TS5A2053 TI | Alldatasheet
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/C0068Low ON-State Resistance (10 /C0087) /C0068Control Inputs Are 5-V Tolerant /C0068Low Charge Injection /C0068Excellent ON-Resistance Matching /C0068Low Total Harmonic Distortion (THD) /C00681.65-V to 5.5-V Single-Supply Operation /C0068Latch-Up Performance Exceeds 100 mA Per JESD 78, Class II /C0068ESD Performance Tested Per JESD 22 − 2000-V Human-Body Model (A114-B, Class II) − 1000-V Charged-Device Model (C101) Summary of Characteristics V+ = 5 V and TA = 25 °C Configuration Single Pole Double Throw (SPDT) Number of channels 1 ON-state resistance (ron) 7.5 Ω ON-state resistance match (∆ron) 0.8 Ω ON-state resistance flatness (ron(flat)) 1.7 Ω Turn-on/turn-of f time (tON /tOFF ) 6.8 ns/4.1 ns Charge injection (QC ) 3 pC Bandwidth (BW) 330 MHz OFF isolation (OISO) −64 dB at 10 MHz Crosstalk (XTALK ) −68 dB at 10 MHz Total harmonic distortion (THD) 0.01% Leakage current (ICOM(OFF) ) ±10 nA Power-supply current (I+) 0.1 µA Package option 8-pin DSBGA, SSOP, or VSSOP /C0080/C0082/C0079/C0068/C0085/C0067/C0084/C0073/C0079/C0078 /C0068/C0065/C0084/C0065 /C0105/C0110/C0102/C0111/C0114/C0109/C0097/C0116/C0105/C0111/C0110 /C0105/C0115 /C0099/C0117/C0114/C0114/C0101/C0110/C0116 /C0097/C0115 /C0111/C0102 /C0112/C0117/C0098/C0108/C0105/C0099/C0097/C0116/C0105/C0111/C0110 /C0100/C0097/C0116/C0101/C0046 /C0080/C0114/C0111/C0100/C0117/C0099/C0116/C0115 /C0099/C0111/C0110/C0102/C0111/C0114/C0109 /C0116/C0111 /C0115/C0112/C0101/C0099/C0105/C0102/C0105/C0099/C0097/C0116/C0105/C0111/C0110/C0115 /C0112/C0101/C0114 /C0116/C0104/C0101 /C0116/C0101/C0114/C0109/C0115 /C0111/C0102 /C0084/C0101/C0120/C0097/C0115 /C0073/C0110/C0115/C0116/C0114/C0117/C0109/C0101/C0110/C0116/C0115 /C0115/C0116/C0097/C0110/C0100/C0097/C0114/C0100 /C0119/C0097/C0114/C0114/C0097/C0110/C0116/C0121/C0046 /C0080/C0114/C0111/C0100/C0117/C0099/C0116/C0105/C0111/C0110 /C0112/C0114/C0111/C0099/C0101/C0115/C0115/C0105/C0110/C0103 /C0100/C0111/C0101/C0115 /C0110/C0111/C0116 /C0110/C0101/C0099/C0101/C0115/C0115/C0097/C0114/C0105/C0108/C0121 /C0105/C0110/C0099/C0108/C0117/C0100/C0101 /C0116/C0101/C0115/C0116/C0105/C0110/C0103 /C0111/C0102 /C0097/C0108/C0108 /C0112/C0097/C0114/C0097/C0109/C0101/C0116/C0101/C0114/C0115/C0046 Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet. www.ti.com Copyright 2005, Texas Instruments Incorporated
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com
ORDERING INFORMATION
TA PACKAGE (1) ORDERABLE P ART NUMBER TOP-SIDE MARKING (2) NanoStar − WCSP (DSBGA) 0.23-mm Large Bump − YEP Tape and reel TS5A2053YEPR −40°C to 85°C NanoFree − WCSP (DSBGA) 0.23-mm Large Bump − YZP (Pb-free) Tape and reel TS5A2053YZPR SSOP − DCT Tape and reel TS5A2053DCTR JAF_ _ _ VSSOP − DCU Tape and reel TS5A2053DCUR JAF_ (1)Package drawings, standard packing quantities, thermal data, symbolization, and PCB design guidelines are available at www.ti.com/sc/package. (2)DCT: The actual top-side marking has three additional characters that