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CD4052BCJ

CD4052BCJ

  • 厂商:

    NSC

  • 封装:

  • 描述:

    CD4052BCJ - Single 8-Channel, Dual 4-Channel, Triple 2-Channel Analog Multiplexer/Demultiplexe - Nat...

  • 数据手册
  • 价格&库存
CD4052BCJ 数据手册
CD4051BM CD4051BC CD4052BM CD4052BC CD4053BM CD4053BC Analog Multiplexer Demultiplexers October 1989 CD4051BM CD4051BC Single 8-Channel Analog Multiplexer Demultiplexer CD4052BM CD4052BC Dual 4-Channel Analog Multiplexer Demultiplexer CD4053BM CD4053BC Triple 2-Channel Analog Multiplexer Demultiplexer General Description These analog multiplexers demultiplexers are digitally controlled analog switches having low ‘‘ON’’ impedance and very low ‘‘OFF’’ leakage currents Control of analog signals up to 15Vp-p can be achieved by digital signal amplitudes of 3 – 15V For example if VDD e 5V VSS e 0V and VEE eb5V analog signals from b5V to a 5V can be controlled by digital inputs of 0–5V The multiplexer circuits dissipate extremely low quiescent power over the full VDDbVSS and VDDbVEE supply voltage ranges independent of the logic state of the control signals When a logical ‘‘1’’ is present at the inhibit input terminal all channels are ‘‘OFF’’ CD4051BM CD4051BC is a single 8-channel multiplexer having three binary control inputs A B and C and an inhibit input The three binary signals select 1 of 8 channels to be turned ‘‘ON’’ and connect the input to the output CD4052BM CD4052BC is a differential 4-channel multiplexer having two binary control inputs A and B and an inhibit input The two binary input signals select 1 or 4 pairs of channels to be turned on and connect the differential analog inputs to the differential outputs CD4053BM CD4053BC is a triple 2-channel multiplexer having three separate digital control inputs A B and C and an inhibit input Each control input selects one of a pair of channels which are connected in a single-pole double-throw configuration Features Y Y Y Y Y Y Y Wide range of digital and analog signal levels digital 3 – 15V analog to 15Vp-p Low ‘‘ON’’ resistance 80X (typ ) over entire 15Vp-p signal-input range for VDDbVEE e 15V High ‘‘OFF’’ resistance channel leakage of g 10 pA (typ ) at VDDbVEE e 10V Logic level conversion for digital addressing signals of 3 – 15V (VDDbVSS e 3 – 15V) to switch analog signals to 15 Vp-p (VDDbVEE e 15V) Matched switch characteristics DRON e 5X (typ ) for VDDbVEE e 15V Very low quiescent power dissipation under all digitalcontrol input and supply conditions 1 mW (typ ) at VDDbVSS e VDDbVEE e 10V Binary address decoding on chip Connection Diagrams Dual-In-Line Packages CD4051BM CD4051BC CD4052BM CD4052BC CD4053BM CD4053BC TL F 5662 – 1 Order Number CD4051B CD4052B or CD4053B C1995 National Semiconductor Corporation TL F 5662 RRD-B30M105 Printed in U S A Absolute Maximum Ratings If Military Aerospace specified devices are required please contact the National Semiconductor Sales Office Distributors for availability and specifications b 0 5 VDC to a 18 VDC DC Supply Voltage (VDD) b 0 5 VDC to VDD a 0 5 VDC Input Voltage (VIN) b 65 C to a 150 C Storage Temperature Range (TS) Power Dissipation (PD) Dual-In-Line 700 mW Small Outline 500 mW Lead Temp (TL) (soldering 10 sec ) 260 C Recommended Operating Conditions DC Supply Voltage (VDD) Input Voltage (VIN) Operating Temperature Range (TA) 4051BM 4052BM 4053BM 4051BC 4052BC 4053BC a 5 VDC to a 15 VDC 0V to VDD VDC b 55 C to a 125 C b 40 C to a 85 C DC Electrical Characteristics (Note 2) Symbol IDD Parameter Quiescent Device Current VDD e 5V VDD e 10V VDD e 15V ‘‘ON’’ Resistance (Peak for VEEsVISsVDD) RL e 10 kX (any channel selected) VDD e 2 5V VEE eb2 5V or VDD e 5V VEE e 0V VDD e 5V VEE eb5V or VDD e 10V VEE e 0V VDD e 7 5V VEE eb7 5V or VDD e 15V VEE e 0V DRON D‘‘ON’’ Resistance Between Any Two Channels RL e 10 kX (any channel selected) VDD e 2 5V VEE eb2 5V or VDD e 5V VEE e 0V VDD e 5V VEE eb5V or VDD e 10V VEE e 0V VDD e 7 5V VEE eb7 5V or VDD e 15V VEE e 0V ‘‘OFF’’ Channel Leakage Current any channel ‘‘OFF’’ ‘‘OFF’’ Channel Leakage Current all channels ‘‘OFF’’ (Common OUT IN) Control Inputs A B C and Inhibit VIL Low Level Input Voltage VEE e VSS RL e 1 kX to VSS IISk2 mA on all OFF channels VIS e VDD thru 1 kX VDD e 5V VDD e 10V VDD e 15V VDD e 5 VDD e 10 VDD e 15 35 7 11 VDD e 7 5V VEE eb7 5V O I e g 7 5V I O e 0V Inhibit e 7 5V VDD e 7 5V VEE eb7 5V O I e 0V I O e g 7 5V CD4051 CD4052 CD4053 g 50 g 200 g 200 g 200 Conditions b 55 C a 25 a 125 C Units mA mA mA Min Max 5 10 20 Min Typ Max 5 10 20 Min Max 150 300 600 Signal Inputs (VIS) and Outputs (VOS) RON 800 270 1050 1300 X 310 120 400 550 X 200 80 240 320 X 10 X 10 X 5 X g 0 01 g 0 08 g 0 04 g 0 02 g 50 g 200 g 200 g 200 g 500 g 2000 g 2000 g 2000 nA nA nA nA 15 30 40 35 7 11 15 30 40 35 7 11 15 30 40 V V V V V V VIH High Level Input Voltage Note 1 ‘‘Absolute Maximum Ratings’’ are those values beyond which the safety of the device cannot be guaranteed Except for ‘‘Operating Temperature Range’’ they are not meant to imply that the devices should be operated at these limits The table of ‘‘Electrical Characteristics’’ provides conditions for actual device operation Note 2 All voltages measured with respect to VSS unless otherwise specified 2 DC Electrical Characteristics Symbol IIN Parameter Input Current (Note 2) (Continued) Conditions b 40 C a 25 C a 85 C Units Min VDD e 15V VIN e 0V VDD e 15V VIN e 15V VDD e 5V VDD e 10V VDD e 15V RL e 10 kX (any channel selected) VDD e 2 5V VEE eb2 5V or VDD e 5V VEE e 0V VDD e 5V VEE eb5V or VDD e 10V VEE e 0V VDD e 7 5V VEE eb7 5V or VDD e 15V VEE e 0V DRON D‘‘ON’’ Resistance Between Any Two Channels RL e 10 kX (any channel selected) VDD e 2 5V VEE eb2 5V or VDD e 5V VEE e 0V VDD e 5V VEE eb5V or VDD e 10V VEE e 0V VDD e 7 5V VEE eb7 5V or VDD e 15V VEE e 0V ‘‘OFF’’ Channel Leakage VDD e 7 5V VEE eb7 5V Current any channel ‘‘OFF’’ O I e g 7 5V I O e 0V ‘‘OFF’’ Channel Leakage Current all channels ‘‘OFF’’ (Common OUT IN) Control Inputs A B C and Inhibit VIL Low Level Input Voltage VEE e VSS