Intel Agilex® 7 FPGA I-Series 035
Specifications
Compare Intel® Products
Essentials
-
Product Collection
Intel Agilex® 7 FPGAs and SoC FPGAs I-Series
-
Marketing Status
Launched
-
Launch Date
Q4'21
-
Lithography
10 nm
Resources
-
Logic Elements (LE)
3540000
-
Adaptive Logic Modules (ALM)
1200000
-
Adaptive Logic Module (ALM) Registers
4800000
-
Fabric and I/O Phase-Locked Loops (PLLs)
18
-
Maximum Embedded Memory
383 Mb
-
Digital Signal Processing (DSP) Blocks
9594
-
Digital Signal Processing (DSP) Format
Fixed Point (hard IP), Floating Point (hard IP), Multiply, Multiply and Accumulate, Variable Precision
-
Hard Crypto Blocks
4
-
Hard Memory Controllers
Yes
-
External Memory Interfaces (EMIF)
DDR4, QDR IV
I/O Specifications
-
Maximum User I/O Count†
576
-
I/O Standards Support
1.2 V LVCMOS, 1.8 V LVCMOS, SSTL, POD, HSTL, HSUL, Differential SSTL, Differential POD, Differential HSTL, Differential HSUL, True Differential Signaling
-
Maximum LVDS Pairs
288
-
Maximum Non-Return to Zero (NRZ) Transceivers†
120
-
Maximum Non-Return to Zero (NRZ) Data Rate†
58 Gbps
-
Maximum Pulse-Amplitude Modulation (PAM4) Transceivers†
72
-
Maximum Pulse-Amplitude Modulation (PAM4) Data Rate†
116 Gbps
-
Transceiver Protocol Hard IP
PCIe Gen4, 10/25/50/100/200/400G Ethernet
Advanced Technologies
Package Specifications
-
Package Options
R3948A
Supplemental Information
-
Additional Information
Product Table (Family Comparison)
Datasheet
All FPGA Documentation
Ordering and Compliance
Ordering and spec information
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2E3E
- MM# 99C1D3
- Spec Code SRM3F
- Ordering Code AGIA035R39A2E3E
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2I3E
- MM# 99C1DX
- Spec Code SRM3P
- Ordering Code AGIC035R39A2I3E
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2E3V
- MM# 99C1FV
- Spec Code SRM3X
- Ordering Code AGIA035R39A2E3V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2E3E
- MM# 99C1FW
- Spec Code SRM3Y
- Ordering Code AGIC035R39A2E3E
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2E3V
- MM# 99C1G0
- Spec Code SRM41
- Ordering Code AGIC035R39A2E3V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2I3V
- MM# 99C1GA
- Spec Code SRM43
- Ordering Code AGIA035R39A2I3V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2I3V
- MM# 99C1GP
- Spec Code SRM48
- Ordering Code AGIC035R39A2I3V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2I3E
- MM# 99C1H0
- Spec Code SRM4F
- Ordering Code AGIA035R39A2I3E
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A1E1VB
- MM# 99C9FR
- Spec Code SRMNN
- Ordering Code AGIA035R39A1E1VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2E1VB
- MM# 99C9FT
- Spec Code SRMNP
- Ordering Code AGIA035R39A2E1VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A1E2VB
- MM# 99C9FV
- Spec Code SRMNQ
- Ordering Code AGIA035R39A1E2VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2E2VB
- MM# 99C9FZ
- Spec Code SRMNR
- Ordering Code AGIA035R39A2E2VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A1I1VB
- MM# 99C9G0
- Spec Code SRMNS
- Ordering Code AGIA035R39A1I1VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2I1VB
- MM# 99C9G1
- Spec Code SRMNT
- Ordering Code AGIA035R39A2I1VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A1I2VB
- MM# 99C9G9
- Spec Code SRMNU
- Ordering Code AGIA035R39A1I2VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2I2VB
- MM# 99C9GA
- Spec Code SRMNV
- Ordering Code AGIA035R39A2I2VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A1E1VB
- MM# 99C9GC
- Spec Code SRMNW
- Ordering Code AGIC035R39A1E1VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2E1VB
- MM# 99C9GD
- Spec Code SRMNX
- Ordering Code AGIC035R39A2E1VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A1E2VB
- MM# 99C9GF
- Spec Code SRMNY
- Ordering Code AGIC035R39A1E2VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2E2VB
- MM# 99C9GG
