Update BOM and rendered image.

This commit is contained in:
Matt McWilliams 2024-11-06 16:01:27 -05:00
parent 872bdebb57
commit fae5dc7cdf
11 changed files with 915 additions and 852 deletions

View File

@ -34,17 +34,20 @@ Actual price of a full build may be higher.
| Part | Qty | Cost (USD) |
|-------------------------------------|-----|------------|
| M4 hex bolt 40mm | 4 | 5.0 |
| M3 sliding t slot nut | 25 | 1.5 |
| M3 hex cap bolt 8mm | 25 | 2.25 |
| M3 hex cap bolt 6mm | 4 | 0.28 |
| M3 hex cap bolt 6mm | 8 | 0.56 |
| L298N Motor driver module | 1 | 2.89 |
| ESP32 GPIO breakout board | 1 | 5.99 |
| ESP32 Dev board | 1 | 6.66 |
| 250RPM DC geared motor | 2 | 29.98 |
| 2020 Aluminum extrusion 420mm | 2 | 5.22 |
| 2020 Aluminum extrusion 260mm | 4 | 6.44 |
| 100RPM DC geared motor with encoder | 1 | 17.02 |
|---------|---------------|------------------------------------|
| TOTAL | 65 | 72.24 |
| TOTAL | 74 | 83.51 |
<!-- /bom -->

View File

@ -1,6 +1,8 @@
module,quantity,part,part_id,description
contact_printer,4,2020 Aluminum extrusion 260mm,N/A,Sides and central frame
contact_printer,2,2020 Aluminum extrusion 420mm,N/A,Top and bottom frame
electronics_panel,4,M3 hex cap bolt 6mm,N/A,Attach the GPIO breakout board to the panel
electronics_panel,1,ESP32 GPIO breakout board,N/A,To make the ESP32 dev board easier to wire
electronics_panel,6,M3 sliding t slot nut,N/A,Attach the frame to the electronics_panel
electronics_panel,6,M3 hex cap bolt 8mm,N/A,Attach the electronics_panel to the frame
electronics_panel,1,L298N Motor driver module,N/A,Control the 3 motors using 2 channels
@ -11,6 +13,7 @@ takeup_panel_stock,1,250RPM DC geared motor,JSX40-370,Drive the takeup of the st
takeup_panel_picture,7,M3 sliding t slot nut,N/A,Attach the frame to the takeup_panel_picture
takeup_panel_picture,7,M3 hex cap bolt 8mm,N/A,Attach the takeup_panel_picture to the frame
takeup_panel_picture,1,250RPM DC geared motor,JSX40-370,Drive the takeup of the picture pathway
panel,4,M4 hex bolt 40mm,N/A,Attach the lamp to the panel
panel,1,100RPM DC geared motor with encoder,N/A,Drive the sprocketed_roller
panel,6,M3 sliding t slot nut,N/A,Attach aluminum extrusions to panel
panel,6,M3 hex cap bolt 8mm,N/A,Attach panel to aluminum extrusions

1 module quantity part part_id description
2 contact_printer 4 2020 Aluminum extrusion 260mm N/A Sides and central frame
3 contact_printer 2 2020 Aluminum extrusion 420mm N/A Top and bottom frame
4 electronics_panel 4 M3 hex cap bolt 6mm N/A Attach the GPIO breakout board to the panel
5 electronics_panel 1 ESP32 GPIO breakout board N/A To make the ESP32 dev board easier to wire
6 electronics_panel 6 M3 sliding t slot nut N/A Attach the frame to the electronics_panel
7 electronics_panel 6 M3 hex cap bolt 8mm N/A Attach the electronics_panel to the frame
8 electronics_panel 1 L298N Motor driver module N/A Control the 3 motors using 2 channels
13 takeup_panel_picture 7 M3 sliding t slot nut N/A Attach the frame to the takeup_panel_picture
14 takeup_panel_picture 7 M3 hex cap bolt 8mm N/A Attach the takeup_panel_picture to the frame
15 takeup_panel_picture 1 250RPM DC geared motor JSX40-370 Drive the takeup of the picture pathway
16 panel 4 M4 hex bolt 40mm N/A Attach the lamp to the panel
17 panel 1 100RPM DC geared motor with encoder N/A Drive the sprocketed_roller
18 panel 6 M3 sliding t slot nut N/A Attach aluminum extrusions to panel
19 panel 6 M3 hex cap bolt 8mm N/A Attach panel to aluminum extrusions

