Product Description
The PE42641 is a HaRP™-enhanced SP4T RF Switch developed on the UltraCMOS™ process technology. This switch contains 4 identical WEDGE/CDMA compliant TX paths and can be used in various GSM and WCDMA mobile applications as well as other wireless applications up to 3000MHz. It is also suitable for antenna band switching and switchable matching networks for cellular and non-cellular mobile applications. It integrates on-board CMOS control logic with a low voltage CMOS-compatible control interface and requires no DC blocking capacitors. This RoHS-compliant part is available in a standard 3x3x0.75mm QFN package.
Peregrine’s HaRP™ technology enhancements deliver high linearity and exceptional harmonics performance. It is an innovative feature of the UltraCMOS™ process, providing performance superior to GaAs with the economy and integration of conventional CMOS.

*Symmetric, High-Power SP4T: All ports WEDGE/CDMA-Compliant
*Very Low Insertion Loss: 0.45 dB @ 1000 MHz, 0.6 dB @ 2000 MHz
*HaRPTM - enhanced Technology for Unparalleled Linearity
-Low harmonics of 2fo = -86 dBc and 3fo = -81 dBc at +35 dBm
-IMD3 of -110 dBm at WCDMA Band I
-IIP3 of +68 dBm
*Very high isolation: 35 dB @ 900 MHz, 29 dB @ 1900 MHz
*Exceptionally high ESD tolerance:
-Class 3 (4.0 kV HBM) on ANT pin
-Class 2 (2.0 kV HBM) on all pins
*Integrated decoder for 2-pin control
-Accepts 1.8 V and 2.75 V levels
*Low 4.5 ohm series ON resistance
*No blocking capacitors required

EK-42641-01, PE42641MLI, PE42641MLI-Z

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The MC74VHC4066 utilizes silicon–gate CMOS technology to achieve fast propagation delays, low ON resistances, and low OFF–channel leakage current. This bilateral switch/multiplexer/demultiplexer controls analog and digital voltages that may vary across the full power–supply range (from VCC to GND).
The VHC4066 is identical in pinout to the metal–gate CMOS MC14066 and the high–speed CMOS HC4066A. Each device has four independent switches. The device has been designed so that the ON resistances (RON) are much more linear over input voltage than RON of metal–gate CMOS analog switches.
The ON/OFF control inputs are compatible with standard CMOS outputs; with pullup resistors, they are compatible with LSTTL outputs. For analog switches with voltage–level translators, see the VHC4316.

*Fast Switching and Propagation Speeds
*High ON/OFF Output Voltage Ratio
*Low Crosstalk Between Switches
*Diode Protection on All Inputs/Outputs
*Wide Power–Supply Voltage Range (VCC – GND) = 2.0 to 12.0 Volts
*Analog Input Voltage Range (VCC – GND) = 2.0 to 12.0 Volts
*Improved Linearity and Lower ON Resistance over Input Voltage than the MC14016 or MC14066
*Low Noise
*Chip Complexity: 44 FETs or 11 Equivalent Gates

MC74VHC4066D,  MC74VHC4066DT, 74VHC4066

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The QS3L383 provides ten high-speed CMOS TTL-compatible bus switches. The low ON resistance of the QS3L383 allows inputs to be connected to outputs without adding propagation delay and without generating additional ground bounce noise. The Bus Enable (BE) signal turns the switches on. The Bus Exchange (BX) signal provides nibble swap of the AB and CD pairs of signals. This exchange configuration allows byte swapping of buses in systems. It can also be used as a 5-wide 2-to-1 multiplexer and to create low delay barrel shifters, etc.
The QS3L383 is characterized for operation at -40°C to +85°C.

*Enhanced N channel FET with no inherent diode to Vcc
*5Ω bidirectional switches connect inputs to outputs
*Zero propagation delay, zero added ground bounce
*Ultra low power with 0.2μA typical Icc
*Undershoot clamp diodes on all switch and control inputs
*Bus exchange allows nibble swap
*Available in QSOP and SOIC packages

*Hot-swapping, hot-docking
*Voltage translation (5V to 3.3V)
*Resource sharing
*Crossbar switching


