The VLZ12B-GS18 is a versatile electronic component that belongs to the category of voltage regulators. This entry provides a comprehensive overview of the product, including its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
The VLZ12B-GS18 features the following specifications: - Input Voltage Range: 4.5V to 24V - Output Voltage Range: 1.2V to 20V - Maximum Output Current: 1.5A - Dropout Voltage: 300mV at 1A - Operating Temperature Range: -40°C to 125°C - Package Type: SOT-223
The VLZ12B-GS18 has a standard pin configuration with input, output, and ground pins, as well as additional pins for enable and feedback.
The VLZ12B-GS18 operates by comparing the actual output voltage to a reference voltage and adjusting the internal circuitry to maintain the desired output level. It utilizes feedback mechanisms to continuously monitor and regulate the output voltage.
The VLZ12B-GS18 is well-suited for a wide range of applications, including: - Battery-powered devices - Portable electronics - Automotive systems - Industrial control systems - Embedded systems
Some alternative models to the VLZ12B-GS18 include: - LM317: A widely used adjustable voltage regulator with higher output current capability - LT1083: Known for its high current output and wider input voltage range - LM7805: A popular fixed voltage regulator with a lower output current but broader availability
In conclusion, the VLZ12B-GS18 offers precise voltage regulation and essential protection features, making it an ideal choice for various electronic applications. Its compact design and reliable performance make it a valuable component in modern electronic systems.
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What is the VLZ12B-GS18 used for in technical solutions?
What are the key features of the VLZ12B-GS18?
How does the VLZ12B-GS18 contribute to system reliability?
Can the VLZ12B-GS18 be used in automotive applications?
What input voltage range does the VLZ12B-GS18 support?
Is the VLZ12B-GS18 compatible with both analog and digital circuits?
What are the typical output voltage options for the VLZ12B-GS18?
Does the VLZ12B-GS18 require external components for operation?
How does the VLZ12B-GS18 handle transient voltage spikes?
Are there any recommended application notes or reference designs for using the VLZ12B-GS18 in technical solutions?