Prompt stringlengths 96 2.17k | Code stringlengths 27 249k | 3d_glb stringlengths 24 24 |
|---|---|---|
Create a dust collection system adapter consisting of three stacked coaxial sections with a wall thickness of 2mm. Start with a top cylindrical sleeve for the hose insertion that is 40mm tall; the outer diameter tapers from 101.8mm at the top to 100.8mm at the bottom, while the inner diameter tapers from 100.8mm at the... | HoseDiameter=100.8;
HoseTaper=1.5;
MachineDiameter=99.8;
MachineTaper=1.5;
HoseInsert=40;
MachineInsert=40;
Thick=2;
AngledSectionLength=5;
$fn=200;
difference(){cylinder (HoseInsert,HoseDiameter/2+Thick,HoseDiameter/2+Thick+HoseTaper/2,true);cylinder (HoseInsert,HoseDiameter/2,HoseDiameter/2+HoseTaper/2,true);}
transl... | glb/cad_77a714cfd49c.glb |
Create an Instrumentenpilz Lochabdeckung hole cover. Start with a base plate formed by the union of two intersecting cubes, both 5mm thick and centered: one measuring 80mm by 70mm and the other 70mm by 80mm, resulting in a square with 10mm chamfered corners. On top of this base, add a centering ring with an outer diame... | $fn=100;
l = 80;
t = 5;
f = 10;
dLK = 89;
dL = 4.5;
dZR = 79.5;
tZR = 3;
difference(){
union(){
hull(){
cube([l,l-2*f,t],true);
cube([l-2*f,l,t],true);
}
translate([0,0,t/2])cylinder(d1=dZR,d2=dZR-1,h=tZR,true);
}
for (i=[0:3]){
rotate([0,0,45+i*90])t... | glb/cad_c3a61d401035.glb |
Create a rectangular plaque measuring 330.2 mm in width, 76.2 mm in height, and 4 mm in thickness. From this base, remove a smaller central rectangular section starting 5.5 mm from each edge to create a raised border of 5.5 mm thickness around the perimeter. On the top surface of the plaque, add two lines of raised tex... | plaque_width = 13 * 25.4;
plaque_height = 3 * 25.4;
plaque_thickness = 4;
border_thickness = 5.5;
text_height = 2;
color("Red") {
cube([plaque_width, plaque_height, plaque_thickness]);
translate([border_thickness, border_thickness, 0])
cube([plaque_width - 2 * border_thickness, plaque_height - 2 * border_thickne... | glb/cad_7f2e6197ec9d.glb |
Create a vacuum adapter consisting of three stacked concentric sections with a wall thickness of 2mm. Start with a top cylindrical sleeve for the hose that has an outer diameter of 60.5mm and an inner diameter of 57.5mm, extending 30mm in height. Below this, create a reducing conical section that transitions from the 6... | HoseDiameter=57.5;
HoseTaper=1.5;
MachineDiameter=41;
MachineTaper=1.5;
HoseInsert=30;
MachineInsert=20;
Thick=2;
AngledSectionLength=30;
$fn=200;
difference(){cylinder (HoseInsert,HoseDiameter/2+Thick,HoseDiameter/2+Thick+HoseTaper/2,true);cylinder (HoseInsert,HoseDiameter/2,HoseDiameter/2+HoseTaper/2,true);}
translat... | glb/cad_e53a21f1edee.glb |
Create a parametric organizer with a sliding door. Start by constructing an outer rectangular box with dimensions 59.2mm in width, 61.8mm in depth, and 15.6mm in height. Inside this box, create four rectangular cells arranged in a 2x2 grid. Each cell must measure 28mm in width, 28mm in depth, and 14.4mm in height, sepa... | nozzle = 0.4;
inner_wall = nozzle * 2;
outer_wall = nozzle * 4;
slider_thickness = nozzle * 3.5;
cell_size = nozzle * 70;
rows = 2;
cols = 2;
cell_dim = [
cell_size,
cell_size,
cell_size / 2
];
outer_box_dim = [
cell_dim[0] * cols + inner_wall * (cols - 1) + 2 * outer_wall,
cell_dim[1] * rows + i... | glb/cad_a52db467e474.glb |
Create a Solar Powered Rain Gauge Pluviometer consisting of a funnel and a base.
First, construct the funnel. Create a cylinder with a radius of 82mm and a height of 125mm. Hollow it out by removing a concentric cylinder with a radius of 80mm. At the top of the funnel, create a cylindrical opening with a diameter of ... | include <threads.scad>;
fullRendering = false;
fn = 120;
funnelRadius = 80;
funnelHeight = 125;
module triangleR(a, b, h, c){
linear_extrude(height = h, center = c, convexity = 10)
resize([a, b])
polygon([[0,0], [1,0], [0,1]], paths=[[0,1,2]]);
}
module triangleRa(a, angle, h, c){
rotate([90, 0, 0])
linea... | glb/cad_c7bf287365ac.glb |
Create a replacement foot for a footstool consisting of a central cylinder and a surrounding outer sleeve. First, create a solid central cylinder with a diameter of 20.3mm and a total height of 35mm. Around this central core, add a concentric outer sleeve with an outer diameter of 37.5mm and the same total height of 35... | $fn=128;
feet_height = 5;
height = feet_height + 30;
rod_inner_dia = 20.3;
rod_outer_dia = 32.5;
outer_sleeve_thickness = 5;
cylinder(h=height, d=rod_inner_dia);
cylinder(h=feet_height, d=rod_outer_dia);
difference() {
cylinder(h=height, d=rod_outer_dia + outer_sleeve_thickness);
translate([0, 0, -0.05]) cyl... | glb/cad_cd0272c67a15.glb |
Create a shop vac adapter consisting of three stacked concentric sections with a wall thickness of 2mm. Start with a top cylindrical sleeve 30mm high with an outer diameter of 59.5mm and an inner diameter of 57.5mm. Below this, add a 30mm long conical transition section that tapers linearly from the top outer diameter ... | HoseDiameter=57.5;
HoseTaper=1.5;
MachineDiameter=38.3;
MachineTaper=1.5;
HoseInsert=30;
MachineInsert=35;
Thick=2;
AngledSectionLength=30;
$fn=200;
difference(){cylinder (HoseInsert,HoseDiameter/2+Thick,HoseDiameter/2+Thick+HoseTaper/2,true);cylinder (HoseInsert,HoseDiameter/2,HoseDiameter/2+HoseTaper/2,true);}
transl... | glb/cad_9f87e6829718.glb |
Create a mounting bracket for a motor start switch. Start with a solid rectangular base measuring 63mm in length, 37mm in width, and 15mm in height. The base should have rounded corners with a radius of 2mm.
Hollow out the center of the base to create a rectangular cavity measuring 61mm by 35mm with a depth of 11mm, l... | receiverL1 = 60 + 1.0;
receiverW = 35 + 1.0;
receiverH1 = 11;
wall = 1.5;
base = 4;
hole1H = 11;
hole1W = 10;
receiverL2 = 32;
module rcube(size, radius) {
hull() {
translate([radius, radius]) cylinder(r = radius, h = size[2]);
translate([size[0] - radius, radius]) cylinder(r = radius, h = size[2... | glb/cad_5a98b6f70525.glb |
Create a pocket hole jig to shop vacuum adapter consisting of three stacked concentric sections with a wall thickness of 2mm. Start with a top cylindrical sleeve for the vacuum hose that is 30mm tall with an outer diameter of 59.5mm and an inner diameter of 57.5mm. Below this, add a 30mm tall conical transition section... | HoseDiameter=57.5;
HoseTaper=1.5;
MachineDiameter=36.4;
MachineTaper=1.5;
HoseInsert=30;
MachineInsert=16;
Thick=2;
AngledSectionLength=30;
$fn=200;
difference(){cylinder (HoseInsert,HoseDiameter/2+Thick,HoseDiameter/2+Thick+HoseTaper/2,true);cylinder (HoseInsert,HoseDiameter/2,HoseDiameter/2+HoseTaper/2,true);}
transl... | glb/cad_d9ce8bad4351.glb |
Create a Lego medal consisting of two stacked cylindrical discs. Start with a base disc 50mm in diameter and 2mm thick. On the top surface of this base, center a second disc that is 25mm in diameter and 2mm thick. Create a vertical hole 4.4mm in diameter passing through the base disc, positioned 22mm away from the cent... | myFirstDiscDiameter = 50;
myFirstDiscHeight = 2;
mySecondDiscDiameter = 25;
mySecondDiscHeight = 2;
myHoleDiameter = 4.4;
module create_base()
{
color([1,0,0]) cylinder(h=myFirstDiscHeight, r=myFirstDiscDiameter/2);
}
module create_second_disk()
{
translate ([0,0,myFirstDiscHeight])
color([0,1,0]) cyli... | glb/cad_9e64f60dbeda.glb |
Create a WisePOS Terminal Cradle Ramp Insert. The object is a low-profile, elongated guide with a hollowed-out center.
Start with a base block measuring 2.25 inches in length, 0.28125 inches in width, and 0.125 inches in height. The overall shape is a rounded rectangular shell. The outer corners should be rounded wit... | $fn = 100;
cylOffset = (3/64) / 2;
cylOffset2 = (10/64) / 2;
cylOffset2inner = (8.5/64) / 2;
difference(){
union(){
translate([((18/8) - 1.5) / 2,-5/64,0]) difference() {
cube([1.5, 5/64, 1/64]);
translate([(1.5-(1/8))/2,-.001,-.001]) cube([1/8, 2/8, 2/64]);
}
translate([.25 / 2, (2/8) - ... | glb/cad_a946faeacf1c.glb |
Create an LED Ring Light Webcam Mount consisting of a central mounting bar with a curved cutout. Start with a rounded rectangular base measuring 33.25mm in width, 20mm in depth, and 19mm in height.
