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10M16SAU169A7G
IC FPGA 130 I/O NV MAX10 169UBGA
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規格
| Series | MAX® 10 |
| Part Status | Active |
| DigiKey Programmable | Not Verified |
| Number of Logic Elements/Cells | 16000 |
| Total RAM Bits | 562176 |
| Number of I/O | 130 |
| Voltage - Supply | 2.85V ~ 3.15V, 3.135V ~ 3.465V |
| Mounting Type | Surface Mount |
| Operating Temperature | -40°C ~ 125°C (TJ) |
| Package / Case | 169-LFBGA |
| Supplier Device Package | 169-UBGA (11x11) |
| Number of LABs/CLBs | 1000 |
概述
Description
The 10M16SAU169A7G is a part of Intel's MAX 10 FPGA series. MAX 10 FPGAs are designed for a wide range of applications, offering low power and high functionality. The specific part number, 10M16SAU169A7G, provides insights into the device's specifications:
- 10M16: Indicates the device contains approximately 16,000 logic elements (LEs).
- SAU169: Specifies the package type, which is a 169-pin UFBGA (Ultra Fine-Pitch Ball Grid Array).
- A7: Refers to the speed grade and operating temperature range. The 'A7' denotes a mid-range speed and commercial temperature range.
- G: Indicates that the device complies with lead-free standards (RoHS compliant).
This FPGA series is notable for integrating both flash and RAM in a single chip, providing configuration flexibility and simplifying board design. The MAX 10 family supports various features, including ADCs, temperature sensors, and flash memory, making it suitable for industrial, automotive, and consumer electronics applications.
- 10M16: Indicates the device contains approximately 16,000 logic elements (LEs).
- SAU169: Specifies the package type, which is a 169-pin UFBGA (Ultra Fine-Pitch Ball Grid Array).
- A7: Refers to the speed grade and operating temperature range. The 'A7' denotes a mid-range speed and commercial temperature range.
- G: Indicates that the device complies with lead-free standards (RoHS compliant).
This FPGA series is notable for integrating both flash and RAM in a single chip, providing configuration flexibility and simplifying board design. The MAX 10 family supports various features, including ADCs, temperature sensors, and flash memory, making it suitable for industrial, automotive, and consumer electronics applications.
Features
The part number "10M16SAU169A7G" refers to an Intel MAX 10 FPGA (Field Programmable Gate Array). Here are its key features:
1. Architecture: Based on Intel's non-volatile FPGA technology, which combines the performance and flexibility of an FPGA with the instant-on capability of an ASIC.
2. Logic Elements: Approximately 16,000 logic elements.
3. Package: Comes in a 169-pin UFBGA (Ultra Fine-Pitch Ball Grid Array) package.
4. Memory: Includes embedded memory blocks for efficient data storage and processing.
5. Operating Temperature: Typically supports commercial and industrial temperature ranges.
6. Integrated ADC: Features an analog-to-digital converter for applications requiring analog signal processing.
7. Embedded Flash Memory: Contains on-chip flash for configuration and user data storage.
8. Power Management: Supports advanced power management features to optimize power consumption.
9. I/O Standards: Supports a wide range of I/O standards and interfaces for design flexibility.
10. Tool Support: Compatible with Intel's Quartus Prime software for design and development.
This device is suitable for a variety of applications, including industrial control, automotive, and consumer electronics, where a balance of performance, power, and cost is needed.
1. Architecture: Based on Intel's non-volatile FPGA technology, which combines the performance and flexibility of an FPGA with the instant-on capability of an ASIC.
