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The Yaskawa JZRCR-NPP02-01-E1 is a teach pendant designed for manual control of robotic systems. This handheld operator panel offers comprehensive features, including emergency stop functionality for enhanced safety.
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| Manufacturer | Yaskawa |
|---|---|
| Product Type | Teach Pendant |
| Product Line | Motoman |
| Part Number | JZRCR-NPP02-01-E1 |
| Weight | 2.56 lbs (1.16 kg) |
| Interface | Operator Panel |
| Emergency Stop | Yes |
| Control Type | Manual control for robot movement |
| Temperature Range | 0°C to 50°C |
| Mounting Type | Handheld |
| Power Supply | 24 V DC (estimate) |
| Application | Robot Control |
| Buttons | Emergency stop, movement controls |
| Maximum Operating Humidity | 80% RH (non-condensing) |
| Maximum Storage Humidity | 80% RH (non-condensing) |
| Maximum Operating Altitude | 1000 meters above sea level without derating |
The JZRCR-NPP02-01-E1 from Yaskawa is a specialized teach pendant intended for facilitating manual control of robots. As an operator panel, it is engineered for user-friendly operation in diverse robotic applications. The unit weighs 1.14 kg, providing a lightweight solution that enhances handling and maneuverability during usage.
With an operational temperature tolerance ranging from 0°C to 50°C, this teach pendant can be utilized in various environments. It features a maximum humidity capacity of 80% relative humidity for both operational and storage conditions, ensuring reliability under certain levels of moisture. Moreover, the device maintains functionality at altitudes of up to 1000 meters above sea level without any derating, making it suitable for different operating heights.
The JZRCR-NPP02-01-E1 model includes buttons designated for emergency stopping and precise movement control, prioritizing safety and ease of maneuvering in robotic operations. It operates on an estimated power supply of 24 V DC, making it efficient for direct connections in systems requiring robot operation. Overall, this teach pendant exemplifies a practical interface for effective robotic control, featuring a handheld design that enhances accessibility.