Robot vacuum sensing
- Short-range obstacle and wall-distance input
- Compact integration near brushes, bumpers or side-looking sensing positions
Built around the Sharp GP2A03VT00F SPAD sensor and an onboard 8051 MCU, this compact module delivers 2-120 cm white-card ranging through I2C or UART.
Key Highlights
DM-DToF2002C0 is a compact short-range Time-of-Flight proximity sensor module built around the Sharp GP2A03VT00F ToF sensor and an onboard 8051 MCU. It provides direct distance measurement through I2C or UART for embedded products that need a small 4-pin sensing module.
The published specification lists a 2-120 cm working distance with a white card target, 25° field of view, 36 ms working cycle and 10 mA current consumption from a 3.0-3.6 V supply. At 120 cm with the stated white card target, published measurement accuracy is ±10%.
Its 940 nm emitter, SPAD-based receiver and special optical package are intended to support stable short-range ranging, ambient-light immunity and optical crosstalk control. The published page does not provide ambient-light level, target reflectivity beyond the white-card condition, repeatability, resolution or accuracy across the full range, so these values require application-level verification.
Specification note: A legacy benefits bullet states 0.25-10 cm, while the specification table states 2-120 cm with a white card. This page uses the specification-table value. Confirm the active production revision and test conditions with DOMI before design freeze.
DM-DToF2002C0 is positioned for embedded proximity and distance measurement where compact mechanics and simple host connectivity are important.
| Parameter | Published specification |
|---|---|
| ToF sensor | Sharp GP2A03VT00F |
| Working distance | 2-120 cm, white card target |
| Measurement accuracy | ±10% at 120 cm, white card target |
| Field of view | 25° |
| Emitter wavelength | 940 nm |
| Working cycle | 36 ms |
| Parameter | Published specification |
|---|---|
| Onboard MCU | 8051 |
| Supply voltage | 3.0-3.6 V |
| Current consumption | 10 mA |
| Control interface | I2C / UART |
| Operating temperature | -20 to 70 °C |
| Parameter | Published specification |
|---|---|
| Sensor board package | 4 pin |
| Module dimensions | 10 × 8 × 7.6 mm |
| Laser classification | 940 nm emitter classified as Class 1 under the stated operating conditions, IEC 60825-1:2014, third edition |
| Material compliance | Lead-free and RoHS compliant |
Published-data boundary: The source does not state resolution, repeatability, output data format, I2C address, UART baud rate, interface logic levels, startup time, cover-window requirements, storage temperature, EMC data or quantified ambient-light performance. Request the latest datasheet and interface document for production qualification.
Yes. The published specification lists a 2-120 cm working distance with a white card target. Final usable range depends on target reflectivity, ambient light, cover-window design and installation geometry.
Yes. The module is specified with I2C and UART control interfaces, giving embedded designers two common options for connecting it to a host controller.
Yes. The published page states that its 940 nm emitter is classified as Class 1 under the stated operating conditions according to IEC 60825-1:2014, third edition. Laser-safety compliance must still be verified for the complete end product and operating mode.
Yes. Robot vacuum distance measurement is a listed application. Validate sensor placement, floor and obstacle reflectivity, cover-window crosstalk, sunlight exposure and the required stopping distance in the final robot.
Yes. UAV object monitoring is listed as an application direction. The completed airborne system still requires vibration, temperature, optical-window, sunlight, EMC and flight-safety validation.
Yes. The published benefits include advanced optical crosstalk compensation and state that no additional optical calibration is required. Test the final cover window and enclosure because system-level reflections can differ from the module test setup.
The module is specified for a 3.0-3.6 V supply, 10 mA current consumption and a 36 ms working cycle. Confirm peak current, startup behavior and interface timing with the latest technical documentation before production release.
The sensor board is specified as a 4-pin module measuring 10 × 8 × 7.6 mm with a 25° field of view.
Get expert guidance from our sensing engineers on product selection, evaluation samples, system integration, and technical requirements for your application.