Cellsim-8ch
atopile·hil·elec/layout/cellsim-8ch/cellsim-8ch.kicad_pcb
About the Cellsim-8ch PCB
Cellsim-8ch is an open source PCB design by atopile, published on GitHub under the MIT license. It is a 4-layer board measuring 13 × 9 mm, with 608 components from 63 distinct parts.
Other key parts include the ADS1115IDGSR, MCP4725A0T-E/CH, TPS563201DDCR, SK6805-EC20 and INA185A2IDRLR. By type, the board carries 251 resistors, 152 capacitors, 131 ICs, 33 transistors, 24 diodes and 16 inductors.
From the project
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Hardware-in-the-Loop, or HiL (sometimes HitL), is a way to continuously validate your hardware and firmware together. By connecting actual hardware to virtual test scenarios, HiL enables thorough testing of embedded systems, control units, and firmware under realistic conditions without the risks and costs of full physical testing.
HiL testing catches integration issues early, accelerates development cycles, and ensures robust system performance before deployment. Typically the domain of the most sophisticated automotive and aerospace companies, this HiL suite is now for all 🚀.
Main components on the Cellsim-8ch
Cellsim-8ch bill of materials (BOM)
608 components, 63 distinct parts.
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 8 | ADS1115IDGSR Texas Instruments | MSOP-10_L3.0-W3.0-P0.50-LS5.0-BL-752175 | U1, U15, U29, U43, U57, U71, U85, U99 |
| 16 | MCP4725A0T-E/CH Microchip Tech | SOT-23-6_L2.9-W1.6-P0.95-LS2.8-BL | U2, U11, U16, U25, U30, U39, U44, U53 +8 |
| 8 | TPS563201DDCR Texas Instruments | SOT-23-6_L2.9-W1.6-P0.95-LS2.8-BL | U3, U17, U31, U45, U59, U73, U87, U101 |
| 16 | SK6805-EC20 OPSCO Optoelectronics | LED-SMD_4P-L2.0-W2.0-BR-57a8d0 | U4, U14, U18, U28, U32, U42, U46, U56 +8 |
| 8 | INA185A2IDRLR Texas Instruments | SOT-563_L1.6-W1.2-P0.50-LS1.6-TL | U5, U19, U33, U47, U61, U75, U89, U103 |
| 9 | ISO1640BDR TEXAS INSTRUMENTS | SOIC-8_L4.9-W3.9-P1.27-LS6.0-TL-e13595 | U6, U20, U34, U48, U62, U76, U90, U104 +1 |
| 16 | HFD4/5 HF(Xiamen Hongfa Electroacoustic) | RELAY-TH_HFDXXX-689a1e | U7, U13, U21, U27, U35, U41, U49, U55 +8 |
| 9 | TCA6408ARGTR Texas Instruments | QFN-16_L3.0-W3.0-P0.50-BL-EP1.7-3a4c56 | U8, U22, U36, U50, U64, U78, U92, U106 +1 |
| 8 | XC6206P332MR UMW(Youtai Semiconductor Co., Ltd.) | SOT-23-3_L3.0-W1.7-P0.95-LS2.9-BR-9c7906 | U9, U23, U37, U51, U65, U79, U93, U107 |
| 8 | B2405S-2WR3 YLPTEC | PWRM-TH_BXXXXS-2WR3-d8b2fb | U10, U24, U38, U52, U66, U80, U94, U108 |
| 8 | TLV75901PDRVR Texas Instruments | WSON-6_L2.0-W2.0-P0.65-TL-EP | U12, U26, U40, U54, U68, U82, U96, U110 |
| 1 | CD74HC4051PWR Texas Instruments | TSSOP-16_L5.0-W4.4-P0.65-LS6.4-BL-4f6acc | U114 |
| 1 | ISO1640QDWRQ1 Texas Instruments | SOIC-16_L10.3-W7.4-P1.27-LS10.3-BL-0756a5 | U115 |
| 1 | TCA9548APWR Texas Instruments | TSSOP-24_L7.8-W4.4-P0.65-LS6.4-BL | U116 |
