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Virtex 7 系列 │ quad V7 套裝系統

ASIC Prototyping Solution

Product Summary
The proFPGA quad V7 system is a complete, scalable, and modular multi FPGA Prototyping solution, which fulfills highest needs in the area of FPGA based Prototyping. It addresses customers who need a scalable and most flexible high performance ASIC Prototyping solution for early software development and real time system verification. The innovative system concept and technologies offer highest flexibility and reusability for several projects, which guarantees the best return on invest.

Highest Flexibility
The system architecture is based on a modular and scalable system concept. The FPGAs are assembled on dedicated FPGA modules, which will be plugged on the proFPGA motherboard. This offers the highest flexibility to use for example different FPGA types in one system or to scale a system in increments of one FPGA. Besides the user has nearly 100% access to all available I/Os of the FPGA, which gives him maximum freedom regarding the FPGA interconnection structure. Hence the prototyping system can be adapted the best way to meet the demands of any user design. Furthermore the system offers a total of 32 extension sites on the top and bottom site for standard proFPGA or user specific extension boards like DDR-3 memory, high performance interface, interconnection or adaptor boards.

Maximum Performance
The well designed boards of the proFPGA system are optimized and trimmed to guarantee best signal integrity and to achieve highest performance. The high speed boards together with the specific high speed connectors allow a maximum point to point speed of up to 1.8 Gbps over the standard FPGA I/O and up to 12.5 Gbps over the MGT of the FPGA. This fast performance combined with the high interconnection flexibility offer the designer an maximum speed of his design running in the proFPGA system.

Biggest Capacity
Equipped with up to 4 Xilinx Virtex 7 XCV2000T FPGA modules, the proFPGA quad system can handle up to 48 M ASIC gates alone on one board. Due to the fact, that multiple proFPGA quad or duo systems can be stacked or connected together, there is unlimited scalability and no theoretical maximum in capacity.

Extensive User Comfort
The proFPGA prototyping system provides an extensive set of features and tools, like remote system configuration, integrated self and performance test, automatic board detection, automatic I/O voltage programming, system scan and safety mechanism, which extraordinarily simplifies the usage of the FPGA based system. The proFPGA system uses an innovative dual-stage clock generator architecture. Each proFPGA motherboard is capable of distributing up to 8 true asynchronous master beats. Each master beat may be used to derive a virtually unlimited number of clock domains inside the FPGAs. With the unique proFPGA synchronization scheme, clock domains and associated reset signals can be generated fully phase-synchronous over all FPGAs on the motherboard and over multiple motherboards.

Specification 

FPGSs

  • Up to 4 Xilinx Virtex XC7V2000T FPGA Modules

 

Capacity

  • Up to 48 M ASIC gates on one board (12 M ASIC gates per FPGA Module)

 

FPGA-internal memory

  • Up to 186,048 kbits on one board (46,512 kbits per FPGA Module)

 

Signaling rate

  • Up to 1.8 Gbps (standard I/O)/ 12.5 Gbps (MGT)

 

Extension sites

  • Up to 32 Extension sites with High Performance (up to 21 Gbps) connectors

 

I/O resources

  • Overall 4336 signals for I/O and inter FPGA connection
  • 1084 free I/Os per FPGA Module
  • 4x148 I/Os to top side connectors
  • 3x148 and 1x48 I/Os to bottom side connectors
  • Single-ended or differential

 

High Speed I/O transceivers

  • 64 dedicated MGTs running up to 12.5 Gbps
  • 16 MGTs (12.5 Gbps) per FPGA Module

 

FPGAs interconnections

  • Flexible via high-speed interconnection boards or cables

 

Voltage regions

  • 32individually adjustable I/O voltage regions
  • 8 individually adjustable voltage regions per FPGA Module
  • Stepless from 1.2 up 1.8V
  • Automated detection of daughter card and adjustment of right voltage

 

Configuration

  • With host software via Ethernet, USB 2.0, PCIe or standalone over USB stick

 

