ERA-2V Series Thin Film Chip Resistors

Panasonic has enhanced its ERA-xV Resistors Product line with the new ERA-2V Series Thin Film Chip Resistors, tailored for extremely hazardous environments. These resistors are uniquely designed with a gold inner terminal and a soft outer terminal, offering high reliability and stability under conditions of high temperature and humidity. They feature an operating temperature range of -55°C to +155°C and are capable of enduring a load life of 10,000 hours at 85°C, effectively resisting heat shock, corrosion, and ESD. The ERA-2V Series is AEC-Q200 qualified, meeting stringent industry quality standards, and complies with multiple global standards, including RoHS and REACH. Ideal for applications in automotive, energy, measurement equipment, and factory automation, these resistors offer high accuracy, performance, and anti-sulfuration properties, ensuring dependable performance in critical conditions.

V Series (LC Connector Type) Active Optical Connectors

Panasonic introduces the V Series LC Connector Type Active Optical Connectors, capable of high-speed optical transmission ranging from 20 Mbps to 8 Gbps. This series features a Duplex-LC Connector and a Plug-To-LC Connector Type, ideal for both intra-device and inter-device connections. The new connectors offer enhancements over previous models by providing long-distance transmission capabilities while maintaining high speed, noise immunity, and electrical isolation, making them a robust solution for a variety of connectivity needs.

EEH-ZU(U) Series (SMD, High Temp. Reflow) Hybrid Capacitors

Panasonic has launched the V Series LC Connector Type Active Optical Connectors, offering high-speed optical transmission from 20 Mbps to 8 Gbps. This series includes Duplex-LC and Plug-To-LC connectors, designed for reliable intra-device or inter-device connections. They feature enhanced capabilities for long-distance transmission while ensuring high speed, noise immunity, and electrical isolation.

EEF-JZ/KZ/TX/TZ Series SP-CAP™ Specialty Conductive Polymer Aluminum Electrolytic Capacitors

Panasonic has introduced its latest Surface Mount Specialty Conductive Polymer Aluminum Electrolytic Capacitors, designed for high-temperature applications that demand high endurance and large capacitance. These capacitors are compact, with heights ranging from 2.0mm to 2.3mm, and feature ultra-low ESR of 3mΩ. The EEF-TX Series offers exceptional endurance with a rating of 135℃ for 5,500 hours at a 2.0mm height, while the EEF-JZ/KZ/TZ Series provides options like 2V/560µF and 2.5V/470µF at a 2.3mm height.

DS-P Series General Power Relays

The DS-P Series General Power Relays now include new models with a 1 coil latching type, enhancing their lineup. These compact relays measure 11mm wide, 20.2mm long, and 10.5mm high. They offer various contact arrangements such as 1FormA, 1FormA+1FormB, and 2FormA, and can handle a large surge withstand voltage up to 5,000V. PC board sockets are available for easy replacement, making these relays suitable for applications requiring a small footprint and high durability.

EEF-KX Series SP-CAP™ - Now Available in Expanded Voltages

Now With Expanded Voltage, Capacitance, And A Lower ESR Range (3~15 mΩ Max.) 

Panasonic, a worldwide leader in Capacitor Products, announces the expansion of the EEF-KX Series Surface Mount Specialty Conductive Polymer Aluminum Electrolytic Capacitors featuring high endurance of 5,500 hours at 125°C, which enables use in applications with exceptionally long life. Achieved by using Panasonic’s proprietary conductive polymer formation and manufacturing process technology, the EEF-KX Series offers new high-temperature long-life parts.

PhotoMOS® HS SOP 1 Form A Semiconductor Relays Now Available in Higher Load Currents!

Panasonic Expands the PhotoMOS® HS SOP 1 Form A Capacity Relays to Include Load Voltage of 60V and Load Current up to 2A!

Panasonic’s PhotoMOS® HS SOP 1 Form A Relays comes equipped in a miniature SOP 4-Pin package for high-density mounting. These new Relays need less than half LED forward current vs other traditional PhotoMOS. This contributes to energy savings and a longer operating life for a battery.