designate the year, month, and assembly/test site. DCU: The actual top-side marking has one additional character that designates the assembly/test site. YEP/YZP: The actual top-side marking has three preceding characters to denote year, month, and sequence code, and one following character to designate the assembly/test site. Pin 1 identifier indicates solder-bump composition (1 = SnPb, • = Pb-free). Absolute Minimum and Maximum Ratings(1)(2) over operating free-air temperature range (unless otherwise noted) MIN MAX UNIT V+ Supply voltage range(3) −0.5 6.5 V VNO VNC VCOM Analog voltage range(3)(4)(5) −0.5 V+ + 0.5 V IK Analog port diode current VNC, VNO , VCOM < 0 or VNO, VNC , VCOM > V+ −50 50 mA INO INC ICOM On-state switch current VNC , VNO , VCOM = 0 to V+ −50 50 mA VI Digital input voltage range(3)(4) −0.5 6.5 V IIK Digital input clamp current VI < 0 −50 mA I+ Continuous current through V+ 100 mA IGND Continuous current through GND −100 mA (6) DCT package 220 θJA Package thermal impedance(6) DCU package 227 °C/WθJA Package thermal impedance(6) YEP/YZP package 102 C/W Tstg Storage temperature range −65 150 °C (1)Stresses above these ratings may cause permanent damage. Exposure to absolute maximum conditions for extended periods may degrade device reliability. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those specified is not implied. (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)The package thermal impedance is calculated in accordance with JESD 51-7.
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com Electrical Characteristics for 5-V Supply(1) V+ = 4.5 V to 5.5 V, TA = −40°C to 85°C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS TA V+ MIN TYP MAX UNIT Analog Switch Analog signal rangeVCOM , VNO, VNC
0 V+ V
0 ≤ (VNO or VNC ) ≤ V+, Switch ON, 25°C 4.5 V 7.5 13.8 ΩON-state resistance ron 0 ≤ (VNO or VNC ) ≤ V+, ICOM = −32 mA, Switch ON, See Figure 13 Full 4.5 V 16 Ω ON-state resistance match between ∆ron VNO or VNC = 3.15 V, Switch ON, 25°C 4.5 V 0.8 3 Ωmatch between channels ∆ron VNO or VNC = 3.15 V, ICOM = −32 mA, Switch ON, See Figure 13 Full 4.5 V 4.5 Ω ON-state resistanceron(flat) 0 ≤ (VNO or VNC ) ≤ V+, Switch ON, 25°C 4.5 V 1.7 2 ΩON-state resistance flatness ron(flat) 0 ≤ (VNO or VNC ) ≤ V+, ICOM = −32 mA, Switch ON, See Figure 13 Full 4.5 V 4.5 Ω NO, NC INO(OFF), VNO or VNC = 1 V, VCOM = 4.5 V, or Switch OFF, 25°C 5.5 V −20 5 20 nANO, NC OFF leakage current INO(OFF), INC(OFF ) VCOM = 4.5 V, or VNO or VNC = 4.5 V, VCOM = 1 V, Switch OFF, See Figure 14 Full 5.5 V −20 20 nA COM ICOM(OFF) VCOM = 1 V, VNO or VNC = 4.5 V, or Switch OFF, 25°C 5.5 V −10 −1 10 nACOM OFF leakage current ICOM(OFF) VNO or VNC = 4.5 V, or VCOM = 4.5 V, VNO or VNC = 1 V, Switch OFF, See Figure 14 Full 5.5 V −10 10 nA NO, NC INO(ON), VNO = 1 V, VCOM = Open, or Switch ON, 25°C 5.5 V −10 5.5 10 nANO, NC ON leakage current INO(ON), INC(ON) NO COM or VNO = 4.5 V, VCOM = Open, Switch ON, See Figure 15 Full 5.5 V −20 20 nA COM ICOM(ON) VCOM = 1 V, VNO or VNC = Open, or Switch