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The TSXDSZ04T22 from Schneider Electric's TSX Micro PLCs series functions as a discrete output module. Designed for operational efficiency, it can handle a voltage of 24 V DC and supports various load configurations with a maximum output current of 2.5 A.
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| Manufacturer | Schneider Electric |
|---|---|
| Product Line | TSX Micro PLCs |
| Part Number | TSXDSZ04T22 |
| UPC | 785901540489 |
| Weight | 0.69 lbs (0.31 kg) |
| Discrete Output Number | 4 screw terminal block |
| Discrete Output Voltage | 24 V DC |
| Discrete Output Current | 2 mA |
| Discrete Output Logic | Positive |
| Output Voltage Limits | 19…30 V |
| Output Current Limits | 2.5 A |
| Maximum Leakage Current | 0.5 mA at state 0 |
| [Ures] Residual Voltage | 0.8 V |
| Load Impedance Ohmic | 12 Ohm |
| Switching Frequency | < 0.5/LI² Hz |
| Current Consumption | 36 mA |
| Isolation Voltage | 1500 V for 1 s |
The Schneider Electric TSXDSZ04T22 is a discrete output module tailored for the TSX Micro PLCs series. This unit accommodates four outputs via screw terminal blocks, enabling simple and secure connections. Each output operates at a nominal voltage of 24 V DC, suitable for various applications in industrial environments.
The module supports a discrete output current of 2 mA and can handle an output current limit of 2.5 A per channel. This allows for flexibility in connecting different loads. The output voltage is regulated within the limits of 19 to 30 volts, ensuring consistent performance across varying conditions.
With a positive logic design, the module is straightforward in functionality. In a non-activated state, it maintains a maximum leakage current of 0.5 mA, ensuring minimal power loss. The residual voltage, measured at 0.8 V, reflects efficient operation.
This unit exhibits a load impedance of 12 Ohms and allows for a switching frequency of less than 0.5/LI² Hz, making it capable of handling multiple operations without hindrance. The module draws a current of 36 mA during operation and features robust isolation with a rated voltage of 1500 V for a duration of one second, promoting safety in system interactions.