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The Yaskawa JH-458AN is an integrated circuit chip designed for use in signal processing and control applications within automation systems. This hybrid chip operates between input voltage ratings of 4.5 to 20 volts and delivers a stable output voltage of 5 volts, appropriate for various electronic tasks.
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| Manufacturer | Yaskawa |
|---|---|
| Product Type | Integrated Circuit (IC) Chip |
| Product Line | Other |
| Part Number | JH-458AN |
| Weight | 0.25 lbs (0.11 kg) |
| Series | PCBs |
| Chip Type | Hybrid/PZ0 |
| General Application | Enhances signal processing, communication protocols, and automation system control algorithms. |
| Number of Pins | 12 pins |
| Color | Black |
| Installation Tips | Install in an ESD-protected area to prevent damage. |
| Output Voltage Rating | 5 Volts |
| Input Voltage Rating | 4.5 to 20 Volts |
| Maximum Output Current | 1 Amperes |
| Maximum Dropout Voltage | 0.3 Volts |
| Protection Type | Short-circuit, overcurrent, and overtemperature protection |
The JH-458AN from Yaskawa is a robust integrated circuit chip tailored for enhancing performance in automation and communication systems. With a hybrid/PZ0 configuration, this component is integral in elevating signal processing capabilities and refining established communication protocols. Its output voltage is set at 5 volts, operating effectively within an input voltage range of 4.5 to 20 volts.
The chip supports a maximum output current of 1 ampere and features a maximum dropout voltage of 0.3 volts. With a total of 12 pins, the design facilitates straightforward integration into compatible boards. It is compact, with a height of 0.78 inches, a thickness of 0.11 inches, and a length of 1.57 inches, making it suitable for space-constrained applications.
For optimal performance and longevity, it is crucial to install the JH-458AN in an area that protects against electrostatic discharge (ESD). This precaution guards the internal components against potential damage. Additionally, this hybrid chip is equipped with protective measures against short circuits, overcurrent situations, and overheating, ensuring safe operation in various environments.