Carve a concentric cylindrical void through the center of the base to accommodate a ring light, with an outer diameter o... | RING_OD = 90.5;
RING_ID = 48.5;
RING_FASTENER_DRILL = 4.5;
RING_NUT_M = 5;
RING_NUT_S = 7.3;
RING_THICKNESS = 15;
WALL_THICKNESS = 4;
MOUNT_WIDTH = 20;
NUT_HOLDER_WIDTH = 12;
CAM_FASTENER_DRILL = 4.5;
CAM_FASTENER_HEAD_CLEARANCE_DIA = 10;
CAM_FASTENER_WALL = 6.5;
$fn=32;
RING_DIFF = RING_OD - RING_ID;
modu... | glb/cad_eee34c39ee7f.glb |
Create a Stackable M.2 Tray with an outer frame measuring 85mm by 47mm and a height of 13mm. The frame has a wall thickness of 2.5mm. Inside this frame, create two sets of perpendicular slots to hold PCBs.
The first set consists of 17 parallel slots along the length, each 1.5mm wide and 2mm apart, with a depth of 3mm... | slot = 1.5;
dimm = 80;
sodimm = 42;
abstand = 2;
barepcb = 3;
spiel = 1;
wand = 2.5;
boden = 1.5;
wandhoehe = 13;
steg = 4;
pillarx = 6;
pillary = 4;
pillarz = 25;
clearence = 1;
realdimm = dimm + spiel;
realsodimm = sodimm + spiel;
nsodimm = floor((realdimm - 2 * barepcb) / (slot + abstand));
ndimm = floor((realso... | glb/cad_856ab59107bc.glb |
Create a vacuum adapter consisting of three coaxial sections with a wall thickness of 2mm. Start with a top cylindrical sleeve for the hose that has an outer diameter of 60.5mm and an inner diameter of 57.5mm, extending 30mm in height. Below this, create a reducing conical section 30mm in length that tapers the outer d... | HoseDiameter=57.5;
HoseTaper=1.5;
MachineDiameter=34.8;
MachineTaper=1.5;
HoseInsert=30;
MachineInsert=28;
Thick=2;
AngledSectionLength=30;
$fn=200;
difference(){cylinder (HoseInsert,HoseDiameter/2+Thick,HoseDiameter/2+Thick+HoseTaper/2,true);cylinder (HoseInsert,HoseDiameter/2,HoseDiameter/2+HoseTaper/2,true);}
transl... | glb/cad_79e040708aa7.glb |
Create a Gridfinity-style storage block that is 4 units wide in the Y-axis and 2.5 units high in the Z-axis, centered on the origin. Carve a cylindrical thumb cutout from the top of the block, scaled by 1.6 along the Y-axis, with a diameter of 25.4mm.
Within this block, create two identical negative cavities to hold ... | include <gridfinity_modules.scad>
$fn=200;
module tl63(){
length = 135;
diameter_l = 26;
diameter_s = 18;
tollerance = 0.5;
translate([0,-length/2,0])
hull(){
cylinder(d=diameter_l, h=7+tollerance);
translate([0,length,0]) cube([18,1,7+tollerance], center=true);
}
dif... | glb/cad_1fddd16eea2b.glb |
Create a wheel for a Magic Tracks car by starting with a cylinder 22mm in diameter and 3mm in height. On top of this base, add a rounded cap that is 5mm tall, formed by the intersection of a 22mm diameter cylinder and a 22mm diameter sphere. The resulting total height of the wheel is 8mm. Finally, bore a center hole th... | wheel_diameter = 22;
wheel_depth = 8;
flat_depth = 3;
semisphere_factor = 0.8743;
shaft_hole_diameter = 2.22;
shaft_hole_depth = 5;
module rounded_part()
{
resize([0, 0, wheel_depth - flat_depth])
intersection()
{
cylinder(
h=semisphere_factor * (wheel_diameter / 2),
d=whee... | glb/cad_9583471ef653.glb |
Create a sign keychain consisting of a rounded rectangular base with a recessed text area. The base should have a thickness of 3mm and rounded corners with a radius of 3mm. The overall length and width of the base are determined by the text " E-up" using a bold font of size 6mm, with additional margins of 4mm on the s... | fn = 50;
txt = " E-up";
font = "Liberation:style=Bold";
font_size = 6;
spacing = 1;
txt_depth = 0.5;
corner_radius = 3;
text_frame_w_l = [4, 6];
round_corner = true;
hole_true = true;
hole = 3;
hole_offset = [2, 2];
module round_cube(radius, width, length, height, fn, sphere_corner = false) {
width = width / ... | glb/cad_8f07492c66e1.glb |
Create a wall-mount case for a Raspberry Pi Touch Display 2. Start with a main outer bezel body measuring 195.32mm wide, 126.24mm deep, and 35mm thick, with corners rounded to a radius of 11mm. Hollow out the center to create a frame; the inner cutout should be 183.32mm by 114.24mm, leaving a bezel width of 3mm. The fr... | include <BOSL2/std.scad>
$fn = 50;
frame_bezel_width = 3;
display_clearance = 0.5;
bezel_inner_width = 3;
case_depth = 35;
mounting_hole_additional_offset = 7;
cable_hole_diameter = 15;
mounting_ring_thickness = 3;
enable_vent_holes = true;
pi_display_bezel_size = [189.32, 120.24];
pi_display_bezel_round = 8... | glb/cad_494cbe8e36a7.glb |
Create a Top SKADIS allen key holder. Start with a rectangular base measuring 111mm in length, 21mm in width, and 8mm in height. Attached to the bottom of this base, center a second rectangular block that is 111mm long, 17mm wide, and 4mm high.
On the top surface of the base, create five vertical holes to hold allen k... | use <hull.scad>;
use <Chamfer.scad>;
tol = 0.1;
safety = 0.5;
view = "Object A only";
h1 = 8;
h2 = 4;
height = h1+h2;
keys = [2,2.5,3,4,5];
hole_distance = 20;
hole_size = "exact";
key_dia_min = min(keys);
key_dia_max = max(keys);
hole_d_avg = 4*(key_dia_min+key_dia_max)/3;
width = 21;
step = 2;
hook = false;
gro... | glb/cad_f939652d1dd0.glb |
Create a playing card box with outer dimensions of 58.9mm in width, 38.4mm in depth, and 82mm in height. The main body is a rectangular prism. On the front face, centered horizontally and positioned 5mm from the bottom, integrate a diamond-shaped pocket designed to hold a coin with a diameter of 30.4mm and a thickness ... | tol=0.2;
ew=1;
lh=0.2;
shorten=15;
base_t=5;
deck_w=56.5;
deck_l=87;
deck_t=36;
coin_en=1;
coin_d=30;
coin_t=2;
dtxt=1;
txt="UNO";
part="b";
if(part=="a")inner();
if(part=="b")outter();
module inner()
{
off=(2*ew+2*tol)/2;
slope=lh/(ew/3);
translate([off,off,0])cube([deck_w+ew+2*tol,deck_t+ew... | glb/cad_cb7067150b9d.glb |
Create a directional coin for games by starting with a main cylinder 30mm in diameter and 2mm thick, centered on the origin. Carve two curved, arrow-like channels into the face of the cylinder to indicate rotation. Each channel is formed by a pair of 1mm diameter holes, 3mm deep, spaced 5 degrees apart and connected by... | $fn=30;
module arrowhead()
{
difference()
{
rotate([0,0,45])cube([3,3,3],center=true);
translate([0,2.5,0])cube([5,5,4],center=true);
}
}
difference()
{
cylinder(d=30,h=2,center=true);
for(i=[0:5:140]){
hull(){
rotate([0,0,i])translate([10,0,0])cylinder(d=1,h=3,center... | glb/cad_a09edec1dcca.glb |
Create a uSDX+ Transceiver / AT100 Carry Box consisting of a base panel, a top panel, and connecting side posts.
Construct the base and top panels as identical plates measuring 100mm by 200mm with a thickness of 6mm. Each panel should feature four corner reinforcements measuring 20mm by 20mm by 6mm. In each panel, cr... | difference(){
union(){
basepanel();
toppanel();
handle();
post();
bumper();
stand();
%translate([0,0,38.5])usdx();
%at100();
%translate([89,0,77])rotate([0,180,0])post();
%translate([0,194,77])rotate([0,180,180])post();
%tran... | glb/cad_cb9b183612dd.glb |
Create a rectangular box insert for a Mexican Train domino set. The main body is a centered rectangular slab with dimensions 138.6mm in width, 70.3mm in length, and 7.5mm in height.
From this slab, remove a central octagonal cutout to hold the game hub. The octagon is formed by subtracting a centered rectangular bloc... | tol=0.5;
dom_w=13.7;
dom_l=27.3;
dom_t=3.75;
insert_w=139.6;
insert_l=71.3;
insert_t=dom_t*2;
train_w=dom_w*0.4;
train_l=dom_w*0.75;
train_h=dom_w*0.8;
box_insert();
module box_insert()
{
difference()
{
translate([0,0,insert_t/2])cube([insert_w-tol*2,insert_l-tol*2,insert_t],center=true);
tra... | glb/cad_d3443c23b677.glb |
Create a round container jar with a screw-on lid. The main body is a cylinder with an outer radius of approximately 13.7mm and a total outer height of 83.6mm. The body consists of a hollow base with a wall thickness of 1.8mm and an internal height of 80mm. The interior is a cylinder with a minimum diameter of 50.8mm. T... | use <threads.scad>
show = "both (opened)";
quality = "final rendering";
$fn = (quality == "better final rendering") ? 256 :
(quality == "final rendering") ? 128 :
(quality == "preview") ? 60 :
(quality == "fast preview") ? 30 : 30;
thread_testmode = (quality == "fast preview") ? true : false;
inn... | glb/cad_c9de2c562381.glb |
Create a garden label stake consisting of a flat base and two lines of raised text. Start by creating a main stake body that is 125mm long, 5mm wide, and 3mm thick. Taper the end of this body into a pointed tip that extends an additional 15mm beyond the main length, narrowing to a small 0.5mm point.