2. Logic Elements: Approximately 16,000 logic elements.
3. Package: Comes in a 169-pin UFBGA (Ultra Fine-Pitch Ball Grid Array) package.
4. Memory: Includes embedded memory blocks for efficient data storage and processing.
5. Operating Temperature: Typically supports commercial and industrial temperature ranges.
6. Integrated ADC: Features an analog-to-digital converter for applications requiring analog signal processing.
7. Embedded Flash Memory: Contains on-chip flash for configuration and user data storage.
8. Power Management: Supports advanced power management features to optimize power consumption.
9. I/O Standards: Supports a wide range of I/O standards and interfaces for design flexibility.
10. Tool Support: Compatible with Intel's Quartus Prime software for design and development.
This device is suitable for a variety of applications, including industrial control, automotive, and consumer electronics, where a balance of performance, power, and cost is needed.
Package
The 10M16SAU169A7G is a device from Intel's MAX 10 FPGA family. It comes in a UFBGA (Ultra Fine-Pitch Ball Grid Array) package with 169 balls. The package type is U169, which denotes a ultra-fine pitch design to accommodate high-density connections in a compact form.
Pinout
The 10M16SAU169A7G is part of the Intel/Altera MAX 10 FPGA family. It comes in a 169-pin UFBGA package. This FPGA is designed for a variety of applications, including automotive, industrial, and consumer electronics, due to its non-volatile, low-cost, and single-chip design.
Key functions include:
1. Logic Elements (LEs): Provides 16,000 LEs for implementing custom digital designs.
2. Memory Blocks: Contains embedded memory for storing data and implementing memory functions.
3. DSP Blocks: These are used for digital signal processing applications.
4. PLL (Phase-Locked Loops): Helps in clock management and generation.
5. I/O Pins: Supports a variety of I/O standards for interfacing with other digital components.
6. Embedded ADC: Includes analog-to-digital converters for mixed-signal applications.
7. Configuration: Can be configured via JTAG or internal flash memory.
These features make the 10M16SAU169A7G suitable for a wide range of applications that require moderate logic density, integrated analog functions, and a cost-effective FPGA solution.
Key functions include:
1. Logic Elements (LEs): Provides 16,000 LEs for implementing custom digital designs.
2. Memory Blocks: Contains embedded memory for storing data and implementing memory functions.
3. DSP Blocks: These are used for digital signal processing applications.
4. PLL (Phase-Locked Loops): Helps in clock management and generation.
5. I/O Pins: Supports a variety of I/O standards for interfacing with other digital components.
6. Embedded ADC: Includes analog-to-digital converters for mixed-signal applications.
7. Configuration: Can be configured via JTAG or internal flash memory.
These features make the 10M16SAU169A7G suitable for a wide range of applications that require moderate logic density, integrated analog functions, and a cost-effective FPGA solution.
Manufacturer
The 10M16SAU169A7G is a product manufactured by Intel Corporation. It is part of Intel's MAX 10 FPGA (Field-Programmable Gate Array) family. Intel is a multinational corporation and technology company headquartered in Santa Clara, California. It is one of the world's largest and most well-known semiconductor chip manufacturers. Intel is known for developing microprocessors for computer systems, as well as producing a range of products including integrated graphics chips, flash memory, and other semiconductor devices. The company plays a significant role in the computing and data industry, often providing essential components for personal computers, servers, and various electronic devices.
Application
The 10M16SAU169A7G is an Intel MAX 10 FPGA, used in applications such as industrial automation, automotive systems, communications, and consumer electronics. It offers features like low power consumption, integrated analog-to-digital converters, and flash memory, making it suitable for control systems, signal processing, and data acquisition. Its reprogrammable nature also supports prototype development and testing in various embedded system applications.
Equivalent
The 10M16SAU169A7G is an Intel MAX 10 FPGA. Equivalent products include other devices within the MAX 10 family with similar logic elements, such as the 10M16DAF484 or 10M16DCF256, but in different packages. For alternatives from other manufacturers, consider similar low-cost FPGAs like those from Xilinx Spartan-7 or Lattice MachXO3 series with comparable logic capacity and I/O configurations. Always verify specific requirements such as package type, power consumption, and performance for compatibility.
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