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RT2250B7TR7A Description
RT2250B7TR7A Description
The RT2250B7TR7A from CTS Resistor Products is a high-performance 16-resistor network designed for precision termination in high-speed digital applications. Housed in a compact 24-pin LBGA package with dimensions of 8.00mm x 3.00mm (0.315" x 0.118"), this surface-mount device features a low-profile design with a seated height of just 1.34mm (0.053"). It offers dual termination with resistances of 82.5Ω and 127Ω at a tight tolerance of ±1%, ensuring consistent signal integrity. The ±200ppm/°C temperature coefficient and 96mW power rating per element make it suitable for stable operation in demanding environments.
RT2250B7TR7A Features
- 16-resistor array in a 24-pin LBGA package for space-efficient PCB layouts.
- Dual terminator circuit optimized for LVPECL applications.
- ±1% tolerance and ±200ppm/°C TCR for high precision and thermal stability.
- RoHS3 compliant and REACH unaffected, meeting global environmental standards.
- Moisture Sensitivity Level (MSL) 1, suitable for unlimited floor life.
- Tape & Reel (TR) packaging for automated assembly efficiency.
- ClearONE™ series technology ensures low crosstalk and high signal fidelity.
RT2250B7TR7A Applications
Ideal for high-speed digital systems, the RT2250B7TR7A excels in:
- LVPECL signal termination in networking and telecom equipment.
- Clock distribution circuits and FPGA/ASIC interfaces.
- Data acquisition systems requiring precise impedance matching.
- Industrial automation and test & measurement instrumentation.
Its robust design and low parasitic effects make it a preferred choice for applications demanding minimal signal distortion and high reliability.
Conclusion of RT2250B7TR7A
The RT2250B7TR7A resistor network combines precision, compactness, and thermal stability, making it a standout solution for high-frequency digital termination. With its industry-leading tolerance, low-profile form factor, and compliance with environmental standards, it is well-suited for advanced electronics where signal integrity and space constraints are critical. Engineers can rely on its performance in LVPECL-driven systems and other high-speed applications.



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