On the top surfac... | text_string = "LABEL";
text_size = 12;
text_thickness = 3;
text_font = "Futura:Bold";
text_y_offset_adjust = 0;
text_string2 = " SUBTITLE HERE";
text_size2 = 8;
text_thickness2 = 3;
stake_length = 125;
stake_thickness = 5;
stake_height = 5;
point_length = 15;
tip_size = .5;
{
translate([0,text_y_offset_adju... | glb/cad_a3538864e907.glb |
Create a Prius Gen 3 key fob case by constructing a hollowed-out rectangular shell with rounded corners and edges. The outer body is a rounded slab approximately 35mm in length, 40mm in width, and 10mm in height. The walls and base should have a uniform thickness of 0.6mm.
The main cavity is a centered rectangular vo... | $fn=25;
module fob(rad,thickness){
hull(){
for(x=[-17.5+rad-thickness,17.5-rad+thickness])
for(y=[-30+rad-thickness,30-rad+thickness])
for(z=[-3+rad-thickness,10-rad+thickness])
translate([x,y,z])sphere(rad);
for(x=[0])
for(y=[-30.5+rad-thickness,thickness+30.5-rad])
for(z=[-3+rad-thickn... | glb/cad_8cb45e0a449e.glb |
Create a handle clip for a Euro box. Start by constructing a base plate that is 126mm long and 29mm wide. The main body is a hollowed-out rectangular shell with a total height of 9.6mm. The outer walls of this shell are 2.4mm thick. The shell's footprint is a hull formed by a rectangle of 126mm by 13mm and two semi-cir... | $fn=123;
linear_extrude(2.4+7.2) difference() {
hull() {
translate([0,16]) square([126,29-16]);
translate([16/2,16/2]) circle(r=16/2);
translate([126-16/2,16/2]) circle(r=16/2);
}
offset(r=-2.4) hull() {
translate([0,16]) square([126,29-16]);
translate([16/2,16/2]) circle(r=16/2);
trans... | glb/cad_2efb6aa3b3dc.glb |
Create a handle clip washer by designing a thick, flat cylinder with a radius of 6mm and a total height of 3.5mm. Centered within this cylinder, remove a vertical hole that begins as a cylinder with a radius of 2.125mm for the first 1mm of height, and then expands into a wider conical void with a top radius of 3.65mm f... | $fn=123;
translate([+10,0,0])
difference() {
cylinder(r=12/2, h=3.5);
translate([0,0,-.01]) cylinder(r=4.25/2, h=3.52);
translate([0,0,1]) cylinder(r1=4.25/2, r2=7.3/2, h=3.52-1);
}
*translate([-10,0,0])
difference() {
cylinder(r=12/2, h=3.5);
translate([0,0,-.01]) cylinder(r=4.25/2, h=3.52);
translate([0... | glb/cad_5b8c8345ee25.glb |
Create a Triton Doweler Vacuum Adapter consisting of a hollow cylindrical sleeve with integrated snap-fit tabs. The main body is a cylinder with an outer diameter of 38mm and a height of 50mm. The interior is hollowed out by a central bore with a diameter of 31.7mm.
At the base, create a transition where the outer dia... | $fn=100;
module MockVacInput() {
difference() {
cylinder(d=38, h=14.5);
translate([0,0,-1]) cylinder(d=31.5, h=16.5);
}
translate([0,0,-1]) rotate_extrude() translate([17.25,0,0]) hull() {
translate([-1.25,0,0]) square([3,1.5]);
circle(d=3);
}
translate([0,-5,-1.75]... | glb/cad_7050af7becb5.glb |
Create a spacer for a Triton doweller by constructing a base rectangular block measuring 126mm in length, 73mm in width, and 3.5mm in height. From this main body, remove a large central rectangular section to create a U-shaped channel. This cutout should be 87mm long and 100mm wide, centered along the length of the blo... | SPACER_H = 3.5;
module Mock() {
%difference() {
union() {
cube([120,63.5,7]);
translate([120/2-86/2,-9.5,0]) cube([86,17,10]);
}
translate([120/2-77/2,30,-0.5]) cube([77,35, 8]);
translate([120/2-111.5/2,10,7-2.8]) cube([111.5,16,3]);
}
}
module Spacer(h=... | glb/cad_27feb8774f98.glb |
Create a parametric watering can rose consisting of a spherical head and a conical inlet. The main head is a hollow sphere with an outer diameter of 50mm and a wall thickness of approximately 1.67mm.
The bottom hemisphere of the head is a solid shell that transitions into a conical attachment. This attachment is a tr... | include <BOSL2/std.scad>
size=50;
hose_min_d=13;
hose_max_d=hose_min_d+0;
flux_ratio=1;
step_a=12;
thk=size/30;
$fn=50;
r=size/2;
hole_d=max(2*sqrt((flux_ratio*PI*pow(hose_min_d/2,2)/n_holes())/PI),1);
echo("Hole diameter:", hole_d);
inf=1000;
eps=0.05;
x=[1,0,0];
y=[0,1,0];
z=[0,0,1];
function d2r(d)=PI*d/18... | glb/cad_2ca70f6dbc06.glb |
Create a QR Code Plaque for an NFC tag. Start by creating a square base 60mm wide and 60mm long with a height of 3mm and corner fillets of 4mm.
In the center of the base, create a hole for an NFC tag. For a round tag, create a cylindrical void with a diameter of 10.2mm (10mm plus 0.1mm tolerance on all sides) and a d... | gBaseSize = 60;
gQRSize = 50;
gBaseHeight = 3;
gHasTitle = false;
gTitleText = "Wifi" ;
gTitleAreaHeight = 10;
gTextScale = 0.4;
gHasMagnets = "No";
gMagnetHeight = 2;
gMagnetLength = 20;
gMagnetWidth = 5;
gCoverMagnets = false;
gHasNFC = false;
gNFCType = "round";
gNFCDiameter_x = 10;
gNFCWidth_y = 10;
... | glb/cad_003179f1381b.glb |
Create a Car Fan Funnel consisting of a rectangular base that transitions into a circular outlet. Start with a rectangular shell with outer dimensions of 54mm by 76mm and a height of 10mm, with a wall thickness of 3mm. The bottom face of this rectangle should be rounded with a radius of 500mm.
From the top of this bas... | $fn=150;
innerFanX=48;
innerFanY=70;
innerFanZ=10;
fanRoundness=true;
fanRad=500;
fanRadCut=1.4;
wallThickness=3;
hoseWallThick=5;
innerHoseDia1=31.2;
innerHoseDia2=30.8;
outerHoseZ=10;
funnelHeight=50;
placeLonghole=true;
screwDia=3;
clampDia=8;
clampLen=15;
clampWallThick=3;
ribThickness=3.9;
module funnel(x... | glb/cad_94c811667499.glb |
Create a solder feeder stand designed to hold a spool. Start by constructing a main body that features a large central cylindrical cutout with an outer diameter of 55mm and an inner diameter of 25mm, spanning a width of 34mm. This creates a hollow ring-like cradle for the spool.
On the sides of this cradle, integrate ... | $fa=$preview?2:3;
$fs=$preview?1:.3;
draw=true;
ndraw=false;
sd=55;
sdi=25;
sw=34;
if(draw)
%translate([0,0,(sd+1)/2]) rotate([90,0,0]) difference(){
cylinder(d=sd,h=sw,center=true);
cylinder(d=sdi,h=sw+1,center=true);
}
if(draw){
difference(){
for (y=[-1:2:1])
hull(){
translate([ 30,y*(sw/2)... | glb/cad_ea51ac80ab72.glb |
Create a solder fume extractor housing with an overall width of 74mm, a depth of 90mm, and a height that varies between 12mm and 65mm. The main body is a hollowed-out shell with 2mm thick walls. The base section is 12mm high, while the rear section rises to a maximum height of 65mm to accommodate a filter.
On the rear... | loose_fit = 2.0;
sliding_fit = 0.2;
friction_fit = 0.02;
wall_thickness = 2;
fan_max_size = 70;
fan_opening_diameter = 67;
fan_screw_spacing = 61;;
fan_screw_dia = 4.27;
max_pcb_width = 53.27;
pcb_height = 9.66;
pcb_depth = 10;
filter_width = 61;
shroud_depth = 20;
extractor_width = fan_max_size + wall_thickness*... | glb/cad_4a2b4e001128.glb |
Create a solder fume extractor housing with a total width of 74mm and a wall thickness of 2mm. The main body is a hollowed chamber with a depth of 94mm. The front profile is asymmetrical: the bottom section has a height of 10mm, while the rear section rises to a maximum height of 21.32mm.
