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2023-09-03 01:14:34 -04:00
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commit ed18dd911a
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include ../kicad-scripts/makefile.inc
active3-rpi-hub75-adapter-fab.zip:

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Adapter PCB to support up to 3 panel chains
===========================================
* Supports up to three panel chains for newer plus models and
Raspberry Pi 2 that have 40 GPIO pins.
* Uses HCT245 to level shift signals from 3.3V to 5V and shield
the Raspberry Pi GPIOs from overloading.
* Open source KiCAD PCB EDA format.
* Optional: Pads to power the Pi with 5V, including optional capacitor footprints.
* Connector for RxD input (literally the only GPIO pin left) in case you want to
make your panel controlled with a serial interface (3.3V logic level).
* Provides a way to choose the pinout for different kinds of 64x64 matrixes.
* (not very pretty layout, was just lazy and let the auto-router generate the first pass)
* BOM:
- 4x 74HCT245 or 74AHCT245 in 20-SOIC, 7.5mm package which should make
it easy to hand-solder. Make sure to get the variant with the **T**: HC**T** or AHC**T**
(there are also HC or AHC, don't use these).
- 4x 100nF ceramic capacitor (0805 package)
- 1x 10kOhm resistor (0805 package). Not critcial, just a pullup (2.2k .. 15k probably ok).
- 3x 16pin IDC (=2x8) male receptible to connect the panels.
- 1x 40pin female connector to connect to the RPi.
- 1x (optional) 22μF .. 100μF capacitor for 5V rail (either 1206 SMD or
radial electrolytic with 2.5mm pitch/6.3mm diameter)
* The Gerber FAB files are provided as [active3-rpi-hub75-adapter-fab.zip](./active3-rpi-hub75-adapter-fab.zip)
The board is also [shared on OSH Park][osh-active3] (not affiliated).
![Preview][rendering]
![Real World][real-world]
Essentially, this is connecting the output pins through level shifting buffers (they
are operated at 5V, but the HCT series chips accept 3.3V input levels from the Pi). The
strobe, OE and clock signals are separately buffered for each connector.
![Schematic][schematic]
## Optional
### Power in
The area on the left has 5V/GND input pads, that allow you to power your Raspberry Pi from
a 5V source ... which you are likely to have as you are powering the LED Matrix. This is often
more convenient than using the USB connector to power the Pi.
If you do that, there are pads to add a capacitor to smooth the supply - two footprints are
provided: C5 and C6 for through-hole or surface mount components. The value is not critical;
I usually use a 22μF/6.3V ceramic capacitor on the C6 pads.
### Choose E-Line for 64x64 panels with 1:32 multiplexing
If you have a 64x64 matrix with 1:32 multiplexing, you need to supply an `E`-address line to it.
While the Address lines `A` to `D` have fixed positions on the Hub75 connector, there
seem to be two different ways to connect the `E` address line: it is either on pin 4 or pin 8
of the connector. So this adapter board provides the flexibility to choose the right pin for
your matrix.
Look at the back of the matrix or the documentation to find out for your specific board where
to connect E.
Once you know that, the jumper area in the bottom left of this adapter board allows to choose
to which pin to connect the E-address line to. The corresponding other pin should be connected
to GND. Simply solder a wire bridge as indicated below (or use a jumper that you can change later).
If you are not using such 64x64 matrix, you can connect both these pins to GND.
Here are the typical configurations:
No 1:32 64x64: to GND | E-Line on Pin 4 | E-Line on Pin 8|
-------------------------|-------------------|----------------
![][config-default] |![][config-pin4] |![][config-pin8]
### Input for serial RxD
If you are not using a 64x64 display that occupies the E-Line, you can use the RxD serial input -
this might come in handy if you are using the display to be controlled by a serial line. Be aware
that the input requires 3.3V level, so if you have a RS232, make sure to first adapt the levels.
