74LV4052N [NXP]

Dual 4-channel analog multiplexer/demultiplexer; 双路4通道模拟多路复用器/多路解复用器
74LV4052N
型号: 74LV4052N
厂家: NXP    NXP
描述:

Dual 4-channel analog multiplexer/demultiplexer
双路4通道模拟多路复用器/多路解复用器

解复用器 光电二极管
文件: 总16页 (文件大小:157K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
INTEGRATED CIRCUITS  
74LV4052  
Dual 4-channel analog  
multiplexer/demultiplexer  
Product specification  
1998 Jun 23  
Supersedes data of 1997 Jul 15  
IC24 Data Handbook  
Philips  
Semiconductors  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
FEATURES  
DESCRIPTION  
The 74LV4052 is a low-voltage CMOS device and is pin and  
function compatible with the 74HC/HCT4052.  
Optimized for low voltage applications: 1.0 to 6.0 V  
Accepts TTL input levels between V = 2.7 V and V = 3.6 V  
CC  
CC  
The 74LV4052 is a dual 4-channel analog multiplexer/demultiplexer  
with a common select logic. Each multiplexer has four independent  
Low typ “ON” resistance:  
60 W at V – V = 4.5 V  
cc  
EE  
inputs/outputs (nY to nY ) and a common input/output (nZ). The  
0
3
90 W at V – V = 3.0 V  
cc  
EE  
EE  
common channel select logics include two digital select inputs (S  
0
145 W at V – V = 2.0 V  
cc  
and S ) and an active LOW enable input (E).  
1
Logic level translation: to enable 3 V logic to communicate with ± 3  
With E LOW, one of the four switches is selected (low impedance  
ON-state) by S and S With E HIGH, all switches are in the high  
V analog signals  
0
1.  
Typical “break before make” built in  
Analog/Digital multiplexing and demultiplexing  
Signal gating  
impedance OFF-state, independent of S and S . V and GND are  
0
1
CC  
the supply voltage pins for the digital control inputs (S , S and E).  
0
1
The V to GND ranges are 1.0 to 6.0 V. The analog inputs/outputs  
CC  
(nY , to nY , and nZ) can swing between V as a positive limit and  
0
3
CC  
Output capability: non-standard  
V
as a negative limit. V - V may not exceed 6.0 V. For  
CC EE  
EE  
operation as a digital multiplexer/demultiplexer, V is connected to  
GND (typically ground).  
EE  
I category: MSI  
CC  
QUICK REFERENCE DATA  
GND = 0 V; T  
= 25°C; t =t 2.5 ns  
amb  
r
f
SYMBOL  
PARAMETER  
CONDITIONS  
TYPICAL  
UNIT  
Turn “ON” time  
E or V  
C = 15 pF  
L
t
t
/t  
30  
PZH PZL  
S
n
R = 1KW  
OS  
L
CC  
ns  
V
= 3.3 V  
Turn “OFF” time  
E or V  
/t  
22  
PHZ PLZ  
S
n
OS  
C
C
Input capacitance  
3.5  
57  
I
Power dissipation capacitance per switch See Notes 1 and 2  
PD  
pF  
Maximum switch capacitance  
independent (Y) common (Z)  
5
12  
C
S
NOTES:  
1. C is used to determine the dynamic power dissipation (P in µW)  
PD  
D
ȍ
2
2
P
= C × V  
× f ) ((C C ) × V  
× f ) where:  
D
PD  
CC  
i
L +  
S
CC o  
f = input frequency in MHz; C = output load capacity in pF;  
i
L
f = output frequency in MHz; C = maximum switch capacitance in pF;  
o
S
V
CC  
= supply voltage in V;  
ȍ
2
((C +C ) × V  
× f ) = sum of the outputs.  
L
S
CC  
o
2. The condition is V = GND to V  
.
