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The 800T-FXJT6A5 is a push-pull device from the Allen Bradley 800T Push Buttons series. It features a jumbo mushroom head operator and is capable of handling up to 600 VAC and 600 VDC, making it suitable for a variety of applications.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Push-Pull Device |
| Product Line | 800T Push Buttons |
| Part Number | 800T-FXJT6A5 |
| Weight | 0.38 lbs (0.17 kg) |
| UPC | 662073643340 |
| Operator Type | Jumbo Mushroom Head |
| Operator Cap Shape | Round Cap |
| Operator Cap Material | Plastic Cap |
| Thermal Current Rating Contact Block | 10A |
| Contact Block Operating Voltage | 600 VAC at 600 VDC |
| Hole Diameter | 30.5 mm |
| Electrical Connection | Screw Connection |
| Operator Cap Size | 60 mm |
| Operator Function | 2 Position |
| Vibration | 10G Max. |
The 800T-FXJT6A5 model from Allen Bradley is a specifically designed push-pull device prominent within the 800T Push Buttons series. This unit includes a jumbo-sized mushroom head operator for enhanced accessibility and user interaction. The operator cap features a round shape, employing durable plastic material that ensures longevity and resistance against wear during use.
With a thermal current capacity of 10A, the contact block within this device can operate effectively at voltages of up to 600 VAC and 600 VDC, confirming its suitability for various high-power scenarios. The design presents a hole diameter of 30.5 mm, facilitating straightforward installation into existing panels. When fully mounted, the operator cap size is about 60 mm, providing a substantial interface for easy manipulation.
The functioning of this push-pull device is articulated in two positions, allowing for simple operation modes, which is essential in control settings that require reliability and ease of use. In conditions with vibration, the device can withstand levels up to 10G, contributing to its functionality in environments where movement and oscillations may occur. Electrical connections are established via screw connections, ensuring secure and stable linkages for efficient performance.