TS3A24159 TI | Alldatasheet
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(TOP VIEW) NO1 COM1 IN1 NC1 NO2 COM2 IN2 NC2 GND NanoFree™ PACKAGE (TOP VIEW) NC2 IN2 COM2 NO2 NC1 IN1 COM1 NO1 C4 B4 A1B1 GND NO1 COM1 IN1 NC1 NO2 COM2 IN2 NC2 GND SON PACKAGE (TOP VIEW) DESCRIPTION/ORDERING INFORMATION TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 Cell Phones Specified Break-Before-Make Switching PDAs Low ON-State Resistance (0.3 Ω Max) Portable Instrumentation Low Charge Injection Audio and Video Signal Routing Excellent ON-State Resistance Matching Low-Voltage Data-Acquisition Systems Low Total Harmonic Distortion (THD) Communication Circuits 1.65-V to 3.6-V Single-Supply Operation Modems Control Inputs Are 1.8-V Logic Compatible Hard Drives Latch-Up Performance Exceeds 100 mA Per Computer Peripherals JESD 78, Class II Wireless Terminals and Peripherals ESD Performance Tested Per JESD 2000-V Human-Body Model (A114-B, Class II) 1000-V Charged-Device Model (C101) The TS3A24159 is a dual single-pole double-throw (SPDT) analog switch that is designed to operate from 1.65 V to 3.6 It offers low ON-state resistance and excellent ON-state resistance matching with the break-before-make feature, to prevent signal distortion during the transferring of a signal from one channel to another. The device has excellent total harmonic distortion (THD) performance and consumes very low power. These applications. ORDERING INFORMATION T A PACKAGE (1) ORDERABLE PART NUMBER TOP-SIDE MARKING NanoFree (DSBGA) YZP Reel of 3000 TS3A24159YZPR PREVIEW C to C VSSOP DGS (MSOP) Reel of 2500 TS3A24159DGSR L8R QFN DRC (SON) Reel of 3000 TS3A24159DRCR ZWS (1) For the most current package and ordering information, see the Package Option Addendum at the end of this document, or see the TI website at www.ti.com Please be aware that an important notice concerning availability, standard warranty, and use in critical sheet. NanoFree is a trademark of Texas Instruments. UNLESS OTHERWISE NOTED this document contains Copyright 2007, Texas Instruments Incorporated PRODUCTION DATA information current as of publication date. Products conform to specifications per the terms of Texas Instruments standard warranty. Production processing does not necessarily include testing of all parameters.
www.ti.com TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 SUMMARY OF CHARACTERISTICS (1) Dual 2:1 Multiplexer/Demultiplexer Configuration SPDT) Number of channels ON-state resistance on 0.3 Ω Max ON-state resistance match Δ r on 0.05 Ω Max ON-state resistance flatness on(flat) 0.04 Ω Max Turn-on/turn-off time ON OFF ns/12 ns Break-before-make time BBM ns Charge injection C pC Bandwidth (BW) MHz OFF isolation ISO dB Crosstalk TALK dB Total harmonic distortion (THD) 0.003% Power-supply current nA Package options 10-pin MSOP, SON, WCSP (1) V 2.7 T A C FUNCTION TABLE NC TO COM, NO TO COM, IN COM TO NC COM TO NO L ON OFF H OFF ON Submit Documentation Feedback
