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XC7K325T-1FFG676C
+StücklisteIC FPGA 400 I/O 676FCBGA
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HerstellerAMD Xilinx
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Herstellerteil #XC7K325T-1FFG676C
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Paket BGA-676
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Auf Lager5302
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Package / Case | Tray |
| Series | Kintex®-7 |
| Part Status | Active |
| Number of LABs/CLBs | 25475 |
| Number of Logic Elements/Cells | 326080 |
| Total RAM Bits | 16404480 |
| Number of I/O | 400 |
| Voltage - Supply | 0.97V ~ 1.03V |
| Mounting Type | Surface Mount |
| Operating Temperature | 0°C ~ 85°C (TJ) |
Übersicht
Description
Key features of the XC7K325T include advanced 28nm process technology, providing improved performance per watt, and high-speed connectivity options like multi-gigabit transceivers and PCIe. It is often used in applications such as communications, automotive, broadcast, and general high-performance computing. The device supports a wide range of I/O standards and is compatible with Xilinx's Vivado Design Suite, facilitating advanced design and implementation workflows. Operating with a -1 speed grade, it offers a balance between performance and power efficiency within the Kintex-7 series.
Equivalent
1. Altera (Intel) Cyclone V series, such as the 5CGXFC7C7F23C7.
2. Microsemi (Microchip) SmartFusion2 series, like the M2S150-1FCG1152.
3. Lattice ECP5 series, specifically the LFE5UM-85F-8BG381C.
These alternatives offer similar capabilities in mid-range FPGA applications, but specific equivalence depends on the detailed requirements of your use case.
Features
1. Architecture: Built on a high-performance, low-power 28nm process technology.
2. Logic Cells: Provides 326,080 logic cells, suitable for complex processing tasks.
3. DSP Slices: Includes 840 DSP slices, facilitating efficient digital signal processing.
4. I/O Pins: Offers 400 user I/O pins, allowing extensive connectivity options.
5. Memory: Features 16,020 Kb of block RAM for data storage and buffering.
6. Transceivers: Supports up to 16 high-speed serial transceivers, enabling data rates up to 12.5 Gb/s.
7. Package: Comes in an FFG676 package, a fine-pitch BGA with 676 pins.
8. Power: Optimized for low power consumption without sacrificing performance.
9. Clock Management: Includes clock management tiles (CMTs) for advanced clocking capabilities.
10. Applications: Suitable for applications in communications, aerospace, defense, and industrial fields.
The XC7K325T-1FFG676C offers a balanced mix of performance, capacity, and cost efficiency, making it ideal for high-performance applications.
Pinout
The primary function of the XC7K325T-1FFG676C is to provide a flexible, high-performance FPGA solution for a wide range of applications. It features various resources including:
- 326,080 logic cells for implementing complex digital designs.
- 840 DSP slices for efficient signal processing tasks.
- 445 Block RAMs (BRAM) to facilitate data storage needs within the FPGA.
- High-speed serial transceivers for data communication.
- Configurable input/output blocks to interface with other components.
This FPGA is used in applications such as communications, automotive, industrial, and consumer electronics, where high performance, flexibility, and integration are essential. It supports a wide range of I/O standards and provides enhanced capabilities for digital signal processing, memory interfacing, and high-speed connectivity.
Manufacturer
Application
1. Communications: Used for networking and data centers, implementing protocols, and managing data throughput.
2. Broadcast and Pro Audio/Video: Supports video processing, encoding/decoding, and signal integrity.
3. Industrial Automation: Facilitates real-time processing and control systems.
4. Medical Imaging: Enhances imaging systems with fast data processing capabilities.
5. Aerospace and Defense: Suitable for secure and high-reliability applications, including radar and surveillance.
6. Scientific Computing: Supports high-performance computing tasks with parallel processing.
These applications leverage the FPGA's ability to handle complex algorithms and high-speed data paths efficiently.