[rendering]: ../../img/active3-pcb.png
[config-default]: ../../img/active3-pcb-config-default.png
[config-pin4]: ../../img/active3-pcb-config-pin4.png
[config-pin8]: ../../img/active3-pcb-config-pin8.png
[schematic]: ../../img/active3-schematic.png
[real-world]: ../../img/three-parallel-panels-soic.jpg
[osh-active3]: https://oshpark.com/shared_projects/6xAD1VXr

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EESchema-LIBRARY Version 2.4
#encoding utf-8
#
# 74xx_74HC245
#
DEF 74xx_74HC245 U 0 40 Y Y 1 L N
F0 "U" -300 650 50 H V C CNN
F1 "74xx_74HC245" -300 -650 50 H V C CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
ALIAS 74HC245
$FPLIST
DIP?20*
$ENDFPLIST
DRAW
S -300 600 300 -600 1 1 10 f
P 3 1 0 0 -25 -50 -25 50 25 50 N
P 4 1 0 0 -50 -50 25 -50 25 50 50 50 N
X A->B 1 -500 -400 200 R 50 50 1 0 I
X GND 10 0 -800 200 U 50 50 1 0 W
X B7 11 500 -200 200 L 50 50 1 0 T
X B6 12 500 -100 200 L 50 50 1 0 T
X B5 13 500 0 200 L 50 50 1 0 T
X B4 14 500 100 200 L 50 50 1 0 T
X B3 15 500 200 200 L 50 50 1 0 T
X B2 16 500 300 200 L 50 50 1 0 T
X B1 17 500 400 200 L 50 50 1 0 T
X B0 18 500 500 200 L 50 50 1 0 T
X CE 19 -500 -500 200 R 50 50 1 0 I I
X A0 2 -500 500 200 R 50 50 1 0 T
X VCC 20 0 800 200 D 50 50 1 0 W
X A1 3 -500 400 200 R 50 50 1 0 T
X A2 4 -500 300 200 R 50 50 1 0 T
X A3 5 -500 200 200 R 50 50 1 0 T
X A4 6 -500 100 200 R 50 50 1 0 T
X A5 7 -500 0 200 R 50 50 1 0 T
X A6 8 -500 -100 200 R 50 50 1 0 T
X A7 9 -500 -200 200 R 50 50 1 0 T
ENDDRAW
ENDDEF
#
# Connector_Generic_Conn_01x01
#
DEF Connector_Generic_Conn_01x01 J 0 40 Y N 1 F N
F0 "J" 0 100 50 H V C CNN
F1 "Connector_Generic_Conn_01x01" 0 -100 50 H V C CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
$FPLIST
Connector*:*
$ENDFPLIST
DRAW
S -50 5 0 -5 1 1 6 N
S -50 50 50 -50 1 1 10 f
X Pin_1 1 -200 0 150 R 50 50 1 1 P
ENDDRAW
ENDDEF
#
# Connector_Generic_Conn_01x02
#
DEF Connector_Generic_Conn_01x02 J 0 40 Y N 1 F N
F0 "J" 0 100 50 H V C CNN
F1 "Connector_Generic_Conn_01x02" 0 -200 50 H V C CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
$FPLIST
Connector*:*_1x??_*
$ENDFPLIST
DRAW
S -50 -95 0 -105 1 1 6 N
S -50 5 0 -5 1 1 6 N
S -50 50 50 -150 1 1 10 f
X Pin_1 1 -200 0 150 R 50 50 1 1 P
X Pin_2 2 -200 -100 150 R 50 50 1 1 P
ENDDRAW
ENDDEF
#
# Connector_Generic_Conn_02x01
#
DEF Connector_Generic_Conn_02x01 J 0 40 Y N 1 F N
F0 "J" 50 100 50 H V C CNN
F1 "Connector_Generic_Conn_02x01" 50 -100 50 H V C CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
