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www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 0.75- Ω DUAL SPST ANALOG SWITCH WITH 1.8-V COMPATIBLE INPUT LOGIC Dual Single-Pole Single-Throw (SPST) Switch ESD Performance Tested Per JESD 1.65-V to 5.5-V Power Supply 2000-V Human-Body Model (A114-B, Class II) Isolation in Powerdown Mode, V 1000-V Charged-Device Model (C101) Low ON-State Resistance (0.75 Ω Typ) Excellent ON-State Resistance Matching Cell Phones Low Charge Injection PDAs Low Total Harmonic Distortion (THD) Portable Instrumentation High Bandwidth (260 MHz) Audio and Video Signal Routing 1.8-V Compatible Control Input Portable Media Players Threshold Independent of V Communication Circuits Latch-Up Performance Exceeds 100 mA Per Computer Peripherals JESD 78, Class II DCU PACKAGE RSE PACKAGE (TOP VIEW) (TOP VIEW) The TS5A21366 is a dual single-pole single-throw (SPST) analog switch that is designed to operate from 1.65 V to 5.5 The device offers a low ON-state resistance and an excellent channel-to-channel ON-state resistance matching. The device has excellent total harmonic distortion (THD) performance and consumes very low power. The control pin can be connected to a low voltage GPIO allowing it to be controlled by 1.8-V signals. These applications. The TS5A21366 is available in a small, space-saving 8-pin DCU or RSE package and is characterized for operation over the free-air temperature range of C to ORDERING INFORMATION (1) T A PACKAGE (2) ORDERABLE PART NUMBER TOP-SIDE MARKING VSSOP DCU Tape and reel TS5A21366DCUR JBS_ C to C QFN RSE Tape and reel TS5A21366RSER (1) For the most current package and ordering information, see the Package Option Addendum at the end of this document, or see the TI web site at www.ti.com (2) Package drawings, thermal data, and symbolization are available at www.ti.com/packaging Please be aware that an important notice concerning availability, standard warranty, and use in critical sheet. PRODUCTION DATA information is current as of publication date. Copyright 2009, Texas Instruments Incorporated Products conform to specifications per the terms of the Texas Instruments standard warranty. Production processing does not necessarily include testing of all parameters.

www.ti.com SUMMARY OF CHARACTERISTICS (1) Configuration Single-pole, single-throw (SPST) Number of channels ON-state resistance ON 0.75 Ω ON-state resistance match Δ r ON 0.04 Ω ON-state resistance flatness ON(flat) 0.15 Ω Turn-on/turn-off time ON OFF ns/243 ns Charge injection C 1.3 pC Bandwidth (BW) 260 MHz OFF isolation ISO dB at MHz Crosstalk TALK dB at MHz Total harmonic distortion (THD) 0.002% Power-supply current 7.6 µ A with V IN 1.8 V 8-pin QFN (RSE) or VSSOP Package option (DCU) (1) V T A C FUNCTION TABLE NO TO COM, IN COM TO NO L OFF H ON TERMINAL FUNCTIONS TERMINAL NO. PIN NO. NO1 Switch normally open COM1 Switch common IN2 Switch digital control pin to connect COM to NO GND Digital ground NO2 Switch normally open COM2 Switch common IN1 Switch digital control pin to connect COM to NO V Power supply Submit Documentation Feedback Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

(1) (2) THERMAL IMPEDANCE RECOMMENDED OPERATING CONDITIONS TS5A21366 www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 over operating free-air temperature range (unless otherwise noted) MIN MAX UNIT V Supply voltage range (3) 0.5 6.5 V V NO Analog voltage range (3) (4) (5) 0.5 V 0.5 V V COM I K Analog port diode current V NO V COM mA ON-state switch current 200 200 I NO V NO, V COM to V mA I COM ON-state peak switch current (6) 400 400 V I Digital input voltage range (3) (4) 0.5 6.5 V I IK Digital input clamp current V I mA I Continuous current through V 100 mA I GND Continuous current through GND 100 100 mA 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 UNIT DCU package 227 θ JA Package thermal impedance (1) C/W RSE package 253 (1) The package thermal impedance is calculated in accordance with JESD 51-7. over operating free-air temperature range (unless otherwise noted) MIN MAX UNIT V Power supply voltage range (1) 1.65 5.5 V V NO Analog signal voltage range V V V COM V IN Control input voltage range 5.5 V T A Ambient temperature C (1) V needs to be supplied prior to the control input, refer to the Application Information section. Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