CC  
I
ORDERING INFORMATION  
PACKAGES  
TEMPERATURE RANGE OUTSIDE NORTH AMERICA  
NORTH AMERICA  
Code  
16-Pin Plastic DIL  
–40°C to +125°C  
–40°C to +125°C  
–40°C to +125°C  
–40°C to +125°C  
74LV4052 N  
74LV4052 D  
74LV4052 N  
74LV4052 D  
SOT38-4  
SOT109-1  
SOT338-1  
SOT403-1  
16-Pin Plastic SO  
16-Pin Plastic SSOP Type II  
16-Pin Plastic TSSOP Type I  
74LV4052 DB  
74LV4052 PW  
74LV4052 DB  
74LV4052PW DH  
PIN CONFIGURATION  
PIN DESCRIPTION  
PIN NUMBER  
SYMBOL  
FUNCTION  
2Y  
2Y  
1
2
3
4
5
6
7
8
0
2
16  
V
CC  
1, 5, 2, 4  
2Y , 2Y  
Independent inputs/outputs  
Enable input (active LOW)  
Negative supply voltage  
Ground (0 V)  
0
3
15 1Y  
14 1Y  
13 1Z  
2
1
6
E
2Z  
7
V
EE  
2Y  
3
1
8
GND  
S , S  
12  
2Y  
1Y  
0
3
10, 9  
Select inputs  
0
1
11 1Y  
E
12, 14, 15, 11 1Y to 1Y  
Independent inputs/outputs  
Common inputs/outputs  
Positive supply voltage  
0
3
10  
9
S
S
V
0
1
EE  
13, 3  
16  
1Z, 2Z  
GND  
V
CC  
SV01697  
2
1998 Jun 23  
853-1999 19618  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
LOGIC SYMBOL  
LOGIC SYMBOL (IEEE/IEC)  
13  
1Z  
10  
0
1
0
3
4X  
9
1Y  
12  
14  
15  
11  
1
0
1
2
3
0
1
10  
S
S
0
1
6
3
1Y  
1Y  
1Y  
2Y  
2Y  
G4  
9
1
MDX  
0
1
2
3
5
2
4
5
2Y  
2Y  
2
4
2
3
12  
6
E
2Z  
14  
15  
11  
3
13  
SV01698  
FUNCTION TABLE  
INPUTS  
SV01699  
CHANNEL  
ON  
E
L
L
L
L
S
1
S
0
L
L
nY – nZ  
0
L
H
H
H
L
nY – nZ  
1
nY – nZ  
2
H
nY – nZ  
3
H
X
X
None  
NOTES:  
1. H = HIGH voltage level  
2. L = LOW voltage level  
3. X = don’t care  
3
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
FUNCTIONAL DIAGRAM  
16  
1Z  
1Y  
13  
12  
V
CC  
0
1Y  
1
14  
15  
11  
1
1Y  
1Y  
2Y  
2
10  
S
S
0
1
3
0
9
LOGIC LEVEL  
CONVERSION  
1–of–4  
DECODER  
2Y  
5
1
6
E
2Y  
2
2
2Y  
3
4
3
2Z  
V
GND  
8
EE  
7
SV01700  
SCHEMATIC DIAGRAM (ONE SWITCH)  
Y
V
CC  
V
EE  
V
CC  
V
CC  
V
V
EE  
CC  
Z
V
from logic  
EE  
SV01695  
4
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
1, 2  
ABSOLUTE MAXIMUM RATINGS  
In accordance with the Absolute Maximum Rating System (IEC 134).  
Voltages are referenced to GND (ground = 0 V).  
SYMBOL  
PARAMETER  
DC supply voltage  
CONDITIONS  
RATING  
UNIT  
V
V
CC  
–0.5 to +7.0  
"I  
DC input diode current  
DC switch diode current  
DC switch current  
V < –0.5 or V > V + 0.5 V  
20  
20  
mA  
mA  
mA  
°C  
IK  
I
I
CC  
"I  
V
S
< –0.5 or V > V + 0.5 V  
SK  
S
CC  
"I  
–0.5 V < V < V + 0.5 V  
25  
S
S
CC  
T
stg  
Storage temperature range  
–65 to +150  
Power dissipation per package  
– plastic DIL  
– plastic mini-pack (SO)  
for temperature range: –40 to +125°C  
above +70°C derate linearly with 12 mW/K  
above +70°C derate linearly with 8 mW/K  
above +60°C derate linearly with 5.5 mW/K  
750  
500  
400  
P
TOT  
mW  
– plastic shrink mini-pack (SSOP and TSSOP)  
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  
PARAMETER  
CONDITIONS  
MIN  
1.0  
0
TYP  
3.3  
MAX  
UNIT  
V
CC  
DC supply voltage  
See Note 1 and Figure 5  
6.0  
V
V
V
V
I
Input voltage  
V
CC  
V
CC  
V
O
Output voltage  
0
See DC and AC  
characteristics  
–40  
–40  
+85  
+125  
T
amb  
Operating ambient temperature range in free air  
°C  
V
CC  
V
CC  
V
CC  
= 1.0 V to 2.0 V  
= 2.0 V to 2.7 V  
= 2.7 V to 6.0 V  
500  
200  
100  
t , t  
r
Input rise and fall times  
ns/V  
f
NOTE:  
1. The LV is guaranteed to function down to V = 1.0V (input levels GND or V ); DC characteristics are guaranteed from V = 1.2V to V = 6.0V.  
