圖片僅供參考
10M16DAF484C8G
+物料清單IC FPGA 320 I/O 484FBGA
-
製造商阿爾特拉
-
製造商部分 #10M16DAF484C8G
-
有存貨4580
365 天品質保證
7*24 小時服務保證
90-日售後保障
正品保證
規格
| 屬性 | 價值 |
| Series | MAX® 10 |
| Part Status | Active |
| Digi Key Programmable | Not Verified |
| Total RAM Bits | 562176 |
| Number of I/O | 320 |
| Voltage - Supply | 1.15V ~ 1.25V |
| Mounting Type | Surface Mount |
| Operating Temperature | 0°C ~ 85°C (TJ) |
| Package / Case | 484-BGA |
| Supplier Device Package | 484-FBGA (23x23) |
| Number of Logic Elements / Cells | 16000 |
| Number of LA Bs / CL Bs | 1000 |
概述
Description
Key specifications include:
- Logic Elements: Approximately 16,000
- Embedded Memory: Up to 576 Kbits of RAM
- I/O Pins: Configurable up to 48 pins with support for LVTTL, LVCMOS, and more
- Operating Voltage: Typically operates at 3.3V
- Package Type: Available in a 484-pin FBGA package
The MAX 10 series is known for its low power consumption, ease of use, and integration of on-chip features like ADCs and DSP blocks. This makes the 10M16DAF484C8G a versatile choice for designers looking for efficient and powerful FPGA solutions in their projects.
Equivalent
Features
1. Logic Elements: It contains approximately 16,000 logic elements, enabling complex digital logic designs.
2. I/O Pins: The device supports up to 48 programmable I/O pins, providing flexibility for various applications.
3. Memory: It includes up to 512 Kbits of embedded memory, suitable for data storage and buffering.
4. Single Supply Voltage: Operates on a single 1.2V supply, simplifying power management.
5. Integrated Flash Memory: Features built-in flash memory for configuration storage, allowing for easy reprogramming without external devices.
6. High Performance: Offers up to 150 MHz performance, suitable for high-speed applications.
7. Development Tools: Compatible with Intel Quartus Prime software for design and simulation, facilitating efficient development processes.
8. Applications: Commonly used in communications, industrial control, and consumer electronics.
Overall, the 10M16DAF484C8G provides a robust solution for various FPGA applications, combining flexibility, performance, and ease of use.
Pinout
The FPGA integrates various functionalities, including:
- Configurable I/O Pins: Supports various I/O standards and can be configured for different voltage levels.
- Dedicated Clock Pins: For connecting external clocks.
- User I/O: General-purpose input/output for interfacing with external components.
- Power Pins: For delivering power to the FPGA and supporting various voltage requirements.
- JTAG Pins: For programming and debugging the FPGA.
This device is designed for applications requiring moderate logic density and can be used in a wide range of fields such as communications, automotive, and industrial applications.
Manufacturer
Intel was founded in 1968 and has played a pivotal role in the development of the modern computing industry. The company is a significant player in the field of artificial intelligence, cloud computing, and Internet of Things (IoT) technologies. In addition to its core semiconductor business, Intel is also involved in research and development to advance technologies in various sectors, including data centers, automotive, and 5G communications.
The 10M16DAF484C8G specifically refers to a member of Intel's MAX 10 FPGA (Field Programmable Gate Array) family, which is used in a variety of applications, such as industrial automation, automotive, and consumer electronics, allowing for customizable hardware solutions.
Application
1. Digital Signal Processing: Implementing algorithms for audio, video, and communication systems.
2. Embedded Systems: Custom logic for microcontroller-based applications.
3. Industrial Automation: Control systems and automation solutions.
4. Telecommunications: Protocol processing and network management.
5. Automotive: Advanced driver-assistance systems (ADAS).
6. Consumer Electronics: Custom interfaces and signal processing.
7. Aerospace and Defense: Reliable and reconfigurable systems for critical applications.
These applications leverage the FPGA's flexibility and parallel processing capabilities.