950 Series, Variable Capacitance (Varicaps, Varactors)

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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeOperating TemperatureSeriesPackage / CaseSupplier Device PackageGradeCapacitance RatioCapacitance Ratio ConditionVoltage - Peak Reverse (Max)Diode TypeQualificationCapacitance @ Vr, FQ @ Vr, F
FSD273TA
DIODE VARACTOR CAP CC SOT-323
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
950
SC-70, SOT-323
SOT-323
-
2
C0.5/C2.5
12 V
1 Pair Common Cathode
-
32.5pF @ 1.5V, 1MHz
250 @ 500mV, 50MHz

Variable Capacitance (Varicaps, Varactors)

Variable capacitance diodes are specialized electronic components designed and characterized to function as electronically-variable capacitors. These diodes are widely used in tuning and frequency synthesis applications, where the ability to adjust the capacitance value is crucial. While most diodes exhibit a junction capacitance that decreases as the reverse bias voltage increases, products specifically marketed as variable capacitance diodes are manufactured and characterized with this specific purpose in mind. These diodes have been optimized to provide a wide range of capacitance values that can be controlled by adjusting the reverse bias voltage. The variable capacitance property of these diodes enables precise tuning and frequency synthesis in electronic circuits. By adjusting the reverse bias voltage applied to the diode, the effective capacitance can be altered, allowing for fine-tuning of resonant frequencies and precise control over circuit performance. In summary, variable capacitance diodes are specialized electronic components designed to function as electronically-variable capacitors. While all diodes exhibit some capacitance variation with reverse bias voltage, products specifically marketed as variable capacitance diodes are manufactured and characterized with the specific purpose of providing a wide range of adjustable capacitance values. These diodes play a crucial role in tuning and frequency synthesis applications, enabling precise control over circuit performance.