At the rear, create a circula... | loose_fit = 2.0;
sliding_fit = 0.2;
friction_fit = 0.02;
wall_thickness = 2;
fan_max_size = 70;
fan_opening_diameter = 67;
fan_screw_spacing = 61;;
fan_screw_dia = 4.27;
max_pcb_width = 53.27;
pcb_height = 9.66;
pcb_depth = 10;
filter_width = 58;
shroud_depth = 20;
extractor_width = fan_max_size + wall_thickness*... | glb/cad_3855a8a6aec7.glb |
Create a strong customizable button by starting with a primary disc shape. Construct this main body by blending two cylinders: one with a diameter of 18mm and a height of 1.6mm, and a second, slightly thinner cylinder with a diameter of 16mm and a height of 3.6mm, centered on the same axis. From this solid form, remove... | $fn=100;
button_diameter = 18;
button_thickness = 3.6;
hole_diameter = 2.2;
hole_distance = 4;
difference() {
hull() {
cylinder(d=button_diameter, h=button_thickness-2, center=true);
cylinder(d=button_diameter-2, h=button_thickness, center=true);
}
translate([hole_distance/2,hole_distance... | glb/cad_40a257b1e71f.glb |
Create a floating bridge for a banjolin. The main body is a symmetrical block with a total height of 17mm. The top surface is flat, featuring four circular string notches spaced evenly across a total span of 31.4mm. These notches are drilled vertically into the top face with diameters corresponding to the following str... | BridgeHeight = 17;
StringSpacing = 31.4;
StringToEdge = 8;
EdgeToEnd = 6;
StringCount = 4;
s1 = 1.5;
s2 = 1.1;
s3 = 1.0;
s4 = 1.0;
s5 = 0.6;
s6 = 0.6;
s7 = 0.6;
s8 = 0.6;
s9 = 0.6;
s10 = 0.6;
s11 = 0.6;
s12 = 0.6;
width = StringSpacing/2+StringToEdge+EdgeToEnd;
strings = [s1,s2,s3,s4,s5,s6,s7,s8,s9,s10,s11,s12];
slo... | glb/cad_411c8d50cadd.glb |
Create a 90-degree modular mounting arm. Start with a central rectangular block that is 20mm wide and 20mm thick. Extend this block into a long arm with a total length of 100mm between the centers of its two joints.
At one end of the arm, create an outer joint consisting of two circular prongs, each 20mm in diameter a... | PART_TYPE = "ARM 90";
CLEARANCE_DRILL = 6.6;
NUT_CIRCUMSCRIBED_DIA = 13.1;
NUT_HOLDER_HEIGHT = 3;
NUT_HOLDER_THICKNESS = 1;
NUT_HOLDER_CHAMFER = 2.5;
JOINT_THICKNESS = 20;
JOINT_DIAMETER = 20;
JOINT_CLEARANCE = 0.1;
JOINT_ROTATION_CLEARANCE = 1;
JOINT_CHAMFER = 2;
BASE_WIDTH = 50;
BASE_HEIGHT = 50;
BASE_THIC... | glb/cad_fb5c024cd727.glb |
Create a reference model for a CJMCU-64 8x8 RGB NeoPixel Matrix. Start with a square base board measuring 65.2mm by 65.2mm with a thickness of 1.7mm. On the top surface of this board, place an 8x8 grid of square LED pixels, each 4.9mm wide, with a horizontal gap of 8.1mm and a vertical gap of 8.3mm between them, starti... | $fn = 125;
matrixSize = 65.2;
function getMatrixSize() = matrixSize;
matrix(matrixSize);
module matrix (size)
{
hole_inset = 1.5;
backboard_thickness = 1.7;
header_depth = 2.41;
translate([0,0,-header_depth])
headers(size, header_depth);
translate([0,0,backboard_thickness])
{
LEDs(... | glb/cad_e5e1d41e7281.glb |
Create a rectangular organizer tray with rounded corners, measuring 218mm in length, 142.1mm in width, and 18mm in height, with a corner radius of 5mm.
Inside this main body, carve out a large central rectangular void measuring 192mm by 130mm with a depth of 100mm and a corner radius of 10mm. At the far end of this v... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(218,142.1,18,5);
translate([-3.6,0,0]){
translate([6,6.05,14.6])
RoundedCube(192,130,100,10);
translate([198,32.35,1])
rotate([0,0,0])
cylinder(h=400, d=30, center=false);
translate([0,21.75,0]){
for(i = [0:2]){
translate([(i*51.9)+6,6.05,4.2])
Roun... | glb/cad_fcb1eace23d1.glb |
Create a rectangular organizer tray with rounded corners, measuring 218mm in length, 81.8mm in width, and 20mm in height, with a corner radius of 5mm.
Inside this main body, carve out a large rectangular void for cards starting at x=22.05mm, y=2.4mm, with dimensions of 97mm by 65mm and a depth of 100mm. Next to this,... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(218,81.8,20,5);
translate([4.65,0,0]){
translate([17.4,2.4,1])
cube([97,65,100]);
FingerHoleBottom(65.9,0,30,20,5,2.4);
translate([116.8,0,2]){
translate([0,7.9,1])
for(i = [0:3]){
translate([(i*19),0,0])
cube([17.5,66,62]);
}
translate([0,-1,12])
c... | glb/cad_c20ef4671235.glb |
Create a rectangular organizer tray with overall dimensions of 218mm in length, 57mm in width, and 36mm in height, featuring rounded corners with a 3mm radius.
Within this main body, carve out three identical finger holes for card access. Each hole should be 41.6mm wide, 20mm deep, and 30mm high, with a bottom radius... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(218,57,36,3);
for(i = [0:2]){
translate([(i*67.4),0,0])
FingerHoleBottom(41.6,20,30,57,5,2.4);
translate([(i*67.4)+26.6,0,0])
cube([30,20,100]);
}
translate([0,0,27])
cube([218,10,100]);
translate([45.3,36,10])
RoundedCube(60,8,100,2);
translate([60... | glb/cad_6eff870bfe1c.glb |
Create a game organizer tray with a main body measuring 69.8mm wide, 100.8mm long, and 18mm high, featuring rounded corners with a 3mm radius. Attached to the main body, add a smaller rectangular section measuring 22mm by 17.8mm and 18mm high at the top edge. Incorporate a thin vertical wall measuring 2.4mm by 30mm by ... | $fn=200;
include <js500Functions.scad>
difference(){
union(){
RoundedCube(69.8,100.8,18,3);
translate([0,98.4,0])
RoundedCube(22,17.8,18,3);
translate([0,80,0])
cube([2.4,30,18]);
translate([3,98.4,0])
difference(){
cube([31.4,17.8,2]);
translate([28.4,14.8,-1])
rotate([0,0,0])
linear_extrude(218)
difference(){squ... | glb/cad_b35e3c8b3af5.glb |
Create a game organizer tray with a base footprint of 69.8mm by 100.8mm and a height of 18mm. The main body should be a rounded cube with a corner radius of 3mm. Attached to the top edge of the main body, centered along the width, add a rectangular extension measuring 2.4mm by 30mm by 18mm. Additionally, add a small ro... | $fn=200;
include <js500Functions.scad>
difference(){
union(){
RoundedCube(69.8,100.8,18,3);
translate([0,98.4,0])
RoundedCube(22,17.8,18,3);
translate([0,80,0])
cube([2.4,30,18]);
translate([3,98.4,0])
difference(){
cube([31.4,17.8,2]);
translate([28.4,14.8,-1])
rotate([0,0,0])
linear_extrude(218)
difference(){squ... | glb/cad_532576ededb5.glb |
Create a rectangular tray with rounded corners, measuring 218mm in length, 81.8mm in width, and 21mm in height, with a corner radius of 5mm.
On the left and right short ends, center a vertical cylindrical hole with a diameter of 30mm that passes completely through the height of the tray to serve as finger holes.
In... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(218,81.8,21,5);
translate([0,40.9,-1])
rotate([0,0,0])
cylinder(h=400, d=30, center=false);
translate([3,23.2,-1])
rotate([0,0,90])
linear_extrude(60)
difference(){square(3);circle(3);}
translate([3,58.6,-1])
rotate([0,0,180])
linear_extrude(60)
diffe... | glb/cad_085a6693a4f8.glb |
Create a rectangular organizer tray with rounded corners, measuring 43mm in width, 76mm in length, and 20mm in height, with a corner radius of 5mm.
Within this base, carve out two vertical cylindrical holes to hold player pieces. The first hole is centered at coordinates (11.55, 11.15) with a diameter of 17.5mm and a... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(43,76,20,5);
translate([11.55,11.15,6.4])
rotate([0,0,0])
cylinder(h=400, d=17.5, center=false);
translate([11.55,0,-1])
rotate([0,0,0])
cylinder(h=400, d=15, center=false);
translate([31.45,11.15,6.4])
rotate([0,0,0])
cylinder(h=400, d=17.5, center=f... | glb/cad_a11af14ccc4f.glb |
Create a game organizer tray by starting with a rounded rectangular base measuring 218mm wide, 142.1mm deep, and 16mm high, with corner radii of 5mm.
Subtract two vertical cylindrical finger holes with a diameter of 34mm, centered at a depth of 71.05mm, positioned at the far left and far right edges of the base.
In... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(218,142.1,16,5);
translate([0,71.05,-1])
rotate([0,0,0])
cylinder(h=400, d=34, center=false);
translate([218,71.05,-1])
rotate([0,0,0])
cylinder(h=400, d=34, center=false);
translate([41.65,0,0]){
for(i = [0:2]){
intersection(){
translate([(i*33.7)+1... | glb/cad_40a7c5e06aea.glb |
Create a flat rectangular plate measuring 108mm in width, 64mm in depth, and 2.6mm in height. From this base, remove two vertical rectangular sections to create slots: one measuring 5.6mm by 48mm by 10mm positioned at the front-left, and another of the same dimensions positioned at the front-right at x=102.4.
Addition... | $fn=200;
difference(){
cube([108,64,2.6]);
cube([5.6,48,10]);
translate([102.4,0,0])
cube([5.6,48,10]);
translate([5.1,3,0]){
translate([48.9,61,-1])
rotate([0,0,0])
cylinder(h=400, d=65, center=false);
translate([9.5,53,-1])
rotate([0,0,0])
linear_extrude(250)
difference(){square(8);circle(8);}
translate([88.4... | glb/cad_85a658e1f50c.glb |
Create a game organizer tray by starting with a rounded rectangular base measuring 218mm in length, 142.1mm in width, and 13mm in height, with a corner radius of 5mm.