(1) TS5A21366 SCDS285A MARCH 2009 REVISED OCTOBER 2009 www.ti.com V 4.5 V to 5.5 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Analog Switch V COM Analog signal range V V V NO C 0.75 V NO 2.5 Switch ON, ON-state resistance r on 4.5 V Ω I COM 100 mA, See Figure Full 1.4 ON-state resistance C 0.04 0.1 V NO 2.5 Switch ON, match between Δ r on 4.5 V Ω I COM 100 mA, See Figure Full 0.1 channels C 0.15 0.25 ON-state resistance V NO 1.5 2.5 Switch ON, r on(flat) 4.5 V Ω flatness I COM 100 mA, See Figure Full 0.25 V NO 1.4 V COM 4.5 I NO(OFF) or C 5.5 V nA 235 235 NO OFF leakage Switch OFF, V NO 4.5 current See Figure V COM 0.06 V NO to 5.5 I NO(PWROFF) Full V µ A V COM 5.5 V to V COM C 1.4 V NO 4.5 I COM(OFF) or 5.5 V nA Full 235 235 COM OFF leakage Switch OFF, V COM 4.5 current See Figure V NO C 0.06 V NO to 5.5 I COM(PWROFF) V µ A V COM 5.5 V to Full V NO C 1.33 V COM Open, NO ON leakage Switch ON, I NO(ON) or 5.5 V nA current See Figure Full V NO 4.5 V COM Open, V COM C 1.33 V NO Open, COM Switch ON, I COM(ON) or 5.5 V nA ON leakage current See Figure Full V COM 4.5 V NO Open, Digital Control Inputs (IN1, IN2) (2) Input logic high V IH Full 5.5 V 1.05 5.5 V Input logic low V IL Full 5.5 V 0.6 V Input leakage current I IH I IL V I 1.95 V or GND Full 5.5 V 0.6 0.6 µ A Input resistance r IN V I 1.95 V Full 5.5 V M Ω (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 Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 ELECTRICAL CHARACTERISTICS FOR 5-V SUPPLY (continued) V 4.5 V to 5.5 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, 4.5 V Turn-on time t ON ns R L Ω See Figure Full to 5.5 V C V 168 243 318 V COM V C L pF, Turn-off time t OFF ns 4.5 V R L Ω See Figure Full 178 323 5.5 V V GEN C L nF, Charge injection Q C C V 1.3 pC R GEN See Figure NO V NO V or GND, C NO(OFF) See Figure C V pF OFF capacitance Switch OFF, COM V NO V or GND, C COM(OFF) See Figure C V pF OFF capacitance Switch OFF, NO V NO V or GND, C NO(ON) See Figure C V pF ON capacitance Switch ON, COM V COM V or GND, C COM(ON) See Figure C V pF ON capacitance Switch ON, Digital input C I V I V or GND, See Figure C V 2.5 pF capacitance f kHz, Power supply C L pF, PSRR V COM Vrms, C V dB rejection ratio See Figure R L Ω R L Ω Bandwidth BW See Figure C V 260 MHz Switch ON, R L Ω Switch OFF, OFF isolation O ISO C V dB f MHz, See Figure R L Ω Switch ON, Crosstalk X TALK C V dB f MHz, See Figure f Hz to Total harmonic R L 600 Ω THD kHz, C V 0.002 distortion C L pF, See Figure Supply C 7.6 Positive supply Switch ON or I V I 1.95 V or GND 5.5 V µ A current OFF Full Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

