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XC95108-10PQ160I Description
XC95108-10PQ160I Description
The XC95108-10PQ160I is a complex programmable logic device (CPLD) manufactured by AMD, designed for high-performance applications that require a balance between cost and functionality. This device is part of the XC9500 series, offering a versatile solution for various digital design challenges. With 108 macrocells, 6 logic elements/blocks, and 2400 gates, the XC95108-10PQ160I provides ample resources for complex digital designs. It is programmable in-system, allowing for at least 10K program/erase cycles, which is crucial for applications requiring frequent reconfiguration.
XC95108-10PQ160I Features
- Voltage Supply - Internal: Operates within a range of 4.5V to 5.5V, ensuring compatibility with a wide range of power supplies.
- Number of I/O: 108 I/O pins provide extensive connectivity options for interfacing with various external components.
- Programmable Type: In System Programmable (min 10K program/erase cycles), offering flexibility and reusability.
- Mounting Type: Surface Mount, suitable for PCB integration in modern electronics.
- Series: XC9500, indicating a family of devices with similar capabilities and features.
- Number of Gates: 2400 gates, providing substantial logic capacity for complex designs.
- Delay Time tpd(1) Max: 10 ns, ensuring fast operation and minimal delay in signal processing.
- Moisture Sensitivity Level (MSL): 3 (168 Hours), indicating that the device can withstand moderate levels of moisture before requiring baking.
XC95108-10PQ160I Applications
The XC95108-10PQ160I is ideal for applications that demand high-density logic integration, such as:
- Telecommunications: For signal processing and protocol conversion in communication systems.
- Automotive Electronics: In control units where multiple I/O and logic functions are required.
- Industrial Control Systems: For managing complex control logic and interfacing with various sensors and actuators.
- Consumer Electronics: In devices that require reconfigurable logic for different modes of operation.
Conclusion of XC95108-10PQ160I
While the XC95108-10PQ160I is now considered obsolete, it was a robust solution during its time for applications requiring a high number of I/O, macrocells, and programmable logic elements. Its in-system programmability and fast delay time made it a competitive choice for high-speed digital designs. Although it may no longer be in production, understanding its specifications and capabilities can inform the selection of modern alternatives that offer similar or improved performance.



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