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HD74HC4052, HD74HC4053 Dual 4-channel Analog Multiplexers/Demultiplexers Triple 2-channel Analog Multiplexers/Demultiplexers REJ03D0649-0200 (Previous ADE-205-536) Rev.2.00 Mar 30, 2006 Description HD74HC4052: This device connects together the outputs of 4 switches in two sets, thus achieving a pair of 4 channel multiplexers. The binary code placed on the A, and B select lines determine which switch in each 4 channel section is "on", connecting one of the four inputs in each section to its common output. This enables the implementation of a 4 channel differential multiplexer. HD74HC4053: This device contains 6 switches whose outputs are connected together in pairs, thus implementing a triple 2 channel multiplexer, or the equivalent of 3 single-pole-double throw configuration. Each of the A, B, or C select lines independently controls one pair of switches, selecting one of the two switches to be "on". Features * High Speed Operation * Wide Operating Voltage: VCC = 2 to 6 V * Low Quiescent Supply Current: ICC (static) = 4 A max (Ta = 25C) * Ordering Information Part Name HD74HC4052P HD74HC4053P HD74HC4052FPEL HD74HC4053FPEL HD74HC4052RPEL HD74HC4053RPEL Package Type DILP-16 pin SOP-16 pin (JEITA) SOP-16 pin (JEDEC) Package Code (Previous Code) PRDP0016AE-B (DP-16FV) PRSP0016DH-B (FP-16DAV) PRSP0016DG-A (FP-16DNV) Package Abbreviation P FP RP -- EL (2,000 pcs/reel) EL (2,500 pcs/reel) Taping Abbreviation (Quantity) Note: Please consult the sales office for the above package availability. Function Table Control Inputs Inhibit L L L L L L L L H Note: C* L L L L H H H H 1 Select B L L H H L L H H ON Switch A L H L H L H L H X HD74HC4052 Y0 Y1 Y2 Y3 -- -- -- -- -- X0 X1 X2 X3 Z0 Z0 Z0 Z0 Z1 Z1 Z1 Z1 HD74HC4053 Y0 Y0 Y1 Y1 Y0 Y0 Y1 Y1 -- X0 X1 X0 X1 X0 X1 X0 X1 X X 1. Not applicable for HD74HC4052 X = Irrelevant Rev.2.00 Mar 30, 2006 page 1 of 11 HD74HC4052, HD74HC4053 Pin Arrangement HD74HC4052 Y0 Y2 Y Y3 Y1 Inhibit VEE GND 1 Y0 2 3 4 5 6 7 B 8 (Top view) Y2 Y Y3 Y1 Inhibit X2 X1 X X0 X3 A 16 VCC 15 X2 14 X1 13 X 12 X0 11 X3 10 A 9 B HD74HC4053 Y1 Y0 Z1 Z Z0 Inhibit VEE GND 1 Y1 2 3 4 5 6 7 C 8 (Top view) Y0 Z1 Z Z0 Inhibit Y X X1 X0 A B 16 VCC 15 Y 14 X 13 X1 12 X0 11 A 10 B 9 C Rev.2.00 Mar 30, 2006 page 2 of 11 HD74HC4052, HD74HC4053 Block Diagram HD74HC4052 VCC Inh A B GND X0 X1 X2 X3 Y0 Y1 Y2 Y3 Y X VEE Level Converter Binary to 1-of-4 Decoder with Inhibit HD74HC4053 VCC Inh A B C Level Converter Binary to 1-of-2 Decoder with Inhibit GND X0 X1 Y0 Y1 Z0 Z1 VEE X Y Z Absolute Maximum Ratings Item Supply voltage Control input voltage Switch I/O voltage Supply current Switch I/O current (per pin) Control input diode current Switch I/O diode current Power dissipation Storage temperature range (VCC) (GND) Symbol VCC VCC - VEE VIN VI/O ICC IGND II/O IIK IIOK PT Tstg Rating -0.5 to +7.0 -0.5 to +7.0 GND - 0.5 to VCC + 0.5 VEE - 0.5 to VCC + 0.5 +50 -50 25 20 20 500 -65 to +150 Unit V V V V mA mA mA mA mA mW C Rev.2.00 Mar 30, 2006 page 3 of 11 HD74HC4052, HD74HC4053 Recommended Operating Conditions Item Supply voltage Control input voltage Switch I/O voltage Operating temperature Input rise/fall time VCC = 2.0 V VCC = 4.5 V VCC = 6.0 V Symbol VCC - VEE GND - VEE VIN VI/O Topr tr , tf Min 2 -4 0 VEE -40 0 0 0 Typ -- -- -- -- -- -- -- -- Max 6 0 VCC VCC +85 1000 500 400 Unit V V V V C ns ns ns Electrical Characteristics (VEE = GND) Item Control input voltage Symbol VCC (V) VIH 2.0 4.5 6.0 2.0 4.5 6.0 ON resistance RON 2.0 4.5 6.0 2.0 4.5 6.0 ON resistance between any two channels OFF channel leakage current (switch off) OFF channel leakage current (switch on) Control input current Quiescent supply current RON 2.0 4.5 6.0 6.0 Min 1.5 3.15 4.2 -- -- -- -- -- -- -- -- -- -- -- -- -- Ta = 25C Typ Max -- -- -- -- -- -- 2000 120 100 200 80 70 50 13 10 -- -- -- -- 0.5 1.35 1.8 5000 180 170 800 150 140 -- 40 20 0.1 Ta = -40 to+85C Min Max 1.5 3.15 4.2 -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 0.5 1.35 1.8 6250 225 210 1000 190 175 -- 50 25 1.0 VINH = VIL VI/O = VCC to VEE II/O 2 mA VINH = VIL VI/O = VCC or VEE VI/O 2 mA VINH = VIL VI/O = VCC to VEE II/O 2 mA VINH = VIL Unit V Test Conditions VIL V IS (OFF) A IS (ON) 6.0 -- -- 0.1 -- 1.0 A VINH = VIL Iin ICC 6.0 6.0 -- -- -- -- 0.1 4.0 -- -- 1.0 40 A A Vin = VCC or GND Vin = VCC or GND Rev.2.00 Mar 30, 2006 page 4 of 11 HD74HC4052, HD74HC4053 Switching Characteristics (CL = 50 pF, Input tr = tf = 6 ns, VEE = GND) Ta = 25C Item Propagation delay time Symbol VCC (V) tPLH 2.0 4.5 6.0 tPHL 2.0 4.5 6.0 2.0 4.5 6.0 tPHL 2.0 4.5 6.0 2.0 4.5 6.0 tZL 2.0 4.5 6.0 2.0 4.5 6.0 tLZ 2.0 4.5 6.0 -- 5.0 5.0 5.0 5.0 5.0 5.0 5.0 4.5 4.5 Min -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- Typ 25 6 5 25 6 5 50 16 14 50 16 14 50 14 12 50 14 12 40 17 14 40 17 14 5 5 12 6 0.6 0.5 32.0 17.0 0.1 95 Max 60 12 10 60 12 10 153 30 26 153 30 26 153 30 26 153 30 26 153 30 26 153 30 26 10 -- -- -- -- -- -- -- -- -- Ta = -40 to +85C Min -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- Max 75 15 13 75 15 13 191 38 33 191 38 33 191 38 33 191 38 33 191 38 33 191 38 33 10 -- -- -- -- -- -- -- -- -- ns ns ns ns Unit ns Test Conditions RL = 10 k Switch input to switch output Propagation delay time tPLH ns RL = 10 k Control input to switch output Output enable time tZH ns RL = 1 k Output disable time tHZ ns RL = 1 k Control input capacitance Switch input capacitance Output capacitance (Common pin) Feed through capacitance Power dissipation capacitance Sine wave distortion Frequency response channel "ON" (Sine