3.3-V SUPPLY (1) TS5A21366 SCDS285A MARCH 2009 REVISED OCTOBER 2009 www.ti.com V V to 3.6 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Analog Switch V COM Analog signal range V V V NO C 1.1 1.5 V NO Switch ON, ON-state resistance r on V Ω I COM 100 mA, See Figure Full 1.8 ON-state resistance C 0.045 0.1 V NO 0.8 V Switch ON, match between Δ r on V Ω I COM 100 mA, See Figure Full 0.1 channels C 0.15 0.25 ON-state resistance V NO 0.8 Switch ON, r on(flat) V Ω flatness I COM 100 mA, See Figure Full 0.25 V NO 0.9 V COM I NO(OFF) or C 3.6 V nA 160 160 NO OFF leakage Switch OFF, V NO current See Figure V COM 0.03 V NO to 3.6 I NO(PWROFF) Full V µ A V COM 3.6 V to V NO C 0.9 V COM I COM(OFF) or 3.6 V nA Full 160 160 COM OFF leakage Switch OFF, V NO current See Figure V COM C 0.03 V NO to 3.6 I COM(PWROFF) V µ A V COM 3.6 V to Full V NO C V COM Open, NO ON leakage Switch ON, I NO(ON) or 3.6 V nA current See Figure Full V NO V COM Open, V COM C V NO Open, COM I COM(ON) or See Figure 3.6 V nA ON leakage current Full V COM V NO Open, Digital Control Inputs (IN1, IN2) (2) Input logic high V IH Full 3.6 V 1.05 5.5 V Input logic low V IL Full 3.6 V 0.6 V Input leakage current I IH I IL V I 1.95 V or GND Full 3.6 V 0.6 0.6 µ A Input resistance r IN V I 1.95 V Full 3.6 V M Ω (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 Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 ELECTRICAL CHARACTERISTICS FOR 3.3-V SUPPLY (continued) V V to 3.6 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Dynamic C 3.3 V 133 V COM V C L pF, Turn-on time t ON ns V to R L Ω See Figure Full 178 3.6 V C 3.3 V 138 247 306 V COM V C L pF, Turn-off time t OFF ns V to R L Ω See Figure Full 204 329 3.6 V V GEN C L nF, Charge injection Q C C 3.3 V 1.3 pC R GEN See Figure NO V NO V or GND, C NO(OFF) See Figure C 3.3 V pF OFF capacitance Switch OFF, COM V COM V or GND, C COM(OFF) See Figure C 3.3 V pF OFF capacitance Switch OFF, NO V NO V or GND, C NO(ON) See Figure C 3.3 V pF ON capacitance Switch ON, COM V COM V or GND, C COM(ON) See Figure C 3.3 V pF ON capacitance Switch ON, Digital input C I V I V or GND, See Figure C 3.3 V 2.5 pF capacitance f kHz, Power supply C L pF, PSRR V COM Vrms, C 3.3 V dB rejection ratio See Figure R L Ω R L Ω Bandwidth BW See Figure C 3.3 V 260 MHz Switch ON, R L Ω Switch OFF, OFF isolation O ISO C 3.3 V dB f MHz, See Figure R L Ω Switch ON, Crosstalk X TALK C 3.3 V dB f MHz, See Figure f Hz to Total harmonic R L 600 Ω THD kHz, C 3.3 V 0.004 distortion C L pF, See Figure Supply C 6.8 Positive supply Switch ON or I V I 1.95 V or GND 3.6 V µ A current OFF Full Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

