


Diodes Incorporated
PI6C182AHE
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PI6C182AHE Description
PI6C182AHE Description
The PI6C182AHE is a high-performance clock buffer designed by Diodes Incorporated, featuring a 1:10 fanout ratio and a maximum operating frequency of 125 MHz. This device is specifically engineered to provide reliable clock distribution in various electronic systems. It operates within a supply voltage range of 3.135V to 3.465V and is compatible with TTL input and output signals. The PI6C182AHE is housed in a 28-pin SSOP package, making it suitable for surface-mount applications. It is rated for an operating temperature range of 0°C to 70°C and is compliant with Ro3HS standards, ensuring environmental sustainability. Despite its obsolete status, the PI6C182AHE remains a robust solution for applications requiring efficient clock signal distribution.
PI6C182AHE Features
- High Fanout Ratio: The 1:10 fanout ratio allows the PI6C182AHE to drive multiple loads efficiently, making it ideal for systems requiring extensive clock distribution.
- Wide Operating Frequency: With a maximum frequency of 125 MHz, the PI6C182AHE can handle high-speed clock signals, ensuring precise timing in demanding applications.
- TTL Compatibility: The device supports TTL input and output levels, ensuring compatibility with a wide range of digital systems.
- Surface-Mount Packaging: The 28SSOP package is designed for surface-mount technology, facilitating easy integration into modern PCB designs.
- RoHS3 Compliance: The PI6C182AHE adheres to RoHS3 standards, ensuring minimal environmental impact and compliance with global regulations.
- Robust Operating Temperature Range: The device operates reliably within a temperature range of 0°C to 70°C, making it suitable for various environmental conditions.
- Low Moisture Sensitivity: With a Moisture Sensitivity Level (MSL) of 1 (Unlimited), the PI6C182AHE is highly resistant to moisture, reducing the risk of damage during manufacturing processes.
PI6C182AHE Applications
The PI6C182AHE is well-suited for a variety of applications where precise clock distribution is critical. Some specific use cases include:
- Telecommunications: In telecom equipment, the PI6C182AHE can distribute clock signals to multiple components, ensuring synchronized operation and minimizing timing errors.
- Data Processing Systems: For systems requiring high-speed data processing, the PI6C182AHE can provide reliable clock distribution to multiple processing units, enhancing overall system performance.
- Industrial Control Systems: In industrial environments, the PI6C182AHE can drive clock signals to various control modules, ensuring accurate timing and synchronization.
- Consumer Electronics: In devices such as routers, modems, and other consumer electronics, the PI6C182AHE can distribute clock signals to multiple components, ensuring efficient operation and performance.
Conclusion of PI6C182AHE
The PI6C182AHE, despite being marked obsolete as, remains a reliable and efficient clock buffer solution for applications requiring high-speed clock distribution. Its 1:10 fanout ratio, compatibility with TTL signals, and wide operating frequency range make it a versatile component suitable for various electronic systems. The device's RoHS3 compliance and robust operating temperature range further enhance its appeal in modern electronics. While newer alternatives may exist, the PI6C182AHE continues to offer significant value for systems where its specific features are required.



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