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 INTEGRATED CIRCUITS
74LV4053 Triple 2-channel analog multiplexer/demultiplexer
Product specification Supersedes data of 1997 Jul 15 IC24 Data Handbook 1998 Jun 23
Philips Semiconductors
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
FEATURES
* Optimized for low voltage applications: 1.0 to 6.0 V * Accepts TTL input levels between VCC = 2.7 V and VCC = 3.6 V * Low typ "ON" resistance: *
DESCRIPTION
The 74LV4053 is a low-voltage CMOS device and is pin and function compatible with the 74HC/HCT4053. The 74LV4053 is a triple 2-channel analog multiplexer/demultiplexer with a common enable input (E). Each multiplexer/demultiplexer has two independent inputs/outputs (nY0 to nY1), a common input/output (nZ) and three digital select inputs (S1 to S3). With E LOW, one of the two switches is selected (low impedance ON-state) by S1 to S3 With E HIGH, all switches are in the high impedance OFF-states, independent of S1 and S3. VCC and GND are the supply voltage pins for the digital control inputs (S1, to S3, and E). The VCC to GND ranges are 1.0 to 6.0 V. The analog inputs/outputs (nY0, to nY1, and nZ) can swing between VCC as a positive limit and VEE as a negative limit. VCC - VEE may not exceed 6.0 V. For operation as a digital multiplexer/demultiplexer, VEE is connected to GND (typically ground).
* * Output capability: non-standard * ICC category: MSI
100 W at Vcc - VEE = 4.5 V 150 W at Vcc - VEE = 3.0 V 240 W at Vcc - VEE = 2.0 V Logic level translation: to enable 3 V logic to communicate with 3 V analog signals Typical "break before make" built in
QUICK REFERENCE DATA
GND = 0 V; Tamb = 25C; tr =tf 2.5 ns SYMBOL tPZH/tPZL PARAMETER Turn "ON" time E to VOS Sn to VOS Turn "OFF" time E to VOS Sn to VOS Input capacitance Power dissipation capacitance per switch Maximum switch capacitance independent (Y) common (Z) See Notes 1 and 2 CL = 15 pF RL = 1KW VCC = 3.3 V CONDITIONS TYPICAL 16 20 17 16 3.5 36 5 8 pF F UNIT
ns
tPHZ/tPLZ CI CPD CS
NOTES: 1. CPD is used to determine the dynamic power dissipation (PD in W) PD = CPD x VCC2 x fi ) ((CL + CS) x VCC2 x fo) where: fi = input frequency in MHz; CL = output load capacity in pF; fo = output frequency in MHz; CS = maximum switch capacitance in pF; VCC = supply voltage in V; ((CL +CS) x VCC2 x fo) = sum of the outputs. 2. The condition is VI = GND to VCC.
