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MHVIC910HR2 Datasheet, PDF (1/12 Pages) Motorola, Inc – 921 MHz - 960 MHz SiFET RF Integrated Power Amplifier
Freescale Semiconductor
Technical Data
Will be replaced by MHVIC910HNR2 end of Q205. N suffix indicates 260°C reflow
capable. The PFP−16 package has had lead−free terminations from its initial release.
921 MHz − 960 MHz SiFET
RF Integrated Power Amplifier
The MHVIC910HR2 integrated circuit is designed for GSM base stations,
uses Freescale’s newest High Voltage (26 Volts) LDMOS IC technology, and
contains a three−stage amplifier. Target applications include macrocell (driver
function) and microcell base stations (final stage). The device is in a PFP−16
Power Flat Pack package which gives excellent thermal performances through
a solderable backside contact.
• Typical GSM Performance @ Full Frequency Band
(921−960 MHz), 26 Volts
Output Power — 40 dBm (CW) @ P1dB
Power Gain — 39 dB @ P1dB
Efficiency — 48% @ P1dB
• On−Chip Matching (50 Ohm Input, DC Blocked, >5 Ohm Output)
• Integrated ESD Protection
• Usable Frequency Range — 921 to 960 MHz
• In Tape and Reel. R2 Suffix = 1,500 Units per 16 mm, 13 inch Reel.
MHVIC910HR2
Rev. 5, 1/2005
MHVIC910HR2
960 MHz, 10 W, 26 V
GSM CELLULAR
RF LDMOS INTEGRATED CIRCUIT
16
1
CASE 978−03
PFP−16
Table 1. Maximum Ratings
Rating
Drain Supply Voltage
Gate Supply Voltage
RF Input Power
Case Operating Temperature
Storage Temperature Range
Operating Channel Temperature
Table 2. Thermal Characteristics
Characteristic
Thermal Resistance, Junction to Case
Symbol
VDD
VGS
Pin
TC
Tstg
Tch
Symbol
RθJC
Value
28
6
5
− 30 to + 85
− 65 to + 150
150
Value
2.9
Unit
Vdc
Vdc
dBm
°C
°C
°C
Unit
°C/W
VD1
VD2
RFin
VD3
RFout
VGATE1
VGATE2
VGATE3
Figure 1. Functional Block Diagram
N.C. 1
VD2 2
VD1 3
GND 4
RFin 5
VGATE1 6
VGATE2 7
VGATE3 8
16 N.C.
15 VD3/RFout
14 VD3/RFout
13 VD3/RFout
12 VD3/RFout
11 VD3/RFout
10 N.C.
9 N.C.
(Top View)
Note: Exposed backside flag is source
terminal for transistors.
Figure 2. Pin Connections
© Freescale Semiconductor, Inc., 2005. All rights reserved.
RF Device Data
Freescale Semiconductor
MHVIC910HR2
1