From this base, remove a large rectangular section for a turn order tile measuring 211mm by 51mm by 100mm, positioned at coordinates (3.5, 2.4, 10.2). ... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(218,142.1,13,5);
translate([3.5,2.4,10.2])
cube([211,51,100]);
translate([36.1,0,0]){
translate([0,2.4,5.2])
RoundedCube(47,27.5,100,2);
FingerHoleBottom(23.5,0,30,13,5,2.4);
translate([49.4,2.4,3])
RoundedCube(47,27.5,100,2);
FingerHoleBottom(72.9... | glb/cad_4ceae6f5aefd.glb |
Create a rectangular tray with rounded corners, measuring 218mm in length, 81.8mm in width, and 22mm in height, with a corner radius of 5mm.
Inside this main body, carve out a large rectangular void measuring 100.5mm by 77mm, positioned 32.4mm from the left edge and 2.4mm from the front edge, with a depth of 100mm.
... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(218,81.8,22,5);
translate([10.15,0,0]){
translate([32.4,2.4,1])
cube([100.5,77,100]);
translate([32.4,40.9,-1])
rotate([0,0,0])
cylinder(h=400, d=30, center=false);
translate([135.8,23.2,1])
rotate([0,0,90])
linear_extrude(60)
difference(){square(3);... | glb/cad_6e1981957f38.glb |
Create a rectangular organizer tray with overall dimensions of 218mm in length, 181.2mm in width, and 27mm in height, featuring rounded corners with a 3mm radius.
Within this main volume, carve out several storage compartments. First, create a large rectangular void measuring 162mm by 77mm with a depth of 100mm, posi... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(218,181.2,27,3);
translate([9.1,2.4,1])
cube([162,77,100]);
translate([171.1,40.9,-1])
rotate([0,0,0])
cylinder(h=400, d=35, center=false);
translate([19.1,12.4,-1])
RoundedCube(122,57,100,5);
for(i = [0:2]){
translate([(i*67.4)+9.1,81.8,1])
cube([65... | glb/cad_176e9e0528bd.glb |
Create a Multi-Row DuPont Contact Jig. Start with a rectangular base block 12mm thick, with a width of 26.2mm (calculated as 8 pins * 2.55mm pitch + 6mm) and a depth of 8.9mm (calculated as 2.9mm slot width + 6mm). Apply a 1.5mm fillet radius to all edges of the base.
On the top surface, create a series of vertical sl... | num_rows = 1;
pins_per_row = 8;
active_pins = [
[2, 3, 5, 6, 8],
];
active_needles = [
[1, 2, 3, 4, 5, 6, 7, 8],
];
show_dupont_pins = true;
pitch = 2.55;
slot_width = 2.9;
slot_height = 18;
needle_height = 25;
needle_radius = 1.5 / 2;
base_width = (pitch * pins_per_row) + 6;
base_thickness = 12;
base_depth ... | glb/cad_a12970c83d5c.glb |
Create a desktop shelf organizer consisting of a flat rectangular base with four cylindrical posts. Start by creating a central rectangular plate measuring 114.3mm in width, 139.7mm in depth, and 3.175mm in height. At each of the four corners of this plate, remove a cylindrical section with a radius of 101.6mm and a he... | a=25.4;
translate([0,0,4.407*a])rotate([0,180,0])difference(){translate([0,0,0.065*a])cube([4.5*a,5.5*a,0.125*a],center=true);
translate([2*a,2.5*a,0.06375*a])cylinder(4*a,0.135*a,0.135*a);
translate([2*a,-2.5*a,0.06375*a])cylinder(4*a,0.135*a,0.135*a);
translate([-2*a,2.5*a,0.06375*a])cylinder(4*a,0.135*a,0.135*a);
t... | glb/cad_dd269b69a5c8.glb |
Create a Small ToughCase+ bracket with a total height of 47mm and a wall thickness of 4mm. The main body is a hollow rectangular sleeve designed to fit a case with a width of 92mm and a depth of 48mm.
The bracket features a central rectangular cutout of 92mm by 48mm. On the top edge, add a small hook with a thickness... | version="V1.0";
COUNTERBORE=0;COUNTERSINK=1;INSERTNUT=2;
$dl=0.01;
bracket_height = 47;
wall_thickness = 4;
reinforce_thickness = 2;
reinforce_width = 48;
detent_dia = 3;
REINFORCEMENT = [reinforce_width,reinforce_thickness];
case_width = 92;
case_depth = 48;
catch_thickness = 2.5;
overhang=3.5;
CASE_DEF = ... | glb/cad_4eb0f2ed981f.glb |
Create a double-sided mounting bracket with a total thickness of 15mm. The overall footprint is a right-angle polygon with a width of 15mm and two perpendicular sides each measuring 50mm. The bracket features a 4mm wall thickness around the perimeter.
Remove material from the center of the block to create a recessed c... | module bracketBase(width, length_x, length_y, wall){
translate([0, 0, -width/2 - wall])
linear_extrude(width + 2 * wall)
polygon([
[0,0],
[0, length_y],
[wall, length_y],
[length_x, wall],
[length_x,0],
[0,0]
]);
}
module screwHole(shankDia, headDia, wall... | glb/cad_1a90e9af232c.glb |
Create a 10-inch rack mount for a UPS consisting of two identical mirrored brackets, a front and a back.
For each bracket, create a rectangular faceplate measuring 254mm in width and 133.5mm in height (comprising three 44.5mm units). The faceplate has a thickness of 4mm. On each vertical edge of the faceplate, place ... | size= [160, 101, 22];
include <BOSL/constants.scad>
use <BOSL/metric_screws.scad>
use <BOSL/threading.scad>
module faceplate(u=1, hex=false) {
difference() {
minkowski() {
translate([3, 0, 3])
cube([254-6, 4, u*44.5-6]);
rotate([90, 0, 0])
cylinder(0.001, 3, 3);
... | glb/cad_625756fa3734.glb |
Create a BTT Relay mount for a Voron V0. Start with a base plate measuring 82.78mm by 38.48mm with a thickness of 2.4mm. Along one long edge, add a foot that is 2.4mm thick and 22.4mm high.
On the top surface, create four cylindrical mounting pillars. Each pillar has a diameter of 8mm and a height of 4.4mm. Position t... | plate_thick = 2.4;
foot_thick = 2.4;
isolation_thick = 1.4;
stiffner_extra_y = 4;
btt_mth_x = 74.17;
btt_mth_y = 29.21;
btt_mth_leg_dia = 8;
btt_mth_insert_dia = 4.5;
btt_pcb_x = 80.32;
btt_pcb_y = 36.19;
btt_pcb_z = 18;
btt_pcb_under_z = 2;
btt_pcb_isolation = 1;
btt_pcb_thickness = 1.6;
btt_pcb_tolerance_x = 0.9;
bt... | glb/cad_7c292fac3f2a.glb |
Create a fan adaptor consisting of two square plates connected by a tapered transition. The base is a square plate 80mm wide and 5mm thick with rounded corners (3mm radius). This base plate has a central circular cutout and four 4.5mm diameter mounting holes located 70mm apart from each other in a square pattern.
The ... | PLATE_THICKNESS = 5;
PLATE_1_SIZE = 56;
PLATE_1_OFFSET = 9;
PLATE_1_HOLE_SPACE = 40;
PLATE_2_SIZE = 80;
PLATE_2_HOLE_SPACE = 70;
PLATE_2_OFFSET = 3;
PLATE_Y_OFFSET = 40 - 25 - 8;
PLATE_DISTANCE = 20;
DRILL_DIA_2 = 4.5;
DRILL_DIA_1 = 3.5;
CHAMFER = 3;
module rect_mirror(){
children();
mirror([1,0,0])
childr... | glb/cad_26b747a82dde.glb |
Create an animatronic tail end piece based on a sphere with a diameter of 30mm. Flatten the bottom of the sphere by intersecting it with a cube of 60mm width and depth, centered on the X and Y axes, to create a flat base.
Through the center of the model, create a vertical hole with a diameter of 3.6mm to accommodate t... | d = 60;
collar_drill = 7.2;
set_screw_depth = 5;
set_screw = 4;
set_screw_head = 7;
elastic_dia = 5;
elastic_knot = 10;
cable_dia = 3;
cable_rad = 20;
m = 3;
s = 5.9;
module cable_set(){
translate([0, 0, 0]) cylinder(d, cable_dia/2, cable_dia/2, true, $fn=30);
translate([m + cable_dia/2, 0, 0]) cube([m,s,d... | glb/cad_2adeb7ecee35.glb |
Create a modular animatronic spine link. Start with a primary cylindrical disc with an outer diameter of 60mm and a height of 4mm. Centered within this disc, add a smaller concentric cylinder (the cable collar) with an outer diameter of 14.2mm and a total height of 19mm (15mm extending above the base).