ON, 25°C 5.5 V −5 −1 5 nACOM ON leakage current ICOM(ON ) VNO or VNC = Open, or VCOM = 4.5 V, VNO or VNC = Open, Switch ON, See Figure 15 Full 5.5 V −10 10 nA Digital Control Inputs (IN, EN) Input logic high VIH Full V+ × 0.7 5.5 V Input logic low VIL Full 0 V+ × 0.3 V Input leakage IIH, IIL VI = 5.5 V or 0 25°C 5.5 V −0.1 0.05 0.1 AInput leakage current IIH, IIL VI = 5.5 V or 0 Full 5.5 V −1 1 µA (1)The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com Electrical Characteristics for 5-V Supply(1) (continued) V+ = 4.5 V to 5.5 V, TA = −40°C to 85°C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS TA V+ MIN TYP MAX UNIT Dynamic Turn-on time tON VCOM = 3 V, C L = 35 pF, 25°C 5 V 3.8 5.3 6.8 nsTurn-on time tON VCOM = 3 V, R L = 300 Ω, C L = 35 pF, See Figure 17 Full 4.5 V to 5.5 V 3 7.1 ns Turn-off time tOFF VCOM = 3 V, C L = 35 pF, 25°C 5 V 0.8 1.9 4.1 nsTurn-off time tOFF VCOM = 3 V, R L = 300 Ω, C L = 35 pF, See Figure 17 Full 4.5 V to 5.5 V 0.4 4.5 ns Charge injection Q C VGEN = 0, R GEN = 0, C L = 0.1 nF, See Figure 21 25°C 5 V 3 pC NO, NC OFF capacitance CNO(OFF), C NC(OFF) VNO or VNC = V+ or GND, Switch OFF, See Figure 16 25°C 5 V 6 pF COM OFF capacitance CCOM(OFF) VCOM = V+ or GND, Switch OFF, See Figure 16 25°C 5 V 9.5 pF NO, NC ON capacitance C NO(ON), C NC(ON) VNO or VNC = V+ or GND, Switch ON, See Figure 16 25°C 5 V 18 pF COM ON capacitance CCOM(ON) VCOM = V+ or GND, Switch ON, See Figure 16 25°C 5 V 18 pF Digital input capacitance C I VI = V+ or GND, See Figure 16 25°C 5 V 2.5 pF Bandwidth BW R L = 50 Ω, Switch ON, See Figure 18 25°C 5 V 330 MHz OFF isolation O ISO R L = 50 Ω, f = 10 MHz, Switch OFF, See Figure 19 25°C 5 V −64 dB Crosstalk XTALK R L = 50 Ω, f = 10 MHz, Switch ON, See Figure 20 25°C 5 V −68 dB Total harmonic distortion THD R L = 600 Ω, C L = 50 pF, f = 20 Hz to 20 kHz, See Figure 22 25°C 5 V 0.01 % Supply Positive supply I+ VI = V+ or GND, Switch ON or OFF 25°C 5.5 V 0.1 1 APositive supply current I+ VI = V+ or GND, Switch ON or OFF Full 5.5 V 5 µA (1)The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com Electrical Characteristics for 3.3-V Supply(1) V+ = 3 V to 3.6 V, TA = −40°C to 85°C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS TA V+ MIN TYP MAX UNIT Analog Switch Analog signal range VCOM , VNO , VNC 0 ≤ (VNO or VNC) ≤ V+, Switch ON, 25°C 3 V 13.2 13.8 ΩON-state resistance ron 0 ≤ (VNO or VNC) ≤ V+, ICOM = −24 mA, Switch ON, See Figure 13 Full 3 V 16 Ω ON-state resistance match ∆ron VNO or VNC = 2.1 V, Switch ON, 25°C 3 V 1 3 Ωresistance match between channels ∆ron VNO or VNC = 2.1 V, ICOM = −24 mA, Switch ON, See Figure 13 Full 3 V 5.5 Ω ON-state ron(flat) 0 ≤ (VNO or VNC) ≤ V+, Switch ON, 25°C 3 V 5.3 7 ΩON-state resistance flatnessron(flat) 0 ≤ (VNO or VNC) ≤ V+, ICOM = −24 mA, Switch ON, See Figure 13 Full 3 V 11 Ω NO, NC OFF leakage INO(OFF), VNO or VNC = 1 V, VCOM = 3 V, or Switch OFF, 25°C 3.6 V −20 4 20 nAOFF leakage current INO(OFF), INC(OFF ) NO NC COM or VNO or VNC = 3 V, VCOM = 1 V, Switch OFF, See Figure 