Custom PC
Pick the parts and the engine builds the case around them: no dead space above a card you did not buy, airflow computed from the heat you actually make, and every clearance checked before you order.
Configure →The circuit is the part you have under control — it works on your bench. What takes the weeks is the housing that fits it, the heat that has to leave it, the antenna that must not sit in a metal box, and the directives nobody mentions until the order is placed. That is the part we generate, check and manufacture.
We do not design your electronics. That boundary is not modesty, it is the reason this works: the moment a circuit is drawn per customer, every variant pays for its own certification and its own test programme, and a platform becomes an agency with a factory attached.
So there are two ways in. Bring your own board and we generate the hardware around it. Or build on our platform electronics — a pre-certified radio module, a USB-C power board, sensors we already stock — and change the shape, not the schematic.
Pick the parts and the engine builds the case around them: no dead space above a card you did not buy, airflow computed from the heat you actually make, and every clearance checked before you order.
Configure →Give us the board dimensions and we generate the housing around it: standoffs on your mounting holes, clearance on every edge, heat-set inserts so it opens more than three times, and a thermal check before you order.
Configure →A true NDIR CO₂, temperature and humidity monitor on an e-ink display that emits no light at night, runs for months on one charge, and tells you why you woke up at four.
Configure →A USB-C powered task lamp: turned aluminium base, extruded column, and a warm dimmable head that keeps light out of your eyes and off your screen.
Configure →An amber, 1800 K bedside light that stays under the melatonin-suppression threshold, so a 3 a.m. walk to the bathroom does not cost you the rest of your night.
Configure →This is the table people go looking for after they have committed. Every row is a regime the engine attaches automatically, from the product rather than from a choice — and every figure is per product variant, paid once, not per order.
| If your product has | Legal basis | Key standards | Lead | Indicative cost |
|---|---|---|---|---|
| USB powered (SELV) | EMC 2014/30/EU (SELV, so LVD does not apply below 50 V AC / 75 V DC) | EN 55032 Class B, EN 55035, EN IEC 63000 (RoHS) | 3 wk | €1,400 |
| Mains powered | Low Voltage Directive 2014/35/EU + EMC 2014/30/EU | EN 62368-1, EN 55032 / EN 55035, EN 61000-3-2 | 6 wk | €3,800 |
| Radio module | Radio Equipment Directive 2014/53/EU | EN 300 328 (2.4 GHz), EN 301 489, EN 62479 (RF exposure) | 5 wk | €4,200 |
| Lithium-ion cell | Battery Regulation (EU) 2023/1542 + UN Model Regulations | IEC 62133-2, UN 38.3 | 8 wk | €5,200 |
| Lithium-ion pack over 100 Wh | Battery Regulation (EU) 2023/1542; > 100 Wh triggers Class 9 dangerous-goods handling | IEC 62133-2, UN 38.3, EN 50604-1 (light EV batteries) | 12 wk | €11,500 |
| LED light source | Ecodesign (EU) 2019/2020 + Energy Labelling (EU) 2019/2015 for separately sold light sources | IEC 62471 (photobiological safety), EN 62493 | 4 wk | €2,100 |
Read the first two rows together and you have the single largest cost decision in small electronics: staying under 50 V keeps you out of the Low Voltage Directive entirely. That is roughly €2,400 and three weeks, decided by a connector choice on day one.
| Part | Supplier | Certification | In stock |
|---|---|---|---|
| ESP32-C6 module, pre-certified | Espressif ESP32-C6-WROOM-1 | RED module certificate, CE, FCC, RoHS | Yes |
| USB-C PD board, 65 W, 3 ports | Injoinic IP2368 | USB-IF, EN 62368-1 (as part of assembly), RoHS | Yes |
| CO₂ / temperature / humidity sensor | Sensirion SCD41 | RoHS, REACH | Yes |
| E-ink display 2.9", 296×128 | Good Display GDEY029T94 | RoHS | Yes |
| LiPo cell 2000 mAh with protection | EVE | IEC 62133-2, UN 38.3 | Yes |
| Brass heat-set insert M3 (set of 4) | Standard | RoHS | Yes |
A pre-certified radio module turns the Radio Equipment Directive from a €4,200 test programme into an integration statement — provided you respect the antenna keepout, which is the part people lose. Buffer stock on these is also what makes the eight-day lane possible: a sensor with forty days of lead time makes any promise about days untrue.