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HIL2GO-200 - OP4610XG Real-time Simulator Hardware Description
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General Overview
The OP4610XG is a complete simulation system operating with an AMD RyzenTM 6 cores at 3.8 GHz and an AMD Kintex®-7 410T FPGA. It is designed to be used as a desktop or shelf top simulator. In its standard configuration, the lower part of the chassis contains a target computer that can work as a standalone computer.
It contains a powerful target computer and a flexible, high-speed Front-End Processor and a signal conditioning stage. The design makes it easy to use with DB37, and DB9 standard connectors. The system also offers 6 input/output LVDS links that can be used in RS422.
Unit Information
Simulator specifications are described in the OP4610XG user manual.
NOTE: Only the RS422 connector kit (OP5969-1) is part of this HIL2GO bundle, not the fiber-optic connector kit
(OP5969-2). None of the PCIe optional I/O cards described are part of the bundle.
Ethernet port LAN1 default IP address is written on a label on the front of the simulator above the OPAL-RT logo (see the illustrations below)
Default FPGA board index number: 00. To change the index number, see this page: OP4610XG Front Interface
I/O Module Configuration
The OP4610XG can accept four (4) standard OPAL-RT mezzanine-type signal conditioning modules, commonly known as I/O modules.
The system in this HIL2GO bundle comes with the following four (4) I/O modules installed.
The I/O location for each mezzanine-type module linked to DB37 connectors is identified by its module number, formed by a group number (1 to 2) and a section letter (A and B).
6 TX and 6 RX RS422 digital inputs/outputs linked to DB9 connectors and connected to group 3 are also provided.
I/O modules installed with module number, model, and description | ||
I/O Group | Section A | Section B |
1 | ||
2 | ||
3 |
Users should adjust the power supply level (through the DB37 connector) to get the proper high voltage level at the DOUT.
Please refer to this OPAL-RT knowledge base article: How to power the different DB37 boards for digital outputs.
See also user documentation for I/O module OP5369 32-Channel Digital IO Board.Use a proper damping circuit (a serial resistor capacitor circuit tied to the GND as close as possible to the user Device Under Test) to minimize ringing and over/undershoot according to the connection length (from Digital Output to user device under test). The following parameters are a good starting point for the RC values: R=150 Ω, C=100 pF. Tuning necessary, according to application parameters.
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