1100-1400MHz 500W Compact High-Power RF Amplifier for Advanced Communication Systems

1100-1400MHz 500W Compact High-Power RF Amplifier for Advanced Communication Systems

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Description

The module is designed for commercial applications. The latest device technologies and design methods are employed to offer high power density, efficiency, and linearity in a smalllightweight  package.

Specification

Typical performance at +48V DC +25oC, and in a 50Ω system.


RF / ELECTRICAL

PARAMETER

MIN

TYP.

MAX

UNIT

Operating  Frequency

1100


1400

MHz

RF Pulsed signal (With External modulation signal)

RF INPUT


0


dBm

Duty cycle



10

%

Pulse width



20

us

P-sat Output Power


57


dBm

Power Gain


57


dB

Power Gain  Flatness


2


dB

Spurious Signals


-55


dBc

Harmonic  Signals


-20


dBc

Pulse delay(PA ON/OFF time)


1


us

Input  VSWR



2

In-Out impedance


50


Operating Voltage


48

50

V DC

Average Current@ 10% cycle


3

4

A


MECHANICAL

PARAMETER

VALUE

UNIT

Dimensions (L x W x  H)

200x150x30

mm

RF  Connectors (Input / Output)

SMA- KFD/ N- KFD

DC / Control Connector

D-SUB 7W2

Cooling

Consider heat dissipation with the system

Mounting

φ3.5-4 Thru Hole

Weight

2

kg


ENVIRONMENTAL / PROTECTIONS

PARAMETER

MIN

MAX

UNIT

Operating Temp. (Housing Temp.)

-20

+60

°C

Humidity Range

0-95

%


Connector Definition

AMPLIFIER CONNECTOR TYPE:

D-SUB 7W2

TRIAD CABLE PART NUMBER:

——

NUMBER

Definition

DESCRIPTION

A1

VDD

+48V

A2

GND

GND

1

Amp Enable

Enable : TTL Low”,  Disable : TTL High (Low : 0~0.5V, High : 2.5~5V)

(Pulse modulation synchronous signal, switch time less than 1us)

2

GND

Ground

 

3

Output Power

monitoring

Output Power Detection  (Output pulsed wave analog voltage)

@The peak of the pulse wave is relative to RF power

(0.1 ~ 3.0V relative to +30 dBm ~ +57dBm)

 

4

Reverse Power

monitoring

Reverse Power Detection  (Output pulsed wave analog voltage)

@The peak of the pulse wave is relative to RF power

(0.1 ~ 3.0V relative to +30 dBm ~ +57dBm)

5

Temp monitoring

Analog voltage relative to module temperature

@10mv/:V=0.5+10mv*△℃) (0 .75V  relative to 25℃)


Outline Dimensional Drawing

image.png

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