14 Full 3.6 V −20 20 nA COM OFF leakage ICOM(OFF) VCOM = 1 V, VNO or VNC = 3 V, or Switch OFF, 25°C 3.6 V −10 −1 10 nAOFF leakage current ICOM(OFF) COM NO NC or VCOM = 3 V, VNO or VNC = 1 V, Switch OFF, See Figure 14 Full 3.6 V −10 10 nA NO, NC INO(ON), VNO or VNC = 1 V, VCOM = Open, or Switch ON, 25°C 3.6 V −10 4.5 10 nANO, NC ON leakage current INO(ON), INC(ON) NO NC COM or VNO or VNC = 3 V, VCOM = Open, Switch ON, See Figure 15 Full 3.6 V −20 20 nA COM ICOM(ON) VCOM = 1 V, VNO or VNC = Open, or Switch ON, 25°C 3.6 V −5 −1 5 nACOM ON leakage current ICOM(ON ) COM NO NC or VCOM = 3 V, VNO or VNC = Open, Switch ON, See Figure 15 Full 3.6 V −10 10 nA Digital Control Inputs (IN, EN) Input logic high VIH Full V+ × 0.7 5.5 V Input logic low VIL Full 0 V+ × 0.3 V Input leakage IIH, IIL VI = 5.5 V or 0 25°C 3.6 V −0.1 0.05 0.1 AInput leakage current IIH, IIL VI = 5.5 V or 0 Full 3.6 V −1 1 µA (1)The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com Electrical Characteristics for 3.3-V Supply(1) (continued) V+ = 3 V to 3.6 V, TA = −40°C to 85°C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS TA V+ MIN TYP MAX UNIT Dynamic Turn-on time tON VCOM = 2 V, C L = 35 pF, 25°C 3.3 V 5 6.4 7.9 nsTurn-on time tON VCOM = 2 V, R L = 300 Ω, C L = 35 pF, See Figure 17 Full 3 V to 3.6 V 4.5 8.2 ns Turn-off time tOFF VCOM = 2 V, C L = 35 pF, 25°C 3.3 V 1.1 2.4 4.7 nsTurn-off time tOFF VCOM = 2 V, R L = 300 Ω, C L = 35 pF, See Figure 17 Full 3 V to 3.6 V 0.3 5 ns Charge injection Q C VGEN = 0, R GEN = 0, C L = 0.1 nF, See Figure 21 25°C 3.3 V 1 pC NO, NC OFF capacitance C NO(OFF) VNO or VNC = V+ or GND, Switch OFF, See Figure 16 25°C 3.3 V 6 pF COM OFF capacitance CCOM(OFF) VCOM = V+ or GND, Switch OFF, See Figure 16 25°C 3.3 V 9.5 pF NO, NC ON capacitance C NO(ON) VNO or VNC = V+ or GND, Switch ON, See Figure 16 25°C 3.3 V 18.5 pF COM ON capacitance CCOM(ON) VCOM = V+ or GND, Switch ON, See Figure 16 25°C 3.3 V 18.5 pF Digital input capacitance C I VI = V+ or GND, See Figure 16 25°C 3.3 V 3 pF Bandwidth BW R L = 50 Ω, Switch ON, See Figure 18 25°C 3.3 V 320 MHz OFF isolation O ISO R L = 50 Ω, f = 10 MHz, Switch OFF, See Figure 19 25°C 3.3 V −64 dB Crosstalk XTALK R L = 50 Ω, f = 10 MHz, Switch ON, See Figure 20 25 °C 3.3 V −68 dB Total harmonic distortion THD R L = 600 Ω, C L = 50 pF, f = 20 Hz to 20 kHz, See Figure 22 25°C 3.3 V 0.035 % Supply Positive supply I+ VI = V+ or GND, Switch ON or OFF 25°C 3.6 V 0.1 1 APositive supply current I+ VI = V+ or GND, Switch ON or OFF Full 3.6 V 5 µA (1)The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com Electrical Characteristics for 2.5-V Supply(1) V+ = 2.3 V to 2.7 V, TA = −40°C to 85°C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS TA V+ MIN TYP MAX UNIT Analog Switch Analog signal range VCOM , VNO , VNC 0 ≤ (VNO or VNC) ≤ V+, Switch ON, 25°C 2.3 V 20 28 ΩON-state resistance ron 0 ≤ (VNO or VNC) ≤ V+, ICOM = −8 mA, Switch ON, See Figure 13 Full 2.3 V 30 Ω ON-state resistance match between ∆ron VNO or VNC = 1.6 V, Switch ON, 25°C 