www.ti.com Absolute Maximum Ratings (1) (2) TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 over operating free-air temperature range (unless otherwise noted) MIN MAX UNIT V Supply voltage range (3) 0.5 3.6 V V NC V NO Analog voltage range (3) (4) (5) 0.5 V 0.5 V V COM I I/OK Analog port diode current V NC V NO V COM mA I NC ON-state switch current 300 300 I NO V NC V NO V COM to V mA ON-state peak switch current (6) 500 500 I COM V I Digital input voltage range 0.5 3.6 V I IK Digital input clamp current (3) (4) V I mA I Continuous current through 100 mA I GND Continuous current through GND 100 mA DGS package 165 θ JA Package thermal impedance (7) DRC package 56.5 C/W YZP package TBD T stg Storage temperature range 150 C (1) Stresses beyond those listed under "absolute maximum ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under "recommended operating conditions" is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. (2) The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum. (3) All voltages are with respect to ground, unless otherwise specified. (4) The input and output voltage ratings may be exceeded if the input and output clamp-current ratings are observed. (5) This value is limited to 5.5 V maximum. (6) Pulse at 1-ms duration <10% duty cycle. (7) The package thermal impedance is calculated in accordance with JESD 51-7. Submit Documentation Feedback
www.ti.com Electrical Characteristics for 3-V Supply (1) TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 V 2.7 to 3.6 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Analog Switch Analog signal V COM V NO V V range V NC C 0.2 0.3 Peak ON NO or V NC V Switch ON, r peak 2.7 V Ω resistance I COM 100 mA, See Figure Full 0.35 C 0.26 0.3 ON-state V NO or V NC Switch ON, r on 2.7 V Ω resistance I COM 100 mA, See Figure Full 0.34 ON-state C 0.01 0.05 V NO or V NC 0.8 Switch ON, resistance match Δ r on 2.7 V Ω I COM 100 mA, See Figure Full 0.05 between channels NO or V NC V Switch ON, C 0.13 Ω I COM 100 mA, See Figure ON-state r on(flat) 2.7 V resistance flatness C 0.01 0.04 V NO or V NC 0.8 Switch ON, Ω I COM 100 mA, See Figure Full 0.05 NC, NO V NC or V NO V COM C I NC(OFF) Switch OFF, OFF leakage or 3.6 V nA I NO(OFF) See Figure Full current V NC or V NO V COM NC, NO V NC or V NO V COM Open, C I NC(ON) Switch ON, ON leakage or 3.6 V nA I NO(ON) See Figure Full 100 100 current V NC or V NO V COM Open, COM V NC or V NO Open, V COM C Switch ON, ON leakage I COM(ON) or 3.6 V nA See Figure Full 100 100 current V NC or V NO Open, V COM Digital Control Inputs (IN1, IN2) (2) Input logic high V IH Full 1.4 V Input logic low V IL Full 0.5 V C Input leakage I IH I IL V I 3.6 V or 3.6 V nA current Full (1) The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum (2) All unused digital inputs of the device must be held at V or GND to ensure proper device operation. Refer to the TI application report, Implications of Slow or Floating CMOS Inputs literature number SCBA004. Submit Documentation Feedback
www.ti.com Electrical Characteristics for 3-V Supply (1) (Continued) TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 V 2.7 to 3.6 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Dynamic C V V COM V C L pF, Turn-on time t ON ns 2.7 V to R L Ω See Figure Full 3.6 V C V V COM V C L pF, Turn-off time t OFF ns 2.7 V to R L Ω See Figure Full 3.6 V C V Break-before- V NC V NO V C L pF, t BBM ns 2.7 V to make time R L Ω See Figure Full 0.5 3.6 V V GEN C L nF, Charge injection Q C C V pC R GEN See Figure NC, NO C NC(OFF) V NC or V NO V or GND, See Figure C V pF OFF capacitance C NO(OFF) Switch OFF, NC, NO C NC(ON) V NC or V NO V or GND, See Figure C V 224 pF ON capacitance C NO(ON) Switch ON, COM V COM V or GND, C COM(ON) See Figure C V 250 pF ON capacitance Switch ON, Digital input C I V I V or GND, See Figure C V pF capacitance R L Ω Bandwidth BW See Figure C V MHz Switch ON, R L Ω OFF isolation O ISO See Figure C V dB f MHz, R L Ω Crosstalk X TALK See Figure C V dB f MHz, Total harmonic R L 600 Ω f Hz to kHz, THD C V 0.003 distortion C L pF, See Figure Supply C 100 nA Positive supply I V I V or GND 3.6 V current Full µ A (1) The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum Submit Documentation Feedback
