FSA66 FAIRCHILD | Alldatasheet

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I Space saving SOT23 or SC70 5-lead package I Ultra small MicroPak leadless package I Broad VCC Operating Range 1.65V–5.5V I Rail-to-Rail signal handling I 5Ω switch connection between two ports I Minimal propagation delay through the switch I Low ICC I Zero bounce in flow-through mode I Control input compatible with CMOS input levels I >250 MHz −3dB bandwidth Ordering Code: Analog Symbol Pin Descriptions Function Table Connection Diagrams Pin Assignments for SC70 (Top View) Pad Assignment for MicroPak (Top Through View) MicroPak is a trademark of Fairchild Semiconductor Corporation. Order Package Product Code Package Description Supplied AsNumber Number Top Mark FSA66M5X MA05B 7Z66 5-Lead SOT23, JEDEC MO-178, 1.6mm 3k Units on Tape and Reel FSA66P5X MAA05A Z66 5-Lead SC70, EIAJ SC-88a, 1.25mm Wide 3k Units on Tape and Reel FSA66L6X MAC06 EE 6-Lead MicroPak, 1.0mm Wide 5k Units on Tape and Reel Pin Names Description OE Switch Enable Input A Bus A I/O B Bus B I/O NC No Connect OE B 0 Function L HIGH-Z State Disconnect HA 0 Connect

www.fairchildsemi.com 2 FSA66 Absolute Maximum Ratings(Note 1) Recommended Operating Conditions (Note 3) Note 1: The “Absolute Maximum Ratings” are those values beyond which the safety of the device cannot be guaranteed. The device should not be operated at these limits. The parametric values defined in the Electrical Characteristics tables are not guaranteed at the absolute maximum ratings. The “Recommended Operating Conditions” table will define the conditions for actual device operation. Note 2: The input and output negative voltage ratings may be exceeded if the input and output diode current ratings are observed. Note 3: Unused inputs must be held HIGH or LOW. They may not float. Note 4: Measured by the voltage drop between A and B pins at the indicated current through the switch. On Resistance is determined by the lower of the voltages on the two (A or B) pins. Note 5: All typical values are at the specified VCC , and TA = 25°C. Note 6: Parameter is characterized but not tested in production. Note 7: Flatness is defined as the difference between the maximum and minimum value of On Resistance over the specified range of conditions. Supply Voltage (VCC ) −0.5V to +7.0V DC Switch Voltage (VS) −0.5V to VCC +0.5V DC Input Voltage (VIN) (Note 2) −0.5V to +7.0V DC Input Diode Current (IIK) VIN < 0V −50 mA DC Output (IOUT ) Sink Current 128 mA DC V CC /GND Current (ICC /IGND ) ±100 mA Storage Temperature Range (TSTG ) −65°C to +150°C Junction Lead Temperature under Bias (TJ) +150°C Junction Lead Temperature (TL) (Soldering, 10 Seconds) +260°C Power Dissipation (PD ) @ +85°C SOT23-5 200 mW SC70-5 150 mW Power Supply Operating (VCC ) 1.65V to 5.5V Control Input Voltage (VIN) 0V to 5.5V Switch Input Voltage (VIN)0 V t o V CC Switch Output Voltage (VOUT )0 V t o V CC Input Rise and Fall Time (tr, tf) Control Input; VCC = 2.3V−3.6V 0 ns/V to 10 ns Control Input; VCC = 4.5−5.5V 0 ns/V to 5 ns Switch I/O 0 ns/V to DC Operating Temperature (TA) −40°C to +85°C Thermal Resistance (θJA) SOT23-5 300 °C/Watt SC70-5 425 °C/Watt Symbol Parameter VCC TA = −40°C to +85°CT A = +25°C Units Conditions(V) Min Typ (Note 5) Max Min Typ Max VIH HIGH Level 1.65 to 1.95 0.75 V CC V Input Voltage 2.3 to 5.5 0.7 V CC VIL LOW Level 1.65 to 1.95 0.25 V CC V Input Voltage 2.3 to 5.5 0.3 V CC IIN Control Input 0 to 5.5 ±0.05 ±1.0 µA0 ≤ VIN ≤ 5.5V Leakage Current IOFF OFF Leakage Current 1.65 to 5.5 ±0.05 ±10.0 µA0 ≤ A, B ≤ VCC R ON Switch On Resistance 4.5 Ω VIN = 0V, IIN = 30 mA (Note 4) 5 12 V IN = 2.4V, IIN = 15 mA 71 5 V IN = 4.5V, IIN = 30 mA 3.0

49 V IN = 0V, IIN = 24 mA

10 20 V IN = 3V, IIN = 24 mA 2.3 51 2 V IN = 0V, IIN = 8 mA 13 30 V IN = 2.3V, IIN = 8 mA 1.8 72 8 V IN = 0V, IIN = 4 mA 25 60 V IN = 1.8V, IIN = 4 mA R flat On Resistance Flatness 5.0 6 Ω IA = −30 mA, 0 ≤ VBn ≤ VCC (Note 4)(Note 6)(Note 7) 3.3 12 I A = −24 mA, 0 ≤ VBn ≤ VCC 2.5 28 I A = −8 mA, 0 ≤ VBn ≤ VCC 1.8 125 I A = −4 mA, 0 ≤ VBn ≤ VCC ICC Quiescent Supply Current 1.65 to 5.5 0.05 10 µA VIN = VCC or GND IOUT = 0

5 www.fairchildsemi.com FSA66 Tape and Reel Specification TAPE FORMAT FOR SOT23, SC70 TAPE DIMENSIONS inches (millimeters) Package Tape Number Cavity Cover Tape Designator Section Cavities Status Status Leader (Start End) 125 (typ) Empty Sealed M5X, P5X Carrier 3000 Filled Sealed Trailer (Hub End) 75 (typ) Empty Sealed Package Tape Size DIM A DIM B DIM F DIM K o DIM P1 DIM W

www.fairchildsemi.com 6 FSA66 Tape and Reel Specification (Continued) TAPE FORMAT FOR MicroPak TAPE DIMENSIONS inches (millimeters) Package Tape Number Cavity Cover Tape Designator Section Cavities Status Status Leader (Start End) 125 (typ) Empty Sealed L6X Carrier 5000 Filled Sealed Trailer (Hub End) 75 (typ) Empty Sealed

7 www.fairchildsemi.com FSA66 Tape and Reel Specification (Continued) REEL DIMENSIONS inches (millimeters) Tape Size ABCDN W 1 W 2 W 3

www.fairchildsemi.com 8 FSA66 Physical Dimensions inches (millimeters) unless otherwise noted 5-Lead SOT23, JEDEC MO-178, 1.6mm

9 www.fairchildsemi.com FSA66 Physical Dimensions inches (millimeters) unless otherwise noted (Continued) 5-Lead SC70, EIAJ SC-88a, 1.25mm Wide

www.fairchildsemi.com 10 FSA66 Low Voltage UHS Single SPST Normally Open Analog Switch Physical Dimensions inches (millimeters) unless otherwise noted (Continued) 6-Lead MicroPak, 1.0mm Wide Fairchild does not assume any responsibility for use of any circuitry described, no circuit patent licenses are implied and Fairchild reserves the right at any time without notice to change said circuitry and specifications. LIFE SUPPORT POLICY FAIRCHILD ’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be rea- sonably expected to result in a significant injury to the user. 2. A critical component in any component of a life support device or system whose failure to perform can be rea- sonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. www.fairchildsemi.com