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MC10H116DR2G Description
MC10H116DR2G Description
The MC10H116DR2G from onsemi is a high-performance 3-channel receiver IC designed for robust signal processing in high-speed digital systems. Part of the 10H series, this surface-mount device operates within a 4.94V to 5.46V supply range, ensuring compatibility with standard 5V logic environments. It features a differential receiver configuration, making it ideal for noise-sensitive applications requiring precise signal integrity. The device is housed in a 16-pin SOIC package and is supplied in Tape & Reel (TR) for automated assembly. Although marked as Obsolete, it remains relevant for legacy systems due to its reliability and ROHS3 compliance.
MC10H116DR2G Features
- Differential Receivers: Three high-speed receivers with excellent noise immunity, suitable for ECL (Emitter-Coupled Logic) environments.
- Wide Operating Voltage: Supports 4.94V–5.46V, ensuring stable performance in varying power conditions.
- Surface-Mount Design: 16-SOIC package enables compact PCB integration for space-constrained applications.
- Industrial Temperature Range: Operates from 0°C to 75°C, making it suitable for commercial and industrial environments.
- Compliance: ROHS3 compliant and REACH unaffected, meeting modern environmental standards.
- Moisture Sensitivity Level (MSL) 1: Unlimited shelf life, reducing handling constraints.
MC10H116DR2G Applications
- High-Speed Data Transmission: Ideal for backplane communication, clock distribution, and telecom infrastructure due to its low skew and high noise margin.
- Test & Measurement Equipment: Used in precision instruments requiring low-jitter signal reception.
- Legacy Systems Maintenance: Suitable for military/aerospace and industrial systems where obsolete components are still in use.
- Differential Signaling Systems: Effective in LVDS (Low-Voltage Differential Signaling) replacements where ECL compatibility is needed.
Conclusion of MC10H116DR2G
The MC10H116DR2G is a specialized receiver IC offering high-speed, noise-resistant performance for critical digital systems. While obsolete, its proven reliability, wide voltage tolerance, and compliance make it a practical choice for legacy upgrades or niche applications. Engineers working with ECL-based designs or high-speed data links will find this component valuable for maintaining signal integrity in demanding environments.





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