Create a centra... | od = 60;
h = max(4, od/20);
collar_id = 7.2;
collar_od = collar_id + 7;
collar_h = 15;
set_screw_drill = 3;
set_screw_h = collar_h/2;
captive_nut = true;
captive_nut_screw_h = 5;
captive_nut_h = 6.1;
captive_nut_w = 3;
captive_nut_drill = 3.3;
captive_nut_tol = 0.5;
num_holes = 4;
hole_offset_angle = 45;
hole_... | glb/cad_73ccbb19fa62.glb |
Create a Cable Tie Anchor by constructing a base block with a tapered profile. Start with a rectangular base measuring 15mm by 15mm with a thickness of 1.6mm and corners rounded to a 0.5mm radius. Extrude the center of the block upwards to a top surface measuring 8mm by 8mm, also with 0.5mm rounded corners, reaching a ... | SLOT_WIDTH = 6;
SLOT_HEIGHT = 2;
BASE_SIZE = 15;
TOP_SIZE = 8;
THICKNESS = 1.6;
BASE_RADIUS = 0.5;
TOP_RADIUS = 0.5;
module __Customizer_Limit__ () {}
HOLE_OFFSET = THICKNESS;
HEIGHT = SLOT_HEIGHT + 2 * THICKNESS;
module rounded_sq(x, r){
linear_extrude(0.01)
hull(){
translate([x/2,x/2,0])
... | glb/cad_889cc42d1d22.glb |
Create a hard drive rack by starting with a solid rectangular block measuring 118mm wide, 101mm deep, and 30mm high. Apply a 3mm fillet or radius to all exterior edges to soften the corners. Carve ten identical rectangular slots into the top surface to hold drives. Each slot should be 10mm wide, 101mm deep, and 71mm hi... | difference()
{
minkowski()
{
cube([12*10-2,101,30]);
sphere(r=3,$fn=60);
}
for(i = [0 : 9])
{
translate([12*i,0,0])
disk();
}
}
module disk()
{
cube([9+1,100+1,70+1]);
} | glb/cad_0b851d27357f.glb |
Create a storage box for SODIMM modules. Start by creating a solid rectangular block with a base measuring 42mm by 69mm and a height of 15mm. Apply a 3mm fillet or rounding to all exterior edges and corners to soften the shape. Inside this block, carve out a central rectangular cavity to create walls. Within this cavit... | difference()
{
minkowski()
{
cube([40+4-2,71-2,15]);
sphere(d=3,$fn=60);
}
translate([-1,-1,0])
for(i= [0:9])
translate([4+i*4,67.2/2+2,15.5])
sodimm();
}
module sodimm()
{
union()
{
cube([1.5+.2,69+.2,30], center = true);
translate([0,0,1.5])
cube([3.5+.51,65,27], c... | glb/cad_30f56d6c7dac.glb |
Create a Mennekes Type 2 connector holder. The main body is a thick, circular base with a radius of 39.5mm and a height of 1.5mm. From this base, extend a curved, semi-cylindrical cradle that arcs upward and backward to hold the charging connector.
The cradle's interior should be hollowed out to fit the connector, fea... | ScrewDiameter = 5.5;
ScrewHeadDiameter = 12;
difference(){
union(){
rotate([40,0,0]) translate([0,31.5+8,0]){
difference(){
terminal();
hull(){
translate([-6,0,5.5+5]) rotate([-90,0,0]) cylinder(h=40, d=2, center=false, $fn=30);
... | glb/cad_835191f3ccea.glb |
Create a modular drawer organizer box with a footprint of 40mm by 120mm and a total height of 45mm. The main body is a rectangular prism with walls 0.2mm thick.
At the top of the box, centered along one of the shorter 40mm sides, integrate a handle. The handle is formed by removing a series of small, diagonal slots f... | grid_size = 40;
size=[1,3];
spike = [5,5];
strip=[25,20,1];
height = 45;
label = 15;
gap = 0.2;
mode = "box";
R=spike[0]/sqrt(3);
echo(cos(30));
h = size[0]*grid_size;
w = size[1]*grid_size;
delta = R/2;
module line(length){
scale([1,1,spike[1]/(1.5*R)])
rotate([0,-90,0])
translate([delta,0,0])
cylinder(r=... | glb/cad_7e383792c821.glb |
Create a Tic-Tac-Toe game set consisting of a game board and playing pieces, all with a uniform thickness of 4mm.
Construct the game board as a grid of two parallel horizontal lines and two parallel vertical lines. Each line should have a width of 15mm and a length of 210mm, with the lines spaced to create a 3x3 grid... | line = 15.0;
_square = 60.0;
depth = 4.0;
number_of_x = 5;
number_of_o = 4;
magnets = true;
your_mag_r = 4.0;
your_mag_d = 2.0;
tolerance = 0.0;
circle_r = line/2;
max_width = _square*3 + line*2;
max_height = _square*3 + line*2;
mag_r = your_mag_r + tolerance/2;
mag_d = your_mag_d + tolerance;
echo(depth, mag_... | glb/cad_143a5da370ed.glb |
Create a Tactile Switch Button starting with a square base measuring 10mm by 10mm with rounded corners of 1mm radius. Extrude this base to a height of 4.5mm. In the center of the top surface, add a tapered cylindrical button that starts with a base radius of 3.5mm and narrows to a top radius of 2.3mm over a height of 5... | difference()
{
union()
{
color("#555555")
linear_extrude(4)
base();
color("#AAAAAA")
translate([0,0,4])
linear_extrude(0.5)
base();
color("#555555")
translate([5,5,0])
minkowski()
{
cylinder(h=5.5, r1=3.5, r2=2.3, center=false, $fn=60);... | glb/cad_74a79e230759.glb |
Create a cap for solar panel mounting brackets by designing a truncated cone with a height of 6.2mm. The base of the cone should have a diameter of 16mm, tapering upward to a top diameter of 11mm. From the center of the flat top surface, remove a hexagonal hole that extends 3.3mm deep into the body. This hexagonal cuto... | rotate([180,0,0])
difference(){
cylinder(h=6.2, d1=12+4, d2=11, $fn=120, center=false);
translate([0,0,1.7]) cylinder(h=3.3, d1=7.9/sin(60), d2=7.8/sin(60), $fn=6, center=false);
translate([0,0,-0.01]) cylinder(h=1.7+0.02, d=12, $fn=60, center=false);
} | glb/cad_1f160bb7e74f.glb |
Create a bolt knob consisting of a cylindrical head and a tapered base. Start with a main cylinder 70mm in diameter and 21mm in height. Round the top and bottom edges of this cylinder with a 0.5mm fillet. To create the grip, remove six symmetrical vertical semi-cylindrical notches from the outer perimeter; each notch s... | DIAMETER = 70;
NUT_CIRCUMSCRIBED_DIA = 22.44;
SHANK_DIAMETER = 13;
NUT_HEIGHT = 20;
SPACER_THICKNESS = 6;
WALL_THICKNESS = 4;
FILLET = 0.5;
NUM_CUTS = 6;
KNOB_HEIGHT = NUT_HEIGHT + 2 * FILLET;
OVERALL_HEIGHT = KNOB_HEIGHT + SPACER_THICKNESS;
$fs=0.1;
module _knob_base(){
NO_FILLET_HEIGHT = KNOB_HEIGHT- FILLET * ... | glb/cad_2999a82ee18f.glb |
Create a Parkside X20V charger holder for an IKEA SKADIS board. Start with a main rectangular plate that is 116mm high, 14mm wide, and 2.6mm thick.
At the back of the plate, add two mounting hooks designed to fit into SKADIS holes. These hooks should be spaced 40mm apart vertically. Each hook consists of a cylinder w... | $fa = 1;
$fs = 0.4;
nit = 0.01;
include <BOSL2/std.scad>
skadis_pitch = 40;
skadis_hole_dia = 5-0.4;
skadis_hole_len = 15;
skadis_thick = 5;
hook_height = 10;
thick = 2.6;
height = 116;
width = 14;
plg_hole_dia = 6-0.2;
plg_hole2_dia = 8;
plg_thick = 1.6;
plg_deep = 4.4;
plg_pitch = 76.2;
plg_hole_gap = 16;
plg_h... | glb/cad_9f7206590650.glb |
Create a Wall-Mount Game Case Holder by starting with a solid rectangular block measuring 108mm wide, 172.5mm deep, and 14.5mm thick. Hollow out the center of this block to create a pocket for a game case, leaving a wall thickness of 1mm on all sides. The interior cutout should be 106mm wide and 170.5mm deep. To allow ... | CASE_DIMENSIONS = [106, 170.5, 11.5];
WALL_SIZE = 1;
CLIP_SIZE = 1.5;
OPENING = "TOP";
COUPLER_WIDTH = 2;
ENABLE_TOP_COUPLER = true;
ENABLE_BOTTOM_COUPLER = true;
ENABLE_LEFT_COUPLER = true;
ENABLE_RIGHT_COUPLER = true;
holder(
CASE_DIMENSIONS,
WALL_SIZE,
CLIP_SIZE,
OPENING,
COUPLER_WIDTH,
ENABLE_TOP_COUPLER,
... | glb/cad_bd82efd5a02a.glb |
Create a wardrobe pipe holder with a total depth of 20mm and a height of 20mm. The main body is a block with a semi-circular cutout to accommodate a tube.
Start by creating a cylindrical shell with an outer diameter of 35mm (25mm tube size plus 5mm border thickness on each side) and an inner diameter of 25mm, extendi... | Tube_Size = 25;
Border_Thickness = 5;
Base_Thickness = 5;
Holder_Depth = 20;
Holder_Heigth = 20;
Bolt_Size = 4;
Second_hole_shift = -3;
p_ts = Tube_Size;
p_brt = Border_Thickness;
p_bst = Base_Thickness;
p_hd = Holder_Depth;
p_hh = Holder_Heigth;
p_bs = Bolt_Size;
p_shs = Second_hole_shift;
c_accuracy = 0.3;
rotat... | glb/cad_41e7c6f5776f.glb |
Create a domino tray by starting with a central rectangular block measuring 250mm in length, 120mm in width, and approximately 11.5mm in height. Carve a wide, shallow slot across the top length of the block that is 20mm deep and angled at 60 degrees to hold dominoes.