2.5-V SUPPLY (1) TS5A21366 SCDS285A MARCH 2009 REVISED OCTOBER 2009 www.ti.com V 2.3 V to 2.7 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Analog Switch V COM Analog signal range V V V NO C 1.2 2.1 V NO 1.8 Switch ON, ON-state resistance r on 2.3 V Ω I COM mA, See Figure Full 2.7 ON-state resistance C 0.045 0.15 V NO 1.8 0.8 Switch ON, match between Δ r on 2.3 V Ω I COM mA, See Figure Full 0.15 channels C 0.4 0.6 ON-state resistance V NO 1.8 0.8 Switch ON, r on(flat) 2.3 V Ω flatness I COM mA, See Figure Full 0.6 V NO 0.5 0.7 V COM 2.3 I NO(OFF) or C 2.7 V nA 136 136 NO OFF leakage Switch OFF, V NO 2.3 current See Figure V COM 0.5 0.02 V NO to 2.7 I NO(PWROFF) Full V µ A V COM 2.7 V to V NO 2.3 C 0.7 V COM 0.5 I COM(OFF) or 2.7 V nA Full 136 136 COM OFF leakage Switch OFF, V NO 0.5 current See Figure V COM 2.3 C 0.02 V NO to 2.7 I COM(PWROFF) V µ A V COM 2.7 V to Full V NO 0.5 C 0.3 V COM Open, NO ON leakage Switch ON, I NO(ON) or 2.7 V nA current See Figure Full V NO 2.3 V COM Open, V COM 0.5 C 0.3 V NO Open, COM Switch ON, I COM(ON) or 2.7 V nA ON leakage current See Figure Full V COM 2.3 V NO Open, Digital Control Inputs (IN1, IN2) (2) Input logic high V IH Full 2.7 V 1.05 5.5 V Input logic low V IL Full 2.7 V 0.6 V Input leakage current I IH I IL V I 1.95 V or GND Full 2.7 V 0.6 0.6 µ A Input resistance r IN V I 1.95 V Full 2.7 V M Ω (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 Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 ELECTRICAL CHARACTERISTICS FOR 2.5-V SUPPLY (continued) V 2.3 V 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 101 137 222 V COM V C L pF, 2.3 V Turn-on time t ON ns R L Ω See Figure Full to 2.7 288 V C 2.5 V 148 264 333 V COM V C L pF, 2.3 V Turn-off time t OFF ns R L Ω See Figure Full to 2.7 197 367 V V GEN C L nF, Charge injection Q C C 2.5 V 1.3 pC R GEN See Figure NO V NO V or GND, C NO(OFF) See Figure C 2.5 V pF OFF capacitance Switch OFF, COM V NO V or GND, C COM(OFF) See Figure C 2.5 V pF OFF capacitance Switch OFF, NO V NO V or GND, C NO(ON) See Figure C 2.5 V 27.5 pF ON capacitance Switch ON, COM V COM V or GND, C COM(ON) See Figure C 2.5 V 27.5 pF ON capacitance Switch ON, Digital input C I V I V or GND, See Figure C 2.5 V 2.5 pF capacitance f kHz, Power supply C L pF, PSRR V COM Vrms, C 2.5 V dB rejection ratio See Figure R L Ω R L Ω Bandwidth BW See Figure C 2.5 V 260 MHz Switch ON, R L Ω Switch OFF, OFF isolation O ISO C 2.5 V dB f MHz, See Figure R L Ω Switch ON, Crosstalk X TALK C 2.5 V dB f MHz, See Figure f Hz to Total harmonic R L 600 Ω THD kHz, C 2.5 V 0.011 distortion C L pF, See Figure Supply C 6.6 Positive supply Switch ON or I V I 1.95 V or GND 2.7 V µ A current OFF Full Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

1.8-V SUPPLY (1) TS5A21366 SCDS285A MARCH 2009 REVISED OCTOBER 2009 www.ti.com V 1.65 V to 1.95 T A C to C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS T A V MIN TYP MAX UNIT Analog Switch V COM Analog signal range V V NO C 1.6 V NO 0.6 1.5 Switch ON, ON-state resistance r on 1.65 V Ω I COM mA, See Figure Full ON-state resistance C 0.045 0.2 V NO 1.5 Switch ON, match between Δ r on 1.65 V Ω I COM mA, See Figure Full 0.2 channels C 1.7 2.8 ON-state resistance V NO 0.6 1.5 Switch ON, r on(flat) 1.65 V Ω flatness I COM mA, See Figure Full V NO 0.3 0.5 V COM 1.65 I NO(OFF) or C 1.95 V nA NO OFF leakage Switch OFF, V NO 1.65 current See Figure V COM 0.3 0.02 V NO to 1.95 I NO(PWROFF) Full V µ A V COM 1.95 V to V NO 1.65 C 0.5 V COM 0.3 I COM(OFF) or 1.95 V nA Full COM OFF leakage Switch OFF, V NO 0.3 current See Figure V COM 1.65 C 0.02 V NO to 1.95 I COM(PWROFF) V µ A V COM 1.95 V to Full V NO 0.3 C 0.2 V COM Open, NO ON leakage Switch ON, I NO(ON) or 1.95 V nA current See Figure Full V NO 1.65 V COM Open, V COM 0.3 C 0.2 V NO Open, COM Switch ON, I COM(ON) or 1.95 V nA ON leakage current See Figure Full V COM 1.65 V NO Open, Digital Control Inputs (IN1, IN2) (2) Input logic high V IH Full 1.95 V 1.05 5.5 V Input logic low V IL Full 1.95 V 0.6 V Input leakage current I IH I IL V I 1.95 V or GND Full 1.95 V 0.6 0.6 µ A Input resistance r IN V I 1.95 V Full 1.95 V M Ω (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 Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 ELECTRICAL CHARACTERISTICS FOR 1.8-V SUPPLY (continued) V 1.65 V 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 198 297 448 V COM V C L pF, 1.65 V Turn-on time t ON ns R L Ω See Figure Full to 136 620 1.95 V C 1.8 V 225 308 430 V COM V C L pF, 1.65 V Turn-off time t OFF ns R L Ω See Figure Full to 204 514 1.95 V V GEN C L nF, Charge injection Q C C 1.8 V 1.4 pC R GEN See Figure NO V NO V or GND, C NO(OFF) See Figure C 1.8 V pF OFF capacitance Switch OFF, COM V NO V or GND, C COM(OFF) See Figure C 1.8 V pF OFF capacitance Switch OFF, NO C NC(ON) V NO V or GND, See Figure C 1.8 V 27.5 pF ON capacitance C NO(ON) Switch ON, COM V COM V or GND, C COM(ON) See Figure C 1.8 V 27.5 pF ON capacitance Switch ON, Digital input C I V I V or GND, See Figure C 1.8 V 2.5 pF capacitance f kHz, Power supply C L pF, PSRR V COM Vrms, C 1.8 V dB rejection ratio See Figure R L Ω R L Ω Bandwidth BW See Figure C 1.8 V 260 MHz Switch ON, R L Ω Switch OFF, OFF isolation O ISO C 1.8 V dB f MHz, See Figure R L Ω Switch ON, Crosstalk X TALK C 1.8 V 101 dB f MHz, See Figure f Hz to Total harmonic R L 600 Ω THD kHz, C 1.8 V 0.001 distortion C L pF, See Figure Supply C 3.6 Positive supply Switch ON or I V I 1.95 V or GND 1.95 V µ A current OFF Full Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

