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HMC1126ACEZ
+StücklisteIC RF AMP GPS 400MHZ-52GHZ 24LGA
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HerstellerAnalog Devices Inc.
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Herstellerteil #HMC1126ACEZ
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Datenblatt HMC1126ACEZ DataSheet
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Auf Lager3917
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Part Status | Active |
| Frequency | 400MHz ~ 52GHz |
| P1dB | 17.5dBm |
| Gain | 12dB |
| Noise Figure | 6dB |
| RF Type | General Purpose |
| Voltage - Supply | 3.3V ~ 5V |
| Current - Supply | 85mA |
| Test Frequency | 40GHz ~ 26GHz |
| Mounting Type | Surface Mount |
| Package / Case | 24-LFLGA Exposed Pad |
| Supplier Device Package | 24-LGA-CAV (5x5) |
Übersicht
Description
The HMC1126ACEZ operates over a wide frequency range, typically from DC to 67 GHz, making it suitable for a variety of applications, including telecommunications, test and measurement, and aerospace and defense. Its low insertion loss and high isolation characteristics enhance signal integrity and minimize interference, making it ideal for demanding RF systems.
The switch is housed in a compact 2.025 mm x 2.025 mm LGA package, facilitating integration into space-constrained designs. It features low power consumption and can be controlled via a simple voltage input, offering ease of use in complex systems.
Overall, the HMC1126ACEZ is a robust choice for engineers seeking a reliable and efficient RF switch for high-frequency signal routing applications.
Equivalent
1. Analog Devices' HMC540A, another MMIC voltage variable attenuator.
2. Qorvo's QPC6222, suitable for similar RF applications.
3. Mini-Circuits' DAT series, like the DAT-31A+, which might serve similar functions.
While specifications can vary, these products serve similar roles in RF signal attenuation. Always verify with datasheets to ensure compatibility.
Features
1. Frequency Range: Operates from 71 GHz to 86 GHz, making it suitable for various millimeter-wave applications.
2. High Gain: Provides a typical gain of 22 dB, ensuring signal amplification for effective transmission and reception.
3. Output Power: Delivers a saturated output power of +18 dBm, facilitating robust signal strength.
4. Linear Performance: Exhibits a high output third-order intercept point (OIP3) of +26 dBm, supporting linear signal amplification.
5. Compact Package: Available in a compact, leadless 3.5 mm x 3.5 mm surface-mount package, ideal for space-constrained applications.
6. Supply Voltage: Operates with a typical supply voltage of 4 V, maintaining energy efficiency.
7. Low Noise Figure: Features a low noise figure of 4 dB, enhancing signal clarity and reducing distortion.
8. Thermal Management: Designed to operate within a wide temperature range, ensuring reliability in various environments.
These features make the HMC1126ACEZ suitable for telecommunications infrastructure, radar systems, and other high-frequency communication applications.
Pinout
Key features of the HMC1126ACEZ include:
- Frequency range of operation from 24 GHz to 34 GHz.
- High isolation between the RF and LO (Local Oscillator) ports.
- Integrated LO amplifier and matching for ease of use.
- Suitable for high-frequency applications such as point-to-point radios, test equipment, and military systems.
The 24-pin configuration includes connections for RF input, LO input, IF output, power supply, and ground, among other control and biasing functions. This compact package facilitates integration into RF systems requiring high performance in terms of isolation and image rejection.
Manufacturer
Application
1. Wireless Infrastructure: Supports frequency conversion in base stations and transceivers.
2. Test and Measurement Equipment: Enhances accuracy and efficiency in spectrum analyzers and signal generators.
3. Satellite Communications: Facilitates up/down conversion in satellite transponders.
4. Radar Systems: Aids in frequency conversion for radar signal processing.
5. Point-to-Point Radio: Used in backhaul communication systems for data transmission.
These applications leverage the mixer's ability to deliver low conversion loss, high linearity, and excellent isolation.