

NXP Semiconductors
CBTL08GP053EVY
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CBTL08GP053EVY Description
CBTL08GP053EVY Description
The CBTL08GP053EVY from NXP Semiconductors is a high-performance 8.5GHz -3dB bandwidth analog switch designed for USB signal routing applications. Packaged in a VFBGA40 form factor and supplied via 1.8V single voltage, this surface-mount IC offers low on-state resistance (10Ω max) for minimal signal degradation. As part of the CBTL08 base product family, it is optimized for high-speed data switching with RoHS3 compliance and REACH unaffected status, making it suitable for environmentally conscious designs. Though marked obsolete, it remains a reliable choice for legacy systems requiring low-loss USB multiplexing.
CBTL08GP053EVY Features
- Ultra-Wide Bandwidth: 8.5GHz -3dB ensures integrity of high-speed USB signals.
- Low On-Resistance: 10Ω max minimizes insertion loss and power dissipation.
- Compact & Reliable: VFBGA40 package with MSL3 (168-hour) moisture sensitivity for robust assembly.
- Low-Power Operation: 1.8V supply reduces system power consumption.
- Compliance: ROHS3, REACH, and EAR99 certified for global deployment.
- Crossbar Architecture: Enables flexible signal routing in USB hubs and docking stations.
CBTL08GP053EVY Applications
- USB 3.0/3.1 Signal Switching: Ideal for multiplexing high-speed data lines in hubs, docks, and port expanders.
- Laptop/Desktop Motherboards: Space-efficient solution for USB port redundancy or failover routing.
- Test & Measurement Equipment: Low-distortion switching for signal integrity validation.
- Legacy System Upgrades: Replaces bulkier mechanical switches in retrofit designs.
Conclusion of CBTL08GP053EVY
The CBTL08GP053EVY excels in high-frequency USB signal routing with its low resistance, wide bandwidth, and compact footprint. While obsolete, its performance and compliance make it a pragmatic choice for legacy or cost-sensitive designs requiring minimal signal loss and high reliability. Engineers should evaluate alternatives for new designs but can leverage this IC for existing USB infrastructure optimizations.



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