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RT2727B6TR7 Description
RT2727B6TR7 Description
The RT2727B6TR7 from CTS Corporation is a high-precision 24-resistor network designed for LVDS and LVPECL signal termination applications. Housed in a compact 32-pin LBGA package with dimensions of 10.16mm x 5.08mm (0.400" x 0.200"), this surface-mount device offers a dual-terminator circuit configuration with resistances of 70Ω and 187Ω, ensuring optimal signal integrity in high-speed differential systems. With a tight ±1% tolerance and a ±200ppm/°C temperature coefficient, it delivers stable performance across varying environmental conditions. The ClearONE™ series product is RoHS compliant and features a 68mW power rating per element, making it suitable for demanding applications.
RT2727B6TR7 Features
- High Precision: ±1% tolerance and ±200ppm/°C TCR ensure reliable performance.
- Compact Design: 0.058" (1.47mm) profile and 32-pin LBGA package save board space.
- Dual-Terminator Circuit: Supports 70Ω and 187Ω resistances for LVDS/LVPECL termination.
- Robust Construction: Moisture Sensitivity Level (MSL) 1 allows unlimited floor life.
- Power Efficiency: 68mW power dissipation per resistor balances performance and thermal management.
- Obsolete Status: While no longer in production, it remains a proven solution for legacy designs.
RT2727B6TR7 Applications
- High-Speed Data Transmission: Ideal for LVDS/LVPECL interfaces in telecom and networking equipment.
- Signal Integrity: Terminates differential pairs in FPGA/ASIC-based systems to reduce reflections.
- Embedded Systems: Used in industrial automation and medical devices requiring precise termination.
- Legacy Upgrades: Suitable for maintaining or refurbishing older electronics where replacement is critical.
Conclusion of RT2727B6TR7
The RT2727B6TR7 resistor network excels in high-speed signal termination, offering precision, compactness, and reliability. Its dual-resistance values and robust construction make it a preferred choice for LVDS/LVPECL applications, though designers should note its obsolete status. For legacy systems or projects requiring proven performance, this component remains a viable solution.



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