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HMC434ETR
+BOMIC FREQ DIVIDER DC-8GHZ SOT26
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ManufacturerAnalog Devices Inc.
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Mfr. Part #HMC434ETR
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Datasheet HMC434ETR DataSheet
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In Stock17808
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Specifications
| Attribute | Value |
| PartStatus | Active |
| Function | Prescaler |
| Frequency | 0Hz ~ 8GHz |
| RFType | General Purpose |
| SecondaryAttributes | Divide by 8 |
| MountingType | Surface Mount |
| Package/Case | SOT-23-6 |
| SupplierDevicePackage | SOT-23-6 |
| BaseProductNumber | HMC434 |
Overview
Description
Key features of the HMC434ETR include its compact surface-mount package, making it suitable for space-constrained designs, and its ability to deliver high performance in terms of frequency stability and output power. The device typically requires a single supply voltage and incorporates a buffer amplifier to enhance output signal quality.
Overall, the HMC434ETR is valued for its reliability and efficiency in generating stable RF signals, making it a popular choice among engineers and designers working on high-frequency circuit designs.
Equivalent
1. Analog Devices HMC-C072
2. Peregrine Semiconductor PE3339
3. Mini-Circuits ZX10-2-183-S+
When selecting an equivalent, ensure compatibility in terms of frequency range, power supply, package type, and performance specifications. It's recommended to review the datasheets of potential equivalents for a precise match.
Features
The HMC434ETR requires a supply voltage of 5V, with a typical current consumption of 57 mA, which contributes to its efficiency. It also features a tuning voltage range from 0 to 13V, allowing for frequency adjustments within its specified range. The component is housed in a compact 4x4 mm SMT package, facilitating easy integration into various circuits.
This VCO is suitable for applications such as point-to-point radios, VSAT, and test equipment, where high-frequency stability and low phase noise are essential.
Pinout
Manufacturer
Application
1. Wireless Communications: Utilized in transceivers for cellular, Wi-Fi, and other wireless communication systems.
2. Test and Measurement Equipment: Employed in signal generators and spectrum analyzers for testing RF components.
3. Satellite Communications: Used in frequency synthesis for satellite communication systems.
4. Radar Systems: Supports frequency modulation in radar applications.
5. Instrumentation: Integrated into RF and microwave instrumentation for signal processing.
Its compact design and wide frequency range make it versatile for many high-frequency applications.