Clocking

  • 256 differential external clock inputs
  • 64 differential clock inputs per FPGA Module
  • 8 differential clock inputs per connector
  • 4 external clock/sync inputs/outputs over HF SMA connectors
  • X- local clocks
  • 8 global clock and sync signal inputs per motherboard
  • X fully synchronous derived clocks with sync signals

 

Data exchange

  • On board DMBI (Device Message Box Interface)
  • Data exchange rate:
  • Ethernet (up to 100 Mbps)
  • USB
  • PCIe (up to 4 Gbps)

 

Power

  • External (optional) ATX Power Supply (12 V, 24 - 35 A output)

 

Dimensions

  • 11.81" x 0.95" x 12.20" / 300 mm x 24 mm x 310 mm (width x height x depth)
  • 2.5 kg weight

System Architecture 

proFPGA quad V7 FPGA Prototyping System Configurations
proFPGA quad V7 FM1 proFPGA quad V7 FM2 proFPGA quad V7 FM3 proFPGA quad V7 FM4
Extension Sites 8 16 24 32
FPGA Modules 1 2 3 4
FPGAType Xilinx Virtex XC7V2000T Xilinx Virtex XC7V2000T Xilinx Virtex XC7V2000T Xilinx Virtex XC7V2000T
Logic Capacity (ASIC Gates) 12M 24M 36M 48M
FPGA Memory 46,512kbits 93,024kbits 139,536kbits 186,048kbits
I/O Resources 1100 2200 3300 4400
High Speed I/O Transceivers 16 32 48 64
Adjustable Voltage Regions 8 16 24 32
Interconnections flexible flexible flexible flexible
Clock Inputs 64 + 4 124 + 4 192 + 4 256 + 4
Global Clocks 8/x-derived 8/x-derived 8/x-derived 8/x-derived
Order Code PROF-DUO-VUS-FM1 PROF-DUO-VUS-FM2 PROF-DUO-VUS-FM3 PROF-DUO-VUS-FM4

 

  產品文件:產品型錄(EN) │proFPGA 產品總覽 (EN)  
  產品編號:PROF-DUO-VUS-FM1, PROF-DUO-VUS-FM2, PROF-DUO-VUS-FM3, PROF-DUO-VUS-FM4

 

 
 
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Virtex 7 系列 │ duo V7 套裝系統

ASIC Prototyping Solution

Product Summary
The proFPGA duo V7 system is a complete, scalable, and modular multi FPGA ASIC Prototyping solution, which fulfills highest needs in the area of FPGA based Prototyping. It addresses customers who need a scalable and most flexible high performance ASIC Prototyping solution for early software development and real time system verification. The innovative system concept and technologies offer highest flexibility and reusability for several projects, which guarantees the best return on invest.

Highest Flexibility
The system architecture is based on a modular and scalable system concept. The FPGAs are assembled on dedicated FPGA modules, which will be plugged on the proFPGA motherboard. This offers the highest flexibility to use for example different FPGA types in one system or to scale a system in increments of one FPGA. Besides the user has nearly 100% access to all available I/Os of the FPGA, which gives him maximum freedom regarding the FPGA interconnection structure. Hence the prototyping system can be adapted the best way to meet the demands of any user design. Furthermore the system offers a total of 16 extension sites on the top and bottom site for standard proFPGA or user specific extension boards like DDR-3 memory, high performance interface, interconnection or adaptor boards.

Maximum Performance
The well designed boards of the proFPGA system are optimized and trimmed to guarantee best signal integrity and to achieve highest performance. The high speed boards together with the specific high speed connectors allow a maximum point to point speed of up to 1.8 Gbps over the standard FPGA I/O and up to 12.5 Gbps over the MGT of the FPGA. This fast performance combined with the high interconnection flexibility offer the designer an maximum speed of his design running in the proFPGA system.

Big Capacity
Equipped with up to 2 Xilinx Virtex 7 XCV2000T FPGA modules, the proFPGA duo system can handle up to 24 M ASIC gates alone on one board. Due to the fact, that multiple proFPGA quad or duo systems can be stacked or connected together, there is unlimited scalability and no theoretical maximum in capacity.