www.ti.com Electrical Characteristics for 2.5-V Supply (1) TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 V 2.3 to 2.7 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Analog Switch Analog signal V COM V NO V V range V NC C 0.35 Peak ON NO or V NC V Switch ON, r peak 2.3 V Ω resistance I COM mA, See Figure Full 0.45 C ON-state V NO or V NC 1.8 Switch ON, r on 2.3 V Ω resistance I COM mA, See Figure Full 0.4 ON-state C 0.01 0.05 V NO or V NC 1.8 0.8 Switch ON, resistance match Δ r on 2.3 V Ω I COM mA, See Figure Full 0.05 0.05 between channels NO or V NC V Switch ON, C 0.05 I COM mA, See Figure ON-state r on(flat) 2.3 V Ω resistance flatness C 0.03 0.08 V NO or V NC 0.8 1.8 Switch ON, I COM mA, See Figure Full 0.1 NC, NO V NC or V NO 0.5 V COM 2.2 C I NC(OFF) Switch OFF, OFF leakage or 2.7 V nA I NO(OFF) See Figure Full current V NC or V NO 2.2 V COM 0.5 NC, NO V NC or V NO 0.5 V COM Open, C I NC(ON) Switch ON, ON leakage or 2.7 V nA I NO(ON) See Figure Full 100 100 current V NC or V NO 2.2 V COM Open, COM V NC or V NO Open, V COM 0.5 C Switch ON, ON leakage I COM(ON) or 2.7 V nA See Figure Full 100 100 current V NC or V NO Open, V COM 2.2 Digital Control Inputs (IN1, IN2) (2) Input logic high V IH Full 1.25 V Input logic low V IL Full 0.5 V C Input leakage I IH I IL V I 2.7 V or 2.7 V nA current Full (1) The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum. (2) All unused digital inputs of the device must be held at V or GND to ensure proper device operation. Refer to the TI application report, Implications of Slow or Floating CMOS Inputs literature number SCBA004. Submit Documentation Feedback
www.ti.com Electrical Characteristics for 2.5-V Supply (1) (Continued) TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 V 2.3 to 2.7 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Dynamic C 2.5 V V COM V C L pF, Turn-on time t ON ns 2.3 V to R L Ω See Figure Full 2.7 V C 2.5 V V COM V C L pF, Turn-off time t OFF ns 2.3 V to R L Ω See Figure Full 2.7 V C 2.5 V Break-before- V NC V NO V C L pF, t BBM ns 2.3 V to make time R L Ω See Figure Full 2.7 V V GEN C L nF, Charge injection Q C C 2.5 V pC R GEN See Figure NC, NO C NC(OFF) V NC or V NO V or GND, See Figure C 2.5 V pF OFF capacitance C NO(OFF) Switch OFF, NC, NO C NC(ON) V NC or V NO V or GND, See Figure C 2.5 V 250 pF ON capacitance C NO(ON) Switch ON, COM V COM V or GND, C COM(ON) See Figure C 2.5 V 250 pF ON capacitance Switch ON, Digital input C I V I V or GND, See Figure C 2.5 V pF capacitance R L Ω Bandwidth BW See Figure C 2.5 V MHz Switch ON, R L Ω OFF isolation O ISO See Figure C 2.5 V dB f MHz, R L Ω Crosstalk X TALK See Figure C 2.5 V dB f MHz, Total harmonic R L 600 Ω f Hz to kHz, THD C 2.5 V 0.003 distortion C L pF, See Figure Supply C 100 Positive supply I V I V or GND 2.7 V nA current Full 700 (1) The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum. Submit Documentation Feedback
