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PDF TQP7M9103 Data sheet ( Hoja de datos )

Número de pieza TQP7M9103
Descripción 1W High Linearity Amplifier
Fabricantes TriQuint Semiconductor 
Logotipo TriQuint Semiconductor Logotipo



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TQP7M9103
1W High Linearity Amplifier
Applications
Repeaters
BTS Transceivers
BTS High Power Amplifiers
CDMA / WCDMA / LTE
General Purpose Wireless
Product Features
400-4000 MHz
+29.5 dBm P1dB
+45 dBm Output IP3
16.5 dB Gain @ 2140 MHz
+5V Single Supply, 235 mA Current
Internal RF overdrive protection
Internal DC overvoltage protection
On chip ESD protection
Capable of handling 10:1 VSWR @ 5Vcc, 2.14 GHz,
29.5 dBm CW Pout or 20 dBm WCDMA Pout
SOT-89 Package
General Description
The TQP7M9103 is a high linearity driver amplifier in
industry standard, RoHS compliant, SOT-89 surface
mount package. This InGaP/GaAs HBT delivers high
performance across a broad range of frequencies while
achieving +45 dBm OIP3 and +29.5 dBm P1dB while
only consuming 235 mA quiescent current. All devices
are 100% RF and DC tested.
The TQP7M9103 incorporates on-chip features that
differentiate it from other products in the market. The
amplifier integrates an on-chip DC over-voltage and RF
over-drive protection. This protects the amplifier from
electrical DC voltage surges and high input RF input
power levels that may occur in a system.
The TQP7M9103 is targeted for use as a driver amplifier
in wireless infrastructure where high linearity, medium
power, and high efficiency are required. The device an
excellent candidate for transceiver line cards and high
power amplifiers in current and next generation multi-
carrier 3G / 4G base stations.
3-pin SOT-89 Package
Functional Block Diagram
GND
4
1
RF IN
2
GND
3
RF OUT
Pin Configurationwww.DataSheet.net/
Pin #
1
3
2, 4
Symbol
RF Input
RF Output / Vcc
Ground
Ordering Information
Part No.
TQP7M9103
Description
1 W High Linearity Amplifier
TQP7M9103-PCB900 TQP7M9103 920-960MHz EVB
TQP7M9103-PCB2140 TQP7M9103 2.11-2.17GHz EVB
Standard T/R size = 1000 pieces on a 7” reel.
Data Sheet: Rev F 04/26/12
© 2012 TriQuint Semiconductor, Inc.
- 1 of 14 -
Disclaimer: Subject to change without notice
Connecting the Digital World to the Global Network®
Datasheet pdf - http://www.DataSheet4U.co.kr/

1 page




TQP7M9103 pdf
TQP7M9103
1W High Linearity Amplifier
Application Circuit 920-960 MHz (TQP7M9103-PCB900)
J4
C1 R1
J3
C5
C4
C3
U1
L2
C2
C5
J3 +5V
J4 GND
1.0 uF
C4
0.1 uF
C3
C1
J1
R1
RF
Input
3.3 pF C6 0
3.9 pF
100 pF
L1
33 nH
0805
1 U1
3
TQP7M9103
2,4
L2
2.2 nH
C2
C7 100 pF
4.7 pF
J2
RF
Output
Notes:
1. See PC Board Layout, page 11 for more information.
2. Components shown on the silkscreen but not on the schematic are not used.
3. The recommended component values are dependent upon the frequency of operation.
4. All components are of 0603 size unless stated on the schematic.
5. Critical component placement locations:
Distance from U1 Pin 1 Pad (left edge) to R1 (right edge): 125 Mils (5.8º at 920www.DataSheet.net/ MHz)
Distance from R1 (left edge) to C6 (right edge): 169 Mils (7.9º at 920 MHz)
Distance from C6 (left edge) to C1 (right edge): 51 Mils (2.4º at 920 MHz)
Distance from U1 Pin 3 Pad (right edge) to L2 (left edge): 120 Mils (5.6º at 920 MHz)
Distance from L2 (right edge) to C7 (left edge): 62 Mils (2.9º at 920 MHz)
Bill of Material
Ref Des
n/a
U1
C1
C2, C3
C4
C5
C6
C7
L1
L2
R1
Value
n/a
n/a
3.3 pF
100 pF
0.1 uF
1.0 uF
3.9 pF
4.7 pF
33 nH
2.2 nH
Description
Printed Circuit Board
TQP7M9103 Amplifier, SOT-89 pkg.
Cap., Chip, 0603, +/-0.1pF, 50V, Accu-P
Cap., Chip, 0603, 5%, 50V, NPO/COG
Cap., Chip, 0603, 10%, 16V, X7R
Cap., Chip, 0603, 10%, 10V, X5R
Cap., Chip, 0603, +/-0.05pF, 50V, Accu-P
Cap., Chip, 0603, +/-0.05pF, 50V, Accu-P
Inductor, 0805, 5%, Coilcraft CS Series
Inductor, 0603, +/-0.3 nH
Resistor, Chip, 0603, 5%, 1/16W
Manuf.
TriQuint
TriQuint
AVX
various
various
various
AVX
AVX
Coilcraft
Toko
various
Part Number
1080068
1077953
06035J3R3ABSTR
06035J3R9ABSTR
06035J4R7ABSTR
0805CS-330XJLB
LL1608-FSL2N2S
Data Sheet: Rev F 04/26/12
© 2012 TriQuint Semiconductor, Inc.
- 5 of 14 -
Disclaimer: Subject to change without notice
Connecting the Digital World to the Global Network®
Datasheet pdf - http://www.DataSheet4U.co.kr/

