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The Yaskawa JANCD-I020-03 functions as an input/output control board specifically designed for Yasnac LX3 programmable controllers. This board operates with a weight of 1.58 pounds (0.71 kilograms) and requires an operating voltage of 24 volts DC.
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| Manufacturer | Yaskawa |
|---|---|
| Product Type | Input/Output Control Board |
| Product Line | YASNAC |
| Part Number | JANCD-I020-03 |
| Weight | 1.63 lbs (0.74 kg) |
| Series | PCBs |
| Ambient Operating Temperature | 0 to 45°C (in a non-condensing environment) |
| Storage Temperature | -20 to 60°C (in a non-condensing environment) |
| Humidity Tolerance | 10% to 90% relative humidity or less (without condensation) |
| Vibration Resistance | 0.5G or less |
| Number of Input Points | 112 points |
| Number of Output Points | 64 points |
| Operating Voltage | 24 Volts DC |
| Input Voltage Level For Logic 0 | 6.9 Volts (maximum) |
| Input Voltage Level For Logic 1 | 19.2 Volts (minimum) |
| Compatibility | Yasnac LX3 programmable controllers |
| Output Type | Transistor open-collector outputs |
| Maximum Output Current Consumption | 0.5 Amperes or less for all outputs |
The Yaskawa JANCD-I020-03 is categorized as an input/output control board, tailored for application with Yasnac LX3 programmable controllers. This model weighs approximately 1.58 pounds (0.71 kg) and operates efficiently with a specified voltage of 24 Volts DC.
Designed for versatility, the board features 112 input points alongside 64 output points, enabling extensive control capabilities. It functions effectively within an ambient temperature range of 0 to 45°C, provided the environment remains non-condensing. For storage, a temperature range of -20 to 60°C is acceptable under similar humidity conditions. The device tolerates relative humidity from 10% to 90%, with no condensation allowed, ensuring that operational integrity is maintained in diverse conditions.
In terms of physical resilience, the board supports vibration resistance of 0.5G or less, which can be critical in certain installation environments. The input voltage necessary for logic 0 is a maximum of 6.9 volts, while logic 1 requires an input voltage of at least 19.2 volts. The outputs are transistor open-collector types, designed to meet specific industrial requirements. When considering current capabilities, the combined output current consumption remains at or below 0.5 Amperes, supporting efficient performance and application reliability.