Allicdata Part #: | 1127-2991-ND |
Manufacturer Part#: |
HMC534LP5E |
Price: | $ 0.00 |
Product Category: | RF/IF and RFID |
Manufacturer: | Analog Devices Inc. |
Short Description: | IC MMIC AMP VCO HBT GAAS 32-QFN |
More Detail: | RF IC VCO General Purpose 10.6GHz ~ 11.8GHz Triple... |
DataSheet: | HMC534LP5E Datasheet/PDF |
Quantity: | 122 |
Series: | -- |
Packaging: | Cut Strip |
Part Status: | Active |
Function: | VCO |
Frequency: | 10.6GHz ~ 11.8GHz |
RF Type: | General Purpose |
Secondary Attributes: | Triple Outputs (Divide by 2, Divide by 4, Standard) |
Package / Case: | 32-VFQFN Exposed Pad |
Supplier Device Package: | 32-QFN (5x5) |
Base Part Number: | HMC534 |
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RF misc ICs and Modules are devices that are designed to aid in communication over short distances. They are typically used in wireless networks such as those found in home and business settings, as well as for various types of industrial equipment. One type of RF misc ICs and Modules is the HMC534LP5E, which is a low-power amplifier, designed to aid in the transmission of signals over long distances. This IC is designed to work with low-level signals in frequencies ranging from 800 MHz to 2600 MHz, and can provide an output power of up to +34 dBm.
The HMC534LP5E is normally used in applications that require a long range signal amplifier to boost the signal of a transmitter. It is often used in radio communication systems, such as two-way radios, cellular networks, and Wi-Fi systems. It is also used in satellite communication systems, as it can provide sufficient gain to ensure reliable communication over long distances. In addition, it is often used for radio frequency (RF) instrumentation and in military applications, due to its ability to provide a high output power.
The HMC534LP5E is designed with state-of-the-art technologies, such as GaAs digital and active bias circuitry. This helps to provide high levels of efficiency and stability. In addition, it features a number of control features, such as adjustable bias voltage, variable gain control, and integrated power supply voltage regulation. This allows users to easily adjust the amplifier’s performance to suit their particular needs.
The HMC534LP5E works by receiving an input signal from a transmitter, amplifying the input signal, and then transmitting the amplified signal to the receiver. The amplifier uses a combination of linearity and gain control circuits to achieve its desired level of amplification. The gain control circuits can be adjusted to increase the output power of the amplifier, and to increase the linearity of the signal. The linearity of the signal is important in order to ensure reliable communication between the transmitter and the receiver.
The HMC534LP5E is designed to be energy-efficient, as it has a low power consumption. This makes it ideal for applications where low power is important, such as in battery-powered devices and solar-powered systems. In addition, it is designed to be resistant to interference and to ensure that the signal is free from distortion. This helps to ensure reliable communication without requiring excessive power. Lastly, the IC is designed to operate over a wide temperature range, which makes it suitable for use in a wide variety of environments.
The HMC534LP5E is a low-power amplifier, designed to aid in the transmission of signals over long distances. It is designed to work with low-level signals in frequencies ranging from 800 MHz to 2600 MHz, and can provide an output power of up to +34 dBm. This device is typically used in applications that require a long range signal amplifier to boost the signal of a transmitter. It is often used in radio communication systems, such as two-way radios, cellular networks, and Wi-Fi systems, as well as for satellite communication systems and in military applications. The HMC534LP5E is designed with state-of-the-art technologies, such as GaAs digital and active bias circuitry, and features several control features to make adjustments to the amplifier’s performance easier. It is designed to be energy-efficient and resistant to interference, and to operate over a wide temperature range, making it suitable for a wide variety of applications.
The specific data is subject to PDF, and the above content is for reference
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