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*20 10-GbE/1-GbE ports
*Based on StrataXGS™ field-proven, robust architecture
*Integrated high-performance SerDes
-Integrated XAUI™ SerDes for all 20 10-GE ports
-Uses single SerDes lane per port at GE speeds
*200-Gbps switching capacity at line rate
*Support for eight classes of service (CoS) per port
*Support for Deficit Round Robin, Weighted Round Robin and Strict priority scheduling
*Support for a cut-through switching mode
*Port trunking and remote mirroring support
*Fully integrated data and address memory on a single chip
*Advanced packet flow control
-Head of line blocking prevention
-Full-duplex flow control (802.3x)
*ContentAware™ network processing per port
-Line rate multifield packet classification
-Supports IEEE 802.1p, TOS/DiffServ, rate limiting, policing, priority tagging, and remapping
-Extended security and ACL filtering
*Full IPv6 routing support
*Enhanced security and management capabilities
*Low power consumption

*High level of integration and low power consumption enable system vendors to build high-performance, high-port-density 10-Gigabit Ethernet switches in the same form factor as existing GE solutions.
*Built-in, high-speed serial interfaces with integrated memory eases and accelerates system design, while reducing cost and conserving board space.
*Built-in Layer 3 routing support enables embedded switch to become an extension of the enterprise core network.
*Advanced load balancing and strong user isolation features facilitate the implementation of utility computing services.
*Integrated security features and enhanced management capabilities improve network reliability and lower cost of ownership for BCM56800-based solutions.
*Broadcom switch API compatibility enables software reuse and faster time to market.

*Embedded switch in next-generation 10GE Blade Servers
*10-GE/1-GE switching engine in advanced TCA chassis platforms
*Multilayer switch in high-density 10-Gigabit Ethernet switches

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The ANADIGICS AWL9232 is a high performance InGaP HBT power amplifier, low-noise amplifier and RF switch integrated on a single IC. It is particularly applicable in consumer electronics products (e.g., cell phones, MP3 players, cameras, etc.) that integrate 802.11b/g WLAN in the 2.4 - 2.5 GHz band. Matched to 50  on all RF ports, the part requires only one choke inductor and one power supply decoupling cap off-chip.
The antenna port is switched between WLAN transmit, WLAN receive and Bluetooth paths with a low-loss single-pole triple-throw RF switch. The transmit path PA exhibits unparalleled linearity for both IEEE 802.11g and 802.11b WLAN systems under the toughest signal configurations within these standards. The WLAN receive path from the antenna port to receiver output port provides a low noise, high-gain path to the system receiver chain. The AWL9232 is biased by a single +3.8 V supply and consumes ultra-low current in the OFF mode.
The AWL9232 is manufactured using advanced InGaP HBT technology that offers state-of-the-art reliability, temperature stability and ruggedness. It is provided in a 3 x 3 x 0.55 mm ULPCC package optimized for a 50Ω system.

*2.5% EVM @ POUT = +19 dBm with IEEE 802.11g 64 QAM OFDM at 54 Mbps
*-34 dBr 1st Sidelobe / -56 dBr 2nd Sidelobe ACPR at +21 dBm with IEEE 802.11b at 1, 2, 5.5, 11 Mbps, Gaussian baseband filtering
*SP3T RF Switch to Enable Bluetooth Path
*Single +3.8 V Supply
*Transmit Path Linear Power of Gain 24 dB
*Receive Path In-Band Gain of 13 dB
*Receive Path Noise Figure of 1.9 dB
*3 x 3 x 0.55 mm ULPCC Package
*Leadfree and RoHS Compliant

*802.11b/g WLAN in Consumer Electronics Products (e.g., cell phones, MP3 players, cameras, etc.)
*2.4 GHz Cordless Phone Handsets/Basestations

AWL9232RS35P8, AWL9232RS35Q7, AWL9232RS35Q1, EVA9232RS35

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The AP640R5-A3 is a broadband millimeterwave singlepole double-throw (SPDT) switch in a rugged surface mount package which is compatible with high-volume solder installation. Based on PIN diode MMIC technology, the switch is designed for use in millimeterwave communication and sensor systems when low loss and high linearity are required. Typical applications are transmit/receive function for TDD systems or switching between signal paths. The robust ceramic surface mount package provides excellent electrical performance and a high degree of environmental protection for long-term reliability. All switches are screened at the operating frequencies prior to shipment for guaranteed performance. Switch is targeted for high-volume broadband applications such as satellite and fixed wireless systems.

