10M16SCU169C8G
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- 3068 件
- Series
- 嵌入式FPGA(現場可程式設計閘陣列)
對 10M16SCU169C8G 和 10M16DAU324C8G 的深入比較,為您帶來關於其規格和關鍵特性的寶貴見解。我們詳細介紹了重要因素,包括 RoHS 合規性、REACH 狀態、系列、安裝方式、封裝類型以及其他相關特性。並排展示差異,簡化了元件選擇,讓您更輕鬆地為您的特定應用選擇最佳方案。
Replacement verdict
The 10M16SCU169C8G and 10M16DAU324C8G share the same Intel MAX 10 FPGA family, 16,000 logic elements, and C8 speed grade, making them functionally comparable for logic capacity and speed. However, they differ in package type and pin count, which affects PCB footprint and I/O availability. The 10M16SCU169C8G uses a 169-pin UBGA package, while the 10M16DAU324C8G uses a 324-pin UBGA package. Designers must verify pinout compatibility and thermal performance before substituting. This is a functional replacement candidate, not a drop-in replacement.
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訊息
Rows are prioritized by design impact. Highlighted values require attention during substitution.
Key electrical and mechanical differences between the two devices
| Parameter | 10M16SCU169C8G | 10M16DAU324C8G | Why it matters |
|---|---|---|---|
| Family | MAX 10 | MAX 10 | Same device family ensures similar architecture, toolchain support, and IP compatibility. |
| Logic Elements (LEs) | 16,000 | 16,000 | Equal logic capacity means comparable ability to implement user logic without resource changes. |
| Package | 169-pin UBGA | 324-pin UBGA | Different package and pin count affect PCB footprint, routing, and mechanical compatibility. |
| Number of I/Os | 130 | 246 | I/O count determines how many external signals and peripherals can be interfaced. |
| Embedded Memory | 588 kbits | 588 kbits | On-chip memory capacity affects buffering, data storage, and implementation of memory-heavy functions. |
| Analog-to-Digital Converter (ADC) | Not available | 1 MSPS, 12-bit | Integrated ADC enables analog sensing without external converter components. |
| Flash Memory for Configuration | Yes (internal configuration flash) | Yes (internal configuration flash) | Internal configuration flash allows single-chip operation and simplifies board design. |
| Operating Temperature Range | 0°C to 85°C | 0°C to 85°C | Temperature grade determines suitability for commercial versus industrial environments. |
| Supply Voltage | 1.2 V core, 2.5 V/3.3 V I/O | 1.2 V core, 2.5 V/3.3 V I/O | Matching voltage requirements ensures power supply compatibility and level shifting needs. |
Send your BOM and application constraints for technical and sourcing review.
Use manufacturer datasheets as the final authority.
| Specification | 10M16SCU169C8G | 10M16DAU324C8G |
|---|---|---|
| Series | MAX® 10 | MAX® 10 |
| Part Status | Active | Active |
| Number of LABs/CLBs | - | 1000 |
| Number of Logic Elements/Cells | - | 16000 |
| Total RAM Bits | 562176 | 562176 |
| Number of I/O | 130 | 246 |
| Voltage - Supply | 2.85V ~ 3.465V | 1.15V ~ 1.25V |
| Mounting Type | Surface Mount | Surface Mount |
| Operating Temperature | 0°C ~ 85°C (TJ) | 0°C ~ 85°C (TJ) |
| Digi Key Programmable | Not Verified | - |
| Number of LA Bs / CL Bs | 1000 | - |
| Number of Logic Elements / Cells | 16000 | - |
| Packaging | Tray | - |
The primary differences are package type, pin count, and I/O availability. The 10M16SCU169C8G uses a 169-pin UBGA package, while the 10M16DAU324C8G uses a 324-pin UBGA package. Both are Intel (Altera) MAX 10 FPGA devices with 16,000 logic elements and a C8 speed grade, but the larger 324-pin package provides more user I/O pins and additional features such as higher memory interface capability.
No. The 10M16SCU169C8G has a 169-ball UBGA package, and the 10M16DAU324C8G has a 324-ball UBGA package. They have different physical dimensions, ball counts, and ball maps, so they are not pin-to-pin compatible and cannot be interchanged on the same PCB footprint.
Yes. Both the 10M16SCU169C8G and 10M16DAU324C8G are MAX 10 devices with 16,000 logic elements (10M16) and a C8 speed grade. The logic fabric, embedded memory blocks, and DSP resources are identical across both devices; the differences are limited to package, pin count, and the number of available I/O pins.
The 10M16DAU324C8G offers more user I/O pins. Its 324-pin UBGA package provides a higher I/O count than the 169-pin UBGA package of the 10M16SCU169C8G. The exact number of user I/O pins should be confirmed from the Intel MAX 10 device pin-out files for each specific package.
No. Because the two devices use different packages (169-ball UBGA vs. 324-ball UBGA), they have different footprints, ball counts, and pin assignments. A drop-in replacement is not possible without a PCB redesign. Additionally, the I/O count and available features differ, so the system design must be revalidated.
Both devices belong to the Intel MAX 10 family and share the same configuration architecture, including internal configuration flash and support for instant-on operation. They also use the same core and I/O voltage rails as defined by the MAX 10 family specifications. However, the exact number of supported configuration schemes and power pins may vary by package, so the respective device pin-out and power pin tables should be consulted.
The 10M16SCU169C8G is better for space-constrained designs because its 169-ball UBGA package is physically smaller than the 324-ball UBGA package of the 10M16DAU324C8G. The trade-off is fewer user I/O pins and potentially fewer dedicated interface pins.
Both the 10M16SCU169C8G and 10M16DAU324C8G are offered in RoHS-compliant, lead-free packages as part of Intel's standard product offerings. The "G" suffix in both part numbers indicates RoHS compliance and lead-free construction. Final confirmation should be made using the Intel product material declaration or the distributor's compliance documentation.