Precision regulated power supply for test and laboratory environments. Clean, constant power, ideal for reliable measurements.


Data taken from the Microlab DC datasheet. Manual or touchscreen interface, voltage & current regulation.
| Model | Output | Mains input | Format | Dimensions (W × D) | Form factor | Weight |
|---|---|---|---|---|---|---|
| Microlab MX 150W | 150 W | 230 Vac single-phase | Enclosure | 215 × 265 mm | 2U | 3 kg |
| MX 300W | 300 W | 230 Vac single-phase | Enclosure | 215 × 265 mm | 2U | 3 kg |
| MX 600W | 600 W | 230 Vac single-phase | Enclosure | 215 × 265 mm | 2U | 4 kg |
| MX 1200W | 1200 W | 230 Vac single-phase | 19" rack / enclosure | 19" × 275 mm | 2U | 7 kg |
| MX 1500W | 1500 W | 230 Vac single-phase | 19" rack / enclosure | 19" × 275 mm | 2U | 8 kg |
| MX 2400W | 2400 W | 230 Vac single-phase | 19" rack / enclosure | 19" × 380 mm | 2U | 9 kg |
| MX 3000W | 3000 W | 230 Vac single-phase | 19" rack / enclosure | 19" × 380 mm | 2U | 14 kg |
| MX 4000W | 4000 W | 400 Vac 3-phase | 19" rack / enclosure | 19" × 380 mm | 3U | 15 kg |
| MX 5000W | 5000 W | 400 Vac 3-phase | 19" rack / enclosure | 19" × 380 mm | 3U | 16 kg |
| MX 6000W | 6000 W | 400 Vac 3-phase | 19" rack / enclosure | 19" × 380 mm | 3U | 18 kg |
| Output voltage | MX 150W | MX 300W | MX 600W |
|---|---|---|---|
| 0 – 10 V | 0 – 15 A | 0 – 30 A | 0 – 50 A |
| 0 – 20 V | 0 – 7,5 A | 0 – 15 A | 0 – 30 A |
| 0 – 30 V | 0 – 5 A | 0 – 10 A | 0 – 20 A |
| 0 – 40 V | 0 – 4 A | 0 – 7,5 A | 0 – 15 A |
| 0 – 60 V | 0 – 2,5 A | 0 – 5 A | 0 – 10 A |
| 0 – 80 V | 0 – 2 A | 0 – 4 A | 0 – 8 A |
| 0 – 120 V | 0 – 1,5 A | 0 – 2,5 A | 0 – 5 A |
| 0 – 150 V | 0 – 1 A | 0 – 2 A | 0 – 4 A |
| 0 – 200 V | 0 – 0,75 A | 0 – 1,5 A | 0 – 3 A |
| 0 – 300 V | 0 – 0,5 A | 0 – 1 A | 0 – 2 A |
| 0 – 600 V | 0 – 0,25 A | 0 – 0,5 A | 0 – 1 A |
| 0 – 1200 V | 0 – 0,125 A | 0 – 0,25 A | 0 – 0,5 A |
| 0 – 1500 V | 0 – 0,1 A | 0 – 0,2 A | 0 – 0,4 A |
| Output voltage | MX 1200W | MX 1500W | MX 2400W | MX 3000W |
|---|---|---|---|---|
| 0 – 10 V | 0 – 120 A | 0 – 150 A | 0 – 240 A | 0 – 300 A |
| 0 – 20 V | 0 – 60 A | 0 – 75 A | 0 – 120 A | 0 – 150 A |
| 0 – 30 V | 0 – 40 A | 0 – 50 A | 0 – 80 A | 0 – 100 A |
| 0 – 40 V | 0 – 30 A | 0 – 35 A | 0 – 60 A | 0 – 75 A |
| 0 – 60 V | 0 – 20 A | 0 – 25 A | 0 – 40 A | 0 – 50 A |
| 0 – 80 V | 0 – 15 A | 0 – 15 A | 0 – 30 A | 0 – 37,5 A |
| 0 – 120 V | 0 – 10 A | 0 – 12 A | 0 – 20 A | 0 – 25 A |
| 0 – 150 V | 0 – 8 A | 0 – 10 A | 0 – 16 A | 0 – 20 A |
| 0 – 200 V | 0 – 6 A | 0 – 7,5 A | 0 – 12 A | 0 – 15 A |
| 0 – 300 V | 0 – 4 A | 0 – 5 A | 0 – 8 A | 0 – 10 A |
| 0 – 600 V | 0 – 2 A | 0 – 2,5 A | 0 – 4 A | 0 – 5 A |
| 0 – 1200 V | 0 – 1 A | 0 – 1,25 A | 0 – 2 A | 0 – 2,5 A |
| 0 – 1500 V | 0 – 0,8 A | 0 – 1 A | 0 – 1,5 A | 0 – 2 A |
The maximum current shown depends on the voltage rating selected. MX 4000W / 5000W / 6000W ratings (400 Vac 3-phase): output voltage and current on request. Non-contractual data, subject to change.
Configure this product to match your process: control, metering and specific options. Three families of options, which can be combined to suit your application.
Reverses the direction of the current in the circuit — a real asset when starting up your bath.
Optimal accuracy across two orders of magnitude, to cope with varying currents.
Regulation measured at the load terminals: compensates for the voltage drop in the power cables.
Voltage or current ramp-up, plus a cycle timer for controlled start-ups.
Dual-output rectifier: balanced current sharing from a single setpoint, with simplified wiring.
Wherever a piece of equipment needs a clean, stable and adjustable DC source — one that does not drift over the hours.
Powering a test bench and monitoring how equipment behaves over time.
See the page →Characterising a component, powering a prototype, reproducing an operating condition.
Discuss my requirement →A stable, accurate source — the condition for repeatable measurements from one test to the next.
Discuss my requirement →Validating a solution on a small scale before moving up to workshop scale.
See the catalogue →Worth remembering: a regulated power supply does not run your test — it provides the DC source the test relies on. Its stability directly determines how repeatable your measurements are.
Four steps between your workshop mains supply and your installation.
Your installation is fed by the mains network, in alternating current. A component or a test bench under test, however, needs direct current.
The rectifier turns that alternating current into direct current, the only form your application can use.
You set a voltage or current setpoint. The electronics hold it continuously, despite variations in the load and in the mains supply.
The regulated direct current goes out to your equipment. Continuous measurement compares the result with the setpoint and corrects any deviation immediately.
A rectifier is rarely bought off the shelf: it is selected, configured, installed and maintained.
Process, voltage, current, environment, installation constraints: the right rectifier is chosen from your actual requirement.
Describe my requirement →02Control, metering, interfaces: your rectifier is configured for your installation, then assembled in our workshops in Villette-d'Anthon.
See the options →03Our technicians come on site for the connection, the settings and the handover to your teams.
On-site service →04Servicing, repair, genuine parts: your equipment stays operational year after year.
Repair & maintenance →Our teams design solutions to match your power and environmental constraints.