Pico glitcher v1.1
christiangroothuis·fault-injection-library·schematics/kicad/pico-glitcher-v1/pico-glitcher-v1.1.kicad_pcb
About the Pico glitcher v1.1 PCB
Pico glitcher v1.1 is an open source RP2040/RP2350 PCB design by christiangroothuis, published on GitHub under the GPL-3.0 license. It is a 2-layer board measuring 89.8 × 58.4 mm, with 72 components from 32 distinct parts.
Its main chip is the IRLML2502, from the RP2040/RP2350 family. Other key parts include the AD9102BCPZRL7 and NH245. By type, the board carries 19 resistors, 10 capacitors, 5 diodes, 4 transistors, 3 crystals and 2 ICs.
From the project
Adaptation of https://github.com/MKesenheimer/fault-injection-library
Findus (aka the fault-injection-library) is a toolchain to perform fault-injection attacks on microcontrollers and other targets. This library offers an easy entry point to carry out fault-injection attacks against microcontrollers, SoCs and CPUs. With the provided and easy to use functions and classes, fault-injection projects can be realized quickly with cheap and available hardware.
Main components on the Pico glitcher v1.1
Pico glitcher v1.1 bill of materials (BOM)
72 components, 32 distinct parts — part numbers from the project's BOM.
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | AD9102BCPZRL7 NH245 | TSSOP-24_4.4x7.8mm_P0.65mm | U1 |
| 1 | NH245 | TSSOP-24_4.4x7.8mm_P0.65mm | U2 |
| 1 | IRLML2502 | SOT-23 | Q1 |
| 1 | IRF7807PBF | SOIC-8_3.9x4.9mm_P1.27mm | Q2 |
| 1 | TPS 79318 | SOT-23-5 | Q3 |
| 1 | TPS2041 | SOIC-8_3.9x4.9mm_P1.27mm | Q4 |
| 1 | CO32D6-125.000-33GDTSTL BU-SMA | BU-SMA | X1 |
| 1 | BU-SMA | BU-SMA | X2 |
| 1 | M08X2 | PinHeader_2x08_P2.54mm_Vertical | X3 |
| 1 | JMP_VCC_INTERN | PinHeader_1x02_P2.54mm_Vertical | JMP_VCC_INTERN0 |
| 1 | Raspberry Pi | RPI_PICO | PICO0 |
| 1 | Micro Slide Switch | SW_SP3T_PCM13 | S1 |
| 1 | SW_Push_Shielded | SW_Push_1P1T_NO_CK_KSC7xxJ | S_RST0 |
| 16 | PINHDR_1X1 | PinHeader_1x01_P2.54mm_Vertical | TP_1V8, TP_3V3, TP_GLITCH_EN0, TP_GND0, TP_RESET0, TP_TRIGGER2, TP_VTARGET0, X_ANALOG0 +8 |
| 1 | M01PTH | PinHeader_1x01_P2.54mm_Vertical | TP_5V0 |
| 8 | PINHDR_3X1 | PinHeader_1x03_P2.54mm_Vertical | X_1V8, X_3V3, X_5V0, X_GLITCH_EN0, X_GND0, X_RESET0, X_TRIGGER2, X_VTARGET0 |
| 1 | LED_RED_LPGLITCH | LED_0603_1608Metric | D1 |
| 1 | LED_BLUE_GLITCH_EN | LED_0603_1608Metric | D2 |
| 1 | LED_BLUE_TRIGGER2 | LED_0603_1608Metric | D3 |
| 1 | LED_RED_TARGET_POWER | LED_0603_1608Metric | D4 |
Show 12 more
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | LED_RED_HPGLITCH | LED_0603_1608Metric | D5 |
| 1 | 100NF 10nF | C_0603_1608Metric | C1 |
| 1 | 100NF 2.2u | C_0805_2012Metric | C2 |
| 4 | 100NF 0.1uF | C_0603_1608Metric | C3, C4, C6, C9 |
| 3 | 100PF 0.1uF | C_0603_1608Metric | C5, C7, C10 |
| 1 | 100NF 22uF | PANASONIC_C | C8 |
| 4 | 10K | R_0603_1608Metric | R1, R2, R5, R11 |
| 2 | 1R | R_0603_1608Metric | R3, R4 |
| 4 | 150 | R_0603_1608Metric | R6, R7, R8, R10 |
| 1 | 220 | R_0603_1608Metric | R9 |
| 4 | 10k | R_Array_Concave_4x0603 | R12, R13, R14, R15 |
| 4 | 100 | R_Array_Concave_4x0603 | R16, R17, R18, R19 |
Pico glitcher v1.1 design files
The KiCad project lives in the christiangroothuis/fault-injection-library repository on GitHub; these links point at the commit this page was built from.
Pico glitcher v1.1: common questions
What microcontroller does the Pico glitcher v1.1 use?
The Pico glitcher v1.1 is built around the IRLML2502, from the RP2040/RP2350 family.
How big is the Pico glitcher v1.1 PCB?
The Pico glitcher v1.1 measures 89.8 × 58.4 mm, has 2 copper layers and is 1.6 mm thick.
How many components are on the Pico glitcher v1.1?
72 components, from 32 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 Pico glitcher v1.1 design files?
From the christiangroothuis/fault-injection-library 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 Pico glitcher v1.1 design in my own project?
Yes, under the terms of its GPL-3.0 license, which christiangroothuis chose for the repository.
Can I test firmware for the Pico glitcher v1.1 without the hardware?
Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug RP2040/RP2350 firmware against it before you order a PCB.
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