2.3 V 1.1 3 Ωmatch between channels ∆ron VNO or VNC = 1.6 V, ICOM = −8 mA, Switch ON, See Figure 13 Full 2.3 V Ω ON-state resistanceron(flat) 0 ≤ (VNO or VNC) ≤ V+, Switch ON, 25°C 2.3 V 15 16 ΩON-state resistance flatness ron(flat) 0 ≤ (VNO or VNC) ≤ V+, ICOM = −8 mA, Switch ON, See Figure 13 Full 2.3 V 20 Ω NO, NC INO(OFF), VNO or VNC = 0.5 V, VCOM = 2.2 V, or Switch OFF, 25°C 2.7 V −20 3.5 20 nANO, NC OFF leakage current INO(OFF), INC(OFF ) VCOM = 2.2 V, or VNO or VNC = 2.2 V, VCOM = 0.5 V, Switch OFF, See Figure 14 Full 2.7 V −20 20 nA COM ICOM(OFF) VCOM = 0.5 V, VNO or VNC = 2.2 V, or Switch OFF, 25°C 2.7 V −10 −2 10 nACOM OFF leakage current ICOM(OFF) VNO or VNC = 2.2 V, or VCOM = 2.2 V, VNO or VNC = 0.5 V, Switch OFF, See Figure 14 Full 2.7 V −10 10 nA NO, NC INO(ON), VNO or VNC = 0.5 V, VCOM = Open, or Switch ON, 25°C 2.7 V −10 4 10 nANO, NC ON leakage current INO(ON), INC(ON) VCOM = Open, or VNO or VNC = 2.2 V, VCOM = Open, Switch ON, See Figure 15 Full 2.7 V −20 20 nA COM ICOM(ON) VCOM = 0.5 V, VNO or VNC = Open, or Switch ON, 25°C 2.7 V −5 −2 5 nACOM ON leakage current ICOM(ON ) VNO or VNC = Open, or VCOM = 2.2 V, VNO or VNC = Open, Switch ON, See Figure 15 Full 2.7 V −10 10 nA Digital Control Inputs (IN, EN) Input logic high VIH Full V+ × 0.7 5.5 V Input logic low VIL Full 0 V+ × 0.3 V Input leakage IIH, IIL VI = 5.5 V or 0 25°C 2.7 V −0.1 0.05 0.1 AInput leakage current IIH, IIL VI = 5.5 V or 0 Full 2.7 V −1 1 µA (1)The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com Electrical Characteristics for 2.5-V Supply(1) (continued) V+ = 2.3 V to 2.7 V, TA = −40°C to 85°C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS TA V+ MIN TYP MAX UNIT Dynamic Turn-on time tON nsTurn-on time tON VCOM = 1.5 V, R L = 300 Ω, C L = 35 pF, See Figure 17 Full 2.3 V to 2.7 V 5.1 10 ns Turn-off time tOFF nsTurn-off time tOFF VCOM = 1.5 V, R L = 300 Ω, C L = 35 pF, See Figure 17 Full 2.3 V to 2.7 V 1.2 5.2 ns Charge injection Q C VGEN = 0, R GEN = 0 C L = 0.1 nF, See Figure 21 25°C 2.5 V 0.5 pC NO, NC OFF capacitance C NO(OFF) C NC(OFF) VNO or VNC = V+ or GND, Switch OFF, See Figure 16 25°C 2.5 V 6.5 pF COM OFF capacitance CCOM(OFF) VCOM = V+ or GND, Switch OFF, See Figure 16 25°C 2.5 V 10 pF NO, NC ON capacitance C NO(ON) C NC(ON) VNO or VNC = V+ or GND, Switch ON, See Figure 16 25°C 2.5 V 18.5 pF COM ON capacitance CCOM(ON) VCOM = V+ or GND, Switch ON, See Figure 16 25°C 2.5 V 18.5 pF Digital input capacitance C I VI = V+ or GND, See Figure 16 25°C 2.5 V 3 pF Bandwidth BW R L = 50 Ω, Switch ON, See Figure 18 25°C 2.5 V 320 MHz OFF isolation O ISO R L = 50 Ω, f = 10 MHz, Switch OFF, See Figure 19 25°C 2.5 V −64 dB Crosstalk XTALK R L = 50 Ω, f = 10 MHz, Switch ON, See Figure 20 25 °C 2.5 V −68 dB Total harmonic distortion THD R L = 600 Ω, C L = 50 pF, f = 20 Hz to 20 kHz, See Figure 22 25°C 2.5 V 0.26 % Supply Positive supply I+ VI = V+ or GND, Switch ON or OFF 25°C 2.7 V 0.1 1 APositive supply current I+ VI = V+ or GND, Switch ON or OFF Full 2.7 V 5 µA (1)The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com Electrical Characteristics for 1.8-V Supply(1) V+ = 1.65 V to 1.95 V, TA = −40°C to 85°C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS TA V+ MIN TYP MAX UNIT Analog Switch Analog signal rangeVCOM , VNO, VNC 0 ≤ (VNO or VNC) ≤ V+, Switch ON, 25°C 1.65 V 85 90 ΩON-state resistance ron 0 ≤ (VNO or VNC) ≤ V+, ICOM = −4 mA, Switch ON, See Figure 13 Full 1.65 V 105 Ω ON-state resistance match ∆ron VNO or VNC = 1.15 V, Switch ON, 25°C 1.65 V 2 4 Ωresistance match between channels ∆ron VNO or VNC = 1.15 V, ICOM = −4 mA, Switch ON, See Figure 13 Full 1.65 V 7.5 Ω ON-state ron(flat) 0 ≤ (VNO or VNC) ≤ V+, Switch ON, 25°C 1.65 V 76 85 ΩON-state resistance flatnessron(flat) 0 ≤ (VNO or VNC) ≤ V+, ICOM = −4 mA, Switch ON, See Figure 13 Full 1.65 V 100 Ω NO, NC OFF leakage INO(OFF), VNO or VNC = 0.3 V, VCOM = 1.65 V, or Switch OFF, 25°C 1.95 V −20 3.5 20 AOFF leakage current INO(OFF), INC(OFF ) VCOM = 1.65 V, or VNO or VNC = 1.65 V, VCOM = 0.3 V, Switch OFF, See Figure 14 Full 1.95 V −20 20 µA COM OFF leakage ICOM(OFF) VCOM = 0.3 V, VNO = 1.65 V, or Switch OFF, 25°C 1.95 V −10 1 10 AOFF leakage current ICOM(OFF) COM NO or VCOM = 1.65 V, VNO = 0.3 V, Switch OFF, See Figure 14 Full 1.95 V −1 1 µA NO, NC INO(ON), VNO or VNC = 0.3 V, VCOM = Open, or Switch ON, 25°C 1.95 V −10 4 10 ANO, NC ON leakage current INO(ON), INC(ON) VCOM = Open, or VNO or VNC = 1.65 V, VCOM = Open, Switch ON, See Figure 15 Full 1.95 V 20 20 µA COM ICOM(ON) VCOM = 0.3 V, VNO or VNC = Open, or Switch ON, 25°C 1.95 V −5 1 5 ACOM ON leakage current ICOM(ON ) VNO or VNC = Open, or VCOM = 1.65 V, VNO or VNC = Open, Switch ON, See Figure 15 Full 1.95 V −10 10 µA Digital Control Inputs (IN, EN) Input logic high VIH Full V+ × 0.65 5.5 V Input logic low VIL Full 0 V+ × 0.35 V Input leakage IIH, IIL VI = 5.5 V or 0 25°C 1.95 V −0.1 0.05 0.1 AInput leakage current IIH, IIL VI = 5.5 V or 0 Full 1.95 V −1 1 µA (1)The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com Electrical Characteristics for 1.8-V Supply(1) (continued) V+ = 1.65 V to 1.95 V, TA = −40°C to 85°C (unless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS TA V+ MIN TYP MAX UNIT Dynamic Turn-on time tON nsTurn-on time tON VCOM = 1.3 V, R L = 300 Ω, C L = 35 pF, See Figure 17 Full 1.65 V to 1.95 V 8.4 15.5 ns Turn-off time tOFF nsTurn-off time tOFF VCOM = 1.3 V, R L = 300 Ω, C L = 35 pF, See Figure 17 Full 1.65 V to 1.95 V 2.2 7 ns Charge injection Q C VGEN = 0, R GEN = 0 C L = 0.1 nF, See Figure 21 25°C 1.8 V 0.5 pC NO, NC OFF capacitance CNO(OFF), C NC(OFF) VNO or VNC = V+ or GND, Switch OFF, See Figure 16 25°C 1.8 V 6.5 pF COM OFF capacitance CCOM(OFF) VCOM = V+ or GND, Switch OFF, See Figure 16 25°C 1.8 V 10 pF NO, NC ON capacitance C NO(ON), C NC(ON) VNO or VNC = V+ or GND, Switch ON, See Figure 16 25°C 1.8 V 19 pF COM ON capacitance CCOM(ON) VCOM = V+ or GND, Switch ON, See Figure 16 25°C 1.8 V 14 pF Digital input capacitance C I VI = V+ or GND, See Figure 16 25°C 1.8 V 3 pF Bandwidth BW R L = 50 Ω, Switch