wave input) Feed through attenuation Cross talk between control input and switch I/O Cross talk between any two switches Maximum control frequency Cin Cin Cout Cin-out CPD pF pF pF pF pF % HD74HC4052 HD74HC4053 HD74HC4052 HD74HC4053 HD74HC4052 HD74HC4053 fin = 1 kHz, Vin = 4 VP-P RL = 10 k, CL = 50 pF 4.5 2.0 4.5 6.0 4.5 2.0 4.5 6.0 -- -- -- -- -- -- -- -- -50 25 50 75 -50 20 30 30 -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- MHz fin = 1 MHz, 20 log10 VOS/VIS = -3 dB RL = 50 , CL = 10 pF dB RL = 600 , CL = 50 pF, fin = 1 MHz mV RL = 600 , CL = 15 pF, fin = 1 MHz RL = 600 , CL = 50 pF, fin = 1 MHz dB MHz RL = 1 k, CL = 15 pF Vout = 1/2 (VCC) Rev.2.00 Mar 30, 2006 page 5 of 11 HD74HC4052, HD74HC4053 Test Circuit Maximum Control Frequency VCC VCC VC 0V VCC Vin * VCC VEE GND VC Vout RL = 1 k CL = 15 pF Vout Vcc/2 Cross talk (Between Any Two Switches) VCC fin 0.1 F Vin Rin = 600 VEE VCC (ON) GND Vout1 RL = 600 VCC/2 CL = 50 pF Vin (Sine Wave) VCC (Vin = 0 dBm, f = 1 MHz) VCC (OFF) Rin = 600 VEE GND Vout2 RL = 600 VCC/2 CL = 50 pF Cross talk (Control Input to Switch Output) VCC VCC VCC Vin Rin = 600 VCC/2 VEE GND Vout RL = 600 VCC/2 CL = 50 pF GND 10% (f = 1 MHz) tr = tr = 6 ns tr tf VC 90% Rev.2.00 Mar 30, 2006 page 6 of 11 HD74HC4052, HD74HC4053 Feed through Attenuation VCC Vin (Sine Wave) 0.1 F fin Rin = 600 VCC/2 Vin VEE VCC (OFF) GND Vout RL = 600 VCC/2 (Vin = 0 dBm, f = 1 MHz) CL = 50 pF Sine Wave Distortion VCC Vin (Sine Wave) fin Vin 10 F VEE VCC (ON) GND Vout RL = 10 k VCC/2 CL = 50 pF (Vin = 4 Vp-p, f = 1 kHz) Cin, Cout, Cin-out (Input, Output, and Feed through Capacitance) Cin-out 5V VCC Input Pin VEE Cin (OFF) GND Cout Commom Pin Frequency Response Channel ON VCC fin (Sine Wave) fin Vin 0.1 F VEE VCC (ON) GND Vout RL = 50 VCC/2 CL = 10 pF (Vout = 0 dBm, f = 1 MHz) Rev.2.00 Mar 30, 2006 page 7 of 11 HD74HC4052, HD74HC4053 RON: ON Resistance VCC Vin I/O VEE VCC (ON) GND O/I Vout V VI-O IS (OFF): OFF Channel Leakage Current (Switch OFF) VCC Vin = VCC or GND I/O A VEE VCC (OFF) GND Vout = VSS or VCC IS (ON): OFF Channel Leakage Current (Switch ON) VCC Vin = VCC or GND I/O A VEE VCC (ON) GND Vout OPEN tPLH, tPHL: Propagation Delay Time (Switch Input to Switch Output) tr tf VCC VCC VCC (ON) VEE 90% 50% tPLH 10% tPHL 50% Vin Vout RL = 10 k CL = 50 pF Vout VOL GND VOH Vin GND Rev.2.00 Mar 30, 2006 page 8 of 11 HD74HC4052, HD74HC4053 tPLH, tPHL: Propagation Delay Time (Control Input to Switch Output) VCC VCC VC VCC Vout Common Pin VEE 50% VC = Vin VCC or GND (Switch Input) GND or VCC GND tPLH tPHL GND RL = 10 k CL = 50 pF VOH Vout VOL 50% tZH, tZL/tHZ, tLZ: Output Enable and Disable Time tf tr VCC VINH = Vin VCC VINH VCC Vout VEE VCC GND GND VCC GND RL = 1 k CL = 50 pF Vout VOL VOH Vout VOL VOH GND 90% 50% 10% tZH tHZ 90% 50% tZL 