We provide a fully customized replacement solution for the DAB65-M360WC01 0–10 VDC absolute encoder, designed with identical 1:1 application parameters and installation dimensions. Using a non-standard production process, we can effectively shorten delivery time to 7–10 working days, ensuring a fast response for urgent replacement or upgrade requirements. The encoder is engineered for precise mechanical compatibility, allowing users to directly integrate it into existing systems without structural modifications.
The replacement encoder delivers a 0–10 VDC analog output signal, offering high accuracy, low noise, and excellent linearity across the entire measurement range. It performs reliably under various industrial conditions, maintaining stability and precision even in demanding automation and process control environments. This solution has been successfully applied in Southeast Asia, Indonesia, South America, the Middle East, and Russia, demonstrating outstanding durability and long-term reliability.
Replacement solution image.


Technical Data
| Parameter | Value |
|---|---|
| Sensor system | GaAlAs diode, photo-transistor array, precision comparator |
| Disc coding | Gray code |
| Setting cycles EEPROM | ≥10⁶ |
| Signal sense | CW or CCW (signal input E6) |
| Supply voltage range | +20 to +26 VDC(optional: 15 VDC ± 0.5 VDC) |
| Supply current | 70 mA typ. / 90 mA max.(when output current = 0) |
| Linearity | 0.025% typ. / 0.05% max. (± 1 LSB)12 Bit monotony warranted |
| Temperature drift | 0.0015 % / K typ. |
Current Output
| Parameter | Value |
|---|---|
| Accuracy | |
| At starting point 0 mA | 0 mA ±5 μA typ / ±15 μA max. |
| At 4 mA | 4 mA ±5 μA typ / ±15 μA max. |
| At end point 20 mA | 20 mA ±5 μA typ / ±15 μA max. |
| Load resistance | 0 to 500 Ω at = 20 to 26 VDC |
Voltage Output
| Parameter | Value |
|---|---|
| Accuracy | |
| At starting point 0 V | 0 V ±2.5 mV typ. / ±7.5 mV max. |
| At end point 10 V | 10 V ±2.5 mV typ. / ±7.5 mV max. |
| Output current | 5 mA max. When load resistance > 2kΩ (short circuit proof) |