www.ti.com Electrical Characteristics for 1.8-V Supply (1) TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 V 1.65 to 1.95 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Analog Switch Analog signal V COM V NO V V range V NC C 0.4 0.9 Peak ON NO or V NC V Switch ON, r peak 1.65 V Ω resistance I COM mA, See Figure Full 0.8 C 0.3 0.45 ON-state V NO or V NC 1.5 Switch ON, r on 1.65 V Ω resistance I COM mA, See Figure Full 0.5 ON-state C 0.02 0.04 resistance match V NO or V NC 0.6 1.5 Switch ON, Δ r on 1.65 V Ω between I COM mA, See Figure Full 0.05 channels NO or V NC V Switch ON, C 0.13 ON-state I COM mA, See Figure resistance r on(flat) 1.65 V Ω C 0.08 0.15 V NO or V NC 0.6 1.5 Switch ON, flatness I COM mA, See Figure Full 0.2 NC, NO V NC or V NO 0.3 V COM 1.65 C I NC(OFF) Switch OFF, OFF leakage or 1.95 nA I NO(OFF) See Figure Full current V NC or V NO 1.65 V COM 0.3 NC, NO V NC or V NO 0.3 V COM Open, C I NC(ON) Switch ON, ON leakage or 1.95 V nA I NO(ON) See Figure Full 100 100 current V NC or V NO 1.65 V COM Open, COM V NC or V NO Open, V COM 0.3 C Switch ON, ON leakage I COM(ON) or 1.95 V nA See Figure Full 100 100 current V NC or V NO Open, V COM 1.65 Digital Control Inputs (IN1, IN2) (2) Input logic high V IH Full V Input logic low V IL Full 0.4 V C Input leakage I IH I IL V I 1.95 V or 1.95 V nA current Full (1) The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum (2) All unused digital inputs of the device must be held at V or GND to ensure proper device operation. Refer to the TI application report, Implications of Slow or Floating CMOS Inputs literature number SCBA004. Submit Documentation Feedback
www.ti.com Electrical Characteristics for 1.8-V Supply (1) (Continued) TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 V 1.65 to 1.95 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Dynamic C 1.8 V V COM V C L pF, Turn-on time t ON ns 1.65 V to R L Ω See Figure Full 1.95 V C 1.8 V V COM V C L pF, Turn-off time t OFF ns 1.65 V to R L Ω See Figure Full 1.95 V C 1.8 V Break-before- V NC V NO V C L pF, t BBM ns 1.65 V to make time R L Ω See Figure Full 1.95 V V GEN C L nF, Charge injection Q C C 1.8 V pC R GEN See Figure NC, NO C NC(OFF) V NC or V NO V or GND, See Figure C 1.8 V pF OFF capacitance C NO(OFF) Switch OFF, NC, NO C NC(ON) V NC or V NO V or GND, See Figure C 1.8 V 250 pF ON capacitance C NO(ON) Switch ON, COM V COM V or GND, C COM(ON) See Figure C 1.8 V 250 pF ON capacitance Switch ON, Digital input C I V I V or GND, See Figure C 1.8 V pF capacitance R L Ω Bandwidth BW See Figure C 1.8 V MHz Switch ON, R L Ω OFF isolation O ISO See Figure C 1.8 V dB f MHz, R L Ω Crosstalk X TALK See Figure C 1.8 V dB f MHz, Total harmonic R L 600 Ω f Hz to kHz, THD C 1.8 V 0.005 distortion C L pF, See Figure Supply C 100 Positive supply I V I V or GND 1.95 V nA current Full 700 (1) The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum Submit Documentation Feedback
www.ti.com TYPICAL PERFORMANCE 0.000 0.050 0.100 0.150 0.200 0.250 0.300 0.350 0.400 0 . 0 0 0 . 1 4 0 . 2 8 0 . 4 1 0 . 5 5 0 . 6 9 0 . 8 3 0 . 9 7 1 . 1 0 1 . 2 4 1 . 3 8 1 . 5 2 1 . 6 6 1 . 7 9 1 . 9 3 2 . 0 7 2 . 2 1 r ( )ON Ω V (V)COM – °40 C 25°C 85°C 0.000 0.050 0.100 0.150 0.200 0.250 0.300 0.350 0.400 0.450 0.500 0 . 0 0 0 . 1 0 0 . 2 0 0 . 3 0 0 . 4 0 0 . 5 0 0 . 5 9 0 . 6 9 0 . 7 9 0 . 8 9 0 . 9 9 1 . 0 9 1 . 1 9 1 . 2 9 1 . 3 9 1 . 4 9 1 . 5 8 V (V)COM r ( )ON Ω – °40 C 25°C 85°C 0.000 0.050 0.100 0.150 0.200 0.250 0.300 0.350 0 . 0 0 0 . 1 6 0 . 3 2 0 . 4 9 0 . 6 5 0 . 8 1 0 . 9 7 1 . 1 3 1 . 3 0 1 . 4 6 1 . 