ORDERING INFORMATION
PACKAGES 16-Pin Plastic DIL 16-Pin Plastic SO 16-Pin Plastic SSOP Type II 16-Pin Plastic TSSOP Type I TEMPERATURE RANGE -40C to +125C -40C to +125C -40C to +125C -40C to +125C OUTSIDE NORTH AMERICA 74LV4053 N 74LV4053 D 74LV4053 DB 74LV4053 PW NORTH AMERICA 74LV4053 N 74LV4053 D 74LV4053 DB 74LV4053PW DH PKG. DWG. # SOT38-1 SOT109-1 SOT338-1 SOT403-1
PIN CONFIGURATION
2Y1 2Y0 3Y1 3Z 3Y0 E VEE 1 2 3 4 5 6 7 16 VCC 15 2Z 14 1Z 13 1Y1 12 1Y0 11 S1 10 S2 9 S3
PIN DESCRIPTION
PIN NUMBER 2, 1 5, 3 6 7 8 11, 10, 9 12, 13 14, 15, 4 16 SYMBOL 2Y0, 2Y1 3Y0, 3Y1 E VEE GND S1 to S3 1Y0, 1Y1 1Z to 3Z VCC FUNCTION Independent inputs/outputs Independent inputs/outputs Enable input (active LOW) Negative supply voltage Ground (0 V) Select inputs Independent inputs/outputs Common inputs/outputs Positive supply voltage
GND 8
SV01687
1998 Jun 23
2
853-2000 19618
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
LOGIC SYMBOL
14 1Z 11 10 9 S1 1Y0 S2 1Y1 S3 2Y 0 2Y1 3Y0 6 E 2Z 15 3Y1 3Z 4 SV01659 12 13 2 1 5 3
FUNCTIONAL DIAGRAM
6 E 16 V CC 1Z 14
1Y1 11 S1
13
1Y0
12
10
S2 2Z 15
LOGIC SYMBOL (IEEE/IEC)
2Y1 6 G3 9 14 11 15 10 4 3 9 # 5 # # MDX 3X1 3X2 1 2 13 12 1 2 3Z 4 S3 LOGIC LEVEL CONVERSION DECODER 2Y0 2 1
3Y1
3
SV01693
3Y0 5
FUNCTION TABLE
INPUTS E L L Sn L H CHANNEL ON nY0 - nZ nY1 - nZ None
GND 8 V EE 7
SV01694
H NOTES: H = HIGH voltage level L = LOW voltage level X = don't care
X
SCHEMATIC DIAGRAM (ONE SWITCH)
VCC Y VEE
VCC VCC VEE
VCC VEE Z
from logic
SV01695
1998 Jun 23
3
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
ABSOLUTE MAXIMUM RATINGS1, 2
In accordance with the Absolute Maximum Rating System (IEC 134). Voltages are referenced to GND (ground = 0 V). SYMBOL VCC "IIK "ISK "IS Tstg PTOT PARAMETER DC supply voltage DC input diode current DC switch diode current DC switch current Storage temperature range Power dissipation per package - plastic DIL - plastic mini-pack (SO) - plastic shrink mini-pack (SSOP and TSSOP) for temperature range: -40 to +125C above +70C derate linearly with 12 mW/K above +70C derate linearly with 8 mW/K above +60C derate linearly with 5.5 mW/K VI < -0.5 or VI > VCC + 0.5 V VO < -0.5 or VO > VCC + 0.5 V -0.5 V < VS < VCC + 0.5 V CONDITIONS RATING -0.5 to +7.0 20 20 25 -65 to +150 750 500 400 UNIT V mA mA mA C mW
NOTES: 1. Stresses beyond those listed may cause permanent damage to the device. These are stress ratings only and functional operation of the device at these or any other conditions beyond those indicated under "recommended operating conditions" is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. 2. The input and output voltage ratings may be exceeded if the input and output current ratings are observed.
RECOMMENDED OPERATING CONDITIONS
SYMBOL VCC VI VO Tamb tr, tf Input voltage Output voltage Operating ambient temperature range in free air Input rise and fall times See DC and AC characteristics VCC = 1.0 V to 2.0 V VCC = 2.0 V to 2.7 V VCC = 2.7 V to 6.0 V PARAMETER DC supply voltage CONDITIONS See Note 1 and Figure 5 MIN 1.0 0 0 -40 -40 - - - - - - TYP 3.3 - - MAX 6.0 VCC VCC +85 +125 500 200 100 UNIT V V V C ns/V
NOTE: 1. The LV is guaranteed to function down to VCC = 1.0V (input levels GND or VCC); DC characteristics are guaranteed from VCC = 1.2V to VCC = 6.0V.
