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RT2417B7TR7 Description
RT2417B7TR7 Description
The RT2417B7TR7 from CTS Resistor Products is a high-density 16-resistor network array designed for precision termination applications. Packaged in a compact 24-pin LBGA format with dimensions of 8.00mm x 3.00mm (0.315" x 0.118"), this surface-mount device offers a 4.7kΩ 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 50mW power per element while maintaining a low-profile 1.34mm (0.053") seated height. Its RoHS compliance and REACH-unaffected status ensure environmental regulatory adherence, though it is marked as obsolete for new designs.
RT2417B7TR7 Features
- High-Density Integration: 16 resistors in a space-saving 24-pin LBGA package.
- Precision Performance: ±1% tolerance and ±200ppm/°C stability for reliable signal integrity.
- Dual Terminator Design: Optimized for PCI/PCIX bus termination, reducing signal reflections.
- Robust Construction: MSL 1 (Unlimited) moisture sensitivity ensures handling flexibility.
- Low-Power Operation: 50mW per resistor balances performance with thermal efficiency.
- Tape & Reel (TR) Packaging: Facilitates automated assembly processes.
RT2417B7TR7 Applications
Ideal for high-speed digital systems, the RT2417B7TR7 excels in:
- PCI/PCIX Bus Termination: Ensures impedance matching and minimizes signal distortion.
- Networking Equipment: Routers, switches, and servers requiring compact resistor arrays.
- Embedded Systems: Space-constrained designs needing reliable passive component integration.
- Industrial Electronics: Stable performance across operating temperatures (-55°C to +125°C).
Conclusion of RT2417B7TR7
The RT2417B7TR7 combines precision, compactness, and termination-specific design, making it a strong choice for legacy PCI/PCIX applications. While obsolete for new designs, its high-density integration and low-profile form factor remain advantageous for maintenance or existing system upgrades. Engineers should evaluate alternatives for forward-looking projects but can rely on this model for proven performance in targeted use cases.



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