- Spec Code SRMNZ
- Ordering Code AGIC035R39A2E2VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A1I1VB
- MM# 99C9GZ
- Spec Code SRMPC
- Ordering Code AGIC035R39A1I1VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A1I2VB
- MM# 99C9H0
- Spec Code SRMPD
- Ordering Code AGIC035R39A1I2VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2I1VB
- MM# 99C9H1
- Spec Code SRMPE
- Ordering Code AGIC035R39A2I1VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2I2VB
- MM# 99C9H2
- Spec Code SRMPF
- Ordering Code AGIC035R39A2I2VB
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G188075L1
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2E1V
- MM# 99CDX8
- Spec Code SRN0X
- Ordering Code AGIA035R39A2E1V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A1I2V
- MM# 99CDX9
- Spec Code SRN0Y
- Ordering Code AGIA035R39A1I2V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2E2V
- MM# 99CDXG
- Spec Code SRN0Z
- Ordering Code AGIA035R39A2E2V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2I1V
- MM# 99CDXH
- Spec Code SRN10
- Ordering Code AGIA035R39A2I1V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A1E1V
- MM# 99CDXJ
- Spec Code SRN11
- Ordering Code AGIA035R39A1E1V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A1I1V
- MM# 99CDXK
- Spec Code SRN12
- Ordering Code AGIA035R39A1I1V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A1E2V
- MM# 99CDXL
- Spec Code SRN13
- Ordering Code AGIA035R39A1E2V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIA035R39A2I2V
- MM# 99CDXM
- Spec Code SRN14
- Ordering Code AGIA035R39A2I2V
- Stepping A0
- ECCN 3A001.A.7.B
- CCATS G171972
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A1E1V
- MM# 99CDXN
- Spec Code SRN15
- Ordering Code AGIC035R39A1E1V
- Stepping A0
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A1I1V
- MM# 99CDXR
- Spec Code SRN17
- Ordering Code AGIC035R39A1I1V
- Stepping A0
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2E2V
- MM# 99CDXT
- Spec Code SRN18
- Ordering Code AGIC035R39A2E2V
- Stepping A0
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2I1V
- MM# 99CDXV
- Spec Code SRN19
- Ordering Code AGIC035R39A2I1V
- Stepping A0
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A1I2V
- MM# 99CDXW
- Spec Code SRN1A
- Ordering Code AGIC035R39A1I2V
- Stepping A0
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2E1V
- MM# 99CDXX
- Spec Code SRN1B
- Ordering Code AGIC035R39A2E1V
- Stepping A0
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A2I2V
- MM# 99CDXZ
- Spec Code SRN1C
- Ordering Code AGIC035R39A2I2V
- Stepping A0
Intel Agilex® 7 FPGA I-Series 035 (R39A) AGIC035R39A1E2V
- MM# 99CDZ0
- Spec Code SRN1D
- Ordering Code AGIC035R39A1E2V
- Stepping A0
Trade compliance information
- ECCN Varies By Product
- CCATS Varies By Product
- US HTS 8542390001
PCN Information
SRMNX
- 99C9GD PCN
SRMNY
- 99C9GF PCN
SRMNZ
- 99C9GG PCN
SRMNP
- 99C9FT PCN
SRMNQ
- 99C9FV PCN
SRM48
- 99C1GP PCN
SRMNR
- 99C9FZ PCN
SRM3X
- 99C1FV PCN
SRMNS
- 99C9G0 PCN
SRM3Y
- 99C1FW PCN
SRMNT
- 99C9G1 PCN
SRMNU
- 99C9G9 PCN
SRMNV
- 99C9GA PCN
SRMNW
- 99C9GC PCN
SRM3P
- 99C1DX PCN
SRM41
- 99C1G0 PCN
SRM43
- 99C1GA PCN
SRMNN
- 99C9FR PCN
SRM4F
- 99C1H0 PCN
SRM3F
- 99C1D3 PCN
SRMPC
- 99C9GZ PCN
SRMPD
- 99C9H0 PCN
SRMPE
- 99C9H1 PCN
SRMPF
- 99C9H2 PCN
Drivers and Software
Description
Type
More
OS
Version
Date
All
View Details
Download
No results found for
Y
/apps/intel/arksuite/template/arkProductPageTemplate
Latest Drivers & Software
Launch Date
The date the product was first introduced.
Lithography
Lithography refers to the semiconductor technology used to manufacture an integrated circuit, and is reported in nanometer (nm), indicative of the size of features built on the semiconductor.
Logic Elements (LE)
Logic elements (LEs) are the smallest units of logic in Intel® FPGA architecture. LEs are compact and provide advanced features with efficient logic usage.
