For the CR58-1024G19C01 parallel absolute encoder, we offer a dedicated OEM technical replacement solution developed through precision non-standard customization. This service is designed to address long-term sourcing instability, discontinued supply issues, and legacy equipment maintenance requirements. Based on validated original specifications, we accurately replicate the mechanical mounting dimensions, shaft tolerances, flange geometry, electrical output logic, and parallel interface configuration. The encoder is engineered for direct integration into existing systems, eliminating the need for structural modification or control parameter adjustments. Standard production lead time is maintained within 15 working days, ensuring efficient response to urgent replacement needs.
Since its introduction, this solution has been adopted in various industrial automation sectors requiring stable multi-bit parallel output and precise position feedback. Customers across multiple international markets value its consistent signal reliability, optimized cost-performance ratio, and dependable manufacturing quality. By refining internal workflow coordination and implementing structured quality verification procedures, we ensure predictable delivery cycles and repeatable production accuracy. This approach enables end users to reduce downtime risks, improve maintenance efficiency, and extend the operational lifecycle of critical automation equipment.


Technical data
| Parameter | Value |
|---|---|
| Resolution | 2 to 4096 positions / 360° |
| Measuring range | 2 to 4096 turns |
| Total number of positions | |
| Measurement position deviation | |
| Output frequency* | 30 kHz max. up to 10 Bit / 360°; 10 kHz max. from 11 Bit |
| Disc coding | Gray code |
| Output code, parallel | Gray or Natural Binary |
| Code sense, serial | CW or CCW (Signal input E2) |
| Logic polarity | Positive |
| Memory circuit | Store or not store, signal input E1 |
| Enable circuit (for bus operation) | Active or inactive, (signal input E1) |
| Sensor system | GaAlAs diodes, photo-transistor array |
| Parallel output circuits | A = Open collector Darlington; B = Open collector, TTL compatible; C = Open emitter Darlington; D = Push-pull, Totem-pole |
| Serial output SSI | Differential data output to RS 422 |
| Clock input SSI | Differential (opto-coupler) for data driver to RS 422 |
| Supply voltage range | +11 V to +26 VDC |
| Supply current | Parallel: 90 mA typ. / 120 mA max.; Serial GSI: 130mA typ. / 160mA max. |
| Operating speed | 3000 rpm max. (continuous); 4000 rpm max. (short period) |
| Angular acceleration | 10° rad/s² max. |
| Inertial mass of rotor | ≤ 5 Ncm (8 Ncm - CR 66) |
| Wind-up torque | ≤ 1 Nm (4 Ncm - CR 66) |
| Permissible axial and radial shaft load | 250 N max. |
| Bearing life expectancy | 10⁹ revolutions |
| Operating temperature range | -20°C to +60°C |
| Storage temperature range | -25°C to +70°C |
| Permissible rel. humidity | 85% without condensation |
| Resistance to shock | 200 m/s², 11 ms (DIN IEC 68) |
| Resistance to vibration | 5 Hz..1000 Hz; 100 m/s² (DIN IEC 68) |

