| Allicdata Part #: | 1127-1625-ND |
| Manufacturer Part#: |
HMC951LP4E |
| Price: | $ 0.00 |
| Product Category: | RF/IF and RFID |
| Manufacturer: | Analog Devices Inc. |
| Short Description: | IC MMIC IQ DOWNCONVERTER 24-QFN |
| More Detail: | RF Mixer IC General Purpose Down Converter 5.6GHz ... |
| DataSheet: | HMC951LP4E Datasheet/PDF |
| Quantity: | 1000 |
| Series: | -- |
| Packaging: | Cut Strip |
| Part Status: | Obsolete |
| RF Type: | General Purpose |
| Frequency: | 5.6GHz ~ 8.6GHz |
| Number of Mixers: | 1 |
| Gain: | 13dB |
| Noise Figure: | 2dB |
| Secondary Attributes: | Down Converter |
| Current - Supply: | 55mA |
| Voltage - Supply: | 5V |
| Package / Case: | 24-VFQFN Exposed Pad |
| Supplier Device Package: | 24-SMT (4x4) |
| Base Part Number: | HMC951 |
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The HMC951LP4E RF Mixer is a device used to mix analog signals in radio frequency applications. It operates using its internal circuits and circuitry connected externally to achieve signal conversion. The HMC951LP4E is ideal for use in a variety of RF applications, including RF signal conditioning, IF signal processing, radar receiver designs, selective signal detection, and broadband communications.
The HMC951LP4E is a double-balanced mixer that is designed on a compound substrate of Monolithic Microwave Integrated Circuit (MMIC) technology. It features a very low conversion loss of up to 4 dB, wide frequency bandwidth, very linear operation, and high levels of isolation to other mixer ports. This makes it suitable for use in applications where high fidelity, wide frequency bandwidth, and high linearity is required.
The primary purpose of the HMC951LP4E is to convert radio frequency signals into an intermediate frequency (IF) signal, as most radio receivers require a single IF signal to process all signals received. This ability to detect and process multiple signals at once is the reason why RF mixers are used in many RF applications and signal processing systems.
The HMC951LP4E RF Mixer operates by taking two RF signals, usually an input signal and a local oscillator (LO) signal, and mixing them together. As a result of this process, the input and LO signals produce various frequency components, some of which are completely new and others which are shifted versions of the original signals. The result of the mixing process is the IF signal, which is the frequency component that the receiver will use. In order to ensure that the IF signal is of the correct frequency, the LO must be tuned to a specific frequency. This is done by adjusting its frequency either manually or electronically.
In its simplest form, the HMC951LP4E RF Mixer contains a pair of balanced passive devices which act as resistors when the mixer is active. The mixer also contains transistorized components which provide amplification, as well as capacitors, inductors, and transformers for signal isolation. When the LO and input signals are both applied to the mixer, a signal is produced in the output which is a combination of these two signals. This output signal then passes through a low-noise, wide-bandwidth amplifier for further amplification, as well as a filter to remove unwanted noise components.
Radiobase technology and its components including the HMC951LP4E RF Mixer have led to significant advances in RF applications. The increased accuracy and increased signal to noise ratio offered by the HMC951LP4E RF Mixer enables improved performance in a variety of radio frequency systems. From radio receivers to wireless base stations to RF signal conditioning and signal processing, the HMC951LP4E commandeers applications into making them better and more powerful.
The HMC951LP4E is also very cost-effective, making it attractive to a variety of markets. In addition, its low-noise and wide frequency bandwidth performance make it ideal for use in sensitive signal processing applications. With its high linearity and high isolation between mixer ports, the HMC951LP4E is a top choice for a variety of radio frequency applications.
The HMC951LP4E RF Mixer is an essential component if a reliable and accurate radio frequency system is needed. Its wide range of features and low investment cost make it a popular choice for radio frequency applications. Its ability to accurately convert IF signals and achieve signal isolation, along with its excellent linearity, makes this mixer one of the best on the market. With advanced technolgies like Radiobase, the HMC951LP4E RF Mixer is sure to remain a key component of RF application designs for many years to come.
The specific data is subject to PDF, and the above content is for reference
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HMC951LP4E Datasheet/PDF