Pioneer Magnetics PM3328B-6-1-3-E: Advanced Inductive Sensor for Industrial Automation
The Pioneer Magnetics PM3328B-6-1-3-E is a high-performance power supply module designed for applications requiring precise voltage regulation and stable power delivery. Ideal for industrial automation, robotics, and various electrical systems where reliability and efficiency are paramount.
Detailed content
Operating Voltage Range:24VDC
Output Voltage:Adjustable from 12VDC to 28VDC
Maximum Output Current:28A
Efficiency Rating:≥90%
Input Frequency:50Hz/60Hz
Dimensions (WxHxD):100mm x 50mm x 30mm
Weight:0.3kg
Certifications:CE, UL
Operating Temperature:-10°C to +60°C
Storage Temperature:-20°C to +70°C
The Pioneer Magnetics PM3328B-6-1-3-E stands out for its high-efficiency and reliability, making it an ideal choice for demanding industrial environments. Crafted from robust materials, this module ensures durability and long service life.
Featuring advanced signal processing capabilities, it delivers precise control and feedback, enhancing operational accuracy. Its wide operating temperature range allows seamless integration in various climates, ensuring consistent performance regardless of environmental conditions.
With a quick response time of less than 1 millisecond, this module ensures minimal latency in critical control scenarios, improving overall system responsiveness. The PWM signal output provides flexible control over motor speeds and other electrical devices.
Equipped with a USB-C power supply input, the module supports convenient and stable power delivery, eliminating the need for external power adapters. This feature contributes to a cleaner and more efficient system setup, reducing clutter and potential points of failure.
Designed with a compact footprint measuring 50mm x 30mm x 20mm, the Pioneer Magnetics PM3328B-6-1-3-E is optimized for space-saving installations, making it suitable for applications where size constraints are a concern. Its sleek design and straightforward mounting options facilitate easy integration into existing systems.