ON, See Figure 18 25°C 1.8 V 320 MHz OFF isolation O ISO R L = 50 Ω, f = 10 MHz, Switch OFF, See Figure 19 25°C 1.8 V −64 dB Crosstalk XTALK R L = 50 Ω, f = 10 MHz, Switch ON, See Figure 20 25 °C 1.8 V −68 dB Total harmonic distortion THD R L = 10 kΩ, C L = 50 pF, f = 20 Hz to 20 kHz, See Figure 22 25°C 1.8 V 2.6 % Supply Positive supply I+ VI = V+ or GND, Switch ON or OFF 25°C 1.95 V 0.1 1 APositive supply current I+ VI = V+ or GND, Switch ON or OFF Full 1.95 V 5 µA (1)The algebraic convention, whereby the most negative value is a minimum and the most positive value is a maximum
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com PIN DESCRIPTION PIN NUMBER NAME DESCRIPTION
1 COM Common
2 EN Chip enable (active low)
3 GND Digital ground
4 GND Digital ground
5 IN Digital control to connect COM to NC or NO
6 NO Normally open
7 NC Normally close
8 V+ Power supply
ron Resistance between COM and NC or COM and NO ports when the channel is ON ∆ron Difference of ron between channels in a specific device ron(flat) Difference between the maximum and minimum value of ron in a channel over the specified range of conditions INC(OFF) Leakage current measured at the NC port, with the corresponding channel (NC to COM) in the OFF state INO(OFF) Leakage current measured at the NO port, with the corresponding channel (NO to COM) in the OFF state INC(ON) Leakage current measured at the NC port, with the corresponding channel (NC to COM) in the ON state and the output (COM) open INO(ON) Leakage current measured at the NO port, with the corresponding channel (NO to COM) in the ON state and the output (COM) open ICOM(OFF) Leakage current measured at the COM port, with the corresponding channel (COM to NO or COM to NC) in the OFF state and the output (NC or NO) open ICOM(ON) Leakage current measured at the COM port, with the corresponding channel (COM to NO or COM to NC) in the ON state and the output (NC or NO) open VIH Minimum input voltage for logic high for the control input (IN, EN) VIL Maximum input voltage for logic low for the control input (IN, EN) VI Voltage at the control input (IN, EN) IIH, IIL Leakage current measured at the control input (IN, EN) tON Turn-on time for the switch. This parameter is measured under the specified range of conditions and by the propagation delay between the digital control (IN) signal and analog output (COM, NC, or NO) signal when the switch is turning ON. tOFF Turn-off time for the switch. This parameter is measured under the specified range of conditions and by the propagation delay between the digital control (IN) signal and analog output (COM, NC, or NO) signal when the switch is turning OFF. Q C Charge injection is a measurement of unwanted signal coupling from the control (IN) input to the analog (NC, NO, or COM) output. This is measured in coulomb (C) and measured by the total charge induced due to switching of the control input. Charge injection, QC = CL × ∆VCOM , CL is the load capacitance and ∆VCOM is the change in analog output voltage.
