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SKY65367_11 Datasheet, PDF (1/2 Pages) Skyworks Solutions Inc. – 169 to 170 MHz Transmit/Receive Front-End Module | |||
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PRODUCT SUMMARY
SKY65367-11: 169 to 170 MHz Transmit/Receive Front-End
Module
Applications
ï· Automated meter reading
ï· Advanced metering infrastructure
ï· ISM systems
Features
ï· Transmit output power: >+30 dBm
ï· High efficiency PA
ï· Receive loss: < 0.4 dB
ï· Transmit bypass mode with 0.9 dB insertion loss
ï· Sleep mode current: < 1 μA
ï· Integrated control logic
ï· Small footprint MCM (16-pin, 4 x 4 mm) package
(MSL3, 260 ï°C per JEDEC J-STD-020)
Description
The SKY65367-11 is a high-performance, transmit/receive (T/R)
front-end module (FEM). The device includes a power amplifier
(PA) capable of more than +30 dBm of transmit output power
(VCC = 3.6 V) at more than 43 percent PAE for the module
(63 percent for the standalone PA). For current-sensitive
applications, the PA can be bypassed to save battery current.
All functionality can be controlled by a three-wire interface. The
FEM can be placed in a deep âsleepâ mode, drawing less than
1 μA of current.
The receive chain consists of a low-loss single-pole, triple-throw
(SP3T) switch, which provides an insertion loss of approximately
0.4 dB. Three separate VCC pins enable maximum RF isolation.
The SKY65367-11 is packaged in a 16-pin, 4 x 4 mm Multi-Chip
Module (MCM), which allows for a highly manufacturable low-cost
solution.
A functional block diagram of the SKY65367-11 is shown in
Figure 1.
Skyworks GreenTM products are compliant with
all applicable legislation and are halogen-free.
For additional information, refer to Skyworks
Deï¬nition of GreenTM, document number
SQ04â0074.
Output
Matching
Network
PA_OUT TX_IN
Logic
TX
PA
Control
SPST
Regulator
Filter ANT
RX
SP3T
Y0537
Figure 1. SKY65367-11 FEM Block Diagram
Skyworks Solutions, Inc. ⢠Phone [781] 376-3000 ⢠Fax [781] 376-3100 ⢠sales@skyworksinc.com ⢠www.skyworksinc.com
201956G ⢠Skyworks Proprietary Information ⢠Products and Product Information are Subject to Change Without Notice ⢠June 18, 2015
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