Network Amplifier Application

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Network Amplifier Application – The CONNECTSERIES range of amplifiers can be connected to a network using Wi-Fi mode. Amplifiers with Wi-Fi provide a convenient connection method for installations that do not yet have network cable infrastructure available. When all your amplifiers are connected to Wi-Fi, you will be able to enter the IP address of each individual amplifier in a web browser and instantly monitor and control all amplifiers connected to the same Wi-Fi network.

When the device is connected to the repeater in AP mode, press the Wi-Fi icon displayed on the repeater status screen in the web user interface. This will take you to the network settings for your amplifier.

Network Amplifier Application

Network Amplifier Application

Now enter the SSID and password of the Wi-Fi network you want the amplifier to connect to.

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Once you have entered the SSID and password, press the “activation” button to activate the Wi-Fi.  When the switch is “Blue” and to the right, it is activated.

Once the Wi-Fi settings have been stored in the amplifier, you need to press the Wi-Fi button on the back panel of the amplifier to switch the amplifier from AP mode to Wi-Fi mode. When the Wi-Fi button light is “green”, the amplifier is in Wi-Fi mode.

Your amplifier will now connect to the Wi-Fi network. To confirm a successful connection, check the amplifier’s front display and it will show “WIFI: (Network SSID)” and the IP address below.

Once you have confirmed that your amplifier is connected to a Wi-Fi network, you need to go to the network settings of your device (PC, tablet or phone) and connect to the same Wi-Fi network.

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Once your device is connected, find the IP address on the front display of the amplifier and enter it in the web browser on your device (PC, tablet, mobile phone).

You are now connected to the amplifier via Wi-Fi and can control, monitor and configure the amplifier settings.

First, connect the CONNECTSERIES amplifier to the network with a Cat5 or Cat6 cable. (see instructions for connecting via cable mode)

Network Amplifier Application

Once the device is connected to the amplifier in wired mode, press the network tree icon that appears on the amplifier’s status screen in the web user interface. This will take you to the network settings for your amplifier.

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Now click on “Save” in the upper right corner. Your Am will automatically switch from wired mode to Wi-Fi mode.

If you have any questions or feedback on how to connect our CONNECTSERIES amplifiers with Wi-Fi mode, leave them in the comments below or contact us on our social network channels.

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Network Amplifier Application

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The feature-length documentary presents cutting-edge research with great potential for major impact in the field. A Feature Paper should be a large original article that includes several techniques or approaches, provides insights into future research directions, and describes possible research applications.

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By Fan YangFan Yang SciProfiles Scilit Preprints.org Google Scholar 1, 2, Leijun SongLeijun Song SciProfiles Scilit Preprints.org Google Scholar 2 and Yuehang XuYuehang Xu SciProfiles Scilit Preprints.org Google Scholar 1, *

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Submission received: November 8, 2022 / Revised: November 20, 2022 / Accepted: November 25, 2022 / Published: November 26, 2022

To meet the requirements of radar network applications for a high-efficiency power amplifier and second harmonic suppression (SHS), this paper proposes a C-band microwave monolithic integrated circuit (MMIC) 30 W amplifier of power (PA) based on a high 0.25 μm. electronic mobility. gallium nitride (GaN) transistor (HEMT) process. The proposed PA uses a two-stage amplifier structure to achieve high power gain. The topology with SHS is designed in the output network. In addition, large-signal model load simulation and harmonic control technology are used in the output stage to improve efficiency. At the same time, high additive power efficiency (PAE) and high SHS PA MMIC are achieved. In the frequency range of 5-6 GHz, various measurements of the proposed PA indicator show that the output power is more than 45 dBm, the PAE is more than 57%, the SHS is more than 45 dBc, the gain of power is more than 45 dBc. 24 dB, i.e., performed under conditions of 100 μs pulse width and 10% duty cycle. In addition, the size of the PA MMIC including the connection pad is 3.3 × 3.1 mm

Radar network; Performance Amplifier (PA); microwave monolithic integrated circuit (MMIC); additional energy efficiency (PAE); Second Harmonic Suppression (SHS)

Network Amplifier Application

Radar network technology increases the level of system independence through reasonable configuration and optimal use of various radars, and increases the ability of signal acquisition and target detection in the coverage area [1]. A radar network system consists of several decentralized transmission and reception stations, which have obvious advantages in anti-stealth, anti-jamming, target location and detection [2]. Each radar in the radar network system can work not only independently, but also cooperate with other radars to form a unified whole, which increases the flexibility of the system. The mutual interference between the radars in a network is wanted to be as small as possible, so a clear requirement is made for the harmonic energy produced by the components.

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With the improvement of GaN semiconductor technology, the research of GaN power amplifier (PA) has made great progress in recent years. It gradually replaced LDMOS PA in the application area. GaN PA is widely used in detection radar, satellite communication, electronic jamming system, solid-state transmitter and other industrial fields [3, 4, 5, 6, 7, 8, 9, 10, 11]. Compared to other semiconductor processes such as CMOS, SiGe, GaAs, InP, etc., GaN devices have a higher junction temperature, higher breakdown voltage and current density. Therefore, at the same size state, GaN power devices generate more output power. In addition, GaN on SiC devices can exhibit good thermal properties mainly due to the high thermal conductivity of SiC. In fact, PAs designed with GaN high electron mobility transistor (HEMT) technology not only have the characteristics of high output power, wide bandwidth and high efficiency, but also have the characteristics of high voltage and low current of GaN power devices. This advantage simplifies the secondary power conversion unit, thereby reducing some of the problems caused by carrying large currents.

In the radar transceiver module, the PA is one of the most important circuits. Its performance indicators, such as output power, gain, efficiency, etc., directly affect the power consumption of the transmitter, and its cost ratio is also the largest in the transceiver system. PA characteristics directly affect the power consumption, heat dissipation design and weight of the radar system [12]. In many previous research reports, high performance and high efficiency have always been the focus of Pas research [13, 14, 15, 16, 17, 18, 19, 20, 21, 22]. in

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