RL e 1 kX to VSS IISk2 mA on all OFF Channels VIS e VDD thru 1 kX VDD e 5V VDD e 10V VDD e 15V VDD e 5 VDD e 10 VDD e 15 VDD e 15V VIN e 0V VDD e 15V VIN e 15V VEE e 0V VEE e 0V 35 7 11 Inhibit e 7 5V VDD e 7 5V VEE eb7 5V O I e 0V I O e g 7 5V CD4051 CD4052 CD4053 VEE e 0V VEE e 0V Max b0 1 Min Typ b 10 b 5 Max b0 1 Min Max b1 0 mA mA mA mA mA 01 20 40 80 10b5 01 20 40 80 10 150 300 600 IDD Quiescent Device Current Signal Inputs (VIS) and Outputs (VOS) RON ‘‘ON’’ Resistance (Peak for VEEsVISsVDD) 850 270 1050 1200 X 330 120 400 520 X 210 80 240 300 X 10 X 10 X 5 X g 50 g 200 g 200 g 200 g 0 01 g 0 08 g 0 04 g 0 02 g 50 g 200 g 200 g 200 g 500 g 2000 g 2000 g 2000 nA nA nA nA 15 30 40 35 7 11 b0 1 b 10 b 5 15 30 40 35 7 11 b0 1 15 30 40 V V V V V V VIH High Level Input Voltage IIN Input Current b1 0 mA mA 01 10b5 01 10 Note 1 ‘‘Absolute Maximum Ratings’’ are those values beyond which the safety of the device cannot be guaranteed Except for ‘‘Operating Temperature Range’’ they are not meant to imply that the devices should be operated at these limits The table of ‘‘Electrical Characteristics’’ provides conditions for actual device operation Note 2 All voltages measured with respect to VSS unless otherwise specified 3 AC Electrical Characteristics Symbol tPZH tPZL tPHZ tPLZ CIN Parameter Propagation Delay Time from Inhibit to Signal Output (channel turning on) Propagation Delay Time from Inhibit to Signal Output (channel turning off) Input Capacitance Control input Signal Input (IN OUT) Output Capacitance (common OUT IN) CD4051 CD4052 CD4053 CIOS CPD Feedthrough Capacitance Power Dissipation Capacitance CD4051 CD4052 CD4053 Signal Inputs (VIS) and Outputs (VOS) Sine Wave Response (Distortion) TA e 25 C tr e tf e 20 ns unless otherwise specified Conditions VDD 5V 10V 15V 5V 10V 15V Min Typ 600 225 160 210 100 75 5 10 Max 1200 450 320 420 200 150 75 15 Units ns ns ns ns ns ns pF pF VEE e VSS e 0V RL e 1 kX CL e 50 pF VEE e VSS e 0V RL e 1 kX CL e 50 pF COUT VEE e VSS e 0V 10V 10V 10V 30 15 8 02 pF pF pF pF 110 140 70 pF pF pF RL e 10 kX fIS e 1 kHz VIS e 5 Vp-p VEE e VSI e 0V RL e 1 kX VEE e 0V VIS e 5Vp-p 20 log10 VOS VIS eb3 dB RL e 1 kX VEE e VSS e 0V VIS e 5Vp-p 20 log10 VOS VIS eb40 dB RL e 1 kX VEE e VSS e 0V VIS(A) e 5Vp-p 20 log10 VOS(B) VIS(A) eb40 dB (Note 3) VEE e VSS e 0V CL e 50 pF 10V 0 04 % Frequency Response Channel ‘‘ON’’ (Sine Wave Input) Feedthrough Channel ‘‘OFF’’ Crosstalk Between Any Two Channels (frequency at 40 dB) tPHL tPLH Propagation Delay Signal Input to Signal Output 10V 10V 10V 5V 10V 15V 40 10 3 25 15 10 55 35 25 MHz MHz MHz ns ns ns Control Inputs A B C and Inhibit Control Input to Signal Crosstalk tPHL tPLH Propagation Delay Time from Address to Signal Output (channels ‘‘ON’’ or ‘‘OFF’’) VEE e VSS e 0V RL e 10 kX at both ends of channel Input Square Wave Amplitude e 10V VEE e VSS e 0V CL e 50 pF 10V 5V 10V 15V 65 500 180 120 1000 360 240 mV (peak) ns ns ns AC Parameters are guaranteed by DC correlated testing Note 3 A B are two arbitrary