www.ti.com PARAMETER V COM Voltage at COM V NO Voltage at NO r on Resistance between COM and NO ports when the channel is ON r on(flat) Difference between the maximum and minimum value of r on in a channel over the specified range of conditions I NO(OFF) Leakage current measured at the NO port, with the corresponding channel (NO to COM) in the OFF state Leakage current measured at the NO port, with the corresponding channel (NO to COM) in the ON state and the output I NO(ON) (COM) open I COM(OFF) Leakage current measured at the COM port, with the corresponding channel (COM to NO) in the OFF state Leakage current measured at the COM port, with the corresponding channel (COM to NO) in the ON state and the output I COM(ON) (NO) open V IH Minimum input voltage for logic high for the control input (IN) V IL Maximum input voltage for logic low for the control input (IN) V I Voltage at the control input (IN) I IH I IL Leakage current measured at the control input (IN) Turn-on time for the switch. This parameter is measured under the specified range of conditions and by the propagation t ON delay between the digital control (IN) signal and analog output (COM or NO) signal when the switch is turning ON. Turn-off time for the switch. This parameter is measured under the specified range of conditions and by the propagation t OFF delay between the digital control (IN) signal and analog output (COM or NO) signal when the switch is turning OFF. Charge injection is a measurement of unwanted signal coupling from the control (IN) input to the analog (NO or COM) Q C output. This is measured in coulomb (C) and measured by the total charge induced due to switching of the control input. Charge injection, Q C C L Δ V COM C L is the load capacitance and Δ V COM is the change in analog output voltage. C NO(OFF) Capacitance at the NO port when the corresponding channel (NO to COM) is OFF C NO(ON) Capacitance at the NO port when the corresponding channel (NO to COM) is ON C COM(OFF) Capacitance at the COM port when the corresponding channel (COM to NO) is OFF C COM(ON) Capacitance at the COM port when the corresponding channel (COM to NO) is ON C I Capacitance of control input (IN) OFF isolation of the switch is a measurement of OFF-state switch impedance. This is measured in dB in a specific O ISO frequency, with the corresponding channel (NO to COM) in the OFF state. Crosstalk is a measurement of unwanted signal coupling from an ON channel to an OFF channel (NO1 to NO2). This is X TALK measured in a specific frequency and in dB. BW Bandwidth of the switch. This is the frequency in which the gain of an ON channel is dB below the DC gain. Total harmonic distortion describes the signal distortion caused by the analog switch. This is defined as the ratio of root THD mean square (RMS) value of the second, third, and higher harmonic to the absolute magnitude of the fundamental harmonic. I Static power-supply current with the control (IN) pin at V or GND Δ I This is the increase in I for each control (IN) input that is at the specified voltage, rather than at V or GND. Submit Documentation Feedback Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

