CD4016BM NSC | Alldatasheet
Document overview
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Technical content
Features
Y Wide supply voltage range 3V to 15V Y Wide range of digital and analog switching g7.5 V PEAK Y ‘‘ON’’ resistance for 15V operation 400 X (typ.) Y Matched ‘‘ON’’ resistance over 15V signal input DRONe10X (typ.) Y High degree of linearity 0.4% distortion (typ.) @ fIS e 1 kHz, V ISe5V p-p, VDDbVSSe10V, R Le10 k X Y Extremely low ‘‘OFF’’ switch leakage 0.1 nA (typ.) @ VDD b VSSe10V TAe25§C Y Extremely high control input impedance 10 12X (typ.) Y Low crosstalk between switches b50 dB (typ.) @ fISe0.9 MHz, R Le 1k X Y Frequency response, switch ‘‘ON’’ 40 MHz (typ.)
Applications
Y Analog signal switching/multiplexing # Signal gating # Squelch control # Chopper # Modulator/Demodulator # Commutating switch Y Digital signal switching/multiplexing Y CMOS logic implementation Y Analog-to-digital/digital-to-analog conversion Y Digital control of frequency, impedance, phase, and an- alog-signal gain Schematic and Connection Diagrams Dual-In-Line Package TL/F/5661–1 Order Number CD4016B C1995 National Semiconductor Corporation RRD-B30M105/Printed in U. S. A.
If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/Distributors for availability and specifications. (Notes 1 and 2) V DD Supply Voltage b0.5V to a18V VIN Input Voltage b0.5V to V DD a 0.5V TS Storage Temperature Range b65§Ct o a 150§C Power Dissipation (P D) Dual-In-Line 700 mW Small Outline 500 mW Lead Temperature (Soldering, 10 seconds) 260 Recommended Operating Conditions (Note 2) VDD Supply Voltage 3V to 15V VIN Input Voltage 0V to V DD TA Operating Temperature Range CD4016BM b55§Ct o a125§C CD4016BC b40§Ct o a85§C Symbol Parameter Conditions b55§C2 5 §C 125 §C Units Min Max Min Typ Max Min Max IDD Quiescent Device Current V DDe5V, V INeVDD or V SS 0.25 0.01 0.25 7.5 mA VDDe10V, V INeVDD or V SS 0.5 0.01 0.5 15 mA VDDe15V, V INeVDD or V SS 1.0 0.01 1.0 30 mA Signal Inputs and Outputs RON ‘‘ON’’ Resistance R Le10 k X to VDDbVSS VCeVDD,V ISeVSS or V DD VDDe10V 600 250 660 960 X VDDe15V 360 200 400 600 X RLe10 k X to VDDbVSS VCeVDD VDDe10V, V ISe4.75 to 5.25V 1870 850 2000 2600 X VDDe15V, V ISe7.25 to 7.75V 775 400 850 1230 X DRON D‘‘ON’’ Resistance R Le10 k X to VDDbVSS 2Between any 2 of VCeVDD,V ISeVSS to V DD4 Switches VDDe10V 15 X (In Same Package) VDDe15V 10 X IIS Input or Output Leakage V Ce0, V DDe15V g50 g0.1 g50 g500 nA Switch ‘‘OFF’’ V ISe15V and 0V, VOSe0V and 15V Control Inputs VILC Low Level Input Voltage V ISeVSS and V DD VOSeVDD and V SS IISeg10 mA VDDe5V 0.9 0.7 0.5 V VDDe10V 0.9 0.7 0.5 V VDDe15V 0.9 0.7 0.5 V VIHC High Level Input Voltage V DDe5V 3.5 3.5 3.5 V VDDe10V (see Note 6 and 7.0 7.0 7.0 V VDDe15V Figure 8 ) 11.0 11.0 11.0 V IIN Input Current V DDbVSSe15V g0.1 g10b5 g0.1 g1.0 mA VDDtVIStVSS VDDtVCtVSS
Symbol Parameter Conditions b40§C2 5 §C8 5 §C Units Min Max Min Typ Max Min Max IDD Quiescent Device Current V DDe5V, V INeVDD or V SS 1.0 0.01 1.0 7.5 mA VDDe10V, V INeVDD or V SS 2.0 0.01 2.0 15 mA VDDe15V, V INeVDD or V SS 4.0 0.01 4.0 30 mA Signal Inputs and Outputs RON ‘‘ON’’ Resistance R Le10 k X to VDDbVSS VCeVDD,V ISeVSS or V DD VDDe10V 610 275 660 840 X VDDe15V 370 200 400 520 X RLe10 k X to VDDbVSS VCeVDD VDDe10V, V ISe4.75 to 5.25V 1900 850 2000 2380 X VDDe15V, V ISe7.25 to 7.75V 790 400 850 1080 X DRON D‘‘ON’’ Resistance R Le10 k X to VDDbVSS 2Between any 2 of VCeVDD,V ISeVSS to V DD4 Switches VDDe10V 15 X (In Same Package) V DDe15V 10 X IIS Input or Output Leakage V Ce0, V DDe15V g50 g0.1 g50 g200 nA Switch ‘‘OFF’’ V ISe0V or 15V, VOSe15V or 0V Control Inputs VILC Low Level Input Voltage V ISeVSS and V DD VOSeVDD and V SS IISeg10 mA VDDe5V 0.9 0.7 0.4 V VDDe10V 0.9 0.7 0.4 V VDDe15V 0.9 0.7 0.4 V VIHC High Level Input Voltage V DDe5V 3.5 3.5 3.5 V VDDe10V (see Note 6 and 7.0 7.0 7.0 V VDDe15V Figure 8 ) 11.0 11.0 11.0 V IIN Input Current V CCbVSSe15V g0.3 g10b5 g0.3 g1.0 mA VDDtVIStVSS VDDtVCtVSS Symbol Parameter Conditions Min Typ Max Units tPHL,t PLH Propagation Delay Time V CeVDD,C Le50 pF, ( Figure 1 ) Signal Input to Signal Output R Le200k VDDe5V 58 100 ns VDDe10V 27 50 ns VDDe15V 20 40 ns tPZH,t PZL Propagation Delay Time R Le1.0 k X,C Le50 pF, ( Figures 2 Control Input to Signal and 3 ) Output High Impedance to V DDe5V 20 50 ns Logical Level V DDe10V 18 40 ns VDDe15V 17 35 ns tPHZ,t PLZ Propagation Delay Time R Le1.0 k X,C Le50 pF, ( Figures 2 Control Input to Signal and 3 ) Output Logical Level to V DDe5V 15 40 ns High Impedance V DDe10V 11 25 ns VDDe15V 10 22 ns Sine Wave Distortion V CeVDDe5V, V SSeb5 0.4 % RLe10 k X,V ISe5V P-P,f e1 kHz, (Figure 4 )
20 Log 10 VOS/VOS (1 kHz) bdB,
20 Log 10 (VOS/VIS)eb50 dB,
20 Log 10 (VOS(B)/VOS(A) )eb50 dB,
*AC Paramters are guaranteed by DC correlated testing. SSe0V unless otherwise specified. Note 3: These devices should not be connected to circuits with the power ‘‘ON’’. Note 4: In all cases, there is approximately 5 pF of probe and jig capacitance on the output; however, this capacitance is included in C L wherever it is specified. Note 5: VIS is the voltage at the in/out pin and V OS is the voltage at the out/in pin. V C is the voltage at the control input. Note 6: If the switch input is held at V DD,V IHC is the control input level that will cause the switch output to meet the standard ‘‘B’’ series V OH and I OH output levels. maintain a V OL s ‘‘B’’ series. These currents are shown in Figure 8 . Figure 1. t PLH,t PLH Propagation Delay Time Signal Input to Signal Output FIGURE 2. t PZH,t PHZ Propagation Delay Time Control to Signal Output
4 Input Multiplexer
TL/F/5661–6 Special Considerations The CD4016B is composed of 4, two-transistor analog switches. These switches do not have any linearization or compensation circuitry for ‘‘R ON’’ as do the CD4066B’s. Be- cause of this, the special operating considerations for the CD4066B do not apply to the CD4016B, but at low supply voltages, s5V, the CD4016B’s on resistance be- comes non-linear. It is recommended that at 5V, voltages on the in/out pins be maintained within about 1V of either V DD or V SS; and that at 3V the voltages on the in/out pins should be at V DD or V SS for reliable operation.
CD4016BM/CD4016BC Quad Bilateral Switch Physical Dimensions inches (millimeters) Dual-In-Line Package Order Number CD4016CJ or CD4016MJ Dual-In-Line Package Order Number CD4016CN 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 2. A critical component is any component of a life systems which, (a) are intended for surgical implant support device or system whose failure to perform can into the body, or (b) support or sustain life, and whose be reasonably expected to cause the failure of the life failure to perform, when properly used in accordance support device or system, or to affect its safety or with instructions for use provided in the labeling, can effectiveness. be reasonably expected to result in a significant injury to the user. National Semiconductor National Semiconductor National Semiconductor National Semiconductor Corporation Europe Hong Kong Ltd. Japan Ltd.
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