74LV4066N,112 [NXP]

74LV4066N;
74LV4066N,112
型号: 74LV4066N,112
厂家: NXP    NXP
描述:

74LV4066N

光电二极管 输出元件
文件: 总23页 (文件大小:128K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
74LV4066  
Quad bilateral switches  
Rev. 03 — 4 July 2005  
Product data sheet  
1. General description  
The 74LV4066 is a low-voltage Si-gate CMOS device that is pin and function compatible  
with the 74HC4066 and 74HCT4066.  
The 74LV4066 has four independent switches. Each switch has two input/output pins  
(nY, nZ) and an active HIGH enable input pin (nE). When nE is LOW the corresponding  
analog switch is turned off.  
The 74LV4066 has a ON-resistance which is reduced in comparison with the 74HCT4066.  
2. Features  
Optimized for low-voltage applications: 1.0 V to 3.6 V  
Typical VOLP (output ground bounce): < 0.8 V at VCC = 3.3 V and Tamb = 25 °C  
Accepts TTL input levels between VCC = 2.7 V and VCC = 3.6 V  
Very low ON-resistance:  
60 (typical) at VCC = 2.0 V  
35 (typical) at VCC = 3.0 V  
25 (typical) at VCC = 4.5 V  
ESD protection:  
HBM EIA/JESD22-A114C exceeds 2000 V  
MM EIA/JESD22-A115-A exceeds 200 V  
Specified from 40 °C to +80 °C and from 40 °C to +125 °C  
 
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
3. Quick reference data  
Table 1:  
Quick reference data  
GND = 0 V; Tamb = 25 °C; tr = tf 2.5 ns; CL = 15 pF; RL = 1 k.  
Symbol Parameter  
Conditions  
VCC = 3.3 V  
VCC = 3.3 V  
Min  
Typ  
10  
13  
3.5  
8
Max Unit  
tPZL, tPZH turn-on time nE to Vos  
tPLZ, tPHZ turn-off time nE to Vos  
-
-
-
-
-
-
-
-
ns  
ns  
pF  
pF  
Ci  
input capacitance  
CS  
maximum switch  
capacitance  
[1] [2]  
CPD  
power dissipation  
VCC = 3.3 V  
-
11  
-
pF  
capacitance per switch  
[1] CPD is used to determine the dynamic power dissipation (PD in µW).  
PD = CPD × VCC2 × fi × N + Σ[(CL + CS) × VCC2 × fo] where:  
fi = input frequency in MHz;  
fo = output frequency in MHz;  
CL = output load capacitance in pF;  
CS = maximum switch capacitance in pF;  
VCC = supply voltage in V;  
N = number of inputs switching;  
Σ[(CL + CS) × VCC2 × fo] = sum of the outputs.  
[2] The condition is VI = GND to VCC  
.
4. Ordering information  
Table 2:  
Type number Package  
Temperature range Name  
Ordering information  
Description  
Version  
74LV4066N  
40 °C to +125 °C  
DIP14  
plastic dual in-line package;  
14 leads (300 mil)  
SOT27-1  
74LV4066D  
40 °C to +125 °C  
SO14  
plastic small outline package;  
14 leads; body width 3.9 mm  
SOT108-1  
74LV4066DB 40 °C to +125 °C  
74LV4066PW 40 °C to +125 °C  
SSOP14 plastic shrink small outline package; SOT337-1  
14 leads; body width 5.3 mm  
TSSOP14 plastic thin shrink small outline  
package; 14 leads; body width  
4.4 mm  
SOT402-1  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
2 of 23  
 
 
 
