Switches - SP6T

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At MACOM we offer an extensive collection of switches covering multiple commercial and aerospace and defense markets. Our product portfolio has a broad frequency spectrum from DC to 70 GHz. Our silicon Heterolithic Microwave Integrated Circuit (HMIC) PIN diode process is ideal for high power and broadband switches operating from 50 MHz to 26 GHz. Our AlGaAs PIN diode process can extend the upper frequency range of our switch die beyond 70 GHz and is ideal for instrumentation and radar applications. Our GaAs pHEMT and MESFET technology is ideal for fast switching and low control voltage switches optimized for both narrow band and broadband applications. Our 75 Ohm absorptive switches are designed specifically for demanding CATV, FTTx and DBS Infrastructure and CPE applications. 

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Part Number Ordering Short Description Min Frequency (MHz) Max Frequency (MHz) Insertion Loss (dB) Isolation (dB) IIP3 (dBm) IP1dB (dBm) 75 Ohm ADS & SPICE Model Info Application Notes Benefits Brightcove Video CW Incident Power (W) Compatible Parts Configuration Content DC Power Data Sheet Package Outline Datasheet Device Firmware Driver ESD EVM GUI Software EVM User Guides Features Lead Finish Lead-Free MSL Marking Model Data (Sparameters) Outline Drawings Package Package Category Product Briefs Product Bulletins Product Image Qualification Reports ROHS VSWR
 
 
 
 
 
 
 
MASWCC0006 Buy GaAs Absorptive, Single Supply
0 4000 2.1 25 40 No
AN3009 - S-Parameter S2P File Format Guide
M513 - Tape and Reel Packaging for Surface Mount Components
S2080 - Moisture Effects on the Soldering of Plastic Encapsulated Devices
AN3007 - ESD/EOS Protection for GaAs MMIC Switches
AN3008 - Using the DR65-0109 (DR65-0003 replacement part) to Drive SPDT PIN Switches
S2079 - Drivers for GaAs FET Switches and Digital Attenuators
AG318 - Comparison of Gallium Arsenide and Silicon PIN Diodes for High Speed Microwave Switches
SP6T
MASWCC0006.pdf
With
Operates DC - 4 GHz on Single Supply
RoHS* Compliant Version of SW90-0004A
260°C Reflow Compatible
Halogen-Free “Green” Mold Compound
100% Matte Tin Plating over Copper
Lead-Free CSP-2 PackagE
Tape and Reel are Available
Test Boards are Available
50 Ohm Nominal Impedance
Low DC Power Consumption
Leadless 4 x 7 mm Chip Scale Plastic Package
ASIC TTL / CMOS Driver
Yes
MASWCC0006_deembedded_Spars.zip
CSP-2
Plastic Surface Mount
MACOM_general.png
MA4SW610B-1 Buy Reflective PIN Diode
2000 18000 1.3 45 40 No
AN3009 - S-Parameter S2P File Format Guide
AN3018 - Known Good Die Delivery Specification
M513 - Tape and Reel Packaging for Surface Mount Components
AN3008 - Using the DR65-0109 (DR65-0003 replacement part) to Drive SPDT PIN Switches
S2079 - Drivers for GaAs FET Switches and Digital Attenuators
AG318 - Comparison of Gallium Arsenide and Silicon PIN Diodes for High Speed Microwave Switches
AN3021 - PIN Diodes for Microwave Switch Designs
SP6T
MA4SW610B-1.pdf
Without
Ultra Broad Bandwidth: 2GHz to 18GHz
Reliable, Fully Monolithic, Glass Encapsulated Construction
1.9dB Insertion Loss, 35dB Isolation at 18GHz
Yes
MA4SW610B-1_SPAR.zip
DIE
Die/Bumped Die
MACOM_general.png
MASW-006102-13610 Inquire HMIC™ Silicon PIN Diode Switch with Intergrated Bias Network
2000 18000 0.3 65 40 No
AN3009 - S-Parameter S2P File Format Guide
AN3018 - Known Good Die Delivery Specification
M513 - Tape and Reel Packaging for Surface Mount Components
M570 - Bonding, Handling, and Mounting Procedures for Millimeterwave PHEMT MMICs
AN3007 - ESD/EOS Protection for GaAs MMIC Switches
AN3008 - Using the DR65-0109 (DR65-0003 replacement part) to Drive SPDT PIN Switches
M515 - Techniques to Achieve High Isolation with GaAs MMIC Switch Chips
S2079 - Drivers for GaAs FET Switches and Digital Attenuators
AG318 - Comparison of Gallium Arsenide and Silicon PIN Diodes for High Speed Microwave Switches
SP4T
MASW-006102-1361.pdf
Without
Broad Bandwidth 2 to 18 GHz
RoHS Compliant
Fully Monolithic
Rugged, Glass Encapsulated Construction
Low Insertion Loss / High Isolation
Integrated Bias Network
Usable up to 26 GHz
Yes
DIE
Die/Bumped Die
MACOM_general.png
Yes