Extensive User Comfort
The proFPGA prototyping system provides an extensive set of features and tools, like remote system configuration, integrated self and performance test, automatic board detection, automatic I/O voltage programming, system scan and safety mechanism, which extraordinarily simplifies the usage of the FPGA based system. The proFPGA system uses an innovative dual-stage clock generator architecture. Each proFPGA motherboard is capable of distributing up to 8 true asynchronous master beats. Each master beat may be used to derive a virtually unlimited number of clock domains inside the FPGAs. With the unique proFPGA synchronization scheme, clock domains and associated reset signals can be generated fully phase-synchronous over all FPGAs on the motherboard and over multiple motherboards.

Specification 

FPGSs

  • Up to 2 Xilinx Virtex XC7V2000T FPGA Modules

 

Capacity

  • Up to 24 M ASIC gates on one board (12 M ASIC gates per FPGA Module)

 

FPGA-internal memory

  • Up to 93,024 kbits on one board (46,512 kbits per FPGA Module)

 

Signaling rate

  • Up to 1.8 Gbps (standard I/O)/ 12.5 Gbps (MGT)

 

Extension sites

  • Up to 16 Extension sites with High Performance (up to 21 Gbps) connectors

 

I/O resources

  • Overall 2168 signals for I/O and inter FPGA connection
  • 1084 free I/Os per FPGA Module
  • 4x148 I/Os to top side connectors
  • 3x148 and 1x48 I/Os to bottom side connectors
  • Single-ended or differential

 

High Speed I/O transceivers

  • 32 dedicated MGTs running up to 12.5 Gbps
  • 16 MGTs (12.5 Gbps) per FPGA Module

 

FPGAs interconnections

  • Flexible via high-speed interconnection boards or cables

 

Voltage regions

  • 16 individually adjustable I/O voltage regions
  • 8 individually adjustable voltage regions per FPGA Module
  • Stepless from 1.2 up 1.8V
  • Automated detection of daughter card and adjustment of right voltage

 

Configuration

  • With host software via Ethernet, USB 2.0, PCIe or standalone over USB stick

 

Clocking

  • 128 differential external clock inputs
  • 64 differential clock inputs per FPGA Module
  • 8 differential clock inputs per connector
  • 4 external clock/sync inputs/outputs over HF SMA connectors
  • X- local clocks
  • 8 global clock and sync signal inputs per motherboard
  • X fully synchronous derived clocks with sync signals

 

Data exchange

  • On board DMBI (Device Message Box Interface)
  • Data exchange rate:
  • Ethernet (up to 100 Mbps)
  • USB
  • PCIe (up to 4 Gbps)

 

Power

  • External (optional) ATX Power Supply (12 V, 24 - 35 A output)

 

Dimensions

  • 5.91" x 0.95" x 12.20" / 150 mm x 24 mm x 310 mm (width x height x depth)
  • 1.5 kg weight

System Architecture 

  

proFPGA duo UltraScale XCVU440 FPGA Prototyping System Configurations
proFPGA duo VUS FM1 proFPGA duo VUS FM2
Extension Sites 10 20
FPGA Modules 1 2
FPGAType Xilinx Virtex® XCVU44 Xilinx Virtex® XCVU44
Logic Capacity (ASIC Gates) 30 M 60 M
FPGA Memory 88,600 kbits 177,200 kbits
I/O Resources 1327 2200
High Speed I/O Transceivers 48 96
Adjustable Voltage Regions 10 20
Interconnections flexible flexible
Clock Inputs 72 + 4 144 + 4
Global Clocks 8/x-derived 8/x-derived
Order Code PROF-DUO-VUS-FM1 PROF-DUO-VUS-FM2

 

  產品文件:產品型錄(EN) │proFPGA 產品總覽 (EN)
  產品編號:PROF-DUO-VUS-FM1, PROF-DUO-VUS-FM2

 

 
 
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Virtex UltraScale 系列 │ quad VUS 套裝系統

UltraScale Prototyping System


UltraScale Prototyping System - The proFPGA quad VUS 440 system is a complete and modular multi FPGA solution, which meets highest requirements in the area of FPGA based Prototyping. It addresses customers who need a scalable and flexible high speed ASIC Prototyping solution for early software development and real time system verification. The innovative system concept offers highest flexibility and reusability, reconfigurability for several projects, which guarantees the best return on invest.rn on invest.