 
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
5. Functional diagram  
1
2
3
1Y  
1Z  
1
1
1
1
1
1
2
13 #  
X1  
1E  
2Y  
2E  
3Y  
3E  
13  
4
1
2
3
4
1
2Z  
3Z  
13 #  
4
3
9
5 #  
X1  
5
5 #  
8
8
9
1
9
8
6 #  
X1  
6 #  
11  
6
11  
10  
10  
1
4Y  
4E  
4Z  
12 #  
12 #  
11  
12  
10  
X1  
(a)  
(b)  
001aad270  
001aad269  
Fig 1. Logic symbol  
Fig 2. IEC logic diagram  
nY  
nE  
V
V
CC  
CC  
GND  
nZ  
001aad271  
Fig 3. Logic diagram (one switch)  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
3 of 23  
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
6. Pinning information  
6.1 Pinning  
1
2
3
4
5
6
7
14  
13  
12  
11  
10  
9
1Y  
1Z  
V
CC  
1E  
4E  
4Y  
4Z  
3Z  
3Y  
2Z  
2Y  
4066  
2E  
3E  
8
GND  
001aad268  
Fig 4. Pin configuration  
6.2 Pin description  
Table 3:  
Symbol  
1Y  
Pin description  
Pin  
1
Description  
independent input or output  
independent output or input  
independent output or input  
independent input or output  
enable input  
1Z  
2
2Z  
3
2Y  
4
2E  
5
3E  
6
enable input  
GND  
3Y  
7
ground (0 V)  
8
independent input or output  
independent output or input  
independent output or input  
independent input or output  
enable input  
3Z  
9
4Z  
10  
11  
12  
13  
14  
4Y  
4E  
1E  
enable input  
VCC  
supply voltage  
7. Functional description  
7.1 Function table  
Table 4:  
Input nE  
LOW  
Function table  
Switch  
off  
HIGH  
on  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
4 of 23  
 
 
 
 
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
8. Limiting values  
Table 5:  
Limiting values  
In accordance with the Absolute Maximum Rating System (IEC 60134). Voltages are referenced to  
GND (ground = 0 V).  
Symbol Parameter  
Conditions  
Min  
Max Unit  
VCC  
IIK  
supply voltage  
0.5 +7.0  
V
input diode current  
output diode current  
VI < 0.5 V or VI > VCC + 0.5 V  
VO < 0.5 V or VO > VCC + 0.5 V  
VO = 0.5 V to (VCC + 0.5 V)  
-
-
-
±20  
±50  
±25  
mA  
mA  
mA  
IOK  
IS  
[1]  
switch source or sink  
current  
Tstg  
Ptot  
storage temperature  
total power dissipation  
DIP14 package  
65  
+150 °C  
Tamb = 40 °C to +125 °C  
[2]  
[3]  
[4]  
-
-
750  
500  
400  
mW  
SO14 package  
mW  
mW  
(T)SSOP14 package  
[1] The input and output voltage ratings may be exceeded if the input and output current ratings are observed.  
[2] DIP14 package: Ptot derates linearly with 12 mW/K above 70 °C.  
[3] SO14 package: Ptot derates linearly with 8 mW/K above 70 °C.  
[4] (T)SSOP14 package: Ptot derates linearly with 5.5 mW/K above 60 °C.  
9. Recommended operating conditions  
Table 6:  
Recommended operating conditions  
Symbol Parameter  
Conditions  
Min  
Typ  
Max  
6
Unit  
V
[1]  
VCC  
VI  
supply voltage  
input voltage  
1.0  
3.3  
0
-
-
-
-
-
-
-
VCC  
VCC  
+125  
500  
200  
100  
50  
V
VO  
output voltage  
ambient temperature  
0
V
Tamb  
tr, tf  
in free air  
40  
°C  
input rise and fall times VCC = 1.0 V to 2.0 V  
VCC = 2.0 V to 2.7 V  
-
-
-
-
ns/V  
ns/V  
ns/V  
ns/V  
VCC = 2.7 V to 3.6 V  
VCC = 3.6 V to 5.5 V  
[1] The static characteristics are guaranteed from VCC = 1.2 V to VCC = 5.5 V, but LV devices are guaranteed to  
function down to VCC = 1.0 V (with input levels GND or VCC).  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
5 of 23  
 
 
 
 
 
