PRODUCT


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  • AVBR0220H40.png

AVBR0220H40

Start Freq. (MHz) : 200

Stop Freq. (MHz) : 2000

Pout (W) : 10

Gain(dB) : 40

Vd (VDC) : 24

Current(A) : 2.5

Description

The AVBR0220H40 is a 10W high gain Solid State High Power Amplifier. This amplifier module utilizes the latest high power RF GaN transistors and also features high efficiency and linearity, with protection functions to ensure high availability. With good Amplitude and Phase Consistency, This amplifier is suitable for Linear System and high power combination.

Features

0.2GHz‐2.0GHz frequency range                                                                    Solid‐state Class AB Broadband design
Psat 40dBm Min.41.8dBm Typ                                                                        Instantaneous ultra‐broadband
Power gain 42dB                                                                                                Suitable for CW, Pulse, Modulated Signal
50 ohm input/output impedance                                                                   Small and lightweight
Built‐in control, monitoring and protection circuits                                    High reliability and ruggedness

Description

Description

Symbol

Min

Typ

Max

Unit

Operating Frequency

BW

0.2

 

2.0

GHz

Output Power CW@ Pin= 0 dBm

Psat

10

15

 

W

Output Power CW @ P1dB

P1dB

5

8

 

W

Power Gain @ Pin= 0 dBm

Gp

41

42

 

dB

Power Gain Flatness @Pin= 0 dBm

ΔGp

 

±1

±1.5

dB

Input Power for Rated PSAT

PIN

 

0

 

dBm

Harmonics @ Pin= 0 dBm

2nd/3rd

 

-15/-15

 

dBc

Noise Figure*

NF

 

9

11

dB

Spurious Signals@ Pin= 0 dBm

Spur

 

-70

-60

dBc

Input Return Loss

S11

 

-15

-10

dB

Third Order Intercept Point

2-Tone @ 30dBm/Tone, 1MHz Space*

 

IP3

 

 

48

 

 

dBm

Operating Voltage

VDC

22

24

26

V

Current Consumption @ Pout= 10~12 W

IDD

 

2.5

3.0

Amp

Current Consumption @ Shutdown

ISD

 

0.1

0.2

Amp

Quiescent Current

IDQ

 

2.3

3

Amp

Switching Time @ 1kHz TTL, PIN = -2dBm

TON/TOFF

 

1

2

µs

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