A3P1000-FGG256I

Effective Inventory5,179

FPGA - Field Programmable Gate Array ProASIC3 FPGA, 11KLEs

  • Manufacturer Part # : A3P1000-FGG256I

  • Package/Case: FBGA-256

  • Part Status : ACTIVE

  • Brand: Microchip Technology

  • Product Categories : FPGAs (Field Programmable Gate Array)

  • Series : A3P1000

  • RoHS:

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A3P1000-FGG256I DataSheet

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A3P1000-FGG256I Details

The A3P1000-FGG256I is a low-power, high-performance FPGA (Field-Programmable Gate Array) from Microchip Technology, offering an ideal solution for customizable digital logic and signal processing. It features a versatile I/O interface, on-chip memory blocks, and efficient power management, making it suitable for a wide range of embedded applications.

Pinout

  • 1 (VCC): Positive Power Supply
  • 2 (GND): Ground
  • 3 (IO0): Input/Output Pin 0
  • 4 (IO1): Input/Output Pin 1
  • 5 (CLK): Clock Input
  • 6 (RESET): Reset Pin
  • ...: More pins available, please refer to datasheet for complete pinout.

(Tip: For detailed pinout information, please refer to the corresponding datasheet.)

Key Features

  • Low Power Consumption: Designed for low-power operation to conserve energy.
  • High-Performance Logic: Offers high-speed digital logic for efficient signal processing.
  • On-Chip Memory: Includes configurable memory blocks for data storage and processing.
  • Versatile I/O: Provides a flexible input/output interface for seamless connectivity.
  • Embedded Applications: Suitable for various embedded system designs requiring customizable logic and processing capabilities.

Application

  • Embedded Systems: Ideal for embedded applications in industrial, automotive, and consumer electronics.
  • Signal Processing: Used for real-time signal processing and digital data manipulation.
  • Communications: Suitable for communication system implementations and protocol handling.

Where to Use

The A3P1000-FGG256I is suitable for applications that require customizable digital logic and signal processing capabilities. It is commonly used in embedded systems, communication devices, and signal processing equipment.

How to Use

Integrate the A3P1000-FGG256I into your design by connecting the I/O pins to external components and devices. Ensure appropriate power supply connections and clock input for proper functionality. Utilize the on-chip memory for data storage and processing. For detailed usage instructions, refer to the datasheet.

Application Circuit

The application circuit diagram for the A3P1000-FGG256I demonstrates the connections and integration of the FPGA into an embedded system. It includes power supply connections, I/O interfaces, and control signals, ensuring proper operation and signal processing capabilities.

(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)

Equivalents

  • A3P250-FGG484: A similar FPGA with lower logic capacity and reduced I/O options.
  • A3P600-2PQ208: An alternative FPGA offering comparable performance and I/O flexibility.

Complementary

The A3P1000-FGG256I can be complemented by the A3PE600-FGG484, which offers higher logic capacity and additional memory resources for more complex applications.

When selecting complementary FPGAs, ensure compatibility and logic resource alignment with your specific design requirements for optimal performance.

Frequently Asked Questions

Q: What is the maximum clock frequency supported by the A3P1000-FGG256I?

A: The A3P1000-FGG256I supports a maximum clock frequency of X MHz. For specific operating conditions and limitations, please refer to the datasheet.

Q: Can the A3P1000-FGG256I be used for real-time signal processing applications?

A: Yes, the A3P1000-FGG256I is well-suited for real-time signal processing due to its high-performance logic and configurable memory resources.

A3P1000-FGG256I

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Product Type ! ProASIC3 eNVM No
eSRAM No Logic Elements 11K
Fabric RAM 144 Kbits Fabric ROM 1 Kbits
Fabric uPROM No Math Blocks 18x18 No
PCIe No MSS I/O No
FPGA I/O No Max User I/O 300
Data Security No Analog No
Temp min -55C Temp max 135C

FAQs

What is A3P1000-FGG256I?

The A3P1000-FGG256I is a low-cost, low-power, flash-based field-programmable gate array (FPGA) manufactured by Microsemi Corporation. It is ideal for various applications requiring flexible digital logic, such as industrial control, communications, and automotive electronics.

How Does A3P1000-FGG256I Work?

The A3P1000-FGG256I operates as a reprogrammable digital integrated circuit that allows users to implement custom logic functions. It features flash memory cells that store configuration information, enabling the FPGA to be reprogrammed multiple times. The FPGA contains configurable logic blocks, interconnect resources, and I/O pads for custom digital designs.

How Many Pins does A3P1000-FGG256I have and What are the Functions of the Pinout Configuration?

The A3P1000-FGG256I is housed in a 256-pin Fine-Pitch Ball Grid Array (FBGA) package. The pinout configuration includes:

  • VCCINT, VCCIO: Internal and I/O power supply pins, respectively.
  • GND: Ground pins for power return.
  • Programmable Logic Pins: Configurable pins for implementing custom digital logic functions.
  • Configurable I/O Pins: User-reconfigurable I/O pins for connecting to external circuitry.
  • Pull-Up/Pull-Down Pins: Pins for configuring internal pull-up or pull-down resistors.
  • Programming Interface Pins: Pins for programming and configuring the FPGA.

What are the Pros and Cons of A3P1000-FGG256I?

Pros:

  • Flexibility: Provides the ability to implement custom digital designs for specific applications.
  • Reprogrammability: Allows for multiple configurations to be loaded onto the FPGA.
  • Low Power Consumption: Operates with low power, suitable for portable and battery-powered devices.
  • Cost-Effective: Offers a lower cost compared to ASICs for low to medium volume production.

Cons:

  • Complexity: Designing with FPGAs requires expertise in digital logic and FPGA programming.
  • Resource Limitations: May have limitations in terms of logic capacity and I/O resources for complex designs.
  • Programming Overhead: Loading configurations onto the FPGA may introduce programming overhead and complexity.

Are There Any Equivalents/Alternatives to A3P1000-FGG256I for Recommendation?

  • Alternatives to the A3P1000-FGG256I include the Spartan-6 series FPGAs from Xilinx and the Cyclone IV series FPGAs from Intel (formerly Altera).
  • The A3P250-FGG144 from Microsemi is a similar FPGA with different resources and pinout.

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