

Renesas Electronics Corporation
MPC9109AC
Why Choose Us?
Professional Platform
B2B & B2C purchasingDelivery at full speed
1-2 days deliveryWide variety
Original manufacturers365 days guarantee
Responsible qualityTech Specifications
MPC9109AC Description
MPC9109AC Description
The MPC9109AC is a high-performance clock fanout buffer designed specifically for Intel CPU servers. Manufactured by Renesas Electronics Corporation, this IC offers a robust solution for distributing clock signals with minimal skew and jitter. The device features a 2:18 input-to-output ratio, enabling it to drive up to 18 outputs from a single input. It operates within a temperature range of 0°C to 70°C, making it suitable for a wide range of industrial applications. The MPC9109AC supports LVCMOS and LVPECL input levels and provides LVCMOS outputs, ensuring compatibility with various digital systems. It operates on a supply voltage ranging from 2.375V to 3.465V and can handle frequencies up to 250MHz. The device is packaged in a 32LQFP format and is available in tray packaging. Despite its obsolescence status, the MPC9109AC remains a reliable choice for applications requiring high fanout capabilities.
MPC9109AC Features
- High Fanout Capability: The MPC9109AC offers a 2:18 input-to-output ratio, allowing it to drive multiple outputs from a single input, which is particularly useful in complex systems requiring extensive clock distribution.
- Wide Operating Temperature Range: With an operating temperature range of 0°C to 70°C, the MPC9109AC is well-suited for applications in diverse environmental conditions.
- Versatile Input and Output Levels: The device supports LVCMOS and LVPECL input levels and provides LVCMOS outputs, ensuring compatibility with a variety of digital systems.
- High Frequency Operation: The MPC9109AC can handle frequencies up to 250MHz, making it suitable for high-speed clock distribution in demanding applications.
- Surface Mount Technology: The surface mount mounting type facilitates easy integration into modern PCB designs, enhancing reliability and reducing the overall footprint.
- Compliance and Safety: The MPC9109AC is REACH unaffected and classified under ECCN EAR99, ensuring compliance with international regulations and safety standards.
- Moisture Sensitivity Level: With an MSL of 3 (168 hours), the device is protected against moisture, ensuring long-term reliability in storage and manufacturing processes.
MPC9109AC Applications
The MPC9109AC is ideally suited for applications requiring high fanout capabilities and reliable clock distribution. Key applications include:
- Intel CPU Servers: The primary application of the MPC9109AC is in Intel CPU servers, where it provides efficient clock distribution to multiple components, ensuring synchronized operation and high performance.
- High-Speed Digital Systems: The device's ability to handle frequencies up to 250MHz makes it suitable for high-speed digital systems where precise clock distribution is critical.
- Industrial Control Systems: The wide operating temperature range and robust performance make the MPC9109AC a reliable choice for industrial control systems that require high fanout capabilities.
- Telecommunications: In telecommunications infrastructure, the MPC9109AC can be used to distribute clock signals across multiple components, ensuring accurate timing and synchronization.
Conclusion of MPC9109AC
The MPC9109AC is a high-performance clock fanout buffer designed to meet the demanding requirements of Intel CPU servers and other high-speed digital systems. With its 2:18 input-to-output ratio, wide operating temperature range, and support for high frequencies, the device offers a reliable solution for clock distribution. Although marked as obsolete, the MPC9109AC remains a viable option for applications requiring robust clock distribution capabilities. Its compliance with international regulations and safety standards further enhances its suitability for a variety of industrial applications.



.png)
















.png?x-oss-process=image/format,webp/resize,h_32)