*Surface Mount Package
*Low Loss, 1.3 dB
*High Isolation, 33 dB
*High Power Handling, +33 dBm CW
*Fast Switching Speed, 2 nS
*100% RF and DC Testing

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The A1172 is an ultra-sensitive, pole-independent Hall-effect switch with a latched digital output. It features operation at low supply currents and voltages, making it ideal for batteryoperated electronics. The 1.65 to 3.5 V operating supply voltage and unique clocking algorithm reduce the average operating power requirements to less than 15 μW with a 2.75 V supply.
The A1172 has two push-pull output structures. Omnipolar activation for the output function is available on each output structure. As such, either a north or south pole of sufficient strength turns the available outputs off or on. The A1172 contains two complementary outputs. Therefore, for a fixed magnetic field, one output will be in a high voltage state and one output will be in a low voltage state.
Improved stability is made possible through dynamic offset cancellation using chopper stabilization, which reduces the residual offset voltage normally caused by device overmolding, temperature dependencies, and thermal stress. This device

Features and Benefits
*Micropower operation
*Operation with either north or south poleno magnetic orientation required during assembly
*1.65 to 3.5 V battery operation
*Chopper stabilization
-Superior temperature stability
-Extremely low switchpoint drift
-Insensitive to physical stress
*Sol id state reliability
*Small size: WLCSP (≈ 1 mm × 1 mm × 0.5 mm)
*Complementary, push-pull outputs eliminate need for pull-up resistor

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The SP619 is a low Rds(on) high current switch designed with precision current limiting to protect connected devices from damage due to a short circuit condition or against current surges that may cause the supply voltages to fall out of regulation.
This switch operates from an input voltage range of 2.5V to 7V, making it ideal for 3V and 5V applications. The SP619 is also protected from thermal overload which limits power dissipation. In shutdown mode, the supply current drops to 2μA.

*Max Rds(on) .377 Ohms
*Overcurrent deactivation 800mA
*Max leakage current less than 2μA while deactivated
*Small 6 pin SOT-23 package
*Built-in Over-temperature Protection
*Wide Input voltage range 2.5V to 7V

*Ultra low cost handsets
*PDA, DSC, MP3 players
*Cell phones
*Power Distribution Switch
*Battery-Charger Circuit

TAG Power, Switch

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Product Description
The PE95420 is an RF SPDT (single pole double throw) switch and is available in a hermetically sealed ceramic package. The PE95420 is designed to cover a broad range of applications from near DC to 8500 MHz for use in various Hi-Rel industries and applications requiring broadband performance. It uses Peregrine’s UltraCMOS™ process and features HaRP™ technology enhancements to deliver high linearity and exceptional harmonics performance. HaRP technology is an innovative feature of the UltraCMOS™ process providing upgraded linearity performance.
The PE95420 is an absorptive/non-reflective switch design which is an ideal termination method for RF elements in a system design. A single-pin 2.2V CMOS logic control in a single chip solution reduces the number of control lines.

-Eliminates Gate and Phase Lag
-No insertion loss or phase drift
*High linearity 60 dBm IIP3
*Low insertion loss:
-0.8 dB at 100 MHz
-1.4 dB at 3000 MHz
-1.5 dB at 6000 MHz
*High isolation
-65 dB at 100 MHz
-42 dB at 3000 MHz
-40 dB at 6000 MHz
*1 dB compression point of +30 dBm
*Single-pin 3.3 V CMOS logic control
*ESD tolerant to 2000 V HBM
*Offered in a 7-lead Hermetic CSOIC Surface-Mount Package and in DIE form

Typical Industries
*Telecom Infrastructure
*Test Instrumentation
*Down-hole oil/gas
*Screening available for commercial space applications

PE95420-01, PE95420-11, PE95420-00, PE95420-99

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General Description
Quad Low-Side Switch in Smart Power Technology (SPT) with a Serial Peripheral Interface (SPI) and four open drain DMOS output stages. The TLE 6220 GP is protected by embedded protection functions and designed for automotive and industrial applications. The output stages can be controlled direct in parallel for PWM applications (injector coils), or through serial control via the SPI. Therefore the TLE 6220 GP is particularly suitable for engine management and powertrain systems.

*Short Circuit Protection
*Overtemperature Protection
*Overvoltage Protection
*8 bit Serial Data Input and Diagnostic Output (SPI protocol)
*Direct Parallel Control of Four Channels for PWM Applications
*Cascadable with Other Quad Switches
*Low Quiescent Current
*μC Compatible Input
*Electostatic Discharge (ESD) Protection

*μC Compatible Power Switch for 12 V and 24 V Applications
*Switch for Automotive and Industrial System
*Solenoids, Relays and Resistive Loads
*Robotic controls


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