50% tLZ 10% Rev.2.00 Mar 30, 2006 page 9 of 11 HD74HC4052, HD74HC4053 Package Dimensions JEITA Package Code P-DIP16-6.3x19.2-2.54 RENESAS Code PRDP0016AE-B Previous Code DP-16FV MASS[Typ.] 1.05g D 16 9 1 0.89 b3 8 Z A1 A E Reference Symbol Dimension in Millimeters Min e bp e1 c ( Ni/Pd/Au plating ) e1 D E A A1 bp b3 c e Z L Nom Max 7.62 19.2 20.32 6.3 7.4 5.06 L 0.51 0.40 0.48 0.56 1.30 0.19 0.25 0.31 0 15 2.29 2.54 2.79 1.12 2.54 JEITA Package Code P-SOP16-5.5x10.06-1.27 RENESAS Code PRSP0016DH-B Previous Code FP-16DAV MASS[Typ.] 0.24g *1 D F 16 9 NOTE) 1. DIMENSIONS"*1 (Nom)"AND"*2" DO NOT INCLUDE MOLD FLASH. 2. DIMENSION"*3"DOES NOT INCLUDE TRIM OFFSET. bp HE E Index mark *2 Terminal cross section ( Ni/Pd/Au plating ) 1 Z e *3 8 bp c x M L1 Reference Symbol Dimension in Millimeters A1 y L Detail F D E A2 A1 A bp b1 c c1 HE e x y Z L L1 Min Nom Max 10.06 10.5 5.50 0.00 0.10 0.20 2.20 0.34 0.40 0.46 0.15 0.20 0.25 0 8 7.50 7.80 8.00 1.27 0.12 0.15 0.80 0.50 0.70 0.90 1.15 Rev.2.00 Mar 30, 2006 page 10 of 11 A HD74HC4052, HD74HC4053 JEITA Package Code P-SOP16-3.95x9.9-1.27 RENESAS Code PRSP0016DG-A Previous Code FP-16DNV MASS[Typ.] 0.15g *1 D F 9 16 NOTE) 1. DIMENSIONS"*1 (Nom)"AND"*2" DO NOT INCLUDE MOLD FLASH. 2. DIMENSION"*3"DOES NOT INCLUDE TRIM OFFSET. bp E HE Index mark *2 Terminal cross section ( Ni/Pd/Au plating ) 1 Z c 8 Reference Symbol Dimension in Millimeters e *3 bp x M L1 A1 L y Detail F D E A2 A1 A bp b1 c c1 HE e x y Z L L1 Min Nom Max 9.90 10.30 3.95 0.10 0.14 0.25 1.75 0.34 0.40 0.46 0.15 0.20 0.25 0 8 5.80 6.10 6.20 1.27 0.25 0.15 0.635 0.40 0.60 1.27 1.08 Rev.2.00 Mar 30, 2006 page 11 of 11 A Sales Strategic Planning Div. Keep safety first in your circuit designs! Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan 1. Renesas Technology Corp. puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or property damage. Remember to give due consideration to safety when making your circuit designs, with appropriate measures such as (i) placement of substitutive, auxiliary circuits, (ii) use of nonflammable material or (iii) prevention against any malfunction or mishap. Notes regarding these materials 1. These materials are intended as a reference to assist our customers in the selection of the Renesas Technology Corp. product best suited to the customer's application; they do not convey any license under any intellectual property rights, or any other rights, belonging to Renesas Technology Corp. or a third party. 2. Renesas Technology Corp. assumes no responsibility for any damage, or infringement of any third-party's rights, originating in the use of any product data, diagrams, charts, programs, algorithms, or circuit application examples contained in these materials. 3. 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