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| Parameters | |
|---|---|
| Manufacturer Part Number: | AGLN125V2-VQ100I |
| Manufacturer: | Microsemi Corporation |
| Number of Terminals: | 100 |
| Operating Temperature-Max: | 85 °C |
| Operating Temperature-Min: | -40 °C |
| Organization: | 3072 CLBS, 125000 GATES |
| Package Body Material: | PLASTIC/EPOXY |
| Package Code: | TFQFP |
| Package Description: | TFQFP, |
| Package Shape: | SQUARE |
| Package Style: | FLATPACK, THIN PROFILE, FINE PITCH |
| Part Life Cycle Code: | Active |
| Peak Reflow Temperature (Cel): | 230 |
| Reach Compliance Code: | unknown |
| Risk Rank: | 5.59 |
| Rohs Code: | No |
| Supply Voltage-Max: | 1.575 V |
| Supply Voltage-Min: | 1.14 V |
| Supply Voltage-Nom: | 1.2 V |
| Surface Mount: | YES |
| Technology: | CMOS |
| Temperature Grade: | INDUSTRIAL |
| Terminal Finish: | Tin/Lead (Sn/Pb) |
| Terminal Form: | GULL WING |
| Terminal Pitch: | 0.5 mm |
| Terminal Position: | QUAD |
| Width: | 14 mm |
| HTS Code: | 8542.39.00.01 |
| Ihs Manufacturer: | MICROSEMI CORP |
| JESD-30 Code: | S-PQFP-G100 |
| JESD-609 Code: | e0 |
| Length: | 14 mm |
Product Description:
The AGLN125V2-VQ100I is a highly versatile and efficient field-programmable gate array (FPGA) that offers a wide range of digital logic capabilities for various applications. Packed with advanced features and a generous logic capacity, this FPGA is a reliable choice for designing and implementing complex digital systems.
Features:
Generous Logic Capacity: The AGLN125V2-VQ100I FPGA boasts a substantial number of logic elements, flip-flops, and memory blocks, providing ample resources for complex digital designs.
Reprogrammability: With its reprogrammable functionality, engineers can rapidly design, test, and revise digital circuits, facilitating quicker development cycles and design iterations.
High-Speed Interfaces: The FPGA supports high-speed communication interfaces, making it suitable for applications that demand rapid data processing, such as networking and signal processing.
Embedded Memory: Certain versions of the device include embedded memory blocks, enabling efficient data storage and complex calculations.
Flexible I/O Configuration: The FPGA features programmable I/O pins that can be customized to support various communication standards and interface requirements.
Advanced Clock Management: Integrated clock management resources allow precise control and synchronization of signals throughout the design.
Configuration Options: The device can be configured using various methods, including JTAG, enabling efficient programming and debugging.
Low Power Modes: The FPGA is designed with power efficiency in mind, offering low-power modes for energy-conscious applications.
Applications:
Digital Signal Processing (DSP): The AGLN125V2-VQ100I is suitable for implementing DSP algorithms, data manipulation, and mathematical computations in fields such as telecommunications, audio processing, and image processing.
High-Speed Communication: Used in networking equipment, data centers, and telecommunications devices to process and route high-speed data streams.
Industrial Automation: The FPGA can be integrated into industrial control systems, factory automation, robotics, and mechatronics for efficient data processing and control.
Test and Measurement: Employed in test equipment and measurement devices to process, analyze, and present data accurately and efficiently.
Aerospace and Defense: Used in radar systems, avionics, and communication equipment for processing and analyzing signals and data.
Embedded Systems: Suitable for embedded applications such as automotive control units, consumer electronics, and IoT devices.
Scientific Research: Used in research applications that require high-performance computing for simulations, data analysis, and scientific computations.
Medical Imaging: Applied in medical imaging devices for real-time image processing, signal enhancement, and data manipulation.
In summary, the AGLN125V2-VQ100I FPGA offers a powerful platform for designing and implementing complex digital systems across a broad range of applications. With its generous logic capacity, advanced features, and flexibility, it empowers engineers and designers to create efficient and adaptable digital solutions. Whether used in communication systems, industrial automation, aerospace, or scientific research, this FPGA contributes to efficient and reliable digital system design and functionality.
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