Overview of MS-156C3 by Hirose Electric Co Ltd.
The MS-156C3 is an RF connector designed as a subminiature coaxial switch. With an impedance of 50 Ohm, it is suitable for a range of high-frequency applications, potentially supporting up to 11 GHz. This component features a straight jack body style and utilizes surface mount vertical termination, making it suitable for printed circuit board (PCB) applications.
The connector has specific physical characteristics, including dimensions of 0.091 inches in both breadth and length, with a depth of 0.053 inches. The total number of contacts in this component is one, which is typical for switch configurations. The contact material is not specified, but the termination finish is gold, enhancing conductivity and corrosion resistance. The connector is compliant with the RoHS directive, ensuring it is free from hazardous substances, which is an important factor for modern electronic manufacturing considerations.
As of the current writing, the part remains active in its life cycle, indicating ongoing production and availability from manufacturers. Any potential purchasers should, however, check individual stock levels and pricing as this can vary by distributor.
Industry Applications for MS-156C3
The MS-156C3 could find applications across various industries due to its design and specifications. Here are some potential industry applications where this RF connector might be utilized:
- Telecommunications: This part could be applied in telecommunications equipment such as RF switches, antennas, and signal processing units. Its high-frequency capability (up to 11 GHz) might make it suitable for applications in mobile base stations or wireless communication systems.
- Aerospace and Defense: The reliability and performance of the MS-156C3 could make it a candidate in aerospace and defense applications. Components that require durable and high-frequency performance, such as radar systems and avionics, might utilize this connector, assuming compliance with relevant military specifications.
- Consumer Electronics: In consumer electronics, the MS-156C3 might be integrated into devices that require RF connectivity, such as televisions, set-top boxes, or audio systems. Its compact size could be beneficial in maintaining space efficiency in small form-factor devices.
- Industrial Automation: The RF connector may also be applicable in industrial automation systems for communication and control purposes. Devices like remote sensors and automated machinery could potentially utilize this part in their communication links.
- Internet of Things (IoT): Given the rise of IoT devices, the MS-156C3 might serve as a robust solution for low-power wireless communication modules, facilitating connectivity in smart home devices, wearables, or various sensor applications.
It’s important to note that these applications are conceptual and illustrative. Any implementation should be verified through engineering and design analyses to ensure compliance with industry standards and specific application requirements.
About Hirose Electric Co Ltd.
Hirose Electric Co Ltd. specializes in manufacturing a variety of connectors, including those in the category of Other RF Connectors. The company is known for its commitment to quality and innovation in connector design. The MS-156C3 is one of several products offered by Hirose that exemplify their engineering capabilities in RF technology.
In addition to the MS-156C3, Hirose Electric Co Ltd. provides a range of connectors that cater to various applications in telecommunications, consumer electronics, and industrial sectors. This variety in offerings allows designers and engineers to choose the right connectors for their specific requirements.
Where to Find MS-156C3 by Hirose Electric Co Ltd.
The MS-156C3 has been historically available through various distributors, including:
- New Advantage Corporation
- Chip1Stop
- Avnet Abacus
- Sager
- Mouser Electronics
Potential buyers should check with these distributors for current availability and pricing, as these factors may vary over time.