XEMOD RESERVES THE RIGHT TO MAKE CHANGES TO THIS SPECIFICATION WITHOUT FURTHER NOTICE. BEFORE THE
PRODUCT DESCRIBED HERE IS WRITTEN INTO SPECIFICATIONS OR USED IN CRITICAL APPLICATIONS, THE PERFORMANCE
CHARACTERISTICS SHOULD BE VERIFIED BY CONTACTING XEMOD.
Xemod QuikPAC Data www.xemod.com Rev. A (11-21-00) Page 1 of 3
QPP-009
QPP-009
60W, 869-894MHz
QuikPAC Module Data Class AB Power Stage
General description:
The QPP-009 QuikPAC™ RF power module is a Class AB
amplifier stage designed for use in the driver or output stage of
linear RF power amplifiers for cellular base stations. The power
transistors are fabricated using Xemod’s advanced design LDMOS
process. This unit has a factory set, regulated and temperature
compensated gate bias, eliminating the need for the user to provide
adjustable gate bias voltage circuits and make individual bias
adjustments during stage alignment.
Features:
Single Polarity Operation
Matched for 50 Ω RF interfaces
XeMOS FET Technology
Stable Performance
QuikPAC System Compatible
QuikClip or Flange Mounting
Standard Operating Conditions
Parameter Symbol Min Nom Max Units
Frequency Range
F
869 894 MHz
Supply (Drain) Voltage
VD
26.0 28.0 32.0 VDC
Bias (Gate) Voltage
VG
11.0 12.0 13.0 VDC
Bias (Gate) Current, Average
IG
40 mA
RF Source & Load Impedance
Ω
50 Ohms
Load Impedance for Stable Operation (All Phases) VSWR 10/1
Operating Baseplate Temperature T
OP
-20 +90 ºC
Output Device Thermal Resistance, Channel to Baseplate
Θjc
1.1 ºC/W
Maximum Ratings
Parameter
Symbol Value Units
Supply (Drain) Voltage VDD 35 VDC
Control (Gate) Voltage, VDD = 0 VDC VG 15 VDC
Input RF Power PIN 5 W
Load Impedance for continuous operation without damage VSWR 3:1
Output Device Channel Temperature 200 ºC
Lead Soldering Temperature +190 ºC
Storage Temperature T
STG
-65 to +150 ºC
Performance at 28VDC & 25ºC
Parameter Symbol Min Nom Max Units
Supply (Drain) Voltage
V
D1,2
27.5 28.0 28.5 VDC
Quiescent Current (total) (1)
IDQ
540 600 660 mA
Power Output at 1 dB Compression (single tone)
P-1
60 70 W
Gain at 12W PEP (two tone)
G
14.0 15.0 dB
Gain Variation over frequency at 12W Output (two tone)
∆G
0.3 0.5 dB
Input Return Loss (50 Ω Ref) at 12W PEP (two tone)
IRL
12.0 14.0 dB
Drain Efficiency at 60W P
out
(single tone)
η
40 45 %
Drain Efficiency at 60W PEP (two tone)
η
30 32 %
3rd Order IMD Product (2 tone at 60W PEP;1 MHz spacing)
-28 -26 dBc