Highest Flexibility
The system architecture is based on a modular and scalable system concept. The FPGAs are assembled on dedicated FPGA modules, which will be plugged on the proFPGA uno, duo or quad mother board. This offers the highest flexibility to use for example different FPGA types in one system or to scale a system in increments of one FPGA. The user has nearly 100% access to all available I/Os of the FPGA, which gives him maximum freedom regarding the FPGA inter connection structure. This way the prototyping system can be adapted in the best way to any user design. Furthermore the system offers a total of 40 extension sites on the top and bottom site for standard proFPGA or user specific extension boards like DDR-4 memory, PCIe gen1/2/3, Gigabit Ethernet, USB 3.0 or other high performance interface and interconnection boards.

Maximum Performance
The well designed boards of the proFPGA system are optimized and trimmed to guarantee best signal integrity and to achieve highest performance. The high speed boards together with specific high speed connectors allow a maximum point to point speed of up to 1.0 Gbps single ended over the standard FPGA I/O and up to 12.5 Gbps differential over the high speed serial transceivers of the FPGA. This performance combined with the high interconnection flexibility allows the designer to run his design at maximum speed in the proFPGA system.

Big Capacity
Equipped with up to 4 Xilinx Virtex® UltraScale™ 440 FPGA modules, the proFPGA quad system can handle up to 120 M ASIC gates on only one board. Due to the fact, that multiple proFPGA quad or duo systems can be connected to an even larger system, there is an unli- mited scalability and no theoretical maximum in capacity.

Very User Friendly
The proFPGA prototyping system provides an extensive set of features and tools, like remote system configuration, integrated self and performance test, automatic board detection, automatic I/O voltage programming, system scan and safety mechanism, which simplifies the usage of the FPGA based system tremendously.

Specification 

FPGAs

  • Up to 4 x Xilinx Virtex® XCVU440 FPGA Modules

Capacity

  • Up to 120 Million ASIC gates on one board (30 Million ASIC gates per FPGA Module)

 

FPGA-internal memory

  • Up to 354,400 kbits on one board (88,600 kbits per FPGA Module)

 

Signaling rate

  • Up to 1.0 Gbps single ended (standard I/O)/ up to 12.5 Gbps (MGT) differential

 

Extension sites

  • Up to 40 extension sites with high speed connectors

 

I/O resources

  • Overall 5308 signals for I/O and inter FPGA connection
  • 1327 free I/Os per FPGA Module
  • 4x153 I/Os and 1x52 I/Os and 1x51 I/Os to top side connectors
  • 4x153 I/Os to bottom side connectors
  • Single-ended or differential

 

High Speed I/O transceivers

  • 192 dedicated MGTs running up to 16 Gbps
  • 48 MGTs (up to 12.5 Gbps) per FPGA Module

 

FPGAs interconnections

  • Flexible via high-speed interconnection boards or cables

 

Voltage regions

  • 40 individually adjustable I/O voltage regions
  • 10 individually adjustable voltage regions per FPGA Module
  • Stepless from 1.0V up to 1.8V on 9 extension sites, from 1.0V up to 3.3V on one extension site
  • Automated detection of daughter card and adjustment of right voltage

 

Configuration

  • With host software via Ethernet, USB 2.0, PCIe or standalone over USB stick or JTAG

 

Clock Management

  • 288 differential external clock inputs
  • 72 differential clock inputs per FPGA Module
  • 8 differential clock inputs per connector
  • 4 external clock/sync inputs/outputs over HF SMA connectors
  • Run-time configurable local clocks
  • 8 global clock and sync signal inputs per motherboard
  • Fully synchronous derived clocks with sync signals

 

Data exchange

  • On board DMBI (Device Message Box Interface)

 

Data exchange rate:

  • Ethernet (up to 100 Mbps)
  • USB (480 Mbps)
  • PCIe (up to 3.5 Gbps)

 

Power

  • External (optional) ATX Power Supply (12 V, 24 - 35 A output)

 

Dimensions

  • 11.81" x 0.95" x 12.20" / 300 mm x 24 mm x 310 mm (width x height x depth)
  • 2.5 kg weight

System Architecture  

 

proFPGA quad UltraScale XCVU440 FPGA Prototyping System Configurations
proFPGA quad VUS FM1 proFPGA quad VUS FM2 proFPGA quad VUS FM3 proFPGA quad VUS FM4
Extension Sites 10 20 30 40
FPGA Modules 1 2 3 4
FPGAType Xilinx Virtex XCVU440 Xilinx Virtex XCVU440 Xilinx Virtex XCVU440 Xilinx Virtex XCVU440
Logic Capacity (ASIC Gates) 30 M 60 M 90 M 120 M
FPGA Memory 88,600 kbits 177,200 kbits 265,800 kbits 354,400 kbits
I/O Resources 1327 2654 3981 5308
High Speed I/O Transceivers 48 96 144 192
Adjustable Voltage Regions 10 20 30 40
Interconnections flexible flexible flexible flexible
Clock Inputs 72 + 4 144 + 4 216 + 4 288 + 4
Global Clocks 8/x-derived 8/x-derived 8/x-derived 8/x-derived
Order Code PROF-QUAD-VUS-FM1 PROF-QUAD-VUS-FM2 PROF-QUAD-VUS-FM3 PROF-QUAD-VUS-FM4

 

  產品文件:產品型錄(EN) │proFPGA 產品總覽 (EN)
  產品編號:PROF-QUAD-VUS-FM1, PROF-QUAD-VUS-FM2,PROF-QUAD-VUS-FM3, PROF-QUAD-VUS-FM4

 

 
 
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Virtex 7 系列 │ uno V7 套裝系統

ASIC Prototyping Solution

Product Summary
The proFPGA uno V7 system is a modular and flexible IP Prototyping and verification solution, which fulfills highest needs in the area of FPGA based Prototyping. It addresses customers who need a modular and most flexible high performance Prototyping solution for early software development, real time system verification and IP development. The innovative system concept and technologies offer highest flexibility and reusability for several projects, which guarantees the best return on invest.

Highest Flexibility
The system architecture is based on a modular system concept. The FPGAs are assembled on dedicated proFPGA modules, which will be plugged on the proFPGA motherboard. This offers the highest flexibility to use for example different FPGA types. Besides the user has nearly 100% access to all available I/Os of the FPGA, which gives him maximum freedom regarding the FPGA interconnection structure. Hence the prototyping system can be adapted the best way to meet the demands of any user design. Furthermore the system offers a total of 8 extension sites on the top and bottom site for standard proFPGA or user specific extension boards like DDR-3 memory, high performance interface, interconnection or adaptor boards.

Maximum Performance
The well designed boards of the proFPGA system are optimized and trimmed to guarantee best signal integrity and to achieve highest performance. The high speed boards together with the specific high speed connectors allow a maximum point to point speed of up to 1.8 Gbps over the standard FPGA I/O and up to 12.5 Gbps over the MGT of the FPGA. This fast performance combined with the high interconnection flexibility offer the designer an maximum speed of his design running in the proFPGA system.

Big Capacity
Equipped with one Xilinx Virtex 7 XCV2000T FPGA moduls, the proFPGA uno system can handle up to12 M ASIC gates alone on one board.

Extensive User Comfort
The proFPGA prototyping system provides an extensive set of features and tools, like remote system configuration, integrated self and performance test, automatic board detection, automatic I/O voltage programming, system scan and safety mechanism, which extraordinarily simplifies the usage of the FPGA based system.

