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Analog Multiplexers/DemultiplexersMaker : ON Semiconductor
Shortcut : HC4052 HC4052 HC4052 HC4052 HC4052 HC4052 HC4052 HC4053 HC4053AFT |
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MC74VHC4051, MC74VHC4052, MC74VHC4053 Analog Multiplexers / Demultiplexers High–Performance Silicon–Gate CMOS http://onsemi.com The MC74VHC4051, MC74VHC4052 and MC74VHC4053 utilize silicon–gate CMOS technology to achieve fast propagation delays, low ON resistances, and low OFF leakage currents. These analog multiplexers/demultiplexers control analog voltages that may vary across the complete power supply range (from VCC to VEE). The VHC4051, VHC4052 and VHC4053 are identical in pinout to the high–speed HC4051A, HC4052A and HC4053A, and the metal–gate MC14051B, MC14052B and MC14053B. The Channel–Select inputs determine which one of the Analog Inputs/Outputs is to be connected, by means of an analog switch, to the Common Output/Input. When the Enable pin is HIGH, all analog switches are turned off. The Channel–Select and Enable inputs are compatible with standard CMOS outputs; with pullup resistors they are compatible with LSTTL outputs. These devices have been designed so that the ON resistance (Ron) is more linear over input voltage than Ron of metal–gate CMOS analog switches. • Fast Switching and Propagation Speeds • Low Crosstalk Between Switches • Diode Protection on All Inputs/Outputs • Analog Power Supply Range (VCC – VEE) = 2.0 to 12.0 V • Digital (Control) Power Supply Range (VCC – GND) = 2.0 to 6.0 V • Improved Linearity and Lower ON Resistance Than Metal–Gate Counterparts • Low Noise • Chip Complexity: VHC4051 — 184 FETs or 46 Equivalent Gates VHC4052 — 168 FETs or 42 Equivalent Gates VHC4053 — 156 FETs or 39 Equivalent Gates MARKING DIAGRAMS 16 SO–16 D SUFFIX CASE 751B 1 16 VHC405x AWLYWW 1 16 16 1 TSSOP–16 DT SUFFIX CASE 948F 1 A WL YY WW = Assembly Location = Wafer Lot = Year = Work Week VHC 405x ALYW ORDERING INFORMATION See detailed ordering and shipping information in the package dimensions section on page 14 of this data sheet. © Semiconductor Components Industries, LLC, 1999 1 March, 2000 – Rev. 3 Publication Order Number: MC74VHC4051/D MC74VHC4051, MC74VHC4052, MC74VHC4053 LOGIC DIAGRAM MC74VHC4051 Single–Pole, 8–Position Plus Common Off X0 14 X1 15 X2 ANALOG 12 MULTIPLEXER/ INPUTS/ X3 DEMULTIPLEXER OUTPUTS X4 1 5 X5 2 X6 4 X7 11 A CHANNEL 10 B SELECT 9 INPUTS C 6 ENABLE PIN 16 = VCC PIN 7 = VEE PIN 8 = GND 13 FUNCTION TABLE – MC74VHC4051 Control Inputs Enable L L L L L L L L H C L L L L H H H H X Select B A L L H H L L H H X L H L H L H L H X ON Channels X0 X1 X2 X3 X4 X5 X6 X7 NONE X = Don’t Care 3 X COMMON OUTPUT/ INPUT Pinout: MC74VHC4051 (Top View) VCC 16 X2 15 X1 14 X0 13 X3 12 A 11 B 10 C 9 1 2 3 4 5 6 7 8 FUNCTION TABLE – MC74VHC4052 LOGIC DIAGRAM MC74VHC4052 Double–Pole, 4–Position Plus Common Off X0 14 X1 15 X2 11 X3 Y0 Y1 Y2 Y3 A B 1 5 2 4 10 9 6 12 Control Inputs Select Enable L L L L H X = Don’t Care B L L H H X A L H L H X ON Channels Y0 Y1 Y2 Y3 NONE X0 X1 X2 X3 X SWITCH 13 X COMMON OUTPUTS/INPUTS ANALOG INPUTS/OUTPUTS Y SWITCH 3 Y Pinout: MC74VHC4052 (Top View) PIN 16 = VCC PIN 7 = VEE PIN 8 = GND VCC 16 X2 15 X1 14 X 13 X0 12 X3 11 A 10 B 9 CHANNEL-SELECT INPUTS ENABLE 1 Y0 2 Y2 3 Y 4 Y3 5 Y1 6 7 Enable VEE 8 GND http://onsemi.com 2 MC74VHC4051, MC74VHC4052, MC74VHC4053 FUNCTION TABLE – MC74VHC4053 LOGIC DIAGRAM MC74VHC4053 Triple Single–Pole, Double–Position Plus Common Off X0 13 X1 Y0 1 Y1 Z0 3 Z1 CHANNEL-SELECT INPUTS A 10 B 9 C 6 ENABLE 11 5 2 12 14 Control Inputs Enable L L L L L L L L H C L L L L H H H H X Select B A L L H H L L H H X L H L H L H L H X ON Channels Z0 Z0 Z0 Z0 Z1 Z1 Z1 Z1 Y0 Y0 Y1 Y1 Y0 Y0 Y1 Y1 NONE X0 X1 X0 X1 X0 X1 X0 X1 X SWITCH X ANALOG INPUTS/OUTPUTS Y SWITCH 15 Y COMMON OUTPUTS/INPUTS Z SWITCH 4 Z X = Don’t Care PIN 16 = VCC PIN 7 = VEE PIN 8 = GND Pinout: MC74VHC4053 (Top View) VCC 16 Y 15 X 14 X1 13 X0 12 A 11 B 10 C 9 NOTE: This device allows independent control of each switch. Channel–Select Input A controls the X–Swit... |
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