1998 Jun 23
4
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
DC ELECTRICAL CHARACTERISTICS
Over recommended operating conditions, voltages are referenced to GND (ground = 0 V) LIMITS SYMBOL PARAMETER TEST CONDITIONS MIN VCC = 1.2 V VIH HIGH level Input voltage VCC = 2.0 V VCC = 2.7 to 3.6 V VCC = 4.5 V VCC = 6.0 V VCC = 1.2 V VIL LOW level Input voltage VCC = 2.0 V VCC = 2.7 to 3.6 V VCC = 4.5 V VCC = 6.0 V II IS Input leakage g current Analog switch OFF-state current per channel Analog switch g ON-state current Quiescent supply y current Additional quiescent supply current per input VCC = 3.6 VCC = 6.0 VCC = 3.6 VCC = 6.0 VCC = 3.6 VCC = 6.0 VCC = 3.6 V VCC = 6.0 V VCC = 2.7 to 3.6 V VI = VCC or GND VI = VIH or VIL IVSI = VCC - GND (See Figure 2) VI = VIH or VIL VSI = VCC - GND (See Figure 3) VI = VCC or GND VIS = GND or VCC; VOS = VCC or GND VI = VCC - 0.6 V IS = 100 mA; VIS = VCC to GND; VI = VIH or VIL 180 IS = 1000 mA; A VIS = VCC to GND; VI = VIH or VIL 115 100 75 70 IS = 100 mA; VIS = GND; VI = VIH or VIL IS = 1000 mA; A VIS = GND; VI = VIH or VIL 250 120 75 70 50 45 VI = VIH or VIL; IS = 100 mA; VIS = VCC VI = VIH or VIL; IS = 1000 mA; VIS = VCC 350 170 105 95 70 65 340 210 190 140 125 400 250 225 165 150 W 280 170 155 120 105 325 195 180 135 120 W 365 225 200 150 140 435 270 245 180 165 W 0.9 1.4 2.0 3.15 4.20 0.3 0.6 0.8 1.35 1.80 1.0 2.0 1.0 2.0 1.0 2.0 20.0 40.0 500 -40C to +85C TYP1 MAX -40C to +125C MIN 0.9 1.4 2.0 3.15 4.20 0.3 0.6 0.8 1.35 1.80 1.0 2.0 1.0 2.0 1.0 2.0 40 80 850 A A A A A V V MAX UNIT
IS
ICC
ICC
VCC = 1.2 V ON-resistance ( (peak) ) VCC = 2.0 V VCC = 2.7 V VCC = 3.0 to 3.6 V VCC = 4.5 V VCC = 6.0 V VCC = 1.2 V ON-resistance (rail) () VCC = 2.0 V VCC = 2.7 V VCC = 3.0 to 3.6 V VCC = 4.5 V VCC = 6.0 V VCC = 1.2 V ON-resistance () (rail) VCC = 2.0 V VCC = 2.7 V VCC = 3.0 to 3.6 V VCC = 4.5 V VCC = 6.0 V
RON
RON
RON
1998 Jun 23
5
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
DC ELECTRICAL CHARACTERISTICS (Continued)
LIMITS SYMBOL PARAMETER TEST CONDITIONS MIN Maximum variation of ON-resistance between any two b channels VCC = 1.2 V VCC = 2.0 V VCC = 2.7 V VCC = 3.0 to 3.6 V VCC = 4.5 V VCC = 6.0 V -40C to +85C TYP1 5 4 4 3 2 MAX -40C to +125C MIN MAX UNIT
DRON
VI = VIH or VIL; VIS = VCC to GND
W
NOTES: 1. All typical values are measured at Tamb = 25C. 2. At supply voltages approaching 1.2 V, the analog switch ON-resistance becomes extremely non-linear. Therefore, it is recommended that these devices be used to transmit digital signals only, when using these supply voltages.
HIGH (from select inputs) V
180 RON (W) 120 nYn nZ 60 VCC = 4.5 V VCC = 2.0 V VCC = 3.0 V
V
is
= 0 to V
CC
- VEE
I
is 0 0 1.2 2.4 3.6 Vis (V) 4.8
VEE
SV01688
SV01696
Figure 1. Test circuit for measuring ON-resistance (RON).