$FPLIST
Connector*:*_2x??_*
$ENDFPLIST
DRAW
S -50 5 0 -5 1 1 6 N
S -50 50 150 -50 1 1 10 f
S 150 5 100 -5 1 1 6 N
X Pin_1 1 -200 0 150 R 50 50 1 1 P
X Pin_2 2 300 0 150 L 50 50 1 1 P
ENDDRAW
ENDDEF
#
# Connector_Generic_Conn_02x08_Odd_Even
#
DEF Connector_Generic_Conn_02x08_Odd_Even J 0 40 Y N 1 F N
F0 "J" 50 400 50 H V C CNN
F1 "Connector_Generic_Conn_02x08_Odd_Even" 50 -500 50 H V C CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
$FPLIST
Connector*:*_2x??_*
$ENDFPLIST
DRAW
S -50 -395 0 -405 1 1 6 N
S -50 -295 0 -305 1 1 6 N
S -50 -195 0 -205 1 1 6 N
S -50 -95 0 -105 1 1 6 N
S -50 5 0 -5 1 1 6 N
S -50 105 0 95 1 1 6 N
S -50 205 0 195 1 1 6 N
S -50 305 0 295 1 1 6 N
S -50 350 150 -450 1 1 10 f
S 150 -395 100 -405 1 1 6 N
S 150 -295 100 -305 1 1 6 N
S 150 -195 100 -205 1 1 6 N
S 150 -95 100 -105 1 1 6 N
S 150 5 100 -5 1 1 6 N
S 150 105 100 95 1 1 6 N
S 150 205 100 195 1 1 6 N
S 150 305 100 295 1 1 6 N
X Pin_1 1 -200 300 150 R 50 50 1 1 P
X Pin_10 10 300 -100 150 L 50 50 1 1 P
X Pin_11 11 -200 -200 150 R 50 50 1 1 P
X Pin_12 12 300 -200 150 L 50 50 1 1 P
X Pin_13 13 -200 -300 150 R 50 50 1 1 P
X Pin_14 14 300 -300 150 L 50 50 1 1 P
X Pin_15 15 -200 -400 150 R 50 50 1 1 P
X Pin_16 16 300 -400 150 L 50 50 1 1 P
X Pin_2 2 300 300 150 L 50 50 1 1 P
X Pin_3 3 -200 200 150 R 50 50 1 1 P
X Pin_4 4 300 200 150 L 50 50 1 1 P
X Pin_5 5 -200 100 150 R 50 50 1 1 P
X Pin_6 6 300 100 150 L 50 50 1 1 P
X Pin_7 7 -200 0 150 R 50 50 1 1 P
X Pin_8 8 300 0 150 L 50 50 1 1 P
X Pin_9 9 -200 -100 150 R 50 50 1 1 P
ENDDRAW
ENDDEF
#
# Connector_Generic_Conn_02x20_Odd_Even
#
DEF Connector_Generic_Conn_02x20_Odd_Even J 0 40 Y N 1 F N
F0 "J" 50 1000 50 H V C CNN
F1 "Connector_Generic_Conn_02x20_Odd_Even" 50 -1100 50 H V C CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
$FPLIST
Connector*:*_2x??_*
$ENDFPLIST
DRAW
S -50 -995 0 -1005 1 1 6 N
S -50 -895 0 -905 1 1 6 N
S -50 -795 0 -805 1 1 6 N
S -50 -695 0 -705 1 1 6 N
S -50 -595 0 -605 1 1 6 N
S -50 -495 0 -505 1 1 6 N
S -50 -395 0 -405 1 1 6 N
S -50 -295 0 -305 1 1 6 N
S -50 -195 0 -205 1 1 6 N
S -50 -95 0 -105 1 1 6 N
S -50 5 0 -5 1 1 6 N
S -50 105 0 95 1 1 6 N
S -50 205 0 195 1 1 6 N
S -50 305 0 295 1 1 6 N
S -50 405 0 395 1 1 6 N
S -50 505 0 495 1 1 6 N
S -50 605 0 595 1 1 6 N
S -50 705 0 695 1 1 6 N
S -50 805 0 795 1 1 6 N
S -50 905 0 895 1 1 6 N
S -50 950 150 -1050 1 1 10 f
S 150 -995 100 -1005 1 1 6 N
