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The Allen Bradley 1734-OB8K is an output module from the Point I/O 1734 series, designed to control 8 sourcing outputs effectively. It provides non-isolated outputs, making it suitable for various industrial applications.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Output Module |
| Product Line | Point I/O 1734 |
| Part Number | 1734-OB8K |
| Weight | 0.06 lbs (0.03 kg) |
| Number of Outputs | 8 Outputs |
| Output Type | Sourcing Outputs |
| Isolated Outputs | Non-Isolated Outputs |
| Output Groups | 1 Group of 8 Outputs |
| Minimum On-State Voltage | 10V DC |
| Nominal On-State Voltage | 24V DC |
| Maximum On-State Voltage | 28.8V DC |
| Maximum On-State Voltage Drop | 0.2V DC |
| Minimum On-State Current per Channel | 1 mA |
| Maximum Off-State Leakage | 0.5 mA at 28.8V DC |
| Maximum Output Signal Delay | 1 ms Off to On and On to Off |
| Output Current per Output | 1A |
| Maximum Output Current per Module | 3A |
| Maximum Power Dissipation | 2W at 28.8V DC |
Part of the Point I/O 1734 series, the 1734-OB8K output module is constructed for efficiency in managing outputs. It comprises 8 sourcing outputs organized in one complete group, facilitating straightforward integration into control systems. The device operates with nominal voltage set at 24V DC, providing versatility in various setups. Users can expect a minimum on-state voltage of 10V DC and should note that the maximum on-state voltage can reach up to 28.8V DC.
Each output is designed to handle a maximum current of 1A, with an overall limit of 3A for the entire module. It is engineered to maintain a low on-state voltage drop of only 0.2V DC, ensuring effective signal transmission. In terms of reliability, the 1734-OB8K features minimal off-state leakage, rated at 0.5 mA at 28.8V DC, contributing to its suitability in control applications.
The response time of the output module is effectively swift, with a maximum signal delay of just 1 ms for transitions between off-to-on and on-to-off states. Finally, the module is capable of dissipating a maximum of 2W at 28.8V DC, indicating its operational efficiency under typical load conditions.