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RF Amplifiers

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MAX2616ETA+T
Maxim Integrated
RF Amp Single Broadband Amp 4GHz 5.25V 8-Pin TDFN EP T/R
Quantity: 28929
Ship Date: 10-18 working days
1+ $2.4138
- +
x $2.4138
Ext. Price: $142.41
MOQ: 59
Mult: 1
SPQ: 1
MAX2611EUS-T
Maxim Integrated
1.1GHz 17.3dB TO-253 SMD mount
Quantity: 2833
Ship Date: 13-17 working days
1+ $3.4884
10+ $3.0114
25+ $2.8443
100+ $2.6139
250+ $2.4758
500+ $2.3783
1000+ $2.2863
- +
x $3.4884
Ext. Price: $467.44
MOQ: 134
Mult: 1
SPQ: 1
MAX2373ETC
Maxim Integrated
940MHz 10.5dB 850MHz LCC-12 SMD mount
Quantity: 76399
Ship Date: 10-18 working days
1+ $0.537
- +
x $0.537
Ext. Price: $140.15
MOQ: 261
Mult: 1
SPQ: 1
MAX2634AXT+T
Maxim Integrated
433MHz 2.5mA 15.5dB -29dBm 1.25dB 315MHz RKE, SC-70-6
Quantity: 0
Ship Date: 10-15 working days
- +
x $
Ext. Price:
MOQ: 2500
Mult: 2500
SPQ: 2500
MAX3645EEE+
Maxim Integrated
5.5V 1 2.97V QSOP SMD mount 4.98mm*3.99mm*1.481mm
Quantity: 0
Ship Date: 10-15 working days
- +
x $
Ext. Price:
MOQ: 100
Mult: 100
SPQ: 100

RF Amplifiers

RF Amplifier Definition:
An RF (Radio Frequency) amplifier is an electronic device that increases the power of an input radio frequency signal. It is a critical component in wireless communication systems, where it boosts the signal strength to ensure reliable transmission over long distances or through obstacles.

Function:
The primary function of an RF amplifier is to amplify weak signals without introducing significant distortion or noise. This is achieved by using various amplification techniques, such as class A, B, AB, or C, depending on the application's efficiency and linearity requirements. RF amplifiers are designed to operate within a specific frequency range, which can vary from low-frequency bands to high-frequency bands, including microwave frequencies.

Applications:
1. Communication Systems: Used in base stations, repeaters, and communication to enhance signal strength.
2. Broadcasting: Amplifies signals for radio and television broadcasting.
3. and Defense: Employed in radar systems, electronic warfare, and secure communications.
4. Medical Equipment: Utilized in diagnostic and therapeutic equipment, such as MRI and RF ablation.
5. Test and Measurement: Essential in equipment that measures and analyzes RF signals.

Selection Criteria:
1. Frequency Range: The amplifier must cover the frequency band of the application.
2. Gain: The amount of amplification required, which should be sufficient for the intended use.
3. Output Power: The power level needed at the output to meet the system's requirements.
4. Linearity: The ability to amplify signals without distortion, particularly important for maintaining signal integrity.
5. Noise Figure: A measure of the amplifier's noise contribution, which should be as low as possible to preserve signal quality.
6. Efficiency: The ratio of output power to input power, which affects the amplifier's power consumption and heat generation.
7. Size and Weight: Important for portable or space-constrained applications.
8. Cost: The budgetary constraints of the project.

When selecting an RF amplifier, it is also crucial to consider the environment in which it will operate, such as temperature, humidity, and potential exposure to electromagnetic interference (EMI). Additionally, the amplifier's reliability and durability should be taken into account, especially for applications where downtime is not an option.
Please refer to the product rule book for details.