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UAV NAVIGATION AMPLIFIER

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UAV Navigation Amplifier
UAV Communication Amplifier
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Amplifier Design Request

1.2GHz 100W Amplifier

Frequency: 1150-1280MHz
Pout: >100W
Modulation Type: CW/FM/AM
Working Voltage: 28VDC

Place of Origin:

Shenzhen, China

Brand Name:

YONLIT, OEM,ODM

Model Number:

HPG50(1150-1280MHz)

Main Apllications: Amplify satellite navigation signals: GPS L1,L2, L4,L5;  BDS;  GALILEO L1 L5; GLONASS L1,L5.

  

Key specification:

Pout >100W at any frequency

Pout>100W from -25℃ to 80℃

  

Description(short)

  • LDMOS Device  ensure high efficiency and ultra broadband.
  • Continuous wave output  suitable for  CW ,FM or AM modulation
  • ALC control function of output power  or working current
  • Over-high VSWR to avoid or reduce the damage from any mismatch
  • Protection  over  short or open of output port
  • Pout and Gain of Temperature  compensation
  • Over-high temperature protection, Shutdown more than 75℃, auto-restart less than 50℃

  

Applications:

Government vehicle communication, Electronic warfare, electronic countermeasure, anti drone, counter UAV, government vehicle communication, Anti satellite navigation. SDR,

  

Competitive Advantage:

  • Output Power is stable 50dBm±0.5dB over full temperature range (-25℃ to 80℃) at same Frequency
  • Output Power is stable 50dBm±0.5dB over full working Frequency band at same temperature
  • LDMOS Device ensure low Spurious emission and low Harmonics emission,
  • Continuous wave output is suitable for CW ,FM or AM modulation
  • 31dB attenuation is easy to control gain and Pout
  • ALC (Auto Level Control) ensure high P1dB and high IP3.
  • Select ROGERS Rogers high-frequency printed circuit board (PCB) to ensure stability of Amplifier modules
  • All screws are made of stainless steel, the amplifier modules are corrosion-resistant
  • All of devices are new (including final RF power Amplifier),that assure high quality of modules
  • Isolator is embedded in amplifier modules at output port,  good VSWR and protect PA from damage.
  • Coupling SMA port of output power are accurate -40dB ± 1dB,easy for monitoring
  • With logarithmic RF Power detector, detector output of forward power and reversed power is linear-in-decibels.   
  • ALC control function with output power or working current
  • Protection over High VSWR and shutdown

* Over-high VSWR to avoid or reduce the damage from any mismatch

  • High Temperature Protection and re-start when temperature low down.

* Over-high temperature protection, Shutdown more than 75℃, auto-restart less than 50℃

  • With temperature compensation and frequency compensation ,  output power and gain of RF PA is more steady.
  • Monitoring and control I/O port of serial RS485 is optional

  

Remarks

  • PA should be operating on an appropriate radiator, otherwise it will shut down by over high-temperature.
  • Pout port cannot open or short, otherwise may burn and damage PA.
  • Pout port should should be connect to a probably Load, Attenuator or antenna (50 ohms, more than 100W handling Power, lower than VSWR 2.0). 
  • The power supply range and polarity of power supply must be correct, otherwise will damage the PA.
  • Pout probably lower than the rated power when input Power less than 5dBm; PA probably is damaged if Pin is higher than 12dBm

 

Description

The main lobe direction of the GPS antenna on the drone is facing towards the sky, which can provide some isolation from ground interference. The size of isolation depends on the quality of the antenna, installation method, and the structure and materials of the drone itself. If the antenna is installed in the center position of the drone and there is a whole piece of carbon fiber mesh board on the drone to block the ground direction, it can usually provide 30-40 dB of isolation. If the antenna directionality is poor and the installation is not vertical enough, the isolation will be reduced. Assuming the gain of the drone GPS antenna to the ground defender (interference source) is -40dB, and the gain to the sky meets the requirements for normal GPS antenna reception, that is, the total reception level can reach -120dBm. The drone is 100 meters away from the ground, and the antenna gain of the interference transmitter is 0. According to the free space loss formula, the required transmission power is: Pt=Pr+32.45+20logd+20logf-G=-83+32.45-20+64+40=33.45dBm