| 1 | 1N5819WS Guangdong Hottech | SOD-323_L1.8-W1.3-LS2.5-RD | U117 |
| 1 | LV2842XLVDDCR Texas Instruments | SOT-23-6_L2.9-W1.6-P0.95-LS2.8-BR | U118 |
| 1 | SWPA4030S100MT 10µH ±20% Sunlord | IND-SMD_L4.0-W4.0 | U119 |
| 3 | LDK220M-R STMicroelectronics | SOT-23-5_L3.0-W1.7-P0.95-LS2.8-BL | U120, U127, U130 |
| 1 | TDK20-24S24WH TDPOWER | PWRM-TH_TDPOWER_TDK20-XXSXXWH-ae86e0 | U121 |
| 2 | 0402WGJ0000TCE 0Ω 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | U122, U123 |
Show 43 more
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | ADS1219IPWR Texas Instruments | TSSOP-16_L5.0-W4.4-P0.65-LS6.4-BL-4f6acc | U124 |
| 1 | TLV9032DGKR Texas Instruments | VSSOP-8_L3.0-W3.0-P0.65-LS4.9-BL-beff67 | U125 |
| 1 | REF5050AIDR Texas Instruments | SOIC-8_L5.0-W4.0-P1.27-LS6.0-BL-294f77 | U126 |
| 1 | TMP117AIDRVR Texas Instruments | WSON-6_L2.0-W2.0-P0.65-TL-EP-c93430 | U128 |
| 1 | B2409S-1WR3 EVISUN | PWRM-TH_BXXXXS-1WR3-00ecee | U131 |
| 33 | IRLML0040TRPBF Infineon Technologies | SOT-23-3_L2.9-W1.6-P1.90-LS2.8-BR-186170 | Q1, Q2, Q3, Q4, Q5, Q6, Q7, Q8 +25 |
| 1 | ADUM121N1BRZ-RL7 Analog Devices | SOIC-8_L4.9-W3.9-P1.27-LS6.0-BL-6ccfeb | ISO1 |
| 24 | KT-0603G Hubei KENTO Elec | LED0603-RD-c81ffb | D1, D2, D3, D4, D5, D6, D7, D8 +16 |
| 8 | MWSA0402S-2R2MT Sunlord | IND-SMD_L4.4-W4.2-3ea78a | L1, L3, L5, L7, L9, L11, L13, L15 |
| 8 | YNR4030-101M YJYCOIN | IND-SMD_L4.0-W4.0-81e2fd | L2, L4, L6, L8, L10, L12, L14, L16 |
| 26 | CL05B104KO5NNNC 100nF ±10% 16V X7R Samsung Electro-Mechanics | C0402-b3ef17 | C1, C8, C16, C17, C24, C32, C33, C40 +18 |
| 65 | CL21A106KAYNNNE 10µF ±10% 25V X5R Samsung Electro-Mechanics | C0805-3b2e55 | C2, C3, C4, C5, C6, C7, C9, C10 +57 |
| 36 | CL05A105KA5NQNC 1µF ±10% 25V X5R Samsung Electro-Mechanics | C0402-b3ef17 | C11, C12, C15, C27, C28, C31, C43, C44 +28 |
| 8 | CL21B225KAFNNNE 2.2µF ±10% 25V X7R Samsung Electro-Mechanics | C0805-3b2e55 | C13, C29, C45, C61, C77, C93, C109, C125 |
| 1 | CL10A225KO8NNNC 2.2µF ±10% 16V X5R Samsung Electro-Mechanics | C0603-bd72f6 | C132 |
| 1 | TCC0402X5R474M160AT 470nF ±20% 16V X5R CCTC | C0402-b3ef17 | C133 |
| 1 | CL21A475KAQNNNE 4.7µF ±10% 25V X5R Samsung Electro-Mechanics | C0805-3b2e55 | C134 |
| 2 | GRM21BR61H106KE43L 10µF ±10% 50V X5R Murata Electronics | C0805-3b2e55 | C138, C139 |
| 2 | CL21B105KBFNNNE 1µF ±10% 50V X7R Samsung Electro-Mechanics | C0805-3b2e55 | C140, C141 |
| 2 | RVT1V101M0607 100µF ±20% Honor Elec | CAP-SMD_BD6.3-L6.6-W6.6-FD-3e301d | C142, C143 |
| 3 | 1206B222K102NT 2.2nF ±10% 1kV X7R FH (Guangdong Fenghua Advanced Tech) | C1206-f0a137 | C144, C145, C146 |
| 2 | CL10A106KP8NNNC 10µF ±10% 10V X5R Samsung Electro-Mechanics | C0603-bd72f6 | C152, C153 |
| 2 | CL21A225KBQNNNE 2.2µF ±10% 50V X5R Samsung Electro-Mechanics | C0805-3b2e55 | C158, C159 |
