ADPA1105

RECOMMENDED FOR NEW DESIGNS

46 dBm (40 W), 0.9 GHz to 1.6 GHz, GaN Power Amplifier

Part Models
2
1ku List Price
Starting From $329.04
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Part Details

  • Output power with PIN = 19 dBm: 46 dBm typical
  • Small signal gain: 34.5 dB typical at 0.9 GHz to 1.4 GHz
  • Power gain with PIN = 19 dBm: 27 dB typical
  • Bandwidth: 0.9 GHz to 1.6 GHz
  • PAE with PIN = 19 dBm: 60% typical at 0.9 GHz to 1.4 GHz
  • Supply voltage: VDD = 50 V at 400 mA on 10% duty cycle
  • 32-Lead, 5 mm × 5 mm, LFSCP_CAV package
ADPA1105
46 dBm (40 W), 0.9 GHz to 1.6 GHz, GaN Power Amplifier
ADPA1105 Functional Block Diagram ADPA1105 Pin Configuration Diagram
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Tools & Simulations


Evaluation Kits

eval board
ADPULSERPLUSEBZ

Pulser Plus Reference Design for GaN PA Biasing and Sequencing

Features and Benefits

  • Complete Bias Control and Sequencing Solution for Pulsed GaN Radar Power Amplifiers
  • Pin Compatible with ADI's existing Pulser Board and with ADI's GaN Power Amplifier Evaluation Boards
  • Operation in Drain Pulsed Mode or Gate Pulsed Mode
  • Optional Crowbar Circuit for Fast Turn Off in Drain Pulsed Mode
  • Single 24 V to 50 V Power Supply with on-board Negative Gate Voltage Generation.
  • Drain Current Monitoring Circuit

Product Details

Pulser Plus is a reference design for biasing Gallium Nitride RF Power Amplifiers. It plugs directly into Analog Devices’ GaN PA evaluation boards such as ADPA1106 and ADPA1107. The only input signals required to control and operate the board are a power supply voltage between 24 V and 50V and a 0V/3V signal on the Drain Pulse Enable or Gate Pulse Enable digital inputs.

Pulser Plus was specifically designed to enable fast pulsing of GaN Radar Power Amplifiers. It can support RF pulses as short as 1us and with rise and fall times of less than 100 ns in both Drain Pulsed mode and Gate Pulsed Mode.

eval board
EVAL-ADPA1105

Evaluating the ADPA1105 46 dBm (40 W), 0.9 GHz to 1.6 GHz, GaN Power Amplifier

Features and Benefits

  • 2-Layer Rogers 4350B evaluation board with heat spreader
  • End launch SMA jack RF connectors
  • Through calibration path
  • Drain or gate pulsing capability

Product Details

The ADPA1105-EVALZ consists of a 2-layer printed circuit board (PCB) fabricated from a 10 mil thick, Rogers 4350B copper clad mounted to an aluminum heat spreader. The heat spreader assists in providing thermal relief to the device as well as mechanical support to the PCB. Mounting holes on the heat spreader allow the spreader to be attached to a heat sink.

Alternatively, the spreader can be clamped to a hot and cold plate. The RFIN and RFOUT ports on the ADPA1105-EVALZ are populated by Subminiature Version A (SMA) female coaxial connectors, and the respective RF traces have a 50 Ω characteristic impedance. The ADPA1105-EVALZ is populated with components suitable for use over the entire operating temperature range of the device. To calibrate board trace losses, a through calibration path is provided between the J6 and J5 connectors. J6 and J5 must be populated with SMA RF connectors to use the through calibration path.

Ground, power, gate control, and the detector output voltage are provided through two 4-pin headers (P1 and P2) and two 24-pin headers (P3 and P4) on the ADPA1105-EVALZ. The pinouts for these four headers are shown in Table 1 of the data sheet.

RF traces on the ADPA1105-EVALZ are 50 Ω, grounded, coplanar waveguide. The package ground leads and the exposed paddle connect directly to the ground plane. Multiple vias connect the top and bottom ground planes with particular focus on the area directly beneath the ground pad to provide adequate electrical conduction and thermal conduction to the heat spreader.

The ADPA1105-EVALZ ships with a drain pulsing board (pulser board) that can be plugged into the ADPA1105-EVALZ headers and configured to control the biasing of the ADPA1105 by providing a negative gate voltage and a control signal that connects and disconnects the drain voltage to the ADPA1105-EVALZ. The ADPA1105-EVALZ can also be operated alone in gate pulsed mode where a negative pulse is applied to the ADPA1105 VGG1 and VGG2 pins.

For full details on the ADPA1105, see the ADPA1105 data sheet, which must be consulted in conjunction with the user guide when using the ADPA1105-EVALZ.

ADPULSERPLUSEBZ
Pulser Plus Reference Design for GaN PA Biasing and Sequencing
ADPULSERPLUSEBZ Angle View ADPULSERPLUSEBZ Bottom View ADPULSERPLUSEBZ Top View ADPULSERPLUSEBZ Pulser Plus Block Diagram ADPULSERPLUSEBZ Drain Pulsed Mode Block Diagam
EVAL-ADPA1105
Evaluating the ADPA1105 46 dBm (40 W), 0.9 GHz to 1.6 GHz, GaN Power Amplifier
ADPA1105-EVALZANGLE-web ADPA1105-EVALZTOP-web ADPA1105-EVALZBOTTOM-web

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