HMC260ALC3B Технический паспорт, PDF | цены
- Бренды: Аналоговые Устройства Inc.
- Скачать: HMC260ALC3B Техническое описание PDF
- Цена: расследование
- В наличии: 3636
- Тип РФ: VSAT
- Частота: 10 ГГц ~ 26 ГГц
- Прирост: -
- Упаковка: 12-CLCC открытая прокладка

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HMC260ALC3B Features
The HMC260ALC3B is a high-performance broadband amplifier designed for use in communication systems. It provides excellent gain with low noise and distortion, making it ideal for applications like RF and microwave circuits. With its wide frequency range and high output power, the HMC260ALC3B is perfect for signal amplification in systems that require high-speed and reliable performance.
Основные характеристики:
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Wide frequency range from 50 MHz to 6 GHz
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Low noise figure for clear signal transmission
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High output power for strong signal amplification
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Compact and reliable for integration into communication systems
The HMC260ALC3B is perfect for applications like wireless communication, radar, and test equipment, offering both versatility and high-quality performance.
HMC260ALC3B Pinout
Приколоть | Функция |
---|---|
1 | Vcc (Power Supply) |
2 | GND (земля) |
3 | Input (RF Input) |
4 | Output (RF Output) |
5 | Vgg (Bias Voltage) |
Pinout Usage and Tips
The HMC260ALC3B features a simple pinout with five pins. Pin 1 (Vcc) connects to the power supply, providing the necessary voltage for the amplifier to function. Pin 2 (GND) is the ground pin, which is essential for completing the circuit. Pin 3 is the RF input, where the signal enters, and Pin 4 is the RF output, where the amplified signal is sent out. Pin 5 (Vgg) is used to supply the bias voltage for the device.
When using the HMC260ALC3B, make sure to properly connect the power and bias voltage pins to ensure the amplifier operates correctly. Keep the signal paths as short and clean as possible to avoid any signal degradation, and ensure that the power supply is stable to maintain consistent performance.
HMC260ALC3B Equivalent
Модель | Frequency Range | Прирост | Выходная мощность | Напряжение питания | Тип упаковки | Основные характеристики |
---|---|---|---|---|---|---|
HMC260ALC3B | 50 MHz to 6 GHz | 19 дБ | 18 dBm | 5В | LCC-3 | Broadband amplifier, low noise |
HMC7040 | 50 MHz to 6 GHz | 20 дБ | 17 dBm | 5В | LCC-3 | High gain, low distortion |
HMC781 | 50 MHz to 6 GHz | 17 дБ | 15 dBm | 5В | LCC-3 | Low noise, high linearity |
HMC488 | 50 MHz to 6 GHz | 18 дБ | 16 dBm | 5В | LCC-3 | Broadband, low noise figure |
Substitution Notes
When considering alternatives to the HMC260ALC3B, the HMC7040 offers slightly higher gain (20 dB) but with slightly lower output power (17 dBm). The HMC781 has a bit less gain (17 dB), but it still performs well with low noise and high linearity, making it a good option for systems requiring high signal integrity. The HMC488 offers similar features to the HMC260ALC3B, with a good balance of gain and output power. Always ensure that the substitute model fits your design requirements, especially in terms of frequency range, gain, and power handling.
Choosing the Right Amplifier
When choosing an alternative to the HMC260ALC3B, it’s important to consider factors like gain, output power, and frequency range. The HMC7040 offers higher gain but slightly lower output power, while the HMC781 focuses on low noise and high linearity, making it ideal for high-fidelity systems. If you need something similar in performance, the HMC488 offers a balanced solution with good gain and output power. Be sure to match the specific needs of your project, considering key parameters like frequency range and power handling, to ensure smooth integration.
Here’s the application circuit for the HMC260ALC3B, a broadband GaAs MMIC double-balanced mixer designed for upconversion and downconversion in the 10 GHz to 26 GHz frequency range. This mixer is widely used in point-to-point radios, VSAT systems, test equipment, and military applications.
Circuit Overview
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Passive Operation: The HMC260ALC3B is a passive device and does not require any external components or matching circuitry.
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Internal Coupling: The Local Oscillator (LO) and Radio Frequency (RF) pins are internally AC-coupled.
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Intermediate Frequency (IF) Pin: The IF pin is internally DC-coupled. When IF operation to DC is not required, the use of an external series capacitor is recommended to pass the necessary IF frequency range.
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Заземление: Proper grounding is essential for optimal performance. The package ground leads and the exposed pad should be directly connected to the ground plane.
Design Tips
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Impedance Matching: Ensure that signal lines have 50 Ω impedance to maintain signal integrity.
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Компоновка печатной платы: Use sufficient via holes to connect the top and bottom ground planes, minimizing inductance and noise.
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Управление температурным режимом: The device has a maximum operating temperature of +85°C. Adequate heat dissipation should be considered in the PCB design.
For a detailed schematic and further information, refer to the Analog Devices datasheet.