At both ends of the tray, integrate print-in-place... | $fn=30;
tol=0.25;
foot_t=3;
foot_w=10;
slot_depth=20;
dom_t=8;
slot_ang=60;
rl=250;
rw=120;
rt=foot_t*2+1+slot_depth*cos(slot_ang)+1;
foot_l=rw*sin(slot_ang-5);
rack();
module rack()
{
difference()
{
translate([0,0,rt/2])cube([rl,rw,rt],center=true);
translate([-rl/2+foot_t*1.5,rw/2-foot_w,0])f... | glb/cad_7984a611e07c.glb |
Create a soda stream replacement nut by starting with a hexagonal prism that has a radius of 8mm, a height of 10mm, and 6 flat sides. Inside this prism, center a vertical threaded hole with a diameter of 9.5mm and a pitch of 7.5mm, extending through the full 10mm height. Remove a rectangular block measuring 3.5mm wide,... | use <threads.scad>
q = 32;
difference() {
ScrewHole(9.5, 7.5, [0, 0, 10], [180,0,0], 0.9)
cylinder(r=8, h=10, $fn=6);
translate([-3.5/2, 0, -1]) {
cube([3.5, 20, 7]);
}
translate([0, 0, -1]) {
cylinder(r=3.5/2, h=10, $fn=q);
}
translate([0, 0, 1.5]) {
cylinder(h=2, r1=3.5/2, r2=8.5/2, $fn ... | glb/cad_c837fa42b4f3.glb |
Create an Optimized Perforated Board by starting with a solid rectangular base measuring 60mm in width, 100mm in length, and 2mm in height.
On the top surface of this base, create a grid of circular holes, each with a diameter of 1.0mm. The holes should be spaced exactly 2.54mm apart from each other both horizontally... | Metric_or_Imperial_Units = 1;
Board_Width = 60;
Board_Length = 100;
Board_Height = 2;
Hole_Spacing = 2.54;
Hole_Diameter = 1.0;
Roundedness_of_Holes = 100;
X_Origin_Offset = 1.0;
Y_Origin_Offset = 1.0;
spacing = Hole_Spacing * Metric... | glb/cad_8522d2c7d2da.glb |
Create a gator instrument clip for surgical tools. Start by creating a central rectangular bar 50mm long with a height of 4mm. At both the left and right ends of this bar, create a C-shaped loop. Each loop is formed by rotating a 2mm by 4mm rectangle around a center point to create a ring with an inner radius of 3.5mm;... | $fn = $preview ? 60 : 180;
length = 50;
height = 4;
thin = 1;
loopId = 3.5;
loopThicc = 2;
label = "SCISSORS";
module loop() {
rotate( [ 0, 0, -70 ] )
rotate_extrude( 320 )
translate( [ loopId, 0, 0 ] )
square( [ loopThicc, height ] );
}
loop();
difference() {
union() {
cube( [ length, ( loopId + l... | glb/cad_fe819c284b9f.glb |
Create a custom NAS case for a Rockpro64 board consisting of a main base and a top section. The main base is a rectangular box with outer dimensions of 83.5mm width, 131.15mm depth, and 27mm height, featuring 2mm thick walls. Inside this base, carve out a central cavity of 79.5mm by 128.95mm to accommodate the board an... | include <BOSL/constants.scad>
use <BOSL/masks.scad>
use <BOSL/transforms.scad>
tolerance = 0.2;
walls = 2;
tabs_d = 20;
extra_d = 2;
module __Customizer_Limit__() {}
$fa = 0.1;
$fs = 0.1;
screw_hole_r = 3.25/2;
screw_hole_off = 4.338;
pin_r = screw_hole_r + walls;
extra_depth = walls*3;
board_w = 79.5 + toleran... | glb/cad_0dc27dd57a52.glb |
Create a rectangular plaque for the European Union flag measuring 75mm wide, 50mm high, and 1mm thick. Centered on the top face of this plaque, arrange twelve five-pointed stars in a perfect circle. Each star should have an outer radius of approximately 2.78mm and a thickness of 0.5mm, protruding slightly from the base... | $fs=.2;$fa=1;
h=50;
w=50*3/2;
base=1;
star=.5;
lap=.2;
color("#003399")difference(){
linear_extrude(base)offset(1)square([w-2,h-2],true);
translate([0,0,base-lap])linear_extrude(star)Star();
}
translate([0,0,base-lap])color("yellow"){
linear_extrude(star)Star();
translate([0,0,star])scale([1,1,.5])roof(method ="strai... | glb/cad_e15550f553a9.glb |
Create a Ceiling Mount consisting of two interlocking parts.
For the first part, create a circular base plate with a diameter of 55mm and a thickness of 1.4mm. On the top surface of this plate, center a cylinder with a 20mm diameter and a height of 3mm. Around this central cylinder, add three equally spaced mounting ... | plate_thickness = 1.4;
plate_bevel = 1;
screw_count = 3;
screw_hole_diameter = 4;
screw_hole_recess = 1;
screw_hole_recess_bevel = 3;
core_diameter = 20;
core_height = 3;
plate_a_padding = 35;
outer_ring_width = 3;
plate_b_padding = 25;
overhang_width = 4;
overhang_bevel = 30;
overhang_count = 3;
overhang... | glb/cad_f5c833dc225c.glb |
Create a KUSBA mount plate by starting with a rectangular block 35mm long, 27mm deep, and 6mm thick. Center the block on the origin. Round the four corners of the block using a cylinder with a diameter of 39.2mm centered on the same axis.
Remove a large circular hole from the center of the plate with a radius of 15.5m... | spacing = 24;
long = 35;
deep = 27;
blah = 5.5;
drop = 6.0;
insert = 4.2;
radius = insert/2.0;
offx = spacing / 2;
offy = (deep / 2) - blah;
intersection() {
difference() {
cube([long, deep, drop], center=true);
color("#40AFEE") {
translate([-offx, -offy, 0]) {
cylind... | glb/cad_81296bed8fb2.glb |
Create a flashlight tripod mount consisting of a cylindrical base and a hollow sleeve. Start by creating a solid cylinder for the base with a diameter of 30mm and a height of 27.5mm.
On top of this base, construct a hollow vertical sleeve to hold the flashlight. This sleeve should have an outer diameter of 33mm (27mm... | include <BOSL2/std.scad>
include <BOSL2/threading.scad>
t=1.03;
flashlight_height=70;
flashlight_diameter=27;
insert_height=17.5;
insert_diameter=10.3;
insert_head_diameter=11.75*t;
insert_head_height=2.25;
base_diameter=30;
base_height=27.5;
wall_thickness=3;
extra_clearance=10;
translate([0,0,base_height-10+wall_th... | glb/cad_68a06a2bf458.glb |
Create a parametric button with a total diameter of 20mm and a base height of 2mm. The bottom outer edge should feature a chamfer of 0.4mm. Along the top outer perimeter, add a raised lip that is 3mm wide and 1.0mm high.
