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PE4140

Peregrine Semiconductor
Part Number PE4140
Manufacturer Peregrine Semiconductor
Description Ultra-High Linearity Broadband Quad MOSFET Array
Published Dec 29, 2006
Detailed Description Product Description The PE4140 is an ultra-high linearity passive broadband Quad MOSFET array with high dynamic range pe...
Datasheet PDF File PE4140 PDF File

PE4140
PE4140


Overview
Product Description The PE4140 is an ultra-high linearity passive broadband Quad MOSFET array with high dynamic range performance capable of operation beyond 6.
0 GHz.
This quad array operates with differential signals at all ports (RF, LO, IF), allowing mixers to be built that use LO powers from -7 dBm to +20 dBm.
Typical applications range from frequency up/down-conversion to phase detection for Cellular/PCS Base Stations, Wireless Broadband Communications and STB/Cable modems.
The PE4140 is manufactured on pSemi’s UltraCMOS™ process, a patented variation of silicon-on-insulator (SOI) technology on a sapphire substrate, offering the performance of GaAs with the economy and integration of conventional CMOS.
Product Specification PE4140 Ultra-High Linearity UltraCMOS™ Broadband Quad MOSFET Array Features  Ultimate Quad MOSFET array  Ultra-high linearity, broadband performance beyond 6.
0 GHz  Ideal for mixer applications  Up/down conversion  Low conversion loss  High LO Isolation  Packaged in small 6-lead 3x3 mm DFN Figure 1.
Functional Diagram Figure 2.
Package Type 6-lead DFN Table 1.
AC and DC Electrical Specifications @ +25 °C Symbol Characteristics Test Conditions FTYP VDS VDS Match VT R DS Operating Frequency Range1 Drain-Source Voltage Drain-Source Voltage Match Threshold Voltage Drain-Source ‘ON’ Resistance VGS = +3V, IDS = 40 mA VDS = 0.
1V; per ASTM F617-00 VGS = +3V, IDS = 40 mA Note 1: Typical untested operating frequency range of Quad MOSFET transistors.
Min Typ Max Units DC 6.
0 GHz 260 320 380 mV 12 40 mV -100 mV 6.
5 7.
75 9.
5 Ω Document No.
DOC-87599-3 │ www.
psemi.
com ©2018-2020 pSemi Corp.
All rights reserved.
Page 1 of 10 Figure 3.
Pin Configuration (Top View) Table 2.
Pin Descriptions Pin Pin No.
Name Description 1 IF1 IF Output Connection (Drain) 2 RF1 RF Input Connection (Source) 3 RF2 RF Input Connection (Source) 4 LO2 LO Input Connection (Gate) 5 LO1 LO Input Connection (Gate) 6 IF2 ...



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