The above calculation means that if the interference bandwidth is moderate, only 2W of transmission power is needed to kill unmanned aerial vehicle GPS within a range of 100 meters. If the interfering antenna has a 6dB gain, then only 0.5W power is needed. It was found through actual testing that the 0.01W power noise amplitude modulation (1) brand unmanned aerial vehicles extensively use lightweight plastic, resulting in GPS antenna ground isolation being far less than 40dB.

The total received level cannot reach -120dBm (which is close to the theoretical optimal value and is usually considered as -130dBm in engineering).

The cheap receiver despreading scheme is too simplified and does not fully utilize the 43dB spreading gain.

The simplest broadband signal is noise frequency modulation. Of course, stronger correlation interference can also be used to deceive, such as using GPS simulators to generate some false signals. But considering that the interference power is already not large, it seems unnecessary to incur this expense.

 

Specifications:

No.

Item

Description

1

 Frequency Range

1170-1280MHz

or Customized

2

Max Pout

50dBm±0.5dB (over Frequency at same temperature)

50dBm±0.5dB (over temperature at same Frequency)

3

Pout Adjust

 

If atcual-Pout is not equal to the target-Pout in every 60 micro-seconds, the ATT value need to be increased or decreased by 1dB step in the range of 0-31dB, till the actual-Pout is equal to the target-Pout

4

Pin range

5-10dBm

5

Gain

>48dB±1.5dB (over Frequency at same temperature)

6

 Gain Adjust

31dB;  1dB Step;  ±1.5dB Err (at Pin<-8dBm)

7

RF Port VSWR

≤1.5, 50 Ohms

8

Working Voltage

<10A  @28VDC±1V

9

RF IN Connector

SMA - Female

10

RF Out Connector

NK or SMA - Female

11

Dimension

210*110*25mm (Exclusive Connector)

12

Power Supply Port

Pull-core Capacitor

13

Working Temperature

-25----+65℃

14

Protection

Shutdown more than 75℃, auto-restart less than 50℃

Shutdown when reversed power more 25W, auto-restart after about 30s

  

I/O Port

DB15F

Description

IN/Out (D/A)

PIN1

1dB (Hang in air or add 5V: No ATT;  Grounding: Enable ATT)

IN, Data

PIN2

2dB (Hang in air or add 5V: No ATT;  Grounding: Enable ATT)

IN, Data

PIN3

4dB (Hang in air or add 5V: No ATT;  Grounding: Enable ATT)

IN, Data

PIN4

8dB (Hang in air or add 5V: No ATT;  Grounding: Enable ATT)

IN, Data

PIN5

16dB (Hang in air or add 5V: No ATT;  Grounding: Enable ATT)

IN, Data

PIN7

Pr (reversed RF Power, 0.05V/dB,  10dB range,  2-2.3V@40dBm)

Out, Analog

PIN10

Pf (Forward RF Power, 0.05V/dB,  20dB range,  2-2.3V@100W)

Out, Analog

PIN11

EN (5V: PA OFF; Hang in air or grounding: PA ON)

IN, Data

PIN12

TA (Temperature alarm, Alarm: 5V, Normal: 0V)

Out, Data

PIN13

VA (VSWR Alarm, Alarm: 5V, Normal: 0V)

Out, Data

PIN14

Tc (Temperature:0.01V/1℃,  0.75V @25 ℃ )

Out, Analog

PIN15

GND

GND

 

I/O Option3: Customized RS485, DB9Male

PIN1,PIN2

RS485A

PIN3,PIN4:

RS485B

Data Protocol

China Mobile Standard, Baud Speed: 19200

图片4.png

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