The SMBJ5388AE3/TR13 from Microchip Technology is a high-quality Zener diode that offers precise voltage regulation and protection for a wide range of electronic applications. This robust and reliable component is designed to meet the stringent requirements of today's sophisticated circuits, providing both stability and performance in a compact package.
Key Features
- Steady State Power Dissipation: The SMBJ5388AE3/TR13 is capable of dissipating 5 watts of power in a steady state, making it suitable for high-power applications.
- Voltage Range: This Zener diode offers a nominal Zener voltage of 200V, providing a broad range of voltage regulation capabilities.
- Package Type: Encased in a DO-214AA (SMBJ) package, it ensures a compact footprint on circuit boards, which is crucial for space-constrained applications.
- High Surge Capability: It is designed to withstand surge events, ensuring the protection of sensitive components in the event of voltage spikes.
- Temperature Range: The device operates effectively over a wide temperature range, making it suitable for various industrial and commercial environments.
Applications
The SMBJ5388AE3/TR13 is versatile and can be used in a variety of applications, including:
- Voltage regulation modules
- Overvoltage and surge protection circuits
- Power management systems
- Consumer electronics
- Telecommunications equipment
- Automotive electronics
Quality and Reliability
Microchip Technology is known for its commitment to quality, and the SMBJ5388AE3/TR13 is no exception. It is manufactured to the highest standards to ensure consistent performance and longevity. This component is a testament to Microchip's dedication to providing reliable and durable electronic components that meet the demands of modern technology.
Ordering Information
The SMBJ5388AE3/TR13 comes in tape and reel packaging, denoted by the suffix "/TR13", facilitating efficient assembly for high-volume production. It is RoHS compliant and adheres to the latest environmental standards, ensuring that it meets global regulatory requirements.