HSMS-C170 Overview
The HSMS-C170 is a high-performance surface-mount Schottky barrier diode designed for RF and microwave detection applications. It offers low forward voltage and fast switching speed, making it ideal for use in mixers, detectors, and limiters within communication and signal processing systems. Its compact SOD-323 package supports efficient PCB layout and thermal management. Engineers and sourcing specialists seeking reliable diode solutions will find this component a robust choice for optimizing sensitivity and response time in high-frequency circuits. For detailed specifications and procurement, visit IC Manufacturer.
HSMS-C170 Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Forward Voltage (VF) at 1 mA | 0.37 | V |
| Reverse Current (IR) at 25 V | 0.1 | nA |
| Junction Capacitance (CJ) at 0 V | 0.35 | pF |
| Maximum Reverse Voltage (VR) | 15 | V |
| Operating Temperature Range | -65 to +125 | ??C |
| Package Type | SOD-323 | ?? |
| Typical Reverse Recovery Time | 0.2 | ns |
| Typical Capacitance Ratio (CR) | 1.8 | ?? |
HSMS-C170 Key Features
- Low Forward Voltage: Enables efficient signal detection with minimal power loss, enhancing circuit sensitivity and overall performance.
- Fast Switching Speed: Supports high-frequency applications by minimizing signal distortion and latency in RF circuits.
- Low Reverse Current: Improves signal integrity by reducing leakage, crucial for precision detection in sensitive electronic systems.
- Compact SOD-323 Package: Facilitates high-density PCB layouts and effective thermal dissipation in space-constrained designs.
HSMS-C170 Advantages vs Typical Alternatives
This diode stands out for its combination of low forward voltage and minimal reverse leakage current, which are critical for high-frequency detection accuracy. Compared to traditional silicon diodes, it offers faster switching and lower junction capacitance, enhancing signal clarity and reducing noise. Its compact packaging also supports better integration in modern RF modules, making it a superior choice for engineers seeking both performance and reliability in demanding semiconductor applications.
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Typical Applications
- RF Detectors and Mixers: Used extensively in communication equipment to convert high-frequency signals into detectable voltage levels with high sensitivity and low distortion.
- Limiter Circuits: Protects sensitive components by restricting voltage spikes in RF front-end circuits.
- High-Speed Switching: Employed in circuits requiring rapid diode response to maintain signal integrity at microwave frequencies.
- Signal Demodulation: Integral in demodulating amplitude-modulated signals, ensuring accurate data retrieval in wireless communication systems.
HSMS-C170 Brand Info
The HSMS-C170 is a trusted product within the portfolio of semiconductor components designed for RF and microwave applications. Manufactured with precision and quality control, this diode meets stringent industry standards for performance and reliability. Its design aligns with the needs of engineers developing advanced communication systems and high-frequency electronic devices, reinforcing the brand??s commitment to delivering components that enable innovation in industrial and commercial electronics.
FAQ
What is the maximum reverse voltage rating for this diode?
The diode is rated for a maximum reverse voltage of 15 volts, ensuring reliable operation within typical RF circuit voltage ranges without risk of breakdown.
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How does the low forward voltage benefit RF applications?
A low forward voltage reduces the power required to operate the diode, which improves detection sensitivity and efficiency in high-frequency signal processing tasks.
What package type does the device come in, and why is it important?
It comes in a compact SOD-323 surface-mount package, which is important for minimizing PCB real estate while allowing effective heat dissipation in dense circuit designs.
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Can this diode handle high temperatures during operation?
Yes, it is rated for an operating temperature range from -65??C to +125??C, making it suitable for harsh environmental conditions often encountered in industrial and communication equipment.
What applications benefit most from the fast switching speed of this diode?
Applications such as mixers, limiters, and demodulators in RF and microwave circuits benefit significantly from the fast switching speed, as it minimizes signal distortion and improves overall system responsiveness.