Figure 4. Typical ON-resistance (Ron) as a function of input voltage (Vis) for Vis = 0 to VCC - VEE.
LOW (from select inputs)
VCC - GND (V) nYn 6.0
nZ
A
A 4.0 operating area
VI = VCC or VEE
VO = VEE or VCC
Figure 2. Test circuit for measuring OFF-state current.
HIGH (from select inputs)
nYn
A
VI = VCC or VEE VEE
Figure 3. Test circuit for measuring ON-state current.
1998 Jun 23
II
VEE nZ
SV01660
2.0
0
2.0
4.0
6.0 VCC - VEE (V)
SV01662
VO (open circuit)
Figure 5. Guaranteed operating area as a function of the supply voltages.
SV01661
6
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
AC CHARACTERISTICS
GND = 0 V; tr = tf 2.5ns; CL = 50pF CONDITION SYMBOL PARAMETER VCC (V) 1.2 2.0 tPHL/tPLH Propagation delay g y Vis to Vos 2.7 3.0 to 3.6 4.5 6.0 1.2 2.0 tPZH/tPZL Turn-on time E to Vos 2.7 3.0 to 3.6 4.5 6.0 1.2 2.0 tPZH/tPZL Turn-on time Sn to Vos 2.7 3.0 to 3.6 4.5 6.0 1.2 2.0 tPHZ/tPLZ Turn-off time E to Vos 2.7 3.0 to 3.6 4.5 6.0 1.2 2.0 tPHZ/tPLZ Turn-off time Sn to Vos 2.7 3.0 to 3.6 4.5 6.0 NOTES: 1. Unless otherwise stated, all typical values are measured at Tamb = 25C 2. Typical values are measured at VCC = 3.3 V. RL = 1kW CL = 50 pF Figures 13 and 1 RL = 1kW CL = 50 pF Figures 13 and 1 RL = 1kW CL = 50 pF Figures 13 and 1 RL = 1kW; 1kW CL = 50 pF Figures 13 and 1 d RL = ; CL = 50 pF Figure 12 OTHER MIN LIMITS -40 to +85 C TYP1 25 9 6 52 4 3 100 34 25 192 17 13 125 43 31 242 21 16 95 34 26 202 18 15 90 32 24 192 17 14 59 44 36 31 24 70 52 42 36 28 ns 61 46 37 32 25 73 54 44 38 30 ns 82 60 48 41 31 97 71 57 48 37 ns 65 48 38 32 25 77 56 45 38 29 ns 17 13 10 9 7 20 15 12 10 8 ns MAX -40 to +125 C MIN MAX UNIT
1998 Jun 23
7
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
ADDITIONAL AC CHARACTERISTICS
Recommended conditions and typical values GND = 0 V; tr = tf 2.5ns SYMBOL PARAMETER Sine-wave distortion f = 1 kHz Sine-wave distortion f = 10 kHz Switch "OFF" signal feed through Crosstalk between any two switches/multiplexers V(p-p) Crosstalk voltage between enable or address input to any switch (peak-to-peak value) Minimum frequency response (-3 dB) Maximum switch capacitance TYP. 0.80 0.40 2.40 1.20 -50 -50 -60 -60 110 120 180 200 5 UNIT % % dB dB mV VCC (V) 3.0 6.0 3.0 6.0 3.0 6.0 3.0 6.0 3.0 6.0 3.0 6.0 Note 2 Vis(p-p) (V) 2.75 5.50 2.75 5.50 Note 1 Note 1 CONDITIONS RL = 10 kW; CL = 50 pf Figures 9 and 10 RL = 10 kW; CL = 50 pf Figures 9 and 10 RL = 600 W; CL = 50 pf; f= 1 MHz Figures 5 and 11 RL = 600 W; CL = 50 pf; f= 1 MHz Figure 8 RL = 600 W; CL = 50 pf; f= 1 MHz (Sn or E, square wave between VCC and GND tr = tf = 6 ns) Figure 8 RL = 50 W; CL = 50 pF Figures 6, 8 and 9
fmax CS
MHz pf
GENERAL NOTES: Vis is the input voltage at nYn or nZ terminal, whichever is assigned as an input. VOS is the output voltage at nYn or nZ terminal, whichever is assigned as an output. NOTES: 1. Adjust input voltage Vis is 0 dBm level (0 dBm = 1 mW into 600 W). 2. Adjust input voltage Vis is 0 dBm level at VOS for 1 MHz (0 dBm = 1 mW into 50 W).