0.0 0.5 1.0 1.5 2.0 2.5 0 1 2 3 4 5 6 V (V)COM r ON Ω V+ = 5 V V =+ 3.3 V V =+ 2.5 V V =+ 1.8 V 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 85°C 25°C –40°C 0 1 2 3 4 5 6 V (V)COM r ( )ON Ω 0 1 2 3 4 V (V)COM r ON Ω 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 85°C 25°C –40°C –40 25 85 Temperature, T (°C)A ( A)µ I+ (Inx high) I (Inx low)+ TS5A21366 www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 Figure r on vs V COM Figure r on vs V COM Figure r on vs V COM 3.3 Figure Power-Supply Current vs Temperature Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

–250 –200 –150 –100 -50 –40 25 85 Temperature, T (°C)A Leakage Current (nA) ICOM(OFF) INO(ON) ICOM(ON) INO(OFF) V (V)+ t /tON OFF (ns) 140 240 340 1.8 2.5 3.3 5.0 tOFF tON 0.0 0.5 1.0 1.5 Input Voltage, IN (V) NO Out (V) V = 5.5 V+ V = 3.3 V+ V = 5 V+ V = 2.5 V+ V = 4.3 V+ V = 1.8 V+ T emperature, T (°C)A t /tON OFF (ns) 100 150 200 250 300 tOFF tON –40 25 85 TS5A21366 SCDS285A MARCH 2009 REVISED OCTOBER 2009 www.ti.com TYPICAL PERFORMANCE (continued) Figure Leakage Current vs Temperature 5.5 Figure t ON OFF vs Supply Voltage Figure t ON OFF vs Temperature 3.3 Figure Input Voltage Thresholds Submit Documentation Feedback Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

Frequency (Hz) Magnitude (dB) 100000 1000000 10000000 100000000 1000000000 –75 –65 –55 –45 –35 –25 –15 5 V 3.3 V 2.5 V 1.8 V Frequency (Hz) Magnitude (dB) 100000 1000000 10000000 100000000 1000000000 5 V 3.3 V 2.5 V 1.8 V Frequency (Hz) Magnitude (dB) 100000 1000000 10000000 100000000 1000000000 –110 –100 –90 –80 –70 –60 –50 –40 –30 –20 5 V 3.3 V 2.5 V 1.8 V 0 1 2 3 4 5 6 Force (V) Char ge Injection, Q (pC) C 5 V 3.3 V 2.5 V 1.8 V TS5A21366 www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 TYPICAL PERFORMANCE (continued) Figure Insertion Loss Figure 10. OFF Isolation Figure 11. Crosstalk Figure 12. Charge Injection C vs Bias Voltage Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

–100 –90 –80 –70 –60 –50 –40 –30 10 100 1000 10000 100000 1000000 10000000 Frequency (Hz) Magnitude (dB) 5 V 3.3 V 2.5 V 1.8 V 0.00 0.01 0.02 0.03 0.04 0.05 10 100 1000 10000 100000 Frequency (Hz) THD + N (%) 5 V 3.3 V 2.5 V 1.8 V TS5A21366 SCDS285A MARCH 2009 REVISED OCTOBER 2009 www.ti.com TYPICAL PERFORMANCE (continued) Figure 13. THD N (%) vs Frequency Figure 14. Power Supply Rejection Ratio (PSRR) Submit Documentation Feedback Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

r =ON Ω VCOM NO– V ICOM GND Channel ON NO VI COM VCOM VI = VIH or VIL VNO IN Channel OFF OFF-State Leakage Current VI = VIH or VIL GND NO VI COM V COM VNO IN Channel ON ON-State Leakage Current VI = VIH or VIL GND NO VI COM VCOM VNO IN TS5A21366 www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 Figure 15. ON-State Resistance on Figure 16. OFF-State Leakage Current COM(OFF) I NO(OFF) I COM(PWROFF) I NOC(PWR(FF) Figure 17. ON-State Leakage Current COM(ON) I NO(ON) Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

