GENERAL DESCRIPTION The SW06 is a four channel single-pole, single-throw analog switch that employs both bipolar and ion-implanted FET devices. The SW06 FET switches use bipolar digital logic inputs which are more resistant to static electricity than CMOS devices. Ruggedness and reliability are inherent in the SW06 design and construction technology.
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SW06GS-REEL (pdf) |
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FEATURES Two Normally Open and Two Normally Closed SPST Switches with Disable Switches Can Be Easily Configured as a Dual SPDT or a DPDT Highly Resistant to Static Discharge Destruction Higher Resistance to Radiation than Analog Switches Designed with MOS Devices Guaranteed RON Matching 10% max Guaranteed Switching Speeds TON = 500 ns max TOFF = 400 ns max Guaranteed Break-Before-Make Switching Low “ON” Resistance 80 max Low RON Variation from Analog Input Voltage 5% Low Total Harmonic Distortion Low Leakage Currents at High Temperature TA = 100 nA max TA = 30 nA max Digital Inputs TTL/CMOS Compatible and Independent of V+ Improved Specifications and Pin Compatible to LF-11333/13333 Dual or Single Power Supply Operation Available in Die Form GENERAL DESCRIPTION The SW06 is a four channel single-pole, single-throw analog switch that employs both bipolar and ion-implanted FET devices. The SW06 FET switches use bipolar digital logic inputs which are more resistant to static electricity than CMOS devices. Ruggedness and reliability are inherent in the SW06 design and construction technology. Increased reliability is complemented by excellent electrical specifications. Potential error sources are reduced by minimizing “ON” resistance and controlling leakage currents at high temperatures. The switching FET exhibits minimal RON variation over a 20 V analog signal range and with power supply voltage changes. Operation from a single positive power supply voltage is possible. With V+ = 36 V, = 0 V, the analog signal range will extend from ground to +32 V. PNP logic inputs are TTL and CMOS compatible to allow the SW06 to upgrade existing designs. The logic “0” and logic “1” input currents are at microampere levels reducing loading on CMOS and TTL logic. Quad SPST JFET Analog Switch SW06 FUNCTIONAL BLOCK DIAGRAM 1 IN 1 8 IN 2 9 IN 3 16 IN 4 13 DIS 4 GND V+ 12 LEVEL SHIFT 11 S3 10 D3 14 S4 15 D4 Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Analog Devices. One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A. Tel 617/329-4700 Fax 617/326-8703 ELECTRICAL CHARACTERISTICS V+ = +15 V, = V and TA = unless otherwise noted Parameter Symbol Conditions SW06B SW06F SW06G Min Typ Max Min Typ Max Min Typ Max Units “ON” RESISTANCE RON MATCH BETWEEN SWITCHES VS = 0 V, IS = 1 mA VS = ± 10 V, IS = 1 mA RON Match VS = 0 V, IS = 100 µA1 60 80 65 80 60 100 65 100 100 150 100 150 ANALOG VOLTAGE RANGE ORDERING GUIDE Temperature Range Package Description to +125°C to +125°C to +85°C to +85°C to +85°C Cerdip LCC Cerdip Plastic DIP SOL Package Option Q-16 E-20A Q-16 N-16 R-16 TRUTH TABLE Logic Input Switch State Channels Channels OFF ON OFF PIN CONNECTIONS 16-Pin DIP Q or P-Suffix 16-Pin SOL S-Suffix DICE CHARACTERISTICS Die Size x inch, 9797 sq. mils x mm, 6320 sq. mm SW06BRC/883 LCC Package RC-Suffix Performance Characteristics “ON” Resistance vs. Power Supply Voltage “ON” Resistance vs. Analog Voltage RON vs. Temperature Switch Current vs. Voltage Leakage Current vs. Analog Voltage Leakage Current vs. Temperature Supply Current vs. Temperature Supply Current vs. Supply Voltage Switch Capacitance vs. Analog Voltage SW06 TON/TOFF Switching Response Switching Time vs. Analog Voltage Switching Time vs. Temperature Insertion Loss vs. Frequency Crosstalk and “OFF” Isolation vs. Frequency Total Harmonic Distortion Power Supply Rejection vs. Frequency Overvoltage Characteristics Performance Characteristics Operating and Single Supply “On” Resistance vs. Analog Voltage Leakage Current vs. VANALOG Supply Current vs. Supply Voltage |
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