AN26065A-PR Allicdata Electronics

AN26065A-PR RF/IF and RFID

Allicdata Part #:

AN26065A-PRDKR-ND

Manufacturer Part#:

AN26065A-PR

Price: $ 2.28
Product Category:

RF/IF and RFID

Manufacturer: Panasonic Electronic Components
Short Description: IC LNA UMTS TRIBAND 11WLCSP
More Detail: RF Amplifier IC Cellular, UMTS 824MHz ~ 960MHz, 1....
DataSheet: AN26065A-PR datasheetAN26065A-PR Datasheet/PDF
Quantity: 400
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 2A (4 Weeks)
1 +: $ 2.07270
10 +: $ 1.84842
25 +: $ 1.66345
100 +: $ 1.51572
250 +: $ 1.36783
500 +: $ 1.22734
1000 +: $ 1.03511
Stock 400Can Ship Immediately
$ 2.28
Specifications
Series: --
Packaging: Digi-Reel® 
Lead Free Status / RoHS Status: --
Part Status: Active
Moisture Sensitivity Level (MSL): --
Frequency: 824MHz ~ 960MHz, 1.71GHz ~ 2.17GHz
P1dB: -16dBm
Gain: 16.5dB
Noise Figure: 1.4dB
RF Type: Cellular, UMTS
Voltage - Supply: 2.85V
Current - Supply: 4.7mA
Test Frequency: 2.14GHz
Package / Case: 11-XFBGA, WLCSP
Supplier Device Package: 11-WLCSP (1.16 x 0.86)
Description

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The AN26065A-PR is an RF amplifier that is used for multi-band applications in a variety of fields. It is capable of delivering a wide bandwidth and excellent linearity, making it a viable choice for many applications. This article will delve into the various applications of the AN26065A-PR and discuss its working principle.

Applications of the AN26065A-PR

The AN26065A-PR is a multi-band amplifier commonly used in RF communication systems. It is well-suited for applications in base station subsystems, wireless networks, and satellite communication. Additionally, it is used in low-noise amplifier designs for medical, navigation, broadcasting, and wireless broadband applications. The AN26065A-PR is also used in ultra-low power WLAN devices due to its low-noise and high-efficiency performance.

In addition to its use in RF communication systems, the AN26065A-PR can be used for amplifier designs in optical communication systems. The amplifier is capable of providing wide bandwidths, low-distortion, and high linearity, making it an ideal choice for long-distance optical communication. Additionally, the AN26065A-PR is used in optical amplifier designs for point-to-point networks and LANs.

Working Principle of the AN26065A-PR

The AN26065A-PR is a high-powered RF amplifier that is designed to deliver a wide bandwidth and excellent linearity characteristics. The amplifier requires three voltage inputs: ​Vp​, ​Vn​, and ​Vee​. It features an internally matched input section that helps to reduce external matching components, thus reducing the system complexity. The amplifier also has a differential output with a low output impedance, which allows the amplifier to be used for applications requiring low insertion losses.

The AN26065A-PR operates with a common-source configuration and is powered by a voltage ​Vdd​. The drain voltage ​Vdd​ is applied to the drain of the transistor and the gate of the transistor is controlled by a biasing network. The biasing network sets the gate voltage to a point where the current and voltage gain of the amplifier are optimized.

The amplifier operates by taking the RF input signal, Amplifying it, and outputting a signal with higher power. The RF input signal is fed into the amplifier’s input section, where it is amplified by the transistor in the common-source configuration. The amplifier then uses the biasing network and voltage sources to adjust the gain of the amplifier, thus controlling the power output. The RF output signal is then sent to the output buffer, where it is buffered and then outputted.

Conclusion

The AN26065A-PR is an RF amplifier that is versatile and capable of providing excellent linearity and wide bandwidths. The amplifier is used in a variety of applications in RF communication systems, optical communication systems, and WLAN devices. The AN26065A-PR operates through a common-source configuration and is powered by a voltage source ​Vdd​. It is designed to take the input signal, amplify it, and output a signal with higher power levels. The biasing network of the amplifier can be used to adjust the gain of the amplifier, thus controlling the power output.

The specific data is subject to PDF, and the above content is for reference

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