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- Schneider Electric BMXAMM0600 Modicon X80 4-Input 2-Output Mixed Analog I/O Module PLC I/O Module Schneider Electric BMXAMM0600 Modicon X80 4-Input 2-Output Mixed Analog I/O Module PLC I/O Module
Schneider Electric BMXAMM0600 Modicon X80 4-Input 2-Output Mixed Analog I/O Module PLC I/O Module
Schneider Electric BMXAMM0600 Modicon X80 4-Input 2-Output Mixed Analog I/O Module PLC I/O Module
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- Description
The Schneider Electric BMXAMM0600 is a Modicon X80 mixed analog I/O module combining 4 non-isolated inputs and 2 outputs in one slot. Inputs accept current (0-20mA, 4-20mA) or voltage (0-10V, 0-5V, 1-5V, ±10V) with 12-14 bit resolution, while outputs deliver current or ±10V at 11-12 bit resolution, drawing 240 mA at 3.3 V DC.
Technical Specifications
| Reference | BMXAMM0600 |
| Brand | Schneider Electric |
| Range | Modicon X80 |
| GTIN | 3595863966268 |
| Product Type | Mixed analog I/O module |
| Number of Inputs | 4 |
| Input Types | 0-20 mA, 4-20 mA, ±10 V, 0-10 V, 0-5 V, 1-5 V |
| Input Resolution | 12-14 bit (range dependent) |
| Number of Outputs | 2 |
| Output Types | 0-20 mA, 4-20 mA, ±10 V |
| Output Resolution | 11-12 bit |
| Isolation | Non-isolated, 750 V DC between I/O groups |
| Input Impedance | 250 Ohm |
| Measurement Error, Input | ≤0.35% FS (voltage), ≤0.5% FS (current), 0-60 °C |
| Measurement Error, Output | ≤0.6% FS, 0-60 °C |
| Nominal Read Cycle Time | 5 ms (4 input channels) |
| Conversion Time, Output | ≤2 ms |
| Current Consumption | 240 mA at 3.3 V DC |
| MTBF | 1,400,000 h |
| IP Degree of Protection | IP20 |
| Net Weight | 0.155 kg |
Certifications & Standards
- CE
- RCM
- CSA
- EAC
- Merchant Navy
- UL
- IEC 61010-2-201
- IEC 61131-2
Selection Notes
Choose the BMXAMM0600 when a single slot needs both analog sensing and analog actuation — its 4 inputs and 2 outputs save a rack slot compared with pairing a separate input-only and output-only card, though the trade-off is a lower output measurement accuracy (≤0.6% of full scale) than a dedicated output module achieves. The configurable fallback mode on both outputs holds or forces a predefined value on a communication loss, relevant for any output driving a valve or setpoint signal. Because inputs and outputs are non-isolated from each other in groups, wiring should keep the two I/O types on separate, similarly referenced circuits rather than mixing high-noise actuator loops with sensitive sensor inputs on the same module.