Specification 

Available FPGA types

  • Xilinx Virtex XC7V2000T, XC7VX690T, XC7V585T or XC7VX330T


Capacity

  • Up to 12 M ASIC gates on one board (XC7V2000T FPGA)

 

FPGA-internal memory

  • Up to 52,920 kbits on one board (XC7VX690T FPGA)

 

Signaling rate

  • Up to 1.8 Gbps (standard I/O)/ 12.5 Gbps (MGT)

 

Extension sites

  • Up to 8 Extension sites with High Performance (up to 21 Gbps) connectors

 

I/O resources

  • Overall up to 1084 signals for I/O
  • 1084 free I/Os per FPGA Module
  • 4x148 I/Os to top side connectors
  • 3x148 and 1x48 I/Os to bottom side connectors
  • Single-ended or differential

 

High Speed I/O transceivers

  • Up to 36 (XC7V585T FPGA) dedicated MGTs running up to 12.5 Gbps
  • 16 MGTs (XC7V2000T FPGA)

 

Voltage regions

  • Up to 8 individually adjustable I/O voltage regions
  • 8 individually adjustable voltage regions on XC7V2000T FPGA Module
  • Stepless from 1.2 up 3.3V(depending on used FPGA Module)
  • Automated detection of daughter card and adjustment of right voltage

 

Configuration

  • With host software via Ethernet, USB 2.0 or standalone over USB stick

 

Clock Management

  • 8 fixed clocks, 2 quartz as clock references

System Architecture 

proFPGA quad V7 FPGA Prototyping System Configurations
proFPGA uno V7 2000T proFPGA uno V7 690T proFPGA uno V7 585T proFPGA uno V7 330T
Extension Sites 8 8 8 8
FPGA Modules 1 1 1 1
FPGAType Xilinx Virtex XC7V2000T Xilinx Virtex XC7VX690TT Xilinx Virtex XC7V585T Xilinx Virtex XC7VX330T
Logic Capacity (ASIC Gates) 12M 4.2M 3.5M 2M
FPGA Memory 46,512kbits 52,920kbits 28,620kbits 27,000kbits
I/O Resources 1084 738 738 540
High Speed I/O Transceivers 16 36 36 28
Adjustable Voltage Regions 8 8 8 8
Global Generators 8 fixed clocks 8 fixed clocks 8 fixed clocks 8 fixed clocks
Order Code PROF-UNO-V7-2000T PROF-UNO-V7-690T PROF-UNO-V7-585T PROF-UNO-V7-330T

 

  產品文件:產品型錄(EN) │proFPGA 產品總覽 (EN)
  產品編號:PROF-UNO-V7-2000T, PROF-UNO-V7-690T, PROF-UNO-V7-585T, PROF-UNO-V7-330T

 

 
 
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Virtex UltraScale 系列 │ duo VUS 套裝系統

ASIC Prototyping System Solution

Product Summary
The proFPGA duo VUS 440 ASIC Prototyping System fulfils the high requirements in the area of FPGA based Prototyping with its two FPGA solution. The scalability and flexibility of the system supports customer in the early software development and real time system verification. In addition the modular concept of PRO DESIGNs ASIC Prototyping System enables a flexible, reusable and reconfigurable handling of the hardware for various projects, which ensures the best ROI.

Highest Flexibility
The system architecture is based on a modular and scalable system concept. The FPGAs are assembled on dedicated FPGA modules, which will be plugged on the proFPGA uno, duo or quad mother board. This offers the highest flexibility to use for example different FPGA types in one system or to scale a system in increments of one FPGA. The user has nearly 100% access to all available I/Os of the FPGA, which gives him maximum freedom regarding the FPGA inter connection structure. This way the prototyping system can be adapted in the best way to any user design. Furthermore the system offers a total of 20 extension sites on the top and bottom site for standard proFPGA or user specific extension boards like DDR-4 memory, PCIe gen1/2/3, Gigabit Ethernet, USB 3.0 or other high performance interface and interconnection boards.

Maximum Performance
The well designed boards of the proFPGA system are optimized and trimmed to guarantee best signal integrity and to achieve highest performance. The high speed boards together with specific high speed connectors allow a maximum point to point speed of up to 1.0 Gbps single ended over the standard FPGA I/O and up to 12.5 Gbps differential over the high speed serial transceivers of the FPGA. This performance combined with the high interconnection flexibility allows the designer to run his design at maximum speed in the proFPGA system.

