Low voltage 1 max single SPDT switch with break-before-make feature
DescriptionThe STG3159 is a high-speed CMOS low voltage single analog S.P.D.T. (Single Pole Dual Throw) switch or 2:1 Multiplexer /Demultiplexer switch fabricated in silicon gate C2MOS technology. It is designed to operate from 1.65V to 4.3V, making this device ideal for portable applications.) at V CC = 4.3V. The SEL inputs are provided to control the switch. The switch S1 is ON (they are connected to common Ports Dn) when the SEL input is held high and OFF (high impedance state exists between the two ports) when SEL is held low; the switch S2 is ON (it is connected to common Port D) when the SEL input is held low and OFF (high impedance state exists between the two ports) when SEL is held high. Additional key features are fast switching speed, break-before-make delay time and Ultra Low Power Consumption. All inputs and outputs are equipped with protection circuits against static discharge, giving them ESD immunity and transient excess voltage.DFN6L STG3159Low voltage 1 max single SPD Features High speed:t PD = 1.5ns (Typ.) at V CC = 3.0Vt PD = 1.5ns (Typ.) at V CC = 2.3VUltra low power dissipation:I CC = 0.2A (Max.) at TA = 85CLow "ON" resistance:R ON = 1.0 (TA = 25C) at VCC = 4.3VR ON = 1.1 (TA = 25C) at VCC = 3.0VR ON = 1.7 (TA = 25C) at VCC = 1.8VWide operating voltage range:V CC4.5V Tolerant and 1.8V compatible threshold on digital control input at VCC = 2.3V to 3.0VLatch-up performance exceeds 100mA per JESD 78, Class IIESD Performance tested per JESD222000V Human-body model (A114-B, Class II)200V Machine model (A115-A)1000V Charged-device model (C101)DescriptionThe STG3159 is a high-speed CMOS low voltage single analog S.P.D.T. (Single Pole Dual Throw) switch or 2:1 Multiplexer /Demultiplexer switch fabricated in silicon gate C2MOS technology. It is designed to operate from 1.65V to 4.3V, making this device ideal for portable applications.) at V CC = 4.3V. The SEL inputs are provided to control the switch. The switch S1 is ON (they are connected to common Por specification is not implied. Exposu
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