6 2 1 . 7 8 1 . 9 4 2 . 1 1 2 . 2 7 2 . 4 3 2 . 5 9 – °40 C 25°C 85°C r ( )ON Ω V (V)COM – 300 – 250 – 200 – 150 – 100 -50 V (V)COM Q (pC) C 1.8□V 2.5□V 3□V Supply□Voltage□(V )+ tON tOFF t /ON t (ns)OFF – 20 – 18 – 16 – 14 – 12 – 10 – 8 – 6 – 4 – 2 1E+04 1E+05 1E+06 1E+07 1E+08 1E+09 Frequency□(Hz) Gain (dB) 3.0□V TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 Figure r ON vs V COM Figure r ON vs V COM (V+ 1.65 2.3 Figure r ON vs V COM Figure Charge Injection C vs V COM 2.7 A Figure t ON and t OFF vs Supply Voltage Figure Bandwidth A Submit Documentation Feedback
www.ti.com – 90 – 80 – 70 – 60 – 50 – 40 – 30 – 20 – 10 1E+04 1E+05 1E+06 1E+07 1E+08 1E+09 Frequency□(Hz) Attenuation□(dB) 1.8□V 2.5□V 3.0□V 1.8V 2.5V 3.0V –12 0 –10 0 – 80 – 60 – 40 – 20 1E+04 1E+05 1E+06 1E+07 1E+08 1E+09 Frequency□(Hz) Attenuation□(dB) 0.000 0.001 0.002 0.003 0.004 0.005 0.006 0.007 0.008 0.009 1E+00 1E+01 1E+02 1E+03 1E+04 1E+05 Frequency□(Hz) THD (%) 1.8□V 2.5□V 3.0□V TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 TYPICAL PERFORMANCE (continued) Figure OFF Isolation Figure Crosstalk Figure Total Harmonic Distortion vs Frequency Submit Documentation Feedback
www.ti.com PARAMETER MEASUREMENT INFORMATION ICOM ron = ICOM GND Channel ON NC VI NO COM VCOM VI= V IH or V IL VNO VNC IN /C0087 VCOM ±VNO OR VNC Channel OFF OFF−State Leakage Current VI= V IH or V IL GND NC VI NO COM V COM VNO VNC IN Channel ON ON−State Leakage Current VI= V IH or V IL GND NC VI NO COM VCOM VNO VNC IN TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 Figure 10. ON-State Resistance Figure 11. OFF-State Leakage Current NC(OFF) I NC(PWROFF) I NO(OFF) I NO(PWROFF) I COM(OFF) I COM(PWROFF) Figure 12. ON-State Leakage Current COM(ON) I NC(ON) I NO(ON) Submit Documentation Feedback
www.ti.com Channel ON ON−State Leakage Current VI= V IH or V IL GND NC VI NO COM VCOM VNO VNC IN C L(2) R L VCOM GND NC or NO VNC or V NO VI NC or NO COM (1) VCOM 50 Ω R L C L 35 pFtON TEST V+50 Ω 35 pFtOFF 50% tON tOFF 50% 90% 90% Logic Input (VI) (VNC or V NO ) C L(2) R L IN TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 PARAMETER MEASUREMENT INFORMATION (continued) Figure 13. Capacitance I C NC(OFF) C NO(OFF) C NC(ON) C NO(ON) (1) All input pulses are supplied by generators having the following characteristics: PRR MHz, Z O Ω t r ns, t f ns. (2) C L includes probe and jig capacitance. Figure 14. Turn-On ON and Turn-Off Time OFF Submit Documentation Feedback
www.ti.com GND NC or NO VNC or V NO VI NC or NO COM VCOM C L(2) R L tBBM 50% 90% 90% Logic Input (VI) (VCOM ) IN VNC or VNO = V+ R L = 50 /C0087 C L = 35 pF Logic Input(1) GND NC VI NO COM 50 /C0087 50 /C0087 VNC VCOM Channel ON: NC to COM Network Analyzer Setup Source Powe r = 0 dBm (632-mV P-P at 50-/C0087 load) DC Bias = 350 mV Network Analyzer Source Signal VI = V + or GND IN TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 PARAMETER MEASUREMENT INFORMATION (continued) (1) All input pulses are supplied by generators having the following characteristics: PRR MHz, Z O Ω t r ns, t f ns. (2) C L includes probe and jig capacitance. Figure 15. Break-Before-Make Time BBM Figure 16. Bandwidth (BW) Submit Documentation Feedback