Big Capacity
Equipped with up to 2 Xilinx Virtex® UltraScale™ 440 FPGA modules, the proFPGA quad system can handle up to 60 M ASIC gates on only one board. Due to the fact, that multiple proFPGA quad or duo systems can be connected to an even larger system, there is an unli- mited scalability and no theoretical maximum in capacity.

Very User Friendly
The proFPGA prototyping system provides an extensive set of features and tools, like remote system configuration, integrated self and performance test, automatic board detection, automatic I/O voltage programming, system scan and safety mechanism, which simplifies the usage of the FPGA based system tremendously.

Specification 

FPGAs

  • Up to 2 x Xilinx Virtex® XCVU440 FPGA Modules

Capacity

  • Up to 60 M ASIC gates on one board (30 M ASIC gates per FPGA Module)

 

FPGA-internal memory

  • Up to 354,400 kbits on one board (88,600 kbits per FPGA Module)

 

Signaling rate

  • Up to 1.0 Gbps single ended (standard I/O)/ up to 12.5 Gbps (MGT) differential

 

Extension sites

  • Up to 20 extension sites with high speed connectors

 

I/O resources

  • Overall 2654 signals for I/O and inter FPGA connection
  • 1327 free I/Os per FPGA Module
  • 4x153 I/Os and 1x52 I/Os and 1x51 I/Os to top side connectors
  • 4x153 I/Os to bottom side connectors
  • Single-ended or differential

 

High Speed I/O transceivers

  • 96 dedicated MGTs running up to 16 Gbps
  • 48 MGTs (up to 12.5 Gbps) per FPGA Module

 

FPGAs interconnections

  • Flexible via high-speed interconnection boards or cables

 

Voltage regions

  • 20 individually adjustable I/O voltage regions
  • 10 individually adjustable voltage regions per FPGA Module
  • Stepless from 1.0V up to 1.8V on 9 extension sites, from 1.0V up to 3.3V on one extension site
  • Automated detection of daughter card and adjustment of right voltage

 

Configuration

  • With host software via Ethernet, USB 2.0, PCIe or standalone over USB stick or JTAG

 

Clock Management

  • 144 differential external clock inputs
  • 72 differential clock inputs per FPGA Module
  • 8 differential clock inputs per connector
  • 4 external clock/sync inputs/outputs over HF SMA connectors
  • Run-time configurable local clocks
  • 8 global clock and sync signal inputs per motherboard
  • Fully synchronous derived clocks with sync signals

 

Data exchange

  • On board DMBI (Device Message Box Interface)
  • Data exchange rate:
  • Ethernet (up to 100 Mbps)
  • USB (480 Mbps)
  • PCIe (up to 3.5 Gbps)

 

Power

  • External (optional) ATX Power Supply (12 V, 24 - 35 A output)

 

Dimensions

  • 5.91" x 0.95" x 12.20" / 150 mm x 24 mm x 310 mm (width x height x depth)
  • 1.5 kg weight

System Architecture 

 

proFPGA duo UltraScale XCVU440 FPGA Prototyping System Configurations
proFPGA duo VUS FM1 proFPGA duo VUS FM2
Extension Sites 10 20
FPGA Modules 1 2
FPGAType Xilinx Virtex® XCVU44 Xilinx Virtex® XCVU44
Logic Capacity (ASIC Gates) 30 M 60 M
FPGA Memory 88,600 kbits 177,200 kbits
I/O Resources 1327 2200
High Speed I/O Transceivers 48 96
Adjustable Voltage Regions 10 20
Interconnections flexible flexible
Clock Inputs 72 + 4 144 + 4
Global Clocks 8/x-derived 8/x-derived
Order Code PROF-DUO-VUS-FM1 PROF-DUO-VUS-FM2

 

  產品文件:產品型錄(EN) │proFPGA 產品總覽 (EN)
  產品編號:PROF-DUO-VUS-FM1, PROF-DUO-VUS-FM2

 

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