Features: •2 TX, 2 TRX, 3 RX ports•Three pin CMOS logic control with integral decoder/driver•Exceptional harmonic performance: 2fo = -83 dBc and 3fo = -78 dBc•Low TX insertion loss: 0.65 dB at 900 MHz, 0.75 dB at 1900 MHz•TX RX Isolation of 47 dB at 900 MHz, 40 dB at...
PE42671: Features: •2 TX, 2 TRX, 3 RX ports•Three pin CMOS logic control with integral decoder/driver•Exceptional harmonic performance: 2fo = -83 dBc and 3fo = -78 dBc•Low TX insertio...
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Symbol |
Parameter/Conditions |
Min |
Max |
Units |
VDD |
Power supply voltage |
-0.3 |
4.0 |
V |
VI |
Voltage on any input |
-0.3 |
VDD+ 0.3 |
V |
TST |
Storage temperature range |
-65 |
+150 |
°C |
PIN(50 ) |
TX input power (50 ) 3,4 824-915 MHz |
+38 |
dBm | |
TX input power (50 ) 3,4 1710-1910 MHz |
+36 | |||
TRX input power (50 ) 824 - 2170 MHz |
+34 | |||
RX input power (50 ) 3,4 |
+23 | |||
PIN (:1) |
TX input power (VSWR = (:1)3,4 824-915 MHz |
+35 |
dBm | |
TX input power (VSWR = (:1)3,4 1710-1910 MHz |
+33 | |||
TRX input power (VSWR = (:1) 824 - 2170 MHz |
+31 | |||
VESD |
ESD Voltage (HBM, MIL_STD 883 Method 3015.7) |
1500 |
V |
The PE42671 is a HaRP™-enhanced SP7T RF Switch developed on the UltraCMOS™ process technology. It addresses the specific design needs of the Quad-Band GSM Handset Antenna Switch Module Market for use in GSM/PCS/EDGE/WCDMA handsets. The PE42671 is comprised of two transmit ports that can be used for GSM/PCS/EDGE, two transmit/receive ports (TRX1 and TRX2) that can be used for either WCDMA or as receive ports, and three symmetric receive ports. Onchip CMOS PE42671 decode logic facilitates three-pin low voltage CMOS control, while high ESD tolerance of 1500 V at all ports, no blocking capacitor requirements, and on-chip SAW filter over-voltage protection devices make this the ultimate in integration and ruggedness.
Peregrine's HaRP™ PE42671 technology enhancements deliver high linearity and exceptional harmonics performance. PE42671 is an innovative feature of the UltraCMOS™ process, providing performance superior to GaAs with the economy and integration of conventional CMOS.