S 150 -895 100 -905 1 1 6 N
S 150 -795 100 -805 1 1 6 N
S 150 -695 100 -705 1 1 6 N
S 150 -595 100 -605 1 1 6 N
S 150 -495 100 -505 1 1 6 N
S 150 -395 100 -405 1 1 6 N
S 150 -295 100 -305 1 1 6 N
S 150 -195 100 -205 1 1 6 N
S 150 -95 100 -105 1 1 6 N
S 150 5 100 -5 1 1 6 N
S 150 105 100 95 1 1 6 N
S 150 205 100 195 1 1 6 N
S 150 305 100 295 1 1 6 N
S 150 405 100 395 1 1 6 N
S 150 505 100 495 1 1 6 N
S 150 605 100 595 1 1 6 N
S 150 705 100 695 1 1 6 N
S 150 805 100 795 1 1 6 N
S 150 905 100 895 1 1 6 N
X Pin_1 1 -200 900 150 R 50 50 1 1 P
X Pin_10 10 300 500 150 L 50 50 1 1 P
X Pin_11 11 -200 400 150 R 50 50 1 1 P
X Pin_12 12 300 400 150 L 50 50 1 1 P
X Pin_13 13 -200 300 150 R 50 50 1 1 P
X Pin_14 14 300 300 150 L 50 50 1 1 P
X Pin_15 15 -200 200 150 R 50 50 1 1 P
X Pin_16 16 300 200 150 L 50 50 1 1 P
X Pin_17 17 -200 100 150 R 50 50 1 1 P
X Pin_18 18 300 100 150 L 50 50 1 1 P
X Pin_19 19 -200 0 150 R 50 50 1 1 P
X Pin_2 2 300 900 150 L 50 50 1 1 P
X Pin_20 20 300 0 150 L 50 50 1 1 P
X Pin_21 21 -200 -100 150 R 50 50 1 1 P
X Pin_22 22 300 -100 150 L 50 50 1 1 P
X Pin_23 23 -200 -200 150 R 50 50 1 1 P
X Pin_24 24 300 -200 150 L 50 50 1 1 P
X Pin_25 25 -200 -300 150 R 50 50 1 1 P
X Pin_26 26 300 -300 150 L 50 50 1 1 P
X Pin_27 27 -200 -400 150 R 50 50 1 1 P
X Pin_28 28 300 -400 150 L 50 50 1 1 P
X Pin_29 29 -200 -500 150 R 50 50 1 1 P
X Pin_3 3 -200 800 150 R 50 50 1 1 P
X Pin_30 30 300 -500 150 L 50 50 1 1 P
X Pin_31 31 -200 -600 150 R 50 50 1 1 P
X Pin_32 32 300 -600 150 L 50 50 1 1 P
X Pin_33 33 -200 -700 150 R 50 50 1 1 P
X Pin_34 34 300 -700 150 L 50 50 1 1 P
X Pin_35 35 -200 -800 150 R 50 50 1 1 P
X Pin_36 36 300 -800 150 L 50 50 1 1 P
X Pin_37 37 -200 -900 150 R 50 50 1 1 P
X Pin_38 38 300 -900 150 L 50 50 1 1 P
X Pin_39 39 -200 -1000 150 R 50 50 1 1 P
X Pin_4 4 300 800 150 L 50 50 1 1 P
X Pin_40 40 300 -1000 150 L 50 50 1 1 P
X Pin_5 5 -200 700 150 R 50 50 1 1 P
X Pin_6 6 300 700 150 L 50 50 1 1 P
X Pin_7 7 -200 600 150 R 50 50 1 1 P
X Pin_8 8 300 600 150 L 50 50 1 1 P
X Pin_9 9 -200 500 150 R 50 50 1 1 P
ENDDRAW
ENDDEF
#
# Device_C
#
DEF Device_C C 0 10 N Y 1 F N
F0 "C" 25 100 50 H V L CNN
F1 "Device_C" 25 -100 50 H V L CNN
F2 "" 38 -150 50 H I C CNN
F3 "" 0 0 50 H I C CNN
$FPLIST
C_*
$ENDFPLIST
DRAW
P 2 0 1 20 -80 -30 80 -30 N
P 2 0 1 20 -80 30 80 30 N
X ~ 1 0 150 110 D 50 50 1 1 P
X ~ 2 0 -150 110 U 50 50 1 1 P
ENDDRAW
ENDDEF
#
# Device_CP_Small
#
DEF Device_CP_Small C 0 10 N N 1 F N