V = V or GNDI + V = V or GNDBIAS + Capacitance is measured at NO, COM, and IN inputs during ON and OFF conditions. Capacitance Meter VNO COM NO COM CL(B) RL VCOM GND NO IN VNO VI COM Logic Input(A) VCOM 50 Ω RL CL 35 pFtON TEST V+50 Ω 35 pFtOFF 50% tON tOFF 50% 90% 90% Logic Input (VI) Switch Output (VNO) TS5A21366 SCDS285A MARCH 2009 REVISED OCTOBER 2009 www.ti.com PARAMETER MEASUREMENT INFORMATION (continued) Figure 18. Capacitance I C COM(OFF) C COM(ON) C NO(OFF) C NO(ON) All input pulses are supplied by generators having the following characteristics: PRR MHz, Z O Ω t r ns, t f ns. C L includes probe and jig capacitance. Figure 19. Turn-On ON and Turn-Off Time OFF Submit Documentation Feedback Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

50 Ω 50 Ω VNO VCOM Channel ON: NO to COM Network Analyzer Setup Source Power = 0 dBm (632-mV P-P at 50- Ω load) DC Bias = 350 mV Network Analyzer Source Signal VI = VIH or VIL NO COM VNO VCOM Channel OFF: NO to COM Network Analyzer Setup Source Power = 0 dBm (632-mV P-P at 50- Ω load) DC Bias = 350 mV GND 50 Ω 50 Ω Network Analyzer Source Signal INVI VI = VIO or GND NO1 NO2 50 Ω 50 Ω VNO1 COM1 Channel ON: NO to COM Network Analyzer Setup Source Power = 0 dBm (632 mV P-P at 50 Ω load) DC Bias = 350 mV 50 Ω GND VNO2 Source Signal Network Analyzer COM2 INVI TS5A21366 www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 PARAMETER MEASUREMENT INFORMATION (continued) Figure 20. Bandwidth (BW) Figure 21. OFF Isolation ISO Figure 22. Crosstalk TALK Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

CL(A ) OFF VCOM ON OFF ∆ VCOMVGEN VI = VIH or VIL CL = 1 nF VGEN = 0 to V+ RGEN = 0 QC = CL × ∆ VCOM Logic Input(B) VIH VIL Logic Input (VI) NO COM CL(A ) V+/2 INVI 600 Ω 600 Ω Audio Analyzer Source Signal RL = 600 Ω CL = 50 pFVSOURCE = V+ P-P f SOURCE = 20 Hz to 20 kHz Channel ON: COM to NO VI = (VIO – V +/2) or -V +/2 -V +/2 TS5A21366 SCDS285A MARCH 2009 REVISED OCTOBER 2009 www.ti.com PARAMETER MEASUREMENT INFORMATION (continued) C L includes probe and jig capacitance. All input pulses are supplied by generators having the following characteristics: PRR MHz, Z O Ω t r ns, t f ns. Figure 23. Charge Injection C C L includes probe and jig capacitance. Figure 24. Total Harmonic Distortion (THD) Submit Documentation Feedback Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

50 Ω 1 kΩ 100 Fµ + – HPA4194A Test Reference TS5A21366 www.ti.com SCDS285A MARCH 2009 REVISED OCTOBER 2009 PARAMETER MEASUREMENT INFORMATION (continued) Figure 25. Power Supply Rejection Ratio (PSRR) Copyright 2009, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Link(s): TS5A21366

www.ti.com Independent of V low-voltage GPIO-compatible control inputs TS5A21366 integrates special control inputs with low threshold allowing the device to be controlled by 1.8-V signals. The thresholds are fixed and independent of the supply value The low threshold IH V IL of the control inputs (IN1, IN2) is achieved by use of an internal bias circuit. To avoid an increased quiescent current condition, proper power sequencing must be followed to ensure that the bias circuitry is powered up prior to applying voltage on the I/Os. The proper sequence is for the V pin to be brought up to V before the control inputs (IN1, IN2) are allowed to go to a high level. Submit Documentation Feedback Copyright 2009, Texas Instruments Incorporated Product Folder Link(s): TS5A21366

*All dimensions are nominal Device Package Type Package Drawing Pins SPQ Reel Diameter (mm) Reel Width W1 (mm) (mm) (mm) (mm) (mm) W (mm) Pin1 Quadrant PACKAGE MATERIALS INFORMATION www.ti.com 8-Dec-2009 Pack Materials-Page 1

*All dimensions are nominal Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) TS5A21366DCUR US8 DCU 8 3000 202.0 201.0 28.0 TS5A21366RSER UQFN RSE 8 3000 202.0 201.0 28.0 PACKAGE MATERIALS INFORMATION www.ti.com 8-Dec-2009 Pack Materials-Page 2

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