1SV314(TPL3,F)

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Toshiba Semiconductor and Storage 1SV314(TPL3,F)

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Part No.:
1SV314(TPL3,F)
Manufacturer:
Toshiba Semiconductor and Storage
Package:
SC-79, SOD-523
Datasheet:
1SV314(TPL3,F).pdf
Description:
DIODE VARACTOR 10V SINGLE ESC
In Stock:
3836
Quantity:
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    1SV314(TPL3,F) this integrated circuit is available in factory sealed anti static packs. at icwhale.com. Please read product page below detail information. including 1SV314(TPL3,F) price, data-sheet, in-stock availability, technical difficulties. Also. Quickly Enter the access of compare listing to find out replaceable electronic parts. If you want to retrieve comprehensive data for 1SV314(TPL3,F) to optimize the supply chain (including cross references, life-cycle, parametric, counterfeit risk, obsolescence managements forecasts), please contact to our Tech-supports team.

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    1SV314(TPL3,F) information1SV314(TPL3,F) information

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    1SV314(TPL3,F) Typical application Circuitry


    The 1SV314(TPL3,F) is a varactor diode, a specific type of semiconductor diode designed to exploit the property of voltage-dependent capacitance. Varactor diodes are primarily utilized in applications requiring variable capacitance, which can be controlled by the voltage applied across the diode. The 1SV314(TPL3,F) is part of a series optimized for use in VCOs (Voltage-Controlled Oscillators), RF circuits, and as part of the tuning elements in filters and amplifiers where precise control of capacitance is necessary to adjust frequency or phase.

    1. Operating Voltage: Varactor diodes, including the 1SV314(TPL3,F), typically operate across a range of reverse bias voltages. The exact operating voltage range should be determined based on the specific application and the desired capacitance range, ensuring that the voltage does not exceed the maximum reverse voltage rating of the diode to prevent damage.

    2. Pin Configuration and Connectivity: The 1SV314(TPL3,F) is a two-terminal device, with the anode and cathode being the primary connection points. In a varactor diode, the cathode is usually connected to the higher potential point in the circuit, and the anode to a lower potential, which is reverse-biased in typical operation. This reverse biasing is crucial as it increases the depletion region width, affecting the capacitance value.

    3. Circuit Integration Guidelines: To incorporate the 1SV314(TPL3,F) into a circuit, it should be reverse-biased by connecting the cathode to the positive voltage supply and the anode to the negative supply or ground, depending on the circuit design. A resistor may also be placed in series with the diode to limit the current flow, and a bypass capacitor may be added parallel to the diode to filter out high-frequency noise. The specific capacitance (and thus the tuning range) can be adjusted by varying the reverse bias voltage applied across the diode.

    4. Application Specifics for Enhanced Performance: In VCO and RF applications, the 1SV314(TPL3,F)'s capacitance-voltage characteristics are exploited to tune the frequency of oscillation or the phase of signals. For optimal performance, the varactor should be matched with the circuit impedance, and considerations should be made to minimize parasitic inductances and capacitances which could affect the tuning precision and frequency stability.

    5. Usage Scenarios: The 1SV314(TPL3,F) is suited for high-frequency applications where variable capacitance is required to dynamically adjust circuit parameters. Its use in VCOs, for instance, enables the frequency of oscillation to be varied precisely with a control voltage, making it invaluable in PLLs (Phase Locked Loops) used in communication devices for frequency synthesis. Similarly, in RF circuits, it can be used for signal modulation or in adaptive filters where the response needs to be tuned based on the signal environment.

    The 1SV314(TPL3,F) varactor diode exemplifies the critical role of variable capacitance devices in modern electronics, offering precise control over high-frequency circuit characteristics through simple voltage adjustments. By following the guidelines for reverse biasing and considering circuit integration specifics, designers can leverage the capabilities of the 1SV314(TPL3,F) to enhance the performance and flexibility of VCOs, RF circuits, and other applications requiring dynamic tuning.

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