Difference between revisions of "VGAX49"
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* Each color is independently driven | * Each color is independently driven | ||
* The resistor with the smallest resistance value has larger current from the FPGA pin | * The resistor with the smallest resistance value has larger current from the FPGA pin | ||
+ | * Current switches from source to sink depending on the voltages on the other resistors | ||
+ | * Use common value, 1% resistors | ||
=== 5:6:5 Resistor Simulation === | === 5:6:5 Resistor Simulation === | ||
Line 43: | Line 45: | ||
* Each color is independently driven | * Each color is independently driven | ||
* The resistor with the smallest resistance value has larger current from the FPGA pin | * The resistor with the smallest resistance value has larger current from the FPGA pin | ||
+ | * Current switches from source to sink depending on the voltages on the other resistors | ||
+ | * Use common value, 1% resistors | ||
== Schematic == | == Schematic == |
Revision as of 18:01, 13 February 2020
Contents
Features
- Digital VGA adapter
- 16-bit digital video
- 5:6:5 (R:G:B) mapping (maximum)
- 2:2:2 (R:G:B) mapping (option)
- Uses summing resistors
- DB-15F connector
- 49x49mm ODAS form factor
- Mounting holes
Connectors
J1 - Digital Connections
P1 - VGA connector
Simulation
2:2:2 Resistor Simulation
- 3.3V Drive out of FPGA
- 1V is drive level for VGA specification
- 8 mA max drive current
- VGA presents a 75 Ohm load
- Series resistors present a voltage divider between the resistors on the card and the VGA load
- 1V at 75 Ohms is 13.3 mA
- Each color is independently driven
- The resistor with the smallest resistance value has larger current from the FPGA pin
- Current switches from source to sink depending on the voltages on the other resistors
- Use common value, 1% resistors
5:6:5 Resistor Simulation
- 3.3V Drive out of FPGA
- 1V is drive level for VGA specification
- 8 mA max drive current
- VGA presents a 75 Ohm load
- Series resistors present a voltage divider between the resistors on the card and the VGA load
- 1V at 75 Ohms is 13.3 mA
- Each color is independently driven
- The resistor with the smallest resistance value has larger current from the FPGA pin
- Current switches from source to sink depending on the voltages on the other resistors
- Use common value, 1% resistors