channels with A turned ‘‘ON’’ and B ‘‘OFF’’ 4 Block Diagrams CD4051BM CD4051BC CD4052BM CD4052BC TL F 5662 – 2 5 Block Diagrams (Continued) CD4053BM CD4053BC TL F 5662 – 3 Truth Table INPUT STATES INHIBIT 0 0 0 0 0 0 0 0 1 C 0 0 0 0 1 1 1 1 B 0 0 1 1 0 0 1 1 A 0 1 0 1 0 1 0 1 ‘‘ON’’ CHANNELS CD4051B 0 1 2 3 4 5 6 7 NONE CD4052B 0X 1X 2X 3X 0Y 1Y 2Y 3Y CD4053B cx bx ax cx bx ay cx by ax cx by ay cy bx ax cy bx ay cy by ax cy by ay NONE NONE Don’t Care condition 6 Switching Time Waveforms TL F 5662 – 4 7 Special Considerations In certain applications the external load-resistor current may include both VDD and signal-line components To avoid drawing VDD current when switch current flows into IN OUT pin the voltage drop across the bidirectional switch must not exceed 0 6V at TAs 25 C or 0 4V at TAl25 C (calculated from RON values shown) No VDD current will flow through RL if the switch current flows into OUT IN pin Typical Performance Characteristics ‘‘ON’’ Resistance vs Signal Voltage for TA e 25 C ‘‘ON’’ Resistance as a Function of Temperature for VDDbVEE e 15V ‘‘ON’’ Resistance as a Function of Temperature for VDDbVEE e 10V ‘‘ON’’ Resistance as a Function of Temperature for VDDbVEE e 5V TL F 5662 – 5 8 Physical Dimensions inches (millimeters) Cavity Dual-In-Line Package (J) Order Number CD4051BMJ CD4051BCJ CD4052BMJ CD4052BCJ CD4053BMJ or CD4053BCJ NS Package Number J16A Small Outline Package (M) Order Number CD4051BCM CD4052BCM or CD4053BCM NS Package Number M16A 9 CD4051BM CD4051BC CD4052BM CD4052BC CD4053BM CD4053BC Analog Multiplexer Demultiplexers Physical Dimensions inches (millimeters) (Continued) Molded Dual-In-Line Package (N) Order CD4051BM CD4051BC CD4052BM CD4052BC CD4053BM CD4053BC NS Package Number N16E LIFE SUPPORT POLICY NATIONAL’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 NATIONAL 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 whose failure to perform when properly used in accordance with instructions for use provided in the labeling can be reasonably expected to result in a significant injury to the user National Semiconductor Corporation 1111 West Bardin Road Arlington TX 76017 Tel 1(800) 272-9959 Fax 1(800) 737-7018 2 A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system or to affect its safety or effectiveness National Semiconductor Europe Fax (a49) 0-180-530 85 86 Email cnjwge tevm2 nsc com Deutsch Tel (a49) 0-180-530 85 85 English Tel (a49) 0-180-532 78 32 Fran ais Tel (a49) 0-180-532 93 58 Italiano Tel (a49) 0-180-534 16 80 National Semiconductor Hong Kong Ltd 13th Floor Straight Block Ocean Centre 5 Canton Rd Tsimshatsui Kowloon Hong Kong Tel (852) 2737-1600 Fax (852) 2736-9960 National Semiconductor Japan Ltd Tel 81-043-299-2309 Fax 81-043-299-2408 National does not assume any responsibility for use of any circuitry described no circuit patent licenses are implied and National reserves the right at any time without notice to change said circuitry and specifications
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