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RT1710B7TR7 Description
RT1710B7TR7 Description
The RT1710B7TR7 from CTS Resistor Products is a high-density 16-resistor network array designed for precision termination in LVDS (Low-Voltage Differential Signaling) applications. Packaged in a compact 32-pin LBGA format with dimensions of 8.00mm x 4.00mm (0.315" x 0.157"), this surface-mount device offers a 100Ω resistance per element with a tight ±1% tolerance and a ±200ppm/°C temperature coefficient. Part of the ClearONE™ series, it features a dual terminator circuit configuration, delivering 68mW power dissipation per resistor while maintaining a low-profile 1.34mm (0.053") seated height.
RT1710B7TR7 Features
- High Integration: 16 resistors in a space-saving LBGA package, reducing PCB footprint.
- Precision Performance: ±1% tolerance and ±200ppm/°C stability ensure reliable signal integrity.
- LVDS-Optimized: Dual terminator design minimizes skew and reflections in high-speed differential signals.
- Robust Construction: MSL 1 (Unlimited) moisture sensitivity and REACH Unaffected compliance enhance reliability.
- Efficient Power Handling: 68mW per resistor supports sustained operation in demanding environments.
- Obsolete Status: While no longer in production, existing stock remains viable for legacy designs.
RT1710B7TR7 Applications
Ideal for high-speed data transmission systems, the RT1710B7TR7 excels in:
- LVDS Interfaces: Terminating clock/data lines in displays, FPD links, and serial communication.
- Embedded Systems: Space-constrained designs requiring compact resistor networks.
- Industrial Electronics: Robust performance in automation and control systems.
- Legacy Upgrades: Replacement for obsolete terminator arrays in existing hardware.
Conclusion of RT1710B7TR7
The RT1710B7TR7 combines high-density integration, precision resistance, and LVDS-specific optimization, making it a standout choice for engineers managing signal integrity in high-speed applications. Though marked obsolete, its balanced performance and compact form factor continue to support niche and legacy designs. For projects demanding reliable termination with minimal board space, this resistor network remains a technically sound solution.



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