5 Page





TQP7M9103 arduino
TQP7M9103
1W High Linearity Amplifier
Reference Design 2300-2400 MHz
Typical Performance at +25 C (MHz) 2300 2350 2400
Gain dB 16.1 16.1 15.9
Input Return Loss
dB -13.7 -15.7 -14.0
Output Return Loss
dB -15.4 -14.8 -14.0
Output P1dB
dBm +29.2 +29.2 +29.3
Output IP3
(+15 dBm/tone, ∆f = 1 MHz)
dBm +45.6 +44.2 +45.2
WCDMA Channel power
(at -50 dBc ACLR) [1]
dB +20.0 +19.9 +19.9
Supply Voltage, Vcc
V +5
Quiescent Collector Current,
Icq
mA
235
J4 J3
C5
C4
C3
C5
J3 +5V
J4 GND
1.0 uF
C4
0.1 uF
C3
C1
J1
RF
Input 1.0 pF
100 pF
L1
24 nH
1 U1
3
TQP7M9103
C6 2,4
1.2 pF
C7
1.0 pF
C2
C8 22 pF
0.6 pF
J2
RF
Output
U1
R1 C1
Notes:
C2 1. See PC Board Layout, page 11 for more information.
2. The recommended component values are dependent upon the frequency of operation.
3. Component (R1) on PCB board is a 0 Ohm jumper and can be replaced by a copper trace.
4. All components are of 0603 size unless stated on the schematic.
5. Critical component placement locations:
Distance from U1 Pin 1 Pad (left edge) to C6 (right edge): 30 mils (3.6º at 2350 MHz)
Distance from C6 (left edge) to C1 (right edge): 75 mils (8.9º at 2350 MHz)
Distance from U1 Pin 3 Pad (right edge) to C7 (left edge): 30 mils (3.6º at 2350 MHz)
Distance from C7 (right edge) to C8 (left edge): 147 mils (17.5º at 2350 MHz)
www.DataSheet.net/
RF Performance Plots 2300-2400 MHz
Gain vs. Frequency
Input Return Loss vs. Frequency
17 0
Temp.=+25°C
Temp.=+25°C
16 -5
Output Return Loss vs. Frequency
0
Temp.=+25°C
-5
15 -10 -10
14 -15 -15
13 -20 -20
12
2300
2320 2340 2360 2380
Frequency (MHz)
2400
ACLR vs. Output Power vs. Freq
-35
W-CDMA 3GPP Test Model 1+64 DPCH,
PAR = 10.2 dB @ 0.01% Probability, 3.84
-40 MHz BW
-45
-50 2300 MHz
2350 MHz
2400 MHz
-55
-60
17
18 19 20 21
Output Power (dBm)
22
-25
2300
31
2320 2340 2360 2380
Frequency (MHz)
P1dB vs. Frequency
2400
30
29
28
27
2300
2320 2340 2360 2380
Frequency (MHz)
2400
-25
2300
2320 2340 2360 2380
Frequency (MHz)
2400
OIP3 vs. Total Output Power vs. Freq
50
45
40
2300 MHz
2350 MHz
35 2400 MHz
30
25
12
14 16 18
Total Output Power (dBm)
20
Data Sheet: Rev F 04/26/12
© 2012 TriQuint Semiconductor, Inc.
- 11 of 14
Disclaimer: Subject to change without notice
Connecting the Digital World to the Global Network®
Datasheet pdf - http://www.DataSheet4U.co.kr/

11 Page







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