The SMBG16-E3/5B belongs to the category of semiconductor devices and is specifically designed for use in voltage regulation and transient suppression applications. This product is characterized by its compact size, high reliability, and efficient performance. It is typically packaged in a small outline surface-mounted device (SOD-123) and is available in quantities suitable for various electronic applications.
The SMBG16-E3/5B features a standard SOD-123 package with two pins. The pin configuration is as follows: 1. Pin 1: Anode 2. Pin 2: Cathode
The SMBG16-E3/5B operates based on the principles of Zener diode voltage regulation and transient suppression. When the input voltage exceeds the specified level, the device conducts and clamps the voltage to protect downstream components. Additionally, it regulates the output voltage to maintain stability within the defined range.
The SMBG16-E3/5B is widely used in various electronic systems, including: - Power Supplies - Consumer Electronics - Automotive Electronics - Industrial Control Systems - Telecommunication Equipment
For applications requiring similar functionality, alternative models to consider include: - SMBJ16CA: Similar voltage rating with a different package type (DO-214AA) - P6SMB16CA: Higher power handling capability with a larger package (DO-214AA) - 1.5KE16CA: Suitable for higher transient suppression requirements with a different package (DO-201)
In conclusion, the SMBG16-E3/5B is a versatile semiconductor device that offers reliable voltage regulation and transient suppression capabilities. Its compact size and efficient performance make it an ideal choice for a wide range of electronic applications.
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What is SMBG16-E3/5B?
How does SMBG16-E3/5B work?
What are the typical applications of SMBG16-E3/5B?
What are the key features of SMBG16-E3/5B?
How do I calibrate SMBG16-E3/5B?
Can SMBG16-E3/5B be integrated with existing control systems?
What are the maintenance requirements for SMBG16-E3/5B?
Is SMBG16-E3/5B suitable for outdoor use?
What is the typical lifespan of SMBG16-E3/5B?
Are there any known limitations or considerations when using SMBG16-E3/5B?