View File

@ -1,11 +1,13 @@
quantity,part,part_id,price
4,"M4 hex bolt 40mm",N/A,500
25,"M3 sliding t slot nut",N/A,150
25,"M3 hex cap bolt 8mm",N/A,225
4,"M3 hex cap bolt 6mm",N/A,28
8,"M3 hex cap bolt 6mm",N/A,56
1,"L298N Motor driver module",N/A,289
1,"ESP32 GPIO breakout board",N/A,599
1,"ESP32 Dev board",N/A,666
2,"250RPM DC geared motor",JSX40-370,2998
2,"2020 Aluminum extrusion 420mm",N/A,522
4,"2020 Aluminum extrusion 260mm",N/A,644
1,"100RPM DC geared motor with encoder",N/A,1702
65,N/A,TOTAL,7224
74,N/A,TOTAL,8351

1 quantity part part_id price
2 4 M4 hex bolt 40mm N/A 500
3 25 M3 sliding t slot nut N/A 150
4 25 M3 hex cap bolt 8mm N/A 225
5 4 8 M3 hex cap bolt 6mm N/A 28 56
6 1 L298N Motor driver module N/A 289
7 1 ESP32 GPIO breakout board N/A 599
8 1 ESP32 Dev board N/A 666
9 2 250RPM DC geared motor JSX40-370 2998
10 2 2020 Aluminum extrusion 420mm N/A 522
11 4 2020 Aluminum extrusion 260mm N/A 644
12 1 100RPM DC geared motor with encoder N/A 1702
13 65 74 N/A TOTAL 7224 8351

View File

@ -9,3 +9,5 @@ M3 sliding t slot nut,N/A,6,https://amzn.to/48GRrSU
250RPM DC geared motor,JSX40-370,1499,https://amzn.to/3NWkcRL
ESP32 Dev board,N/A,666,https://amzn.to/3NXCvGj
L298N Motor driver module,N/A,289,https://amzn.to/4ellssy
ESP32 GPIO breakout board,N/A,599,https://amzn.to/3UFjpbO
M4 hex bolt 40mm,N/A,125,https://www.homedepot.com/p/M4-0-7-x-40-mm-Class-8-8-Zinc-Plated-Hex-Bolt-801298/204273654
1 part part_id price url
9 250RPM DC geared motor JSX40-370 1499 https://amzn.to/3NWkcRL
10 ESP32 Dev board N/A 666 https://amzn.to/3NXCvGj
11 L298N Motor driver module N/A 289 https://amzn.to/4ellssy
12 ESP32 GPIO breakout board N/A 599 https://amzn.to/3UFjpbO
13 M4 hex bolt 40mm N/A 125 https://www.homedepot.com/p/M4-0-7-x-40-mm-Class-8-8-Zinc-Plated-Hex-Bolt-801298/204273654

