight ±2% tolerance and a low ±100ppm/°C temperature coefficient, ensuring stable performance across varying environmental conditions. Its 100mW power rating per resistor and ROHS3/REACH compliance make it suitable for modern, eco-conscious designs. Packaged in tubes for automated assembly, it features a low-profile 2.36mm seated height, ideal for space-constrained PCBs.
767141824G Features
- 13-resistor bussed array simplifies circuit design by reducing discrete component count.
- 820kΩ ±2% tolerance ensures consistent signal integrity in precision circuits.
- ±100ppm/°C TCR minimizes resistance drift under thermal stress.
- Surface-mount SOIC-14 package (9.91mm x 5.59mm) with MSL 1 (unlimited) shelf life.
- 100mW power dissipation per element balances compact size with robust performance.
- ROHS3/REACH compliant and EAR99/ECCN classified for global supply chain flexibility.
767141824G Applications
This resistor network excels in:
- Voltage division and pull-up/down networks in industrial control systems.
- Signal conditioning for sensors and ADCs in automotive electronics.
- Impedance matching in communication devices (e.g., RF modules).
- Legacy equipment maintenance due to its obsolete status but proven reliability.
- High-density PCBs where space efficiency and reduced part count are critical.
Conclusion of 767141824G
While marked obsolete, the 767141824G remains a viable choice for designers needing a high-precision, space-saving resistor network with robust thermal performance. Its bussed architecture, tight tolerance, and low TCR make it ideal for legacy upgrades or applications demanding repeatability. Engineers should verify alternative availability but can leverage this part’s proven stability in analog signal chains and power distribution networks.



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