Neuromorphic ir sensor compact

RyanHailey21·neuromorphic-IR-hand-assembled·compact/neuromorphic-ir-sensor-compact.kicad_pcb

Neuromorphic ir sensor compact PCB layout, top view — open source board by RyanHailey21

About the Neuromorphic ir sensor compact PCB

Neuromorphic ir sensor compact is an open source PCB design by RyanHailey21, published on GitHub. It is a 4-layer board measuring 30 × 30 mm, with 97 components from 25 distinct parts.

Other key parts include the REF3312AIDCKR, OPA2381AIDRBR, TLV3202AIDGKR and SN74LVC1G123DCUR. By type, the board carries 38 capacitors, 35 resistors, 15 ICs, 4 diodes, 1 transistor and 1 connector.

It belongs with the sensors designs in this gallery.

From the project

All through-hole re-implementation of the Rev A neuromorphic IR event sensor: no SMD parts, solderable with a basic iron. Same architecture as the SMD design spec: 4 photodiodes → TIA → temporal adaptation → ON/OFF comparators → one-shots → 8 asynchronous 3.3 V spike outputs for

All through-hole re-implementation of the Rev A neuromorphic IR event sensor: no SMD parts, solderable with a basic iron. Same architecture as the SMD design spec: 4 photodiodes → TIA → temporal adaptation → ON/OFF comparators → one-shots → 8 asynchronous 3.3 V spike outputs for the Tang Nano 20K.

- Board: 100 × 100 mm, 2 layers, 1.6 mm FR4, 0.3 mm min track, GND pour on both layers - Status: ERC 0 · DRC 0 · schematic↔PCB parity 0 · 0 unconnected - Fab files: production/neuromorphic-ir-sensor-tht-revA-THT-gerbers.zip (upload as-is to JLCPCB/PCBWay, bare board only) - BOM…

Neuromorphic ir sensor compact, from the project README
From the project README

Main components on the Neuromorphic ir sensor compact

Neuromorphic ir sensor compact bill of materials (BOM)

97 components, 25 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
REF3312AIDCKR
Texas Instruments
U1
2
OPA2381AIDRBR
Texas Instruments
U2, U3
4
TLV3202AIDGKR
Texas Instruments
U4, U5, U6, U7
8
SN74LVC1G123DCUR
Texas Instruments
U8, U9, U10, U11, U12, U13, U14, U15
1
AO3400A
Alpha & Omega
Q1
1
2x5 1.27mm SMD pin header, gold
FPGA
Any
J1
1
LED_EN
JP1
1
TSAL6200
Vishay
LED1
4
BPW 34 FAS
ams OSRAM
D1, D2, D3, D4
1
BLM15AG601SN1D
600R@100MHz
Murata
FB1
3
GRM155R60J106ME15D
10uF
Murata
C1, C2, C38
22
GRM033R71A104KA01D
100nF
Murata
C3, C5, C6, C7, C8, C9, C11, C13 +14
1
GRM033R60J105MEA2D
1uF
Murata
C4
4
GRM0335C1H470JA01D
47pF
Murata
C10, C12, C14, C16
8
GRM0335C1H102JA01D
1nF
Murata
C23, C25, C27, C29, C31, C33, C35, C37
1
499k 0.1% 0402 thin film
499k 0.1%
Any
R1
2
10k 0.1% 0402 thin film
10k 0.1%
Any
R2, R3
1
301k 0.1% 0402 thin film
301k 0.1%
Any
R4
4
18k 0.1% 0201 thin film
18k 0.1%
Any
R5, R7, R9, R11
4
22k 0201 thick film 1%
22k
Any
R6, R8, R10, R12
Show 5 more
QtyPartRefs
4
1M 0201 thick film 1%
1M
Any
R13, R14, R15, R16
9
100k 0201 thick film 1%
100k
Any
R17, R19, R21, R23, R25, R27, R29, R31 +1
8
150 0201 thick film 1%
150
Any
R18, R20, R22, R24, R26, R28, R30, R32
1
82R 0402 1% (62.5 mW)
82
Any
R33
1
100 0201 thick film 1%
100
Any
R34

Neuromorphic ir sensor compact design files

The KiCad project lives in the RyanHailey21/neuromorphic-IR-hand-assembled repository on GitHub; these links point at the commit this page was built from.

Neuromorphic ir sensor compact: common questions

How big is the Neuromorphic ir sensor compact PCB?

The Neuromorphic ir sensor compact measures 30 × 30 mm, has 4 copper layers and is 1.6 mm thick.

How many components are on the Neuromorphic ir sensor compact?

97 components, from 25 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 Neuromorphic ir sensor compact design files?

From the RyanHailey21/neuromorphic-IR-hand-assembled 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 Neuromorphic ir sensor compact design in my own project?

The repository has no license, so all rights stay with RyanHailey21. Use it as a reference, and ask the author before reusing the design.

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