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V2.13 Kintex-7 410T - eHS x128 - Gen5 - IO Config2
OPAL-RT TECHNOLOGIES
1751 Richardson suite 1060, Montréal QC Canada H3K 1G6
www.opal-rt.com
© 2023 OPAL-RT TECHNOLOGIES All rights reserved
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SPS WORKFLOWSCHEMATIC EDITOR WORKFLOW
Introduction
This firmware includes:
One eHS x128 Gen5 Solver
One Analog Output Mapping and Rescaling (AOMR) module
One Analog Input Differential Rescaling (AIR) module
One Thermal Losses (TL) module
One Saturable Transformer (satXFO) module
LoadIn/DataIn/DataOut mapping
LoadIn | DataIn | DataOut | |
1 | Config eHS | Inputs eHS | eHS Averaged |
2 | Scenario / Rst eHS = Status | TSDO 1 - eHS 0 to 7 | eHS DownSample |
3 | TSDO 2 - eHS 8 to 15 | Digital In 1A - 0 to 7 | |
4 | PWM 1A - 0 to 7 | TSDO 3 - eHS 16 to 23 | Digital In 1A - 8 to 15 |
5 | PWM 1A - 8 to 15 | TSDO 4 - eHS 24 to 31 | Digital In 1A - 16 to 23 |
6 | PWM 1A - 16 to 23 | TSDO 5 - eHS 32 to 39 | Digital In 1A - 24 to 31 |
7 | PWM 1A - 24 to 31 | TSDO 6 - eHS 40 to 47 | Analog In 2A - 0 to 7 |
8 | TSDO 7 - eHS 48 to 55 | Analog In 2A - 8 to 15 | |
9 | TSDO 8 - eHS 56 to 63 | eHS Period Averaged | |
10 | TSDO 9 - eHS 64 to 71 | eHS Period DownSample | |
11 | Digital Out 1A - SDO 0 to 7 | TimeOn Averaged | |
12 | Config AOMR | Digital Out 1A - SDO 8 to 15 | TimeOn DownSample |
13 | eHS PWM 1 - eHS 24 to 31 | Digital Out 1A - SDO 16 to 23 | Thermal Losses |
14 | eHS PWM 2 - eHS 0 to 7 | Digital Out 1A - SDO 24 to 31 | |
15 | eHS PWM 3 - eHS 8 to 15 | ||
16 | eHS PWM 4 - eHS 16 to 23 | ||
17 | Config eHS AIR | ||
18 | |||
19 | AOMR/ Analog Out 1B - 0 to 7 | ||
20 | Analog Out 1B - 8 to 15 | ||
21 | Config Thermal Losses | Analog Out 2B - 0 to 7 | |
22 | SFP | Analog Out 2B - 8 to 15 | |
23 | Lookup Table Config | eHS PWM 1 - 0 to 7 | |
24 | eHS PWM 2 - 8 to 15 | ||
25 | eHS PWM 3 - 16 to 23 | ||
26 | eHS PWM 4 - 24 to 31 | ||
27 | eHS SWG | ||
28 | |||
29 | |||
30 | |||
31 | |||
32 | |||
33 | Thermal Losses | ||
34 | SFP |
System Overview
Extensive I/O compatibility (Polymorphism)
Listed cards are compatible at the same location
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eHS solver
SPS WORKFLOW SPECIFIC
Connectivity
SPS WORKFLOW SPECIFIC
Source Type | Source Index | Source Name | Details |
---|---|---|---|
Input | 0 | CPU Input | |
1 | eHS Analog In | Slot 2A - Ch00-15 | |
2 | Data stream from SFP #00 | ||
3 | Sine Wave Generator | ||
Gate | 0 | Digital Input | Slot 1A - Ch00-31 |
1 | PWM | ||
2 | CPU Gating Signal | TSDO 0-32 |
SPS WORKFLOW SPECIFIC
To contextualize the Input and Gate Configuration table with this firmware configuration, the eHS firmware config tab must be configured with the following custom input source enumeration:
{'CPU Model',0,128;'Sine Wave Generator',3,32;'Analog In',1,16;'SFP',2,32}
And this custom gate sources enumeration:
{'CPU Model',2,32;'Digital Inputs',0,32;'PWM',1,32}
Thermal Losses module (TL)
SPS WORKFLOW SPECIFIC
There is one Thermal Losses tab in the eHS CPU block allowing to configure all four thermal models.
