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I created this for myself to keep track of things, but feel free to comment and I will add/correct the list.
- Start compiling the headers/housings needed for these connections between the boards.
I have them below, please review at your convenience!
- VTX has built in filter, just remember to add caps at the voltage input to the board.
Will keep in mind during schematic phase.
- Compile the total current required on the 5V and 12V rails.
Max of 224mA on board, will opt for linear regulator over switching
- Source 5V smps linear regulator based on current requirement.
- Can the OSD take 5V directly from the pixhawk from the input header? If so, then we would not need the 12V-5V step down on the board, and we can use 12V for everything: cameras, osd, and vtx.
- Figure out whether or not the board 3 way camera switch board can use the common CAN circuit so we don’t have to use PWM pin.
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1 3-pin jst-gh (1.25mm spacing) connector
1 2-pin jst-gh (1.25mm spacing) connector (optional as we tentatively do not need the OSD pins; video goes to the Lumenier switcher board)
Lumenier Camera Board
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1 3x5 2.5mm spacing/pitch upright male or female header to connect to the available pin holes on this board and a female or male connector on the unified vtx board respectively.
B5P-SHF-1AA JST Sales America Inc. | Connectors, Interconnects | DigiKey
This would allow for the lumenier board to be soldered directly to the board.
3 5pin jst-xh (2.5mm spacing) connectors but same configuration as 1st option.
B5B-XH-A JST Sales America Inc. | Connectors, Interconnects | DigiKey
SM03B-GHS-TB JST Sales America Inc. | Connectors, Interconnects | DigiKey
If these are chosen, the lumenier board would have separate pin headers soldered to it, and then have jst wires connect the lumenier board pin headers to these headers on the U-VTX board.
Soldering to the pads and breaking away the bottom portion to save weight.
Female header on board SSW-105-01-S-T Samtec Inc. | Connectors, Interconnects | DigiKey. Solder male header pins to the lumenier board for easy connection. Mechanical asymettry or imbalance should be fine.
The first and second options make it easier to plug and play, but it has added weight. Soldering option is more prone to error but has less weight. A quick Google search showed that similar solutions have similar 2.5mm pitch pins instead of jst headers.
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1 6-pin JST connector (no clue about the pitch with my search), either 1.25 or 1.00mm . Need someone to confirm in-personpitch.
5V Linear Regulator Selection
Two promising ones found on digikey with the following filters: linear regulator, current output: >1A, input voltage max: >15V, in-stock
AZ1117IH-5.0TRG1: AZ1117IH-5.0TRG1 Diodes Incorporated | Integrated Circuits (ICs) | DigiKey
LDL1117S50R: LDL1117S50R STMicroelectronics | Integrated Circuits (ICs) | DigiKey
I am opting for the LDL1117S50R as it provides better line and load regulation based on its graphs with honest 5V output and from 6-18V inputs, while AZ1117IH-5.0TRG1 shows similar behaviour in both categories but only with Vin of 4.5V for its 2.5V output variation and no graphs for line or load regulation for the 5V output component.
Both show very similar behaviour in terms of line and load transient behaviour, with:
AZ1117IH-5.0TRG1: ~60mV max for the line transient and 130mV max for the load transient
LDL1117S50R: ~60mV max for the line transient and 120mV max for the load transient
A bonus is that the LDL1117S50R shows better PRSS of 87dB @120Hz compared to the AZ1117IH-5.0TRG1 with a PRSS of 70dB @120Hz.
Ferrite Bead Selection
Search criteria on digikey: Imax > 500mA given the 224mA max on the board, R @120Hz > 100R, R @DC < 30mR, 0603 package
Final part selected: BLM18SG121TZ1D Murata Electronics | Filters | DigiKey