HMC232ALP4E Overview
The HMC232ALP4E is a high-performance analog phase shifter designed for precision phase control in RF and microwave applications. Operating over a wide frequency range, this device delivers low insertion loss and high phase accuracy, making it ideal for phased array systems, radar, and communication equipment. Packaged in a compact surface-mount form factor, it supports seamless integration into complex electronic designs while maintaining stable performance. Engineers and sourcing specialists will find the HMC232ALP4E a reliable component for enhancing system phase manipulation with minimal power consumption and robust environmental tolerance. For more details, visit IC Manufacturer.
HMC232ALP4E Technical Specifications
| Parameter | Specification |
|---|---|
| Frequency Range | 8 GHz to 12 GHz |
| Phase Shift Range | 0?? to 360?? |
| Phase Resolution | 11.25?? per step (32 steps) |
| Insertion Loss | 4.5 dB (typical) |
| Return Loss | ??12 dB |
| Control Interface | 5-bit parallel digital control |
| Power Supply | +5 V DC |
| Package Type | 4×4 mm 16-lead LFCSP |
HMC232ALP4E Key Features
- Wide frequency coverage: Supports 8 GHz to 12 GHz operation, enabling use in various X-band RF systems.
- Digital phase control: 5-bit parallel interface offers 32 discrete phase steps for precise and repeatable phase adjustments.
- Low insertion loss: Minimizes signal attenuation, improving overall system efficiency and signal integrity.
- Compact packaging: The 4×4 mm LFCSP package allows high-density board layouts and easy surface mounting.
- High return loss: Ensures low signal reflections and improved impedance matching for better RF performance.
- Robust DC power requirements: Operates from a single +5 V supply, simplifying power management in complex systems.
HMC232ALP4E Advantages vs Typical Alternatives
Compared to typical analog phase shifters, this model provides enhanced phase resolution and lower insertion loss, resulting in improved signal fidelity and system accuracy. Its digital control interface simplifies integration with modern digital control systems, reducing control complexity and improving repeatability. The compact LFCSP package supports high-density system designs while maintaining robust electrical performance, making it a superior choice for demanding RF and microwave applications.
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Typical Applications
- Phased array radar systems requiring precise beam steering with minimal signal loss and robust phase control over X-band frequencies.
- Satellite communication systems where accurate phase adjustment is critical to maintaining signal integrity across long-distance links.
- Test and measurement equipment that demands repeatable and stable phase shift control for calibration and analysis tasks.
- Military and aerospace RF subsystems requiring rugged, reliable analog phase shifters capable of operating in harsh environments.
HMC232ALP4E Brand Info
The HMC232ALP4E is part of the HMC series of RF and microwave components known for precision, reliability, and integration flexibility. This series is engineered to meet the stringent requirements of high-frequency applications, offering designers advanced solutions for phase control and signal manipulation. The product is manufactured using proven GaAs MMIC technology, ensuring consistent performance, long-term stability, and compatibility with complex system architectures. Its reputation among engineers in aerospace, defense, and communications markets underscores its role as a trusted analog phase shifting component.
FAQ
What frequency range does the HMC232ALP4E cover?
This device operates over a frequency range from 8 GHz to 12 GHz, making it suitable for X-band applications such as radar and satellite communications. The wide frequency coverage ensures compatibility with many RF systems requiring precise phase control.
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How is the phase controlled in the HMC232ALP4E?
Phase control is achieved digitally via a 5-bit parallel interface, providing 32 discrete phase steps with an 11.25?? resolution per step. This digital control allows for precise and repeatable settings without the need for analog tuning components.




