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HMC653LP2E
+NomenclatureRF ATTENUATOR 3DB 50OHM 6TDFN
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FabricantAnalog Equipment GmbH.
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Pièce fabricant #HMC653LP2E
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Fiche technique HMC653LP2E DataSheet
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Package DFN-6
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En stock7720
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Spécifications
| Attribut | Valeur |
| Package / Case | Strip |
| Part Status | Active |
| Attenuation Value | 3dB |
| Frequency Range | 0 Hz ~ 25 GHz |
| Impedance | 50 Ohms |
Présentation
Description
Key features of the HMC653LP2E include its ability to detect phase differences between two input signals and output a corresponding frequency error signal. This functionality is crucial in phase-locked loops (PLLs) for frequency synthesis and signal synchronization. The IC comes in a compact package, facilitating its integration into space-constrained designs.
The device operates with low power consumption and offers high-speed performance with low jitter, enhancing signal integrity in various applications. Its robust design ensures reliability in demanding environments, making it a versatile choice for engineers working on advanced RF system designs.
Equivalent
Features
Pinout
1. Pin Count: 12 pins
2. Function: The HMC653LP2E is designed for use in RF and microwave applications. It operates over a wide frequency range from DC to 20 GHz, providing high isolation and low insertion loss. Typical applications include signal routing in RF test equipment, communication systems, and other RF systems where high frequency and fast switching are required.
For detailed pin configurations and assignments, refer to the datasheet provided by Analog Devices, which will include information on ground pins, RF input/output pins, control pins, and any other specific functionalities associated with individual pins.
Manufacturer
Application
1. Wireless Infrastructure: Enhancing signal quality in base stations, repeaters, and transceivers.
2. Microwave Radio: Supporting high-frequency communication links.
3. Radar Systems: Improving performance in both commercial and military radar.
4. Test and Measurement Equipment: Providing precise signal generation and analysis.
5. Satellite Communication: Ensuring reliable frequency conversion in satellite systems.
Its design facilitates integration into compact and efficient RF and microwave systems, making it suitable for these advanced communication and signal processing applications.