MM54HC4016 NSC | Alldatasheet
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Features
Y Typical switch enable time: 15 ns Y Wide analog input voltage range: 0–12V Y Low ‘‘on’’ resistance: 50 X typ. Y Low quiescent current: 80 mA maximum (74HC) Y Matched switch characteristics Y Individual switch controls Connection Diagram Dual-In-Line Package TL/F/5350–1 Top View Order Number MM54HC4016 or MM74HC4016 Schematic Diagram TL/F/5350–2 Truth Table Input Switch CTL I/O-O/I L ‘‘OFF’’ H ‘‘ON’’ C1995 National Semiconductor Corporation RRD-B30M105/Printed in U. S. A.
Absolute Maximum Ratings (Notes1&2 ) If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/Distributors for availability and specifications. Supply Voltage (V CC) b0.5 to a15V DC Control Input Voltage (V IN) b1.5 to V CCa1.5V DC Switch I/O Voltage (V IO) b0.5 to V CCa0.5V Clamp Diode Current (I IK,I OK) g20 mA DC Output Current, per pin (I OUT) g25 mA DC V CC or GND Current, per pin (I CC) g50 mA Storage Temperature Range (T STG) b65§Ct o a150§C Power Dissipation (P D) (Note 3) 600 mW S.O. Package only 500 mW Lead Temp. (T L) (Soldering 10 seconds) 260 §C Operating Conditions Min Max Units Supply Voltage (V CC) 2 12 V DC Input or Output Voltage 0 V CC V (VIN,V OUT) Operating Temp. Range (T A) MM74HC b40 a85 §C MM54HC b55 a125 §C Input Rise or Fall Times VCCe2.0V(tr,t f) 1000 ns VCCe4.5V 500 ns VCCe6.0V 400 ns TAe25§C 74HC 54HC Symbol Parameter Conditions V CC TAeb40 to 85 §CT Aeb55 to 125 §C Units Typ Guaranteed Limits VIH Minimum High Level 2.0V 1.5 1.5 1.5 V Input Voltage 4.5V 3.15 3.15 3.15 V 9.0V 6.3 6.3 6.3 V 12.0V 8.4 8.4 8.4 V VIL Maximum Low Level 2.0V 0.5 0.5 0.5 V Input Voltage 4.5V 1.35 1.35 1.35 V 9.0V 2.7 2.7 2.7 V 12.0V 3.6 3.6 3.6 V RON Maximum ‘ON’ Resistance V CTLeVIH,I Se2.0 mA 4.5V 100 170 200 220 X (See Note 5) V ISeVCC to GND 9.0V 50 85 105 120 X (Figure 1) 12.0V 30 70 85 100 X 2.0V 100 180 215 240 X VCTLeVIH,I Se2.0 mA 4.5V 40 80 100 120 X VISeVCC or GND 9.0V 35 60 75 80 X (Figure 1) 12.0V 20 40 60 70 X RON Maximum ‘ON’ Resistance V CTLeVIH 4.5V 10 15 20 20 X Matching V ISeVCC to GND 9.0V 5 10 15 15 X 12.V 5 10 15 15 X IIN Maximum Control V INeVCC or GND 6.0V g0.1 g1.0 g1.0 mA Input Current IIZ Maximum Switch ‘OFF’ V OSeVCC or GND 6.0V g60 g600 g600 nA Leakage Current V ISeGND or V CC 9.0V g80 g800 g800 nA VCTLeVIL (Figure 2) 12.0V g100 g1000 g1000 nA IIZ Maximum Switch ‘ON’ V ISeVCC to GND 6.0V g40 g150 g150 nA Leakage Current V CTLeVIH,V OH e OPEN 9.0V g50 g200 g200 nA (Figure 3) 12.0V g60 g300 g300 nA ICC Maximum Quiescent V INeVCC or GND 6.0V 2.0 20 40 mA Supply Current I OUTe0 mA 9.0V 4.0 40 80 mA 12.0V 8.0 80 160 mA Note 1: Absolute Maximum Ratings are those values beyond which damage to the device may occur. Note 2: Unless otherwise specified all voltages are referenced to ground. Note 3: Power Dissipation temperature derating Ð plastic ‘‘N’’ package: b12 mW/ §C from 65 §Ct o8 5 §C; ceramic ‘‘J’’ package: b12 mW/ §C from 100 §Ct o1 2 5 §C. Note 4: For a power supply of 5V g10% the worst case on resistances (R ON) occurs for HC at 4.5V. Thus the 4.5V values should be used when designing with the higher voltage and so these values should be used. Note 5: At supply voltages (V CC –GND) approaching 2V the analog switch on resistance becomes extremely non-linear. Therefore it is recommended that these devices be used to transmit digital only when using these supply voltages. VIL limits are currently tested at 20% of V CC. The above V IL specification (30% of V CC) will be implemented no later than Q1, CY’89.
