HMC7992LP3DE Overview
The HMC7992LP3DE is a high-performance, wideband frequency converter designed for demanding RF and microwave applications. This dual down-converter IC integrates two independent mixers capable of handling input frequencies from 2.5 GHz to 15 GHz, supporting applications requiring precise frequency translation and signal integrity. With excellent linearity and low LO drive requirements, it offers reliable performance for system designers focused on minimizing distortion and optimizing dynamic range. The compact 32-lead LGA package ensures ease of integration in space-constrained environments. For detailed technical information and sourcing options, visit Fabricante de CI.
HMC7992LP3DE Technical Specifications
Parámetro | Especificación |
---|---|
RF Input Frequency Range | 2.5 GHz to 15 GHz |
LO Frequency Range | 2.5 GHz to 15 GHz |
IF Output Frequency | DC to 4 GHz |
Conversion Gain | Typically 10 dB |
Figura de ruido | Typically 13 dB |
Input Third-Order Intercept (IIP3) | +21 dBm |
LO Drive Level | +17 dBm |
Tensión de alimentación | +5 V |
Tipo de envase | 32-lead LGA |
Temperatura de funcionamiento | De -40 °C a +85 °C |
HMC7992LP3DE Key Features
- Wide RF and LO Frequency Range: Supports 2.5 GHz to 15 GHz, enabling flexible frequency translation for various RF systems.
- Dual Independent Down-Converters: Two mixers in a single package allow simultaneous processing of separate RF signals, reducing board space and system complexity.
- High Linearity Performance: +21 dBm IIP3 ensures excellent signal fidelity and minimizes distortion in high dynamic range environments.
- Low LO Drive Power: +17 dBm LO drive reduces power consumption and eases LO source requirements, improving overall system efficiency.
- Compact 32-lead LGA Package: Facilitates integration in dense layouts while maintaining thermal and electrical performance.
- Wide IF Bandwidth: DC to 4 GHz IF output supports diverse modulation schemes and broadband signal processing.
- Robust Operation: Rated for industrial temperature ranges (-40??C to +85??C) ensuring reliability in harsh environments.
HMC7992LP3DE Advantages vs Typical Alternatives
This frequency down-converter stands out due to its combination of wide RF coverage and dual mixer integration, reducing system complexity compared to discrete solutions. Its high linearity (+21 dBm IIP3) and low noise figure enable superior signal accuracy and sensitivity, critical in demanding RF front-end designs. The device requires lower LO drive power, improving power efficiency and thermal management. Additionally, the compact LGA package facilitates easy integration in space-constrained industrial and aerospace systems, offering a reliable and cost-effective solution over typical alternatives.
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Aplicaciones típicas
- Multiband communication receivers requiring precise down-conversion from microwave frequencies to IF for signal demodulation and processing.
- Radar systems where high linearity and wideband operation enable accurate target detection and tracking.
- Test and measurement equipment benefiting from low noise and high dynamic range frequency conversion stages.
- Electronic warfare systems demanding dual independent down-conversion paths for simultaneous multi-channel signal analysis.
HMC7992LP3DE Brand Info
The HMC7992LP3DE is part of a comprehensive portfolio of RF and microwave components from a leading semiconductor manufacturer specializing in high-frequency integrated circuits. Designed to meet stringent performance and reliability standards, this device reflects the brand??s commitment to supporting advanced communications, defense, and instrumentation markets. With extensive documentation and global support structures, the product line ensures engineers and sourcing specialists have access to cutting-edge technology with proven quality.
PREGUNTAS FRECUENTES
What is the operating temperature range of this frequency converter?
The device operates reliably over a temperature range from -40??C to +85??C, making it suitable for industrial and harsh environment applications where temperature stability is critical.