HSMS-2852-TR1G is a high-frequency surface mount Schottky barrier diode designed for various electronic applications. This entry provides an overview of the product, including its category, use, characteristics, packaging, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
The HSMS-2852-TR1G belongs to the category of semiconductor devices, specifically as a Schottky barrier diode.
It is commonly used in high-frequency applications such as mixers, detectors, and multipliers due to its low turn-on voltage and fast switching capabilities.
The HSMS-2852-TR1G is typically available in a surface mount SOT-23 package.
This diode is essential for RF and microwave circuit designs where low loss and high-speed switching are critical.
It is usually supplied in reels with quantities varying based on manufacturer specifications.
The key specifications of the HSMS-2852-TR1G include: - Forward Voltage: 0.3V at 1mA - Reverse Voltage: 15V - Maximum Continuous Forward Current: 100mA - Capacitance: 0.6pF at 0V, 1MHz
The HSMS-2852-TR1G has three pins arranged in the SOT-23 package. Pin 1 is the anode, pin 2 is the cathode, and pin 3 is not connected (NC).
The Schottky barrier diode operates based on the rectifying properties of the metal-semiconductor junction, allowing current flow in one direction with minimal voltage drop.
The HSMS-2852-TR1G finds extensive use in: - RF mixers and detectors - Microwave signal multiplication circuits - High-frequency communication systems
Some alternative models to the HSMS-2852-TR1G include: - HSMS-2862-TR1G - HSMS-2822-TR1G - HSMS-285C-TR1G
In conclusion, the HSMS-2852-TR1G is a crucial component in high-frequency electronic circuits, offering low power dissipation, fast switching, and compact form factor. Its application spans across various RF and microwave systems, making it an indispensable part of modern communication and signal processing technologies.
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What is HSMS-2852-TR1G?
What are the key features of HSMS-2852-TR1G?
How does HSMS-2852-TR1G compare to other diodes in its class?
What are the typical applications of HSMS-2852-TR1G?
What are the operating conditions for HSMS-2852-TR1G?
How can HSMS-2852-TR1G be integrated into a technical solution?
What are the potential challenges when using HSMS-2852-TR1G in technical solutions?
Are there any recommended evaluation boards or reference designs for HSMS-2852-TR1G?
What are the reliability and longevity considerations for HSMS-2852-TR1G?
Where can I find detailed technical specifications and application notes for HSMS-2852-TR1G?