Adaptive Logic Modules (ALM)
The adaptive logic module (ALM) is the logic building block in supported Intel FPGA devices, and is designed to maximize both performance and utilization. Each ALM has several different modes of operation, and can implement a variety of different combinatorial and sequential logical functions.
Adaptive Logic Module (ALM) Registers
ALM registers are those register bits (flip-flops) that are contained inside the ALMs and are used to implement sequential logic.
Fabric and I/O Phase-Locked Loops (PLLs)
Fabric and IO PLLs are used to simplify the design and implementation of the clock networks in the Intel FPGA fabric, and also the clock networks associated with the IO cells in the device.
Maximum Embedded Memory
The total capacity of all the embedded memory blocks in the programmable fabric of the Intel FPGA device.
Digital Signal Processing (DSP) Blocks
The digital signal processing (DSP) block is the mathematical building block in supported Intel FPGA devices and contains high-performance multipliers and accumulators to implement a variety of digital signal processing functions.
Digital Signal Processing (DSP) Format
Depending on the Intel FPGA device family, the DSP block supports different formats such as hard floating point, hard fixed point, multiply and accumulate, and multiply only.
Hard Memory Controllers
Hard memory controllers are used to enable high-performance external memory systems attached to the Intel FPGA. A hard memory controller saves power and FPGA resources compared to the equivalent soft memory controller, and supports higher frequency operation.
External Memory Interfaces (EMIF)
The external memory interface protocols supported by the Intel FPGA device.
Maximum User I/O Count†
The maximum number of general purpose I/O pins in the Intel FPGA device, in the largest available package.
† Actual count could be lower depending on package.
I/O Standards Support
The general purpose I/O interface standards supported by the Intel FPGA device.
Maximum LVDS Pairs
The maximum number of LVDS pairs that can be configured in the Intel FPGA device, in the largest available package. Refer to device documentation for actual RX and TX LVDS pairs count by package type.
Maximum Non-Return to Zero (NRZ) Transceivers†
The maximum number of NRZ transceivers in the Intel FPGA device, in the largest available package.
† Actual count could be lower depending on package.
Maximum Non-Return to Zero (NRZ) Data Rate†
The maximum NRZ data rate that is supported by the NRZ transceivers.
† Actual data rate could be lower depending on transceiver speed grade.
Maximum Pulse-Amplitude Modulation (PAM4) Transceivers†
The maximum number of PAM4 transceivers in the Intel FPGA device, in the largest available package.
† Actual count could be lower depending on package.
Maximum Pulse-Amplitude Modulation (PAM4) Data Rate†
The maximum PAM4 data rate that is supported by the PAM4 transceivers.
† Actual data rate could be lower depending on transceiver speed grade.
Transceiver Protocol Hard IP
Hard intellectual property available in the Intel FPGA device to support the high-speed serial transceivers. Transceiver protocol hard IP saves power and FPGA resources compared to the equivalent soft IP, and simplifies the implementation of the serial protocol.
Hyper-Registers
Hyper-Registers are additional register bits (flip-flops) located in the interconnect of some Intel FPGA device families, allowing for re-timing and pipelining of the interconnect to enable higher clock frequency in the FPGA fabric.
FPGA Bitstream Security
Depending on the Intel FPGA device family, various security features are available to prevent copying of the customer bitstream, and detect attempts to tamper with the device during operation.
Package Options
Intel FPGA devices are available in different package sizes, with different IO and transceiver counts, to match customer system requirements.
Give Feedback
All information provided is subject to change at any time, without notice. Intel may make changes to manufacturing life cycle, specifications, and product descriptions at any time, without notice. The information herein is provided "as-is" and Intel does not make any representations or warranties whatsoever regarding accuracy of the information, nor on the product features, availability, functionality, or compatibility of the products listed. Please contact system vendor for more information on specific products or systems.
Intel classifications are for general, educational and planning purposes only and consist of Export Control Classification Numbers (ECCN) and Harmonized Tariff Schedule (HTS) numbers. Any use made of Intel classifications are without recourse to Intel and shall not be construed as a representation or warranty regarding the proper ECCN or HTS. Your company as an importer and/or exporter is responsible for determining the correct classification of your transaction.
Refer to Datasheet for formal definitions of product properties and features.
‡ This feature may not be available on all computing systems. Please check with the system vendor to determine if your system delivers this feature, or reference the system specifications (motherboard, processor, chipset, power supply, HDD, graphics controller, memory, BIOS, drivers, virtual machine monitor-VMM, platform software, and/or operating system) for feature compatibility. Functionality, performance, and other benefits of this feature may vary depending on system configuration.
“Announced” SKUs are not yet available. Please refer to the Launch Date for market availability.