www.ti.com NC NO COM VNC VCOM Channel OFF: NC to COM Network Analyzer Setup Source Power = 0 dBm (632-mV P-P at 50-/C0087 50 /C0087 GND 50 /C0087 50 /C0087 Network Analyzer Source Signal VI VI = V + or GND IN DC Bias = 350 mV NC NO 50 /C0087 50 /C0087 VNC VCOM Channel ON: NC to COM Network Analyzer Setup Source Power = 0 dBm (632-mV P-P at 50-/C0087 50 /C0087 GND VNO Source Signal Channel OFF: NO to COM Network Analyzer VI VI = V + or GND IN DC Bias = 350 mV TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 PARAMETER MEASUREMENT INFORMATION (continued) Figure 17. OFF Isolation ISO Figure 18. Crosstalk TALK Submit Documentation Feedback
www.ti.com GND NC or NO IN R GEN VI NC or NO COM V COM C L(2) OFF VCOM ON OFF DVCOM VGEN VI= V IH or V IL C L = 1 nF VGEN = 0 to V + R GEN = 0 Q C = C L ×⋅DVCOM VIH VIL Logic Input (VI) Logic Input(1) GND NO COM 10 /C0109F C L(1) R L V+/2 10 /C0109F INVI 600 /C0087600 /C0087 600 /C0087 Audio Analyzer Source Signal VSOURCE = V + P-P Source Signal = 20 Hz to 20 kHz Channel ON: COM to NO VI= V IH or V IL R L = 600 /C0087 C L = 50 pF TS3A24159 0.3- Ω DUAL SPDT ANALOG SWITCH DUAL-CHANNEL 2:1 MULTIPLEXER/DEMULTIPLEXER SCDS238 MARCH 2007 PARAMETER MEASUREMENT INFORMATION (continued) (1) All input pulses are supplied by generators having the following characteristics: PRR MHz, Z O Ω t r ns, t f ns. (2) C L includes probe and jig capacitance. Figure 19. Charge Injection C (1) C L includes probe and jig capacitance. Figure 20. Total Harmonic Distortion (THD) Submit Documentation Feedback
Orderable Device Status(1) Package Type Package Drawing Pins Package Qty Eco Plan(2) Lead/Ball FinishMSL Peak Temp (3) TS3A24159DGSR ACTIVE MSOP DGS 10 2500 Green (RoHS & no Sb/Br) CU NIPDAU Level-1-260C-UNLIM TS3A24159DGSRG4 ACTIVE MSOP DGS 10 2500 Green (RoHS & no Sb/Br) CU NIPDAU Level-1-260C-UNLIM TS3A24159DRCR ACTIVE SON DRC 10 3000 Green (RoHS & no Sb/Br) CU NIPDAU Level-2-260C-1YEAR TS3A24159DRCRG4 ACTIVE SON DRC 10 3000 Green (RoHS & no Sb/Br) CU NIPDAU Level-2-260C-1YEAR (1)The marketing status values are defined as follows: ACTIVE: Product device recommended for new designs. LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect. NRND: Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in a new design. PREVIEW: Device has been announced but is not in production. Samples may or may not be available. OBSOLETE: TI has discontinued the production of the device. (2)Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please check http://www.ti.com/productcontentfor the latest availability information and additional product content details. TBD: The Pb-Free/Green conversion plan has not been defined. Pb-Free (RoHS):TI's terms "Lead-Free" or "Pb-Free" mean semiconductor products that are compatible with the current RoHS requirements for all 6 substances, including the requirement that lead not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes. Pb-Free (RoHS Exempt):This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die and package, or 2) lead-based die adhesive used between the die and leadframe. The component is otherwise considered Pb-Free (RoHS compatible) as defined above. Green (RoHS & no Sb/Br):TI defines "Green" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flame retardants (Br or Sb do not exceed 0.1% by weight in homogeneous material) (3) MSL, Peak Temp. -- The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder temperature. Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release. In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis. PACKAGE OPTION ADDENDUM www.ti.com 17-May-2007 Addendum-Page 1
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