In the center of the button, create a raised circular section with a diameter of 14mm and a heigh... | button_diameter = 20.0;
button_height = 2.0;
bottom_chamfer = 0.4;
lip_width = 3.0;
lip_height = 1.0;
center_rounded = "F";
center_width = 14.0;
center_height = 1.0;
hole_count = 4;
hole_diameter = 2;
hole_offset = 3;
$fa=4 + 0;
$fs=0.2 + 0;
$but_rad = button_diameter / 2;
$lip_rad = min(lip_width / 2, butt... | glb/cad_33a2915f5ed7.glb |
Create a protective case for a CH341A programmer. Start by constructing a solid block with a base footprint of 30mm by 13mm and a height of 17mm. The corners of this block should be rounded with a radius of 1.5mm. From this solid, remove several internal volumes to create a hollow shell. Carve out a main central cavity... | $fn=180;
difference() {
translate([1, 1.5, 0]) {
linear_extrude(17) minkowski() {
square([27, 10]);
circle(d=3);
}
}
translate([-1.5, 0.5, 15]) rotate([-90, 0, 0]) {
translate([2, 1, 5.4]) cube([28, 18, 1.7]);
translate([9.5, -5, 5.4]) cube([12.5, 19, 5]);
translate([8.5, 1.5, 4.5... | glb/cad_fc2d4dd49c01.glb |
Create a screw post fix consisting of two stacked cylindrical sections. Start by creating a wide, thin base cylinder with a diameter of 10mm and a height of 0.5mm. Centered on top of this base, place a second cylinder with a diameter of 8.5mm and a height of 2.2mm. Bore a vertical hole through the center of the entire ... | outer_d = 8.5;
screw_d = 3;
hole_d = 6;
height = 2.2;
top_thickness = 1.25;
bottom_d = 10;
bottom_h = 0.5;
union() {
difference() {
union() {
cylinder(h = height, d = outer_d, $fn = 50);
cylinder(h = bottom_h, d = bottom_d, $fn = 50);
};
cylinder(h = height, d = scr... | glb/cad_0926ce543d94.glb |
Create a lampshade adapter plate consisting of two concentric cylindrical sections. First, create a wide base disk with a diameter of 60mm and a height of 2mm. Centered on top of this base, add a second smaller cylinder with a diameter of 40mm and a height of 4mm. Finally, bore a clean circular hole through the center ... | socketDiam = 28.5;
ikeaInner = 40;
ikeaOuter = 60;
stepInnerDiam = 45;
stepHeight = 2;
thickness = 2;
$fn = 50;
stepWasher = true;
difference()
{
if(stepWasher)
union()
{
cylinder(d = ikeaOuter, h = thickness);
cylinder(d = ikeaInner, h = thickness + stepHeight);
}
else
{
cylinder(d = stepInner... | glb/cad_34249bd236db.glb |
Create a Dimple Lockpick Handle by constructing a knurled cylinder with a length of 100mm and a diameter of 9mm. Cap one end of the cylinder with a hemisphere of the same 4.5mm radius to create a rounded rear. Centered on the flat opposite end, carve out a rectangular slot that is 1.2mm wide, 4mm long, and 18mm deep to... | handleLen = 100;
handleRadius = 4.5;
pickSlotLength = 4;
pickSlotWidth = 1.2;
pickSlotDepth = 18;
use <knurledFinishLib_v2.scad>
difference(){
union() {
knurl(k_cyl_hg = handleLen, k_cyl_od = (handleRadius*2), s_smooth = 80);
translate([0,0,handleLen])
sphere(r=handleRadius, $fn=100)... | glb/cad_57ef3df4de05.glb |
Create a Gridfinity-compatible storage bin for Bernina Serger Spool discs. The base is a single 42mm x 42mm grid unit with a total height of 126mm (3 units high). The walls should have a thickness of 0.95mm and the corners should have a radius of 3.75mm. Incorporate four circular magnet holes in the bottom corners, eac... | include <gridfinity_modules.scad>
$fn = $preview ? 32 : 64;
default_chambers = 1;
default_withLabel = "disabled";
default_labelWidth = 0;
default_fingerslide = false;
default_magnet_diameter = 6.0;
default_screw_depth = 6;
default_floor_thickness = 1.2;
default_wall_thickness = 0.95;
default_hole_overhang_reme... | glb/cad_046fc9f1bf94.glb |
Create a Filament Dry Box Thermometer/Hygrometer Mount by starting with a solid rectangular block measuring 47mm in width, 15mm in depth, and 28mm in height. Hollow out the center of this block to create a shell with walls 1mm thick, leaving the front face open; the interior cavity should measure 45mm by 16mm by 26mm, ... | difference() {
cube([47, 15, 28]);
translate([1, -0.5, 1])
cube([45, 16, 26]);
$fn=25;
rotate([270, 0, 0]) {
translate([1+4, -1.25, -0.5])
cylinder(h=11, d=1, center=false);
translate([1+4+37, -1.25, -0.5])
cylinder(h=11, d=1, center=false);
... | glb/cad_1c7c7a0785ee.glb |
Create an instant thermometer probe hub by starting with a main cylinder 33.5mm in diameter and 7.1mm high. Hollow out the center of this cylinder with a smaller concentric hole 28.8mm in diameter, starting from a height of 2mm from the base and extending through the top. Remove a vertical cylindrical core 5.5mm in dia... | lipt = .8;
od = 33.5;
id = 28.8;
t = 7.1;
base = 2;
screwd = 5.5;
probed = 3.5;
$fn=72;
difference() {
union() {
cylinder(d=od, h=t);
translate([0,(t-od)/2,t/2])
rotate([0,90,0]) cylinder(d = t, h=od/2);
translate([0,0,-lipt]) difference() {
cylinder(d=od-lipt*2, h=t+lipt*2);
cylinder(d=od-lipt*4, h=t... | glb/cad_c56902e7d22b.glb |
Create a Voron Skirt-Insert USB Plug Holder by constructing a hexagonal ring with a hollow rectangular center. Start by creating a hexagonal prism with a diameter of 12.3mm and a height of 10.5mm. The outer walls should be formed by extruding a profile that creates a flat base and a slightly flared top edge, where the ... | d=12.3;
difference()
{
rotate(30)
rotate_extrude($fn=6)
polygon([
[0,0],
[d,0],
[d+1.5,1.5],
[d+1.5,3],
[d,3],
[d,3],
[d,9.5],
[d+.3,10],
[d,10.5],
[0,10.5],
]);
r=1;
minkowski()
{
translate([0,0,10.5/2... | glb/cad_51c9bd5559fd.glb |
Create a Parametric Wall Plate Cable Pass Through. Start with a square base plate measuring 90mm by 90mm with a thickness of 4mm and rounded edges with a 2mm radius. Centered on this plate, construct a hollow quarter-sphere channel with an outer radius of 20mm and a wall thickness of 3mm. The channel should be open at ... | base_width = 90;
base_thickness = 4;
base_edge_radius = 2;
channel_radius = 20;
wall_thickness = 3;
hole_diameter = 3;
hole_distance = 60;
chamfer_diameter = 6;
chamfer_depth = 2;
fillet_radius = 3;
difference() {
union() {
base_plate();
translate([0, 0, base_thickness/2])
quarter_... | glb/cad_0aefdf463331.glb |
Create a seed starter label for a storage bin. Start by creating a rectangular base plate measuring 60mm in length, 11mm in width, and 1mm in height. At one end of the plate, add a triangular point by extending a wedge that starts at the full 11mm width and tapers to a point over a length of 11mm, effectively creating ... | text="Sugar peas";
x = 60;
y= 11;
z_plate=1;
z_text=0.6;
size_text=7;
cube([x,y,z_plate]);
translate([x,0,0])linear_extrude(z_plate)polygon([[0,0], [0,y], [y,y/2]]);
translate([1,2,0])color("black")linear_extrude(z_plate+z_text)
text(text, size=size_text); | glb/cad_7b0252621209.glb |
Create a decorative alphabet button featuring the letter "A" in a bold, condensed sans-serif font. Extrude the letter to a height of 3mm. Attached to the top of the letter, create a sewing loop designed as a rounded ring. This ring is formed by a rotated, extruded profile that is 1.6mm thick and has an 18-facet resolut... | Letter = "A";
Rotation = 90;
TranslateX = 0.3;
TranslateY = 0.1;
module ring(r=0,x=0,y=0){
rotate([0,-90,r])
translate([3,x*-1,y*-1])
difference(){
minkowski(){
e=0.02;
$fn=18;
scale([1.5,0.8,0.8])
rotate_extrude(convexity = 10)
translate([5, 0, 0])
square([e,e]);
sp... | glb/cad_0d5afb5dcfa3.glb |
Create a variable handle consisting of a flat connecting bar and two cylindrical standoffs. Start by creating a rectangular bar with a width of 13mm, a height of 8mm, and a length of 78mm. The bar should have semi-circular ends with a radius of 6.5mm, resulting in a hull shape that connects two cylinders of 13mm diamet... | screwDistance = 65;
screwDepth = 15;
screwWidth = 4;
standoffLength = 25;
standoffRadius = 13;
handleWidth = standoffRadius + 0;
handleHeight = 8;
handleLength = screwDistance + standoffRadius;
$fs = 0.4;
hull(){
cylinder(h=handleHeight,d=handleWidth);
translate([0,screwDistance,0])
cylinder(h=handl... | glb/cad_677acdcba0c7.glb |
Create an OpenBci dongle case consisting of a flat base plate and a surrounding ledge. Start by creating a rectangular base plate with dimensions 21.4mm wide by 41.2mm long and 1mm thick. Centered on the top surface of this base, create a rectangular ledge that is 19.3mm wide by 37.1mm long and 1mm high. Hollow out the... | notchWidth = 1.2;
boardLength = 39.2;
boardWidth = 19.4;
capacity = " . . . . ";
textSize = 10;
USBLength = 12.6;
USBWidth = 12;
caseThickness=1;
USBHeight = 1.6;
chipHtBtm = 2.4;
pcbthick = 1.6;
unitLength = boardLength+2;
unitWidth = boardWidth+2;
difference(){
translate([0, 0, -(caseThickness/2)])
c... | glb/cad_576d9afca0c3.glb |
Create a protective case for an OpenBci dongle. Start with a rectangular base plate measuring 21.4mm in width, 41.2mm in length, and 1mm in thickness. Centered on this base, create a hollow rectangular enclosure with walls 1mm thick. The interior cavity should be 21.4mm wide and 41.2mm long to accommodate a PCB of 19.4... | notchDepth = 1.2;
notchWidth = 1.2;
boardLength = 39.2;
boardWidth = 19.4;
capacity = ". . . . .";
textSize = 10;
USBLength = 12.6;
USBHeight = 1.6;
USBWidth = 12;
chipHtBtm = 2.2;
pcbthick = 1.6;
caseThickness=1;
unitLength = boardLength+(caseThickness*2);
unitWidth = boardWidth+(caseThickness*2);
unitHeight = 1+pcb... | glb/cad_cd27d6200945.glb |
Create a V-slot camera mount by extruding a specific 2D profile to a height of 30mm. The base profile is a 20mm square with a central 4.2mm diameter circular hole. From this square, remove four 10mm squares rotated 45 degrees and positioned at the corners (centered at ±12.14mm on the X and Y axes) to create the V-slot ... | $fn = $preview ? 20 : 200;
module vslot_profile() {
difference() {
square([20, 20], center = true);
square([20 - 1.85 * 2, 20 - 1.85 * 2], center = true);
translate([12.14, 0, 0]) rotate([0, 0, 45]) square([10, 10], center = true);
translate([-12.14, 0, 0]) rotate([0, 0, 45]) square... | glb/cad_253da8abf6c3.glb |
Create an Optics Bench lens holder and stand. Start by creating a circular holder with an outer diameter of 92.36mm and a height of 5mm.
Construct a supporting stand beneath the holder. The stand features a central vertical stalk measuring 10mm by 10mm with a total height of 40mm (including the 5mm holder). At the ba... | include <threads_v2.scad>
use <knurledFinishLib_v2.scad>
$fn=100;
maxLensDiameter = 65;
height = 35;
outerDiameter = maxLensDiameter + (14.18*2);
outerRadius = outerDiameter/2;
innerDiameter = outerDiameter - (9.75*2);
module holder() {
union() {
difference() {
cylinder(d=outerDiameter,h=5)... | glb/cad_676618fa99d5.glb |
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