Overview
The BZT52H-B9V1,115 is a Zener diode produced by Nexperia USA Inc. This component is designed for various voltage regulation and protection applications. It operates within a specific voltage range and is packaged in a surface-mount SOD-123F format, making it suitable for a wide range of electronic circuits.
Key Specifications
Parameter | Value |
---|---|
Voltage (Vz) | 9.1 V |
Voltage Tolerance | ±5% |
Power Dissipation (Pd) | 375 mW |
Maximum Reverse Leakage Current (Ir) | 6 μA |
Zener Impedance (Zz) | 10 Ω |
Minimum Operating Temperature | -65°C |
Package Type | SOD-123F (Surface Mount) |
Key Features
- Surface-mount SOD-123F package for compact design
- Operating voltage of 9.1 V with ±5% tolerance
- Power dissipation of 375 mW
- Low zener impedance of 10 Ω
- Wide operating temperature range from -65°C
- Low maximum reverse leakage current of 6 μA
Applications
The BZT52H-B9V1,115 Zener diode is used in various applications including:
- Overvoltage protection
- General voltage regulation
- Voltage reference functions
Q & A
- What is the operating voltage of the BZT52H-B9V1,115 Zener diode?
The operating voltage is 9.1 V with a ±5% tolerance. - What is the power dissipation of the BZT52H-B9V1,115?
The power dissipation is 375 mW. - What is the package type of the BZT52H-B9V1,115?
The package type is SOD-123F (Surface Mount). - What is the zener impedance of the BZT52H-B9V1,115?
The zener impedance is 10 Ω. - What is the minimum operating temperature of the BZT52H-B9V1,115?
The minimum operating temperature is -65°C. - What is the maximum reverse leakage current of the BZT52H-B9V1,115?
The maximum reverse leakage current is 6 μA. - In what applications is the BZT52H-B9V1,115 commonly used?
It is commonly used in overvoltage protection, general voltage regulation, and voltage reference functions. - Who is the manufacturer of the BZT52H-B9V1,115?
The manufacturer is Nexperia USA Inc. - What is the voltage tolerance of the BZT52H-B9V1,115?
The voltage tolerance is ±5%. - Is the BZT52H-B9V1,115 suitable for high-power applications?
No, it is not suitable for high-power applications due to its 375 mW power dissipation limit.