| 1 | CC0603KRX7R9BB104 100nF ±10% 50V X7R YAGEO | C0603-bd72f6 | C160 |
| 120 | 0402WGF1002TCE 10kΩ ±1% 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | R1, R2, R6, R7, R8, R12, R14, R15 +112 |
| 8 | 0402WGF2402TCE 24kΩ ±1% 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | R3, R29, R55, R81, R107, R133, R159, R185 |
| 8 | RC0402FR-0737K4L 37.4kΩ ±1% 62.5mW YAGEO | R0402-56259e | R4, R30, R56, R82, R108, R134, R160, R186 |
| 8 | 0805W8F100LT5E 100mΩ ±1% 125mW UNI-ROYAL(Uniroyal Elec) | R0805-c79e8b | R5, R31, R57, R83, R109, R135, R161, R187 |
| 34 | 0402WGF1001TCE 1kΩ ±1% 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | R9, R11, R22, R25, R35, R37, R48, R51 +26 |
| 24 | 0402WGF2001TCE 2kΩ ±1% 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | R10, R16, R26, R36, R42, R52, R62, R68 +16 |
| 8 | 1206W4F1000T5E 100Ω ±1% 250mW UNI-ROYAL(Uniroyal Elec) | R1206-bdb864 | R13, R39, R65, R91, R117, R143, R169, R195 |
| 8 | 0402WGF4302TCE 43kΩ ±1% 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | R19, R45, R71, R97, R123, R149, R175, R201 |
| 8 | 0402WGF6042TCE 60.4kΩ ±1% 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | R20, R46, R72, R98, R124, R150, R176, R202 |
| 8 | 0805W8F1000T5E 100Ω ±1% 125mW UNI-ROYAL(Uniroyal Elec) | R0805-c79e8b | R21, R47, R73, R99, R125, R151, R177, R203 |
| 1 | RC0402FR-078K2L 8.2kΩ ±1% 62.5mW YAGEO | R0402-56259e | R229 |
| 1 | 0402WGF4702TCE 47kΩ ±1% 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | R230 |
| 2 | RC0402FR-0718KL 18kΩ ±1% 62.5mW YAGEO | R0402-56259e | R232, R250 |
| 1 | 0402WGF1004TCE 1MΩ ±1% 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | R234 |
| 8 | 0603WAF150JT5E 15Ω ±1% 100mW UNI-ROYAL(Uniroyal Elec) | R0603-ebcab9 | R235, R236, R237, R238, R239, R240, R241, R242 |
| 1 | RTT021202FTH 12kΩ ±1% 62.5mW RALEC | R0402-56259e | R245 |
| 1 | RT0402BRD0788K7L 88.7kΩ ±0% 62.5mW YAGEO | R0402-56259e | R246 |
| 1 | 0402WGF3602TCE 36kΩ ±1% 62.5mW UNI-ROYAL(Uniroyal Elec) | R0402-56259e | R248 |
| 1 | 0603WAF1002T5E 10kΩ ±1% 100mW UNI-ROYAL(Uniroyal Elec) | R0603-ebcab9 | R251 |
Cellsim-8ch design files
The KiCad project lives in the atopile/hil repository on GitHub; these links point at the commit this page was built from.
Cellsim-8ch: common questions
How big is the Cellsim-8ch PCB?
The Cellsim-8ch measures 13 × 9 mm, has 4 copper layers and is 1.6 mm thick.
How many components are on the Cellsim-8ch?
608 components, from 63 distinct parts. The full bill of materials is listed on this page.
Where can I download the Cellsim-8ch design files?
From the atopile/hil repository on GitHub, which has the KiCad layout; the links under Design files point to each one.
Can I use the Cellsim-8ch design in my own project?
Yes, under the terms of its MIT license, which atopile chose for the repository.
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