SPS Workflow - Thermal Losses (TL) block
Communication port configuration for the Thermal Losses (TL) block
Thermal Losses | |
---|---|
Data In Port Number | 33 |
Load In Port Number | 21 |
Data Out Port Number | 13 |
Analog Output Mapping and Rescaling module (AOMR)
AUTOMATIC AND NOT VISIBLE IN SCHEMATIC EDITOR WORKFLOW
There is one AOMR block allowing to configure all 32 analog outputs.
AOMR Master Subsystem (SM) block
Communication port configuration for the Analog Output Mapping and Rescaling (AOMR) block
AOMR - Slot 1B/2B | |
---|---|
Version | V2 |
Data In Port Number | 19 |
Load In Port Number | 12 |
Analog Input Differential Rescaling module (AIR)
AUTOMATIC AND NOT VISIBLE IN SCHEMATIC EDITOR WORKFLOW
AIR block configures analog inputs for eHS.
AIR block
Communication port configuration for the Analog Input Differential Rescaling (AIR) block
AIR - Slot 2A | |
---|---|
Channels | Ch00-15 |
Load In Port Number | 17 |
AOMR Output
Lane Index | Signal Source | Details |
---|---|---|
0 | eHS Outputs | eHS Y01-128 |
1 | Data Stream from SFP #01 |
SFP Mapping and Communication Block
A total of 32 inputs and 32 outputs are available and configured using the SFP mapping and communication block.
Schematic Editor Workflow - SFP Mapping and Communication block
Communication port configuration for the SFP mapping and communication block
SFP - Channel 0 | |
---|---|
Data In Port Number | 34 |
Load In Port Number | 22 |
Analog In module (AI)
AI block reads signals from analog input channels on the simulator.
SPS Workflow - AI block
Schematic Editor Workflow - OPAL-Board/AI
RT-LAB
HYPERSIM
Communication port configuration for the Analog Input (AI) block
Slot 2A | ||
---|---|---|
Channels | Ch00-07 | Ch08-15 |
Data Out Port Number | 7 | 8 |
Connector Pin Assignment
Please refer to your hardware documentation
Analog Out module (AO)
AO block configures analog output channels on the simulator.
SPS Workflow - AO block
Schematic Editor Workflow - OPAL-Board/AO
RT-LAB
HYPERSIM
Communication port configuration for the Analog Output (AO) block
Slot 1B | Slot 2B | |||
---|---|---|---|---|
Channels | Ch00-07 | Ch08-15 | Ch00-07 | Ch08-15 |
Data In Port Number | 19 | 20 | 21 | 22 |
Connector Pin Assignment
Please refer to your hardware documentation
Digital In module (DI)
DI block reads signals from digital input channels on the simulator. It could be static, TSDI or PWMIn.
SPS Workflow - DI block
Schematic Editor Workflow - OPAL-Board/DI
RT-LAB
HYPERSIM
Communication port configuration for the Digital Input (DI) block
Slot 1A | ||||
---|---|---|---|---|
Channels | Ch00-07 | Ch08-15 | Ch16-23 | Ch24-31 |
Data Out Port Number | 3 | 4 | 5 | 6 |
Connector Pin Assignment
Please refer to your hardware documentation
Digital Out module (DO)
DO block configures digital output channels on the simulator. It could be static, TSDO or PWMOut.
SPS Workflow - DO block
Schematic Editor Workflow - OPAL-Board/DO
RT-LAB
HYPERSIM
Communication port configuration for the Digital Output (DO) block
Slot 1A | ||||
---|---|---|---|---|
Channels | Ch00-07 | Ch08-15 | Ch16-23 | Ch24-31 |
Data In Port Number | 11 | 12 | 13 | 14 |
Load In Port Number | 4 | 5 | 6 | 7 |
Connector Pin Assignment
Please refer to your hardware documentation
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