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@ -450,12 +450,20 @@ module gate_blank () {
//roller shelf
translate([0, (-42.39 / 2) + RollerVoidY, (Z / 2) - (RollerShelfZ / 2) + 0.01]) cylinder(r = R(RollerShelfD), h = RollerShelfZ, center = true, $fn = 240);
//picture channel
translate([0, (-42.39 / 2) + RollerVoidY, PictureShelfOffsetZ ]) cylinder(r = R(PictureShelfD), h = PictureShelfZ, center = true, $fn = 240);
difference () {
translate([0, (-42.39 / 2) + RollerVoidY, PictureShelfOffsetZ ]) cylinder(r = R(PictureShelfD), h = PictureShelfZ, center = true, $fn = 240);
//ramp to slit
difference () {
translate([0, -1, 0]) rotate([0, 0, 45]) cube([4, 4, 200 + 1], center = true);
translate([0, (-42.39 / 2) + RollerVoidY - 1, PictureShelfOffsetZ ]) cylinder(r = R(PictureShelfD), h = PictureShelfZ, center = true, $fn = 240);
}
}
//gate notches
translate([(X / 2) + SidesX, SidesY, 0]) rotate([0, 0, 45]) cube([5, 5, Z + 1], center = true);
translate([(-X / 2) - SidesX, SidesY, 0]) rotate([0, 0, 45]) cube([5, 5, Z + 1], center = true);
}
}
module gate_carrier (pos = [0, 0, 0], rot = [0, 0, 0]) {
@ -680,10 +688,11 @@ module panel_bearing_void (pos = [0, 0, 0]) {
}
}
//BOM: 4,M3 hex cap bolt 6mm,N/A,Attach encoder motor to panel
//BOM: 6,M3 hex cap bolt 8mm,N/A,Attach panel to aluminum extrusions
//BOM: 6,M3 sliding t slot nut,N/A,Attach aluminum extrusions to panel
//BOM: 1,100RPM DC geared motor with encoder,N/A,Drive the sprocketed_roller
//BOM: 4, M3 hex cap bolt 6mm,N/A,Attach encoder motor to panel
//BOM: 6, M3 hex cap bolt 8mm,N/A,Attach panel to aluminum extrusions
//BOM: 6, M3 sliding t slot nut,N/A,Attach aluminum extrusions to panel
//BOM: 1, 100RPM DC geared motor with encoder,N/A,Drive the sprocketed_roller
//BOM: 4, M4 hex bolt 40mm, N/A, Attach the lamp to the panel
module panel (pos = [0, 0, 0]) {
BoltX = (PanelX-20)/2;
BoltY2 = (PanelY)/2;
@ -1384,9 +1393,11 @@ module button_void (pos = [0, 0, 0], rot = [0, 0, 0]) {
}
//BOM: 1, ESP32 Dev board,N/A,Control the contact_printer
//BOM: 1, L298N Motor driver module,N/A,Control the 3 motors using 2 channels
//BOM: 6, M3 hex cap bolt 8mm,N/A,Attach the electronics_panel to the frame
//BOM: 6, M3 sliding t slot nut,N/A,Attach the frame to the electronics_panel
//BOM: 1, L298N Motor driver module, N/A, Control the 3 motors using 2 channels
//BOM: 6, M3 hex cap bolt 8mm, N/A, Attach the electronics_panel to the frame
//BOM: 6, M3 sliding t slot nut, N/A, Attach the frame to the electronics_panel
//BOM: 1, ESP32 GPIO breakout board, N/A, To make the ESP32 dev board easier to wire
//BOM: 4, M3 hex cap bolt 6mm, N/A, Attach the GPIO breakout board to the panel
module electronics_panel (pos = [0, 0, 0], rot = [0, 0, 0]) {
X = PanelX - 40;
Y = 100;
@ -1463,10 +1474,10 @@ module debug () {
//translate([-5.35, LampY -7.1, 11 + 1 + .1]) rotate([0, 0, 7]) color("blue") picture_gate();
//idle rollers
/*idle_roller([ IdleRollerPrintX, IdleRollerPrintY, 3]);
idle_roller([-IdleRollerPrintX, IdleRollerPrintY, 3]);
idle_roller([ IdleRollerStockX, IdleRollerStockY, 3]);
idle_roller([-IdleRollerStockX, IdleRollerStockY, 3]);*/
idle_roller([ IdleRollerPrintX, IdleRollerPrintY - 10, 3]);
idle_roller([-IdleRollerPrintX, IdleRollerPrintY - 10, 3]);
idle_roller([ IdleRollerStockX, IdleRollerStockY - 10, 3]);
idle_roller([-IdleRollerStockX, IdleRollerStockY - 10, 3]);
//idle roller path
// translate([0, IdleRollerPrintY - 8, 10]) cube([200, .1, 16], center = true);
@ -1571,9 +1582,9 @@ module debug () {
}
module debug_lamp () {
//color("red") translate([0, -8.5, 10.6]) rotate([0, 90, 90]) 16mm_film(40, true, true);
color("red") lamp_bolts_voids([0, LampY + 5, (LampBoltH/2) - 1.5 - 2.5]);
//color("red") lamp_rails_voids([0, 20, 11 + LampRailsOffsetZ], [90, 0, 0], h = 50);
color("blue") translate([0, -8.5, 10.6]) rotate([0, 90, 90]) 16mm_film(40, true, true);
color("red") lamp_bolts_voids([0, LampY + 5, (LampBoltH/2) - 1.5 - 2.5], H = 40);
color("red") lamp_rails_voids([0, 20, 11 + LampRailsOffsetZ], [90, 0, 0], h = 50);
panel([0, -10, -1.5]);
//
lamp_single([0, 10, 2]);

View File

@ -7,5 +7,5 @@ IMG=img/contact_printer.png
# setting PART equal to a non-existent module will render the debug layout
openscad -o ${IMG} --colorscheme ${SCHEME} --imgsize ${WIDTH},${HEIGHT} -D "PART=\"DEBUGxxxxxxx\"" scad/contact_printer.scad
openscad -o ${IMG} --enable manifold --colorscheme ${SCHEME} --imgsize ${WIDTH},${HEIGHT} -D "PART=\"DEBUGxxxxxxx\"" scad/contact_printer.scad
convert ${IMG} -resize 1200x1000 -gravity center -extent 1000x700 ${IMG}

View File

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View File

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vertex 0 -15.5 -3
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@ -20716,12 +20716,12 @@ solid OpenSCAD_Model
outer loop
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vertex 0.1854102 15.4706335 2.526939
vertex 0.1854102 15.4706335 -3
endloop
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File diff suppressed because it is too large Load Diff

View File

@ -29193,27 +29193,27 @@ solid OpenSCAD_Model
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vertex 1.1865053 -18.858963 -11.95
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