 
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
10. Static characteristics  
Table 7:  
Static characteristics  
At recommended operating conditions; voltages are referenced to GND (ground = 0 V).  
Symbol Parameter  
Conditions  
Min  
Typ Max  
Unit  
Tamb = 40 °C to +85 °C  
VIH  
HIGH-level input voltage VCC = 1.2 V  
VCC = 2.0 V  
0.90  
-
-
-
-
-
-
-
-
-
-
-
V
V
V
V
V
V
V
V
V
V
1.40  
-
VCC = 2.7 V to 3.6 V  
2.00  
-
VCC = 4.5 V  
VCC = 6.0 V  
3.15  
-
4.20  
-
VIL  
LOW-level input voltage VCC = 1.2 V  
VCC = 2.0 V  
-
-
-
-
-
0.30  
0.60  
0.80  
1.35  
1.80  
VCC = 2.7 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
VI = VCC or GND  
VCC = 3.6 V  
VCC = 6.0 V  
ILI  
input leakage current  
-
-
-
-
1.0  
2.0  
µA  
µA  
IS(OFF)  
IS(ON)  
ICC  
analog switch OFF-state VI = VIH or VIL; see Figure 5  
current  
VCC = 3.6 V  
-
-
-
-
1.0  
2.0  
µA  
µA  
VCC = 6.0 V  
analog switch ON-state VI = VIH or VIL; see Figure 6  
current  
VCC = 3.6 V  
-
-
-
-
1.0  
2.0  
µA  
µA  
VCC = 6.0 V  
supply current  
VI = VCC or GND; IO = 0 A  
VCC = 3.6 V  
-
-
-
-
-
-
20  
µA  
µA  
µA  
VCC = 6.0 V  
40  
ICC  
additional supply current VI = VCC 0.6 V;  
500  
per input  
VCC = 2.7 V to 3.6 V  
Ci  
input capacitance  
-
3.5  
-
pF  
Tamb = 40 °C to +125 °C  
VIH  
HIGH-level input voltage VCC = 1.2 V  
VCC = 2.0 V  
0.90  
-
-
-
-
-
-
-
-
V
V
V
V
V
V
V
V
V
V
1.40  
VCC = 2.7 V to 3.6 V  
2.00  
VCC = 4.5 V  
VCC = 6.0 V  
3.15  
4.20  
VIL  
LOW-level input voltage VCC = 1.2 V  
VCC = 2.0 V  
-
-
-
-
-
-
-
-
-
-
0.30  
0.60  
0.80  
1.35  
1.80  
VCC = 2.7 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
6 of 23  
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
Table 7:  
Static characteristics …continued  
At recommended operating conditions; voltages are referenced to GND (ground = 0 V).  
Symbol Parameter  
Conditions  
VI = VCC or GND  
Min  
Typ Max  
Unit  
ILI  
input leakage current  
VCC = 3.6 V  
-
-
-
-
1.0  
2.0  
µA  
µA  
VCC = 6.0 V  
IS(OFF)  
IS(ON)  
ICC  
analog switch OFF-state VI = VIH or VIL; see Figure 5  
current  
VCC = 3.6 V  
-
-
-
-
1.0  
2.0  
µA  
µA  
VCC = 6.0 V  
analog switch ON-state VI = VIH or VIL; see Figure 6  
current  
VCC = 3.6 V  
-
-
-
-
1.0  
2.0  
µA  
µA  
VCC = 6.0 V  
supply current  
VI = VCC or GND; IO = 0 A  
VCC = 3.6 V  
-
-
-
-
-
-
40  
µA  
µA  
µA  
VCC = 6.0 V  
80  
ICC  
additional supply current VI = VCC 0.6 V;  
850  
per input  
VCC = 2.7 V to 3.6 V  
nE  
nE  
V
V
IL  
IH  
nY  
A
nZ  
nY  
nZ  
A
A
A
V = V  
I
or GND  
V
= GND or V  
V = V  
I
or GND  
V
O
(open circuit)  
GND  
CC  
O
CC  
CC  
GND  
001aad273  
001aad274  
Fig 5. Test circuit for measuring OFF-state  
current  
Fig 6. Test circuit for measuring ON-state  
current  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
7 of 23  
 
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
Table 8:  
