SBRIO-9627 single-board RIO (sbRIO) device

The NI SBRIo-9627 is a single-board RIO (sbRIO) device from National Instruments that integrates a real-time processor, user-reconfigurable FPGA, and I/O. Here are some key details about the product:

Processor:

Type: Xilinx Zynq-7000, XC7Z020 fully programmable SoC.
Architecture: ARM Cortex-A9.
Speed: 667 MHz.
Number of cores: 2.
Operating system: NI Linux Real-Time (32-bit).

Non-volatile memory: 512 MB.

Volatile memory (DRAM) : 512 MB.

Real-time clock: Accuracy 5 ppm.

Flash restart durability: 100,000 cycles.

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Description

Overview


Essential details:SBRIO-9627 single-board RIO (sbRIO) device

Product Description

The NI SBRIo-9627 is a single-board RIO (sbRIO) device from National Instruments that integrates a real-time processor, user-reconfigurable FPGA, and I/O. Here are some key details about the product:

Processor:

Type: Xilinx Zynq-7000, XC7Z020 fully programmable SoC.
Architecture: ARM Cortex-A9.
Speed: 667 MHz.
Number of cores: 2.
Operating system: NI Linux Real-Time (32-bit).

Non-volatile memory: 512 MB.

Volatile memory (DRAM) : 512 MB.

Real-time clock: Accuracy 5 ppm.

Flash restart durability: 100,000 cycles.

FPGA:

Type: Xilinx Zynq-7000, XC7Z020 fully programmable SoC.
Number of logical units: 85,000.
Number of triggers: 106,400.
6 Enter the number of lookup tables (LUTs) : 53,200.
Number of DSP slices: 220.
Available block RAM: 560 KB.
Number of DMA channels: 16.
Number of logical interrupts: 32
Network/Ethernet ports:

Ethernet on the front panel: 1 (Eth0).
RMC Ethernet: 1 (Eth1).
Network interface: 10Base-T, 100Base-TX, and 1000Base-T Ethernet.
Compatibility: IEEE 802.3.
Communication rate: 10 Mbps, 100 Mbps, 1000 Mbps auto negotiation, half duplex/full duplex.
Maximum wiring distance: 100 m/ segment.
RS-232 (DTE) Serial port:

Number of interfaces: 2 (Serial1, Serial2).
Maximum baud rate supported: 230,400 bps.
RS-485 Serial port:

Number of interfaces: 1 (Serial3).
Max baud rate: 460,800 bps.
CAN interface:

Number of interfaces: 1 (CAN0).
Max baud rate: 1 Mbps.
USB port:

Front panel USB host: 1 (USB0).
RMC USB host/device: 1 (USB1).
Compatibility: USB 2.0, high speed.
Maximum data rate: 480 Mb/s.
SD card slot:

Number of interfaces: 1 (SDIO0).
Supported standards: SD, SDHC.
3.3V Digital I/O:

Number of DIO channels on RMC connector: 96.
Analog Input (AI) accuracy:

Range of measuring conditions: 1 V, 2 V, 5 V, 10 V.
Gain error: 0.042% to 0.008%.
Offset error: 0.007% to 0.105%.
Analog Output (AO) accuracy:

Range of measurement conditions: 0.09% to 0.50%.
Gain drift: 23 ppm of reading/°C.
Offset drift: 5.4 ppm of range/°C.
Physical characteristics:

Weight: 131.3g (4.631 oz).
Safe voltage:

V terminal to C terminal: Max. 30 VDC, measurement category I.
Environmental Stewardship: NI is committed to designing and manufacturing products in an environmentally friendly manner.

These features make the NI SBRIO-9627 the ideal single board controller for industrial automation, test and measurement, and embedded system development.

SBRIO-9607

Product parameter

The parameters of NI SBRIO-9627 are as follows:

Processor:

Type: Xilinx Zynq-7000, XC7Z020 fully programmable SoC.
Architecture: ARM Cortex-A9.
Speed: 667 MHz.
Number of cores: 2.
Operating system: NI Linux Real-Time (32-bit).

Non-volatile memory: 512 MB.

Volatile memory (DRAM) : 512 MB.

Real-time clock: Accuracy 5 ppm.

Flash restart durability: 100,000 cycles.

FPGA:

Type: Xilinx Zynq-7000, XC7Z020 fully programmable SoC.
Number of logical units: 85,000.
Number of triggers: 106,400.
6 Enter the number of lookup tables (LUTs) : 53,200.
Number of DSP slices: 220.
Available block RAM: 560 KB.
Number of DMA channels: 16.
Number of logical interrupts: 32
Network/Ethernet ports:

Ethernet on the front panel: 1 (Eth0).
RMC Ethernet: 1 (Eth1).
Network interface: 10Base-T, 100Base-TX, and 1000Base-T Ethernet.
Compatibility: IEEE 802.3.
Communication rate: 10 Mbps, 100 Mbps, 1000 Mbps auto negotiation, half duplex/full duplex.
Maximum wiring distance: 100 m/ segment.
RS-232 (DTE) Serial port:

Number of interfaces: 2 (Serial1, Serial2).
Maximum baud rate supported: 230,400 bps.
RS-485 Serial port:

Number of interfaces: 1 (Serial3).
Max baud rate: 460,800 bps.
CAN interface:

Number of interfaces: 1 (CAN0).
Max baud rate: 1 Mbps.
USB port:

Front panel USB host: 1 (USB0).
RMC USB host/device: 1 (USB1).
Compatibility: USB 2.0, high speed.
Maximum data rate: 480 Mb/s.
SD card slot:

Number of interfaces: 1 (SDIO0).
Supported standards: SD, SDHC.
3.3V Digital I/O:

Number of DIO channels on RMC connector: 96.
Analog Input (AI) accuracy:

Range of measuring conditions: 1 V, 2 V, 5 V, 10 V.
Gain error: 0.042% to 0.007%.
Offset error: 0.007% to 0.105%.
Analog Output (AO) accuracy:

Range of measurement conditions: 0.09% to 0.50%.
Gain drift: 23 ppm of reading/°C.
Offset drift: 5.4 ppm of range/°C.

APPLICATION

The NI SBRIO-9627 single board RIO device has a wide range of applications, including:

Industrial automation: used to control and monitor various industrial processes and equipment, such as production lines, machines and equipment.

Test and measurement: used for data acquisition and signal processing in laboratory and field test environments.

Embedded System Development: Provides a flexible hardware platform for embedded applications that supports rapid development and prototyping.

Aerospace: Control systems for aircraft and spacecraft that provide high performance data processing capabilities.

Automotive industry: Used in vehicle dynamic monitoring and engine management systems in automotive testing and production.

Energy management: Used to monitor and control energy consumption in smart grids and renewable energy systems.

Security monitoring: In the security monitoring system, used for remote monitoring and control of security equipment, such as cameras, alarm systems, etc.

Environmental monitoring: Used to monitor environmental parameters, such as temperature, humidity, air quality, etc., and perform remote control according to the monitoring results.

Traffic and infrastructure: In infrastructure such as traffic lights, tunnel lighting, for remote control and monitoring.

Medical devices: In medical devices, used for precise control and data processing, such as imaging devices and patient monitoring systems.

Robotics: In robot control systems, it is used to achieve accurate motion control and sensor data processing.

These applications benefit from the NI SBRIO-9627’s high-performance processor, reconfigurable FPGA, rich I/O interfaces, and compact board design, making it ideal for a variety of high-performance embedded applications.

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