/C0084/C0083/C0053/C0065/C0050/C0048/C0053/C0051 /C0083/C0073/C0078/C0071/C0076/C0069/C0262/C0067/C0072/C0065/C0078/C0078/C0069/C0076 /C0049/C0048/C0262/C0087 /C0083/C0080/C0068/C0084 /C0065/C0078/C0065/C0076/C0079/C0071 /C0083/C0087/C0073/C0084/C0067/C0072 /C0087/C0073/C0084/C0072 /C0069/C0078/C0065/C0066/C0076/C0069 SCDS183 – JANUARY 2005 www.ti.com PARAMETER DESCRIPTION (continued) SYMBOL DESCRIPTION CNC(OFF) Capacitance at the NC port when the corresponding channel (NC to COM) is OFF CNO(OFF) Capacitance at the NO port when the corresponding channel (NO to COM) is OFF C NC(ON) Capacitance at the NC port when the corresponding channel (NC to COM) is ON C NO(ON) Capacitance at the NO port when the corresponding channel (NO to COM) is ON CCOM(OFF) Capacitance at the COM port when the corresponding channel (COM to NC or COM to NO) is OFF CCOM(ON) Capacitance at the COM port when the corresponding channel (COM to NC or COM to NO) is ON C I Capacitance of control input (IN, EN) O ISO OFF isolation of the switch is a measurement of OFF-state switch impedance. This is measured in dB in a specific frequency, with the corresponding channel (NC to COM or NO to COM) in the OFF state. XTALK Crosstalk is a measurement of unwanted signal coupling from an ON channel to an OFF channel (NC to NO or NO to NC). This is measured in a specific frequency and in dB. BW Bandwidth of the switch. This is the frequency where the gain of an ON channel is −3 dB below the DC gain. THD Total harmonic distortion describes the signal distortion caused by the analog switch. This is defined as the ratio of root mean square (RMS) value of the second, third, and higher harmonic to the absolute magnitude of fundamental harmonic. I+ Static power-supply current with the control (IN, EN) pin at V+ or GND
(1)C L includes probe and jig capacitance. Figure 22. Total Harmonic Distortion (THD)
Orderable Device Status(1) Package Type Package Drawing Pins Package Qty Eco Plan(2) Lead/Ball FinishMSL Peak Temp (3) TS5A2053DCTR ACTIVE SM8 DCT 8 3000 Pb-Free (RoHS) CU NIPDAU Level-1-260C-UNLIM TS5A2053DCUR ACTIVE US8 DCU 8 3000 Pb-Free (RoHS) CU NIPDAU Level-1-260C-UNLIM TS5A2053DCURE4 ACTIVE US8 DCU 8 3000 Pb-Free (RoHS) CU NIPDAU Level-1-260C-UNLIM (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) 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. 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 6-Jun-2005 Addendum-Page 1
MPDS049B – MAY 1999 – REVISED OCTOBER 2002 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 DCT (R-PDSO-G8) PLASTIC SMALL-OUTLINE PACKAGE ÇÇÇÇÇ ÇÇÇÇÇ ÇÇÇÇÇ ÇÇÇÇÇ 0,60 0,20 0,25 0° – 8° 0,15 NOM Gage Plane 4188781/C 09/02 4,25 0,30 0,15 2,90 3,752,70 3,15 2,75 0,10 0,00 1,30 MAX Seating Plane 0,10 M0,130,65 PIN 1 INDEX AREA NOTES: A. All linear dimensions are in millimeters. B. This drawing is subject to change without notice. C. Body dimensions do not include mold flash or protrusion D. Falls within JEDEC MO-187 variation DA.
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