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5M40ZE64C4N
+StücklisteIC CPLD 32MC 7.5NS 64EQFP
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HerstellerAltera
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Herstellerteil #5M40ZE64C4N
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Auf Lager8629
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Spezifikationen
| Attribut | Wert |
| Series | MAX® V |
| PartStatus | Active |
| DigiKeyProgrammable | Not Verified |
| ProgrammableType | In System Programmable |
| DelayTimetpd(1)Max | 7.5 ns |
| VoltageSupply-Internal | 1.71V ~ 1.89V |
| NumberofLogicElements/Blocks | 40 |
| NumberofMacrocells | 32 |
| NumberofI/O | 54 |
| OperatingTemperature | 0°C ~ 85°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | 64-TQFP Exposed Pad |
| SupplierDevicePackage | 64-EQFP (7x7) |
| BaseProductNumber | 5M40Z |
Übersicht
Description
This FPGA operates at a maximum clock frequency of 200 MHz and supports a variety of I/O standards, ensuring compatibility with different peripherals. The 5M40ZE64C4N also features on-chip memory, which can be used for temporary data storage or buffer applications.
One of its key advantages is its ease of use, with a rich development ecosystem supported by Intel’s Quartus Prime software, enabling designers to efficiently implement and test their designs. Overall, this FPGA balances performance, power efficiency, and flexibility, making it a popular choice for prototyping and custom hardware applications.
Equivalent
Features
1. Logic Elements: It has 4,000 logic elements, allowing for complex design implementations.
2. Memory: Supports up to 64 KB of embedded memory blocks, enabling efficient data storage and retrieval.
3. I/O Options: Offers up to 64 user I/O pins, supporting multiple voltage standards for diverse interfacing needs.
4. Embedded DSP Blocks: Contains dedicated DSP blocks for high-performance digital signal processing tasks.
5. Low Power Consumption: Designed with energy efficiency in mind, making it suitable for battery-operated devices.
6. Configuration: Supports multiple configuration methods, including JTAG and passive serial, for easy programming.
7. Integrated Flash Memory: Features embedded flash memory for non-volatile storage, allowing configurations to persist after power loss.
Overall, the 5M40ZE64C4N is ideal for applications in industrial automation, automotive, and consumer electronics where performance and power efficiency are crucial.
Pinout
1. I/O Pins: These are used for general input and output operations, including interfacing with external devices.
2. Power Supply Pins: These pins provide the necessary power to the FPGA.
3. Configuration Pins: Used for configuring the device during startup.
4. Clock Pins: Dedicated pins for clock signals to drive synchronous operations within the FPGA.
5. Dedicated Programming Pins: For JTAG programming and debugging interfaces.
The 5M40ZE64C4N is suited for low-power applications and is often used in embedded systems, consumer electronics, and automotive applications. Its flexibility allows for a wide range of applications, from simple logic functions to complex processing tasks.
Manufacturer
The 5M40ZE64C4N is part of Intel's MAX 10 FPGA family, which stands for Field-Programmable Gate Array. FPGAs are integrated circuits that can be programmed and reconfigured to perform specific tasks after manufacturing, making them highly versatile for various applications, including telecommunications, automotive, industrial, and consumer electronics.
Intel operates in several sectors, focusing on computing and communications, and continues to innovate in areas like artificial intelligence, data centers, and the Internet of Things (IoT). The company plays a significant role in advancing technology and is recognized for its research and development initiatives.
Application
1. Embedded Systems: Used for custom processing tasks in industrial controls and automation.
2. Communication: Implementing protocols for data transmission in networking equipment.
3. Digital Signal Processing: Processing audio and video signals in media applications.
4. Robotics: Control systems for robotic applications.
5. Prototyping: Rapid development of digital circuits for testing and validation.
6. Consumer Electronics: Enhancing functionalities in smart devices.
Overall, it serves diverse sectors requiring flexibility and performance in hardware design.