Product Overview: SN74CBT16811CDLR
The SN74CBT16811CDLR is a high-performance integrated circuit from Texas Instruments, renowned for its robustness and versatility in a variety of electronic applications. This particular chip is a 24-bit FET bus switch, designed to provide high-speed switching with low on-state resistance, making it ideal for bus exchange, isolation, and switching tasks in computing and telecommunication systems.
Key Features
- Bus Switch Type: 24-bit FET
- Package: 56-Lead SSOP (Shrink Small-Outline Package)
- Operating Voltage Range: 4.5V to 5.5V
- Low On-State Resistance: Provides efficient signal switching with minimal voltage drop.
- 5-Ω Bidirectional Switches: Allows signals to flow in both directions, enhancing the flexibility of the device.
- Low Power Consumption: Ideal for power-sensitive applications.
Applications
The SN74CBT16811CDLR is suitable for a wide range of applications, including:
- Bus isolation and exchange in servers and routers
- Signal gating, where high-speed and low-resistance are required
- Hot-swapping and hot-docking operations in portable electronics
- Memory interleaving in high-performance computing
Quality and Reliability
Texas Instruments ensures the highest quality and reliability for the SN74CBT16811CDLR, subjecting the device to rigorous testing and quality control procedures. The device's performance is guaranteed over the specified temperature and voltage ranges, making it a reliable choice for critical applications.
Environmental Compliance
The SN74CBT16811CDLR is compliant with RoHS (Restriction of Hazardous Substances) directives, ensuring that it meets global environmental standards and is free from harmful substances such as lead, cadmium, and mercury.
Ordering Information
For detailed ordering information and to check availability, please refer to the Texas Instruments website or contact an authorized distributor. The part number SN74CBT16811CDLR represents the specific model in a 56-Lead SSOP package, provided in tape and reel form for automated assembly processes.