Jupiter Model A

ffich·Jupiter_Model_A·10_HwProject/Jupiter_ModelA/10_PCB/Jupiter/Jupiter.kicad_pcb

Jupiter Model A PCB layout, top view — open source PIC board by ffich
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About the Jupiter Model A PCB

Jupiter Model A is an open source PIC PCB design by ffich, published on GitHub under the MIT license. It is a 4-layer board measuring 130.8 × 108 mm, with 125 components from 79 distinct parts.

Its main chip is the PIC16F690-I/SS, from the PIC family. Other key parts include the AP3402, LM2904M, LM317MBDTG and MIC2026-1BM. By type, the board carries 39 resistors, 34 capacitors, 18 connectors, 7 LEDs, 6 ICs and 6 diodes.

It belongs with the iot & wireless designs in this gallery.

From the project

Repository for Jupiter Model A board.

In this perspective the Jupiter System acts like a bridge between the Raspberry Pi SW and the HW world, allowing to take benefit from both the ecosystems.

Examples of application fields of Jupiter System are: - Home automation System, - IoT applications, - Connectivity Applications, - Monitoring and control Systems, - Remote Control, - Industrial Process control, - Robotics applications, - Test benches, - Etc…

Jupiter Model A, from the project README
From the project README

Main components on the Jupiter Model A

Jupiter Model A bill of materials (BOM)

125 components, 79 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
AP3402
Linear
U1
1
LM2904M
AP3402
Fairchild
U2
1
LM317MBDTG
USB2514B_Bi
ON
U3
1
LM2904M
GWF_3M08
Fairchild
U4
1
PIC16F690-I/SS
MIC2026-1BM
Microchip
U5
1
MIC2026-1BM
U6
1
GBJ10005-F
S8050
Diodes Inc
Q1
1
S8050
Q2
1
24 MHz
Y1
1
USB_B_Micro
CN1
1
5V
CN2
1
53047-0510
MicroSD
Molex
CN3
1
53047-0510
HDMI
Molex
CN4
1
USB_H2
CN5
1
538-53398-0671
USB_H3
Molex
CN6
1
USB_H4
CN7
1
FPC15
CN8
1
GPIO Exp0
CN9
1
1
CN10
1
2
CN11
Show 59 more
QtyPartRefs
1
UART0
CN12
1
3
CN13
1
4
CN14
1
QWIIC#1
CN15
1
QWIIC#2
CN16
1
GROVE#1
CN17
1
GROVE#2
CN18
1
MSMF200
F1
1
I2C PU V
JP1
1
UART V
JP2
1
Cam Jpr
JP3
1
RPi Compute Module
MD1
1
Reset
SW1
1
User1
SW2
1
User2
SW3
1
User3
SW4
1
3v3
LD1
1
ACT
LD2
1
WiFi
LD3
1
U_LED_1
LD4
1
U_LED_2
LD5
1
U_LED_3
LD6
1
U_LED_4
LD7
4
BAV99
D1, D2, D4, D6
2
RCLAMP0524P
D3, D5
2
DR127-150-R
2.2uH 3A
Coiltronics
L1, L2
1
ACM1211-102-2PL-TL
Bead
TDK
L3
4
22uF
C1, C2, C6, C15
4
47uF
C3, C9, C10, C11
1
22pF
C4
1
GRM21BR71C225KA12L
22pF
Murata
C5
1
GRM21BR71C475KA73L
22uF
Murata
C7
1
GRM21BR71C105KA01L
47uF
Muruta
C8
2
4.7uF
C12, C13
12
100nF
C14, C21, C23, C26, C27, C28, C29, C30 +4
1
1nF
C16
1
1nF
C17
2
18pF
C18, C20
1
100n
C19
1
GRM21BR71C105KA01L
100nF
Muruta
C22
1
100uF
C24
1
10uF
C25
3
100k
R1, R2, R8
2
150k
R3, R6
1
33k
R4
1
300k
R5
4
220
R7, R28, R29, R30
2
330
R9, R22
5
10k
R10, R11, R17, R20, R21
1
100
R12
1
1M
R13
1
ERJ-6ENF4701V
10k
Panasonic
R14
1
RL3720WT-R022-F
10k
Susumu
R15
1
ERJ-6ENF4702V
10k
Panasonic
R16
1
ERJ-6ENF4701V
1k
Panasonic
R18
1
12k
R19
1
4.7k
R23
12
2.2k
R24, R25, R26, R27, R32, R33, R34, R35 +4
1
ERJ-6ENF4702V
220
Panasonic
R31

Jupiter Model A design files

The KiCad project lives in the ffich/Jupiter_Model_A repository on GitHub; these links point at the commit this page was built from.

Jupiter Model A: common questions

What microcontroller does the Jupiter Model A use?

The Jupiter Model A is built around the PIC16F690-I/SS, from the PIC family.

How big is the Jupiter Model A PCB?

The Jupiter Model A measures 130.8 × 108 mm, has 4 copper layers and is 1.6 mm thick.

How many components are on the Jupiter Model A?

125 components, from 79 distinct parts, with part numbers taken from the project's own BOM. The full bill of materials is listed on this page.

Where can I download the Jupiter Model A design files?

From the ffich/Jupiter_Model_A repository on GitHub, which has the KiCad layout, the schematic and the BOM; the links under Design files point to each one.

Can I use the Jupiter Model A design in my own project?

Yes, under the terms of its MIT license, which ffich chose for the repository.

Can I test firmware for the Jupiter Model A without the hardware?

Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug PIC firmware against it before you order a PCB.

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