0 (dB) 5 (dB)
-50
0
-100 10 10
2
-5 10
3
10
4
f (kHz)
10
5
10
6
10
10 2
10 3
10 4 f (kHz)
10 5
10 6
SV01635
SV01636
Figure 6. Typical switch "OFF" signal feed-through as a function of frequency. NOTES TO FIGURES 6 AND 7: Test conditions: VCC = 3.0 V; GND = 0 V; VEE = -3.0V; RL = 50 W; RSOURCE = 1kW.
VCC
Figure 7. Typical frequency response.
VCC
VCC
0.1 mF V is
RL
2RL nYn/nZ nZ/nYn nYn/nZ
2RL
2RL nZ/nYn Vos
channel ON
2RL
CL GND
RL
channel OFF
2RL
CL
dB
GND (b)
(a)
SV01663
Figure 8. Test circuit for measuring crosstalk between any two switches. (a) channel ON condition; (b) channel OFF condition.
1998 Jun 23
8
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
NOTE TO FIGURE 8: The crosstalk is defined as follows (oscilloscope output):
2R L V(p - p) nYn/nZ
VCC
Sn or E
VCC
2R L DUT 2RL 2RL CL nZ/nYn
oscilloscope
SV01642
GND VEE
SV01689
Figure 9. Test circuit for measuring crosstalk between control and any switch. NOTE TO FIGURE 9: Adjust input voltage to obtain 0 dBm at VOS when Fin = 1 MHz. After set-up frequency of fin is increased to obtain a reading of -3 dB at VOS.
2RL nZ/nYn Vos 2RL CL dB GND
VCC
0.1 mF Vis sine-wave
nYn/nZ
channel ON
SV01667
Figure 10. Test circuit for measuring minimum frequency response.
VCC
VCC 2RL
fin = 1 kHz sine-wave
10 mF
nYn/nZ
nZ/nYn Vos V is
0.1 mF
2RL nYn/nZ nZ/nYn VOS
channel ON
2RL
CL
distortion meter GND
channel OFF
2RL
CL
dB
SV01691
GND
Figure 11. Test circuit for measuring sine-wave distortion.
SV01692
Figure 12. Test circuit for measuring switch "OFF" signal feed-through.
1998 Jun 23
9
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
WAVEFORMS
VM = 1.5 V at 2.7 V VCC 3.6 V VM = 0.5 x VCC at 2.7 V > VCC > 3.6 V VOL and VOH are the typical output voltage drop that occur with the output load Vx = VOL + 0.3 V at 2.7 V VCC 3.6 V VX = VOL + 0.1 x VCC at 2.7 V >VCC > 3.6 V VY = VOH - 0.3 V at 2.7 V VCC 3.6 V VY = VOH - 0.1 x VCC at 2.7 V >VCC > 3.6 V
VI INPUTS GND t PLH V OH OUTPUTS V OL VM t PHL tPLZ VCC OUTPUT LOW-to-OFF OFF-to-LOW VOL tPHZ tPZL VM VX tPZH VM VI INPUTS GND VM
SV01638
VOH OUTPUT HIGH-to-OFF OFF-to-HIGH GND outputs enabled
VY VM outputs disabled outputs enabled
Figure 13. Input (Vis) to output (Vos) propagation delays.