F0 "C" 10 70 50 H V L CNN
F1 "Device_CP_Small" 10 -80 50 H V L CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
$FPLIST
CP_*
$ENDFPLIST
DRAW
S -60 -12 60 -27 0 1 0 F
S -60 27 60 12 0 1 0 N
P 2 0 1 0 -50 60 -30 60 N
P 2 0 1 0 -40 50 -40 70 N
X ~ 1 0 100 73 D 50 50 1 1 P
X ~ 2 0 -100 73 U 50 50 1 1 P
ENDDRAW
ENDDEF
#
# Device_C_Small
#
DEF Device_C_Small C 0 10 N N 1 F N
F0 "C" 10 70 50 H V L CNN
F1 "Device_C_Small" 10 -80 50 H V L CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
$FPLIST
C_*
$ENDFPLIST
DRAW
P 2 0 1 13 -60 -20 60 -20 N
P 2 0 1 12 -60 20 60 20 N
X ~ 1 0 100 80 D 50 50 1 1 P
X ~ 2 0 -100 80 U 50 50 1 1 P
ENDDRAW
ENDDEF
#
# Device_R
#
DEF Device_R R 0 0 N Y 1 F N
F0 "R" 80 0 50 V V C CNN
F1 "Device_R" 0 0 50 V V C CNN
F2 "" -70 0 50 V I C CNN
F3 "" 0 0 50 H I C CNN
$FPLIST
R_*
$ENDFPLIST
DRAW
S -40 -100 40 100 0 1 10 N
X ~ 1 0 150 50 D 50 50 1 1 P
X ~ 2 0 -150 50 U 50 50 1 1 P
ENDDRAW
ENDDEF
#
# power_GND
#
DEF power_GND #PWR 0 0 Y Y 1 F P
F0 "#PWR" 0 -250 50 H I C CNN
F1 "power_GND" 0 -150 50 H V C CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
DRAW
P 6 0 1 0 0 0 0 -50 50 -50 0 -100 -50 -50 0 -50 N
X GND 1 0 0 0 D 50 50 1 1 W N
ENDDRAW
ENDDEF
#
# power_PWR_FLAG
#
DEF power_PWR_FLAG #FLG 0 0 N N 1 F P
F0 "#FLG" 0 75 50 H I C CNN
F1 "power_PWR_FLAG" 0 150 50 H V C CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
DRAW
P 6 0 1 0 0 0 0 50 -40 75 0 100 40 75 0 50 N
X pwr 1 0 0 0 U 50 50 0 0 w
ENDDRAW
ENDDEF
#
# power_VCC
#
DEF power_VCC #PWR 0 0 Y Y 1 F P
F0 "#PWR" 0 -150 50 H I C CNN
F1 "power_VCC" 0 150 50 H V C CNN
F2 "" 0 0 50 H I C CNN
F3 "" 0 0 50 H I C CNN
DRAW
C 0 75 25 0 1 0 N
P 2 0 1 0 0 0 0 50 N
X VCC 1 0 0 0 U 50 50 1 1 W N
ENDDRAW
ENDDEF
#
#End Library

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update=Sat 06 Jul 2019 08:45:23 PM PDT
version=1
last_client=kicad
[cvpcb]
version=1
NetIExt=net
[cvpcb/libraries]
EquName1=devcms
[general]
version=1
[pcbnew]
version=1
PageLayoutDescrFile=
LastNetListRead=
UseCmpFile=1
PadDrill=0.6
PadDrillOvalY=0.6
PadSizeH=1.5
PadSizeV=1.5
PcbTextSizeV=1.5
PcbTextSizeH=1.5
PcbTextThickness=0.3
ModuleTextSizeV=1
ModuleTextSizeH=1
ModuleTextSizeThickness=0.15
SolderMaskClearance=0
SolderMaskMinWidth=0
DrawSegmentWidth=0.2
BoardOutlineThickness=0.09999999999999999
ModuleOutlineThickness=0.15
[eeschema]
version=1
LibDir=

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