Datasheets
AQR20A2-S-Z18/28VDC by:
Panasonic Electronic Components
Aromat Corp
Panasonic Electronic Components
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Trigger Output SSR, 1-Channel, 1500V Isolation, ROHS COMPLIANT PACKAGE-4

Part Details for AQR20A2-S-Z18/28VDC by Panasonic Electronic Components

Results Overview of AQR20A2-S-Z18/28VDC by Panasonic Electronic Components

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Applications Telecommunications

AQR20A2-S-Z18/28VDC Information

AQR20A2-S-Z18/28VDC by Panasonic Electronic Components is a Solid State Relay.
Solid State Relays are under the broader part category of Optoelectronics.

Optoelectronic components work to detect, generate, and control light. They can essentially produce and/or react to light. Read more about Optoelectronics on our Optoelectronics part category page.

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Part Details for AQR20A2-S-Z18/28VDC

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AQR20A2-S-Z18/28VDC Part Data Attributes

AQR20A2-S-Z18/28VDC Panasonic Electronic Components
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AQR20A2-S-Z18/28VDC Panasonic Electronic Components Trigger Output SSR, 1-Channel, 1500V Isolation, ROHS COMPLIANT PACKAGE-4
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Rohs Code Yes
Part Life Cycle Code Obsolete
Ihs Manufacturer PANASONIC CORP
Package Description ROHS COMPLIANT PACKAGE-4
Reach Compliance Code compliant
Additional Feature UL RECOGNIZED, WITH ZERO CROSS OVER CIRCUIT
Configuration SINGLE
Isolation Voltage-Max 1500 V
Number of Elements 1
On-State Current-Max 20 A
Operating Temperature-Max 80 °C
Operating Temperature-Min -20 °C
Optoelectronic Device Type TRIGGER OUTPUT SSR
Packing Method BOX

AQR20A2-S-Z18/28VDC Frequently Asked Questions (FAQ)

  • Panasonic provides a recommended PCB layout and land pattern in their application notes or design guides. It's essential to follow these guidelines to ensure proper soldering, thermal management, and electrical performance.

  • To handle high inrush current, consider using a soft-start circuit or an NTC thermistor in series with the relay coil to limit the inrush current. Additionally, ensure the power supply can handle the peak current demand.

  • The operating life expectancy of AQR20A2-S-Z18/28VDC depends on various factors such as switching frequency, load type, and environmental conditions. Consult with Panasonic's application engineers or refer to their reliability data to estimate the relay's lifespan in your specific application.

  • While the relay is designed to withstand some vibration and shock, it's essential to evaluate its performance in your specific environment. Consider conducting vibration and shock testing or consulting with Panasonic's application engineers to ensure the relay meets your requirements.

  • To ensure EMC, follow proper PCB design and layout practices, use shielding and filtering components as needed, and consider conducting EMC testing to validate the relay's performance in your system.