CC  
CC  
CC  
CC  
5
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
DC ELECTRICAL CHARACTERISTICS  
Over recommended operating conditions, voltages are referenced to GND (ground = 0 V)  
LIMITS  
MAX  
-40°C to +85°C  
-40°C to +125°C  
SYMBOL  
PARAMETER  
TEST CONDITIONS  
= 1.2 V  
UNIT  
1
MIN  
0.9  
TYP  
MIN  
0.9  
MAX  
V
V
V
V
V
V
V
V
V
V
V
V
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
= 2.0 V  
1.4  
1.4  
HIGH level Input  
voltage  
= 2.7 to 3.6 V  
= 4.5 V  
2.0  
2.0  
V
IH  
V
3.15  
4.20  
3.15  
4.20  
= 6.0 V  
= 1.2 V  
0.3  
0.6  
0.3  
0.6  
= 2.0 V  
LOW level Input  
voltage  
= 2.7 to 3.6 V  
= 4.5 V  
0.8  
0.8  
V
IL  
V
1.35  
1.80  
1.0  
1.35  
1.80  
1.0  
= 6.0 V  
= 3.6  
Input leakage  
current  
±I  
±I  
V = V or GND  
µA  
µA  
I
I
CC  
= 6.0  
2.0  
2.0  
V = V or V  
IL  
Analog switch  
OFF-state current  
per channel  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
= 3.6  
1.0  
2.0  
1.0  
2.0  
1.0  
2.0  
40  
I
IH  
S
IV I = V - GND  
S CC  
(See Figure 2)  
= 6.0  
V = V or V  
= 3.6  
1.0  
I
IH  
IL  
Analog switch  
ON-state current  
±I  
S
µA  
IV I = V - GND  
(See Figure 3)  
S
CC  
= 6.0  
2.0  
V = V or GND;  
= 3.6 V  
= 6.0 V  
I
CC  
20.0  
40.0  
Quiescent supply  
current  
I
µA  
µA  
CC  
V
V
= GND or V  
;
IS  
CC  
80  
= V or GND  
OS  
CC  
Additional  
quiescent supply  
current per input  
I  
CC  
V
= 2.7 to 3.6 V  
= 1.2 V  
V = V – 0.6 V  
500  
850  
CC  
CC  
I
CC  
V = V or V ;  
I
IH  
IL  
I
= 100 A;  
V
m
S
V
V
to GND  
IS = CC  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
= 2.0 V  
145  
90  
80  
60  
55  
325  
200  
180  
135  
125  
375  
235  
210  
160  
145  
ON-resistance  
(peak)  
R
W
ON  
= 2.7 V  
V = V or V ;  
I
IH  
IL  
I
S
= 1000 A;  
= 3.0 to 3.6 V  
= 4.5 V  
m
V
V
to GND  
IS = CC  
= 6.0 V  
V = V or V  
I
IH  
IL;  
I
V
= 100 A;  
V
CC  
= 1.2 V  
225  
m
S
GND  
IS =  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
= 2.0 V  
110  
70  
60  
45  
40  
235  
145  
130  
100  
85  
270  
165  
150  
115  
100  
ON-resistance  
(rail)  
R
W
ON  
= 2.7 V  
V = V or V  
I
IH  
IL;  
I
S
= 1000 A;  
= 3.0 to 3.6 V  
= 4.5 V  
m
V
IS =  
GND  
= 6.0 V  
NOTES:  
1. All typical values are measured at T  
= 25°C.  
amb  
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.  