TAe25§C 74HC 54HC Symbol Parameter Conditions V CC TAeb40 to 85 §CT Aeb55 to 125 §C Units Typ Guaranteed Limits tPHL,t PLH Maximum Propagation 2.0V 25 50 62 75 ns Delay Switch In to 4.5V 5 10 13 15 ns Out 9.0V 4 8 12 14 ns 12.0V 3 7 11 13 ns tPZL,t PZH Maximum Switch Turn R Le1k X 2.0V 32 100 125 150 ns ‘‘ON’’ Delay 4.5V 8 20 25 30 ns 9.0V 6 12 15 18 ns 12.0V 5 10 13 15 ns tPHZ,t PLZ Maximum Switch Turn R L e 1k X 2.0V 45 168 210 252 ns ‘‘OFF’’ Delay 4.5V 15 36 45 54 ns 9.0V 10 32 40 48 ns 12.0V 8 30 38 45 ns Minimum Frequency R L e 600X,V IS e 2VPP 4.5V 40 MHz Response (Figure 7) at (V CC/2) 9.0V 100 MHz 20 log (V OS/VIS) eb 3 dB (Note s6&7 ) Control to Switch R L e 600X,F e 1 MHz 4.5V 100 mV Feedthrough Noise C L e 50 pF 9.0V 250 mV (Figure 8) (Note s7&8 ) Crosstalk Between R L e 600X,F e 1 MHz any Two Switches 4.5V b52 dB (Figure 9) 9.0V b50 dB Switch OFF Signal R L e 600X,F e 1 MHz Feedthrough V CTL e VIL Isolation (Note s7&8 ) 4.5V b42 dB (Figure 10) 9.0V b44 dB THD Sinewave Harmonic R L e 10 k X,C L e 50 pF, Distortion F e 1 kHz (Figure 11) V IS e 4VPP 4.5V 0.013 % VIS e 8VPP 9.0V 0.008 % CIN Maximum Control 5 10 10 10 pF Input Capacitance CIN Maximum Switch 15 pF Input Capacitance CIN Maximum Feedthrough V CTLeGND 5 pF Capacitance CPD Power Dissipation (per switch) 15 pF Capacitance Note 6: Adjust 0 dBm for F e 1 kHz (Null R L/RON Attenuation) Note 7: VIS is centered at V CC/2 Note 8: Adjust input for 0 dBm
Typical Performance Characteristics Typical ‘‘On’’ Resistance TL/F/5350–19 Typical Frequency Response TL/F/5350–23 Typical Crosstalk Between Any Two Switches TL/F/5350–24 Special Considerations In certain applications the external load-resistor current may include both V CC and signal line components. To avoid drawing VCC current when switch current flows into the analog switch input pins, the voltage drop across the switch must not exceed 0.6V (calculated from the ON resistance).
MM54HC4016/MM74HC4016 Quad Analog Switch Physical Dimensions inches (millimeters) Molded Dual in Line Package (N) Order Number MM74HC4016N Ceramic Dual in Line Pkg (J) Order Number MM54HC4016J or MM74HC4016J 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 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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