SV01640
Figure 14. Turn-on and turn-off times for the inputs (Sn, E) to the output (Vos).
TEST CIRCUIT
tW 90% VM 10% tTHL (tf) tTLH (tr) CL 50 pF 1kW POSITIVE PULSE VEE 10% tW 90% VM 90% VM 10% 0V 10% 0V tTLH (tr) tTHL (tf) VI VM VI
Vcc
S1
90% 2 VCC Open VEE NEGATIVE PULSE
Vl PULSE GENERATOR RT D.U.T.
VO
1kW
Test Circuit for Outputs
DEFINITIONS
RL = Load resistor CL = Load capacitance includes jig and probe capacitance VCC < 2.7V 2.7 - 3.6V > 3.6 V VI VCC 2.7V VCC Test tPLH/tPHL tPLZ/tPZL tPHZ/tPZH S1 Open 2 VCC VEE VIS Pulse VEE VI RT = Termination resistance should be equal to ZOUT of pulse generators. tr = tf =6ns, when measuring fmax, there is no constraint on tr, tf with 50% duty factor.
SY01738
Figure 15. Load circuitry for switching times.
1998 Jun 23
10
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
DIP16: plastic dual in-line package; 16 leads (300 mil)
SOT38-4
1998 Jun 23
11
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
SO16: plastic small outline package; 16 leads; body width 3.9 mm
SOT109-1
1998 Jun 23
12
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
SSOP16: plastic shrink small outline package; 16 leads; body width 5.3 mm
SOT338-1
1998 Jun 23
13
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
TSSOP16: plastic thin shrink small outline package; 16 leads; body width 4.4 mm
SOT403-1
1998 Jun 23
14
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
NOTES
1998 Jun 23
15
Philips Semiconductors
Product specification
Triple 2-channel analog multiplexer/demultiplexer
74LV4053
DEFINITIONS
Data Sheet Identification
Objective Specification
Product Status
Formative or in Design
Definition
This data sheet contains the design target or goal specifications for product development. Specifications may change in any manner without notice. This data sheet contains preliminary data, and supplementary data will be published at a later date. Philips Semiconductors reserves the right to make changes at any time without notice in order to improve design and supply the best possible product. This data sheet contains Final Specifications. Philips Semiconductors reserves the right to make changes at any time without notice, in order to improve design and supply the best possible product.
Preliminary Specification
Preproduction Product
Product Specification
Full Production
Philips Semiconductors and Philips Electronics North America Corporation reserve the right to make changes, without notice, in the products, including circuits, standard cells, and/or software, described or contained herein in order to improve design and/or performance. Philips Semiconductors assumes no responsibility or liability for the use of any of these products, conveys no license or title under any patent, copyright, or mask work right to these products, and makes no representations or warranties that these products are free from patent, copyright, or mask work right infringement, unless otherwise specified. Applications that are described herein for any of these products are for illustrative purposes only. Philips Semiconductors makes no representation or warranty that such applications will be suitable for the specified use without further testing or modification. LIFE SUPPORT APPLICATIONS Philips Semiconductors and Philips Electronics North America Corporation Products are not designed for use in life support appliances, devices, or systems where malfunction of a Philips Semiconductors and Philips Electronics North America Corporation Product can reasonably be expected to result in a personal injury. Philips Semiconductors and Philips Electronics North America Corporation customers using or selling Philips Semiconductors and Philips Electronics North America Corporation Products for use in such applications do so at their own risk and agree to fully indemnify Philips Semiconductors and Philips Electronics North America Corporation for any damages resulting from such improper use or sale. Philips Semiconductors 811 East Arques Avenue P.O. Box 3409 Sunnyvale, California 94088-3409 Telephone 800-234-7381 (c) Copyright Philips Electronics North America Corporation 1998 All rights reserved. Printed in U.S.A. print code Document order number: Date of release: 05-96 9397-750-04462
Philips Semiconductors
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