3. R (MAX) data is preliminary.  
ON  
6
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
DC ELECTRICAL CHARACTERISTICS (Continued)  
LIMITS  
MAX  
-40°C to +85°C  
-40°C to +125°C  
SYMBOL  
PARAMETER  
TEST CONDITIONS  
UNIT  
1
MIN  
TYP  
MIN  
MAX  
V = V or V ;  
I
IH  
IL  
I
= 100 A;  
V
CC  
= 1.2 V  
250  
W
m
S
V
V
IS = CC  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
V
CC  
= 2.0 V  
120  
75  
70  
50  
45  
320  
195  
175  
130  
120  
370  
225  
205  
150  
135  
ON-resistance  
(rail)  
R
ON  
= 2.7 V  
V = V or V ;  
I
IH  
IL  
I
V
= 1000 A;  
= 3.0 to 3.6 V  
= 4.5 V  
W
m
S
V
IS = CC  
= 6.0 V  
= 1.2 V  
= 2.0 V  
5
4
4
3
2
Maximum variation  
of ON-resistance  
between any two  
channels  
= 2.7 V  
V = V or V  
I
IH  
IL;  
DR  
W
ON  
V
V
to GND  
= 3.0 to 3.6 V  
= 4.5 V  
IS = CC  
= 6.0 V  
NOTES:  
1. All typical values are measured at T  
= 25°C.  
amb  
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.  
3. R (MAX) data is preliminary.  
ON  
LOW  
(from select inputs)  
HIGH  
(from select inputs)  
V
nY  
n
nZ  
nY  
n
nZ  
A
A
I
V
= 0 to V – V  
EE  
is  
is  
CC  
VI = VCC or V  
V = V or V  
O EE CC  
EE  
V
EE  
V
EE  
SV01688  
SV01660  
Figure 1. Test circuit for measuring ON-resistance (R ).  
Figure 2. Test circuit for measuring OFF-state current.  
ON  
HIGH  
(from select inputs)  
V
= 2.0 V  
150  
120  
R
CC  
ON  
nY  
n
(W)  
nZ  
V
O
V
= 3.0 V  
= 4.5 V  
CC  
(open circuit)  
90  
A
60  
30  
VI = V or V  
CC  
EE  
V
CC  
V
EE  
0
SV01661  
0
1.2  
2.4  
3.6  
V
4.8  
Figure 3. Test circuit for measuring ON-state current.  
(V)  
is  
SV01701  
Figure 4. Typical ON-resistance (R ) as a function of input  
on  
voltage (V ) for V = 0 to V – V .  
EE  
is  
is  
CC  
7
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
V
– GND  
(V)  
CC  
6.0  
operating area  
4.0  
2.0  
0
2.0  
4.0  
6.0  
V
– V  
EE  
CC  
(V)  
SV01662  
Figure 5. Guaranteed operating area as a  
function of the supply voltages.  
AC CHARACTERISTICS  
GND = 0 V; t = t 2.5ns; C = 50pF  
r
f
L
LIMITS  
–40 to +85 °C  
CONDITION  
–40 to +125 °C  
SYMBOL  
PARAMETER  
UNIT  
V
(V)  
CC  
1
OTHER  
MIN  
TYP  
MAX  
MIN  
MAX  
1.2  
25  
9
2.0  
17  
13  
10  
9
20  
15  
12  
10  
8
R = ;  
L
2.7  
6
Propagation delay  
to V  
C = 50 pF  
L
t
t
t
t
ns  
PHL/ PLH  
2
V
is  
3.0 to 3.6  
4.5  
5
os  
Figure 12  
4
3
6.0  
7
1.2  
190  
65  
2.0  
121  
89  
71  
60  
46  
146  
108  
86  
R = 1kW;  
L
2.7  
48  
C = 50 pF  
L
Turn-on time  
E, S to V  
/t  
ns  
ns  
PZH PZL  
2
3.0 to 3.6  
4.5  
36  
n
OS  
Figures 13  
and 1  
32  
25  
73  
6.0  
56  
1.2  
125  
43  
2.0  
80  
59  
48  
41  
32  
95  
71  
57  
49  
38  
R = 1kW:  
L
2.7  
33  
C = 50 pF  
L
Turn-off time  
/t  
PHZ PLZ  
2
E, Sn to V  
Figures 13  
and 1  
3.0 to 3.6  
4.5  
26  
OS  
23  
18  
6.0  
NOTES:  
1. Unless otherwise stated, all typical values are measured at T  
= 25°C  
amb  
2. Typical values are measured at V = 3.3 V.  
CC  
8
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
ADDITIONAL AC CHARACTERISTICS  
Recommended conditions and typical values  
GND = 0 V; t = t 2.5ns  
r
f
SYMBOL  
PARAMETER  
TYP. UNIT  
V
(V)  
V
CONDITIONS  
R = 10 kW; C = 50 pf  
CC  
is(p–p)  
(V)  
Sine-wave distortion  
f = 1 kHz  
0.80  
0.40  
%
%
3.0  
6.0  
2.75  
5.50  
L
L
Figure 9 and 10  
Sine-wave distortion  
f = 10 kHz  
2.40  
1.20  
3.0  
6.0  
2.75  
5.50  
R = 10 kW; C = 50 pf  
L
L
Figure 9 and 10  
Switch “OFF” signal feed through  
–50  
–50  
dB  
dB  
mV  
3.0  
6.0  
Note 1 R = 600 W; C = 50 pf; f= 1 MHz  
L L  
Figures 5 and 11  
Crosstalk between any two  
switches/multiplexers  
–60  
–60  
3.0  
6.0  
Note 1 R = 600 W; C = 50 pf; f= 1 MHz  
L
L
Figure 8  
V
f
Crosstalk voltage between enable or  
address input to any switch  
(peak-to-peak value)  
110  
120  
3.0  
6.0  
R = 600 W; C = 50 pf; f= 1 MHz  
L L  
(p–p)  
(S or E, square wave between V  
n
CC  
and GND t = t = 6 ns) Figure 8  
r
f
Minimum frequency response  
(–3 dB)  
180  
200  
MHz  
pf  
3.0  
6.0  
Note 2 R = 50 W; C = 50 pF  
L L  
max  
Figures 6, 8 and 9  
C
Maximum switch capacitance  
5
S
GENERAL NOTES:  
1. V is the input voltage at nY or nZ terminal, whichever is assigned as an input.  
is  
2. V is the output voltage at nY or nZ terminal, whichever is assigned as an output.  
OS  
NOTES:  
1. Adjust input voltage V is 0 dBm level (0 dBm = 1 mW into 600 W).  
is  
2. Adjust input voltage V is 0 dBm level at V for 1 MHz (0 dBm = 1 mW into 50 W).  
is  
OS  
5
(dB)  
0
(dB)  
0
–50  
–5  
10  
–100  
2
3
4
5
6
10  
10  
10  
10  
10  
2
3
4
5
6
10  
10  
10  
10  
10  
10  
f (kHz)  
f (kHz)  
SV01636  
SV01635  
Figure 6. Typical switch “OFF” signal feed-through as a  
function of frequency.  
Figure 7. Typical frequency response.  
NOTES TO FIGURES 6 AND 7:  
Test conditions: V = 3.0 V; GND = 0 V; V = -3.0 V; R = 50 W; R = 1kW.  
CC  
EE  
L
SOURCE  
V
V
V
CC  
CC  
CC  
2R  
2R  
2R  
L
L
L
0.1 mF  
R
L
nY /nZ  
n
nZ/nY  
nZ/nY  
n
n
nY /nZ  
n
V
V
os  
is  
2R  
C
R
2R  
C
L
dB  
L
L
L
L
channel  
ON  
channel  
OFF  
GND  
GND  
(a)  
(b)  
SV01663  
Figure 8. Test circuit for measuring crosstalk between any two switches.  
(a) channel ON condition; (b) channel OFF condition.  
9
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
NOTE TO FIGURE 8:  
The crosstalk is defined as follows (oscilloscope output):  
V
V
CC  
CC  
S
or E  
n
2R  
2R  
L
L
nY /nZ  
n
nZ/nY  
n
V(p – p)  
DUT  
2R  
2R  
L
C
L
oscilloscope  
L
SV01642  
GND  
V
EE  
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 V when F = 1 MHz. After  
OS  
in  
V
CC  
set-up frequency of f is increased to obtain a reading of –3 dB at V  
in  
OS.  
2R  
L
nY/nZ  
0.1 mF  
nZ/nY  
~
V
is  
V
os  
sine-wave  
2R  
C
dB  
L
L
channel  
ON  
GND  
SV01667  
Figure 10. Test circuit for measuring  
minimum frequency response.  
V
CC  
V
CC  
2R  
L
nY /nZ  
n
10 mF  
nZ/nY  
n
2R  
2R  
L
L
0.1 mF  
f
= 1 kHz  
sine-wave  
V
nY /nZ  
n
nZ/nY  
n
in  
os  
V
V
is  
OS  
distortion  
meter  
2R  
C
L
L
channel  
ON  
C
dB  
L
channel  
OFF  
GND  
SV01691  
GND  
Figure 11. Test circuit for measuring sine-wave distortion.  
SV01692  
Figure 12. Test circuit for measuring  
switch “OFF” signal feed-through.  
10  
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
WAVEFORMS  
NOTES:  
1. V = 1.5 V at 2.7 V V 3.6 V  
M
M
CC  
V
= 0.5 × V at 2.7 V > V > 3.6 V  
CC CC  
2. V and V are the typical output voltage drop that occur with  
OL  
OH  
the output load  
3. V = V + 0.3 V at 2.7 V V 3.6 V  
x
OL  
CC  
V
X
V
Y
V
Y
= V + 0.1 × V at 2.7 V >V > 3.6 V  
OL CC CC  
= V – 0.3 V at 2.7 V V 3.6 V  
OH  
CC  
= V – 0.1 × V at 2.7 V >V > 3.6 V  
OH  
CC  
CC  
V
I
V
I
INPUTS  
GND  
INPUTS  
GND  
V
V
M
M
t
t
PZL  
PLZ  
t
t
PHL  
PLH  
V
CC  
OUTPUT  
LOW-to-OFF  
OFF-to-LOW  
V
OH  
V
M
V
V
X
V
OUTPUTS  
M
V
OL  
t
PZH  
t
PHZ  
V
OL  
V
OH  
SV01638  
V
Y
OUTPUT  
HIGH-to-OFF  
OFF-to-HIGH  
Figure 13. Input (V ) to output (V ) propagation delays.  
M
is  
os  
GND  
outputs  
disabled  
outputs  
enabled  
outputs  
enabled  
SV01640  
Figure 14. Turn-on and turn-off times  
for the inputs (S , E) to the output (V ).  
n
os  
TEST CIRCUIT  
t
W
V
I
90%  
S
90%  
1
V
cc  
2 V  
Open  
CC  
V
V
M
M
NEGATIVE  
PULSE  
V
10%  
10%  
90%  
EE  
0V  
(t )  
1kW  
V
V
O
t
t
(t )  
t
TLH  
l
THL  
TLH  
f
r
PULSE  
GENERATOR  
D.U.T.  
(t )  
r
t (t )  
THL f  
V
I
R
T
1kW  
50 pF  
C
90%  
M
L
POSITIVE  
PULSE  
V
V
M
V
10%  
EE  
10%  
t
W
0V  
Test Circuit for Outputs  
DEFINITIONS  
R = Load resistor  
L
C = Load capacitance includes jig and probe capacitance  
L
V
CC  
V
I
Test  
S
1
V
IS  
R = Termination resistance should be equal to Z  
T
of  
OUT  
pulse generators.  
< 2.7V  
V
t
t
t
t
Open  
Pulse  
CC  
PLH/ PHL  
2.7 - 3.6V 2.7V  
t
2 V  
V
EE  
t = t =6ns, when measuring f there is no constraint on  
max,  
PLZ/ PZL  
CC  
r
f
t , t with 50% duty factor.  
r
f
> 3.6 V  
V
/t  
V
EE  
V
I
CC  
PHZ PZH  
SY01738  
Figure 15. Load circuitry for switching times.  
11  
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
DIP16: plastic dual in-line package; 16 leads (300 mil)  
SOT38-4  
12  
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
SO16: plastic small outline package; 16 leads; body width 3.9 mm  
SOT109-1  
13  
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
SSOP16: plastic shrink small outline package; 16 leads; body width 5.3 mm  
SOT338-1  
14  
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
TSSOP16: plastic thin shrink small outline package; 16 leads; body width 4.4 mm  
SOT403-1  
15  
1998 Jun 23  
Philips Semiconductors  
Product specification  
Dual 4-channel analog multiplexer/demultiplexer  
74LV4052  
DEFINITIONS  
Data Sheet Identification  
Product Status  
Definition  
This data sheet contains the design target or goal specifications for product development. Specifications  
may change in any manner without notice.  
Objective Specification  
Formative or in Design  
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.  
Preliminary Specification  
Product Specification  
Preproduction Product  
Full Production  
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.  
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. PhilipsSemiconductorsmakesnorepresentationorwarrantythatsuchapplicationswillbesuitableforthespecifiedusewithoutfurthertesting  
or modification.  
LIFE SUPPORT APPLICATIONS  
Philips Semiconductors and Philips Electronics North America Corporation Products are not designed for use in life support appliances, devices,  
orsystemswheremalfunctionofaPhilipsSemiconductorsandPhilipsElectronicsNorthAmericaCorporationProductcanreasonablybeexpected  
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  
Copyright Philips Electronics North America Corporation 1998  
All rights reserved. Printed in U.S.A.  
Sunnyvale, California 94088–3409  
Telephone 800-234-7381  
print code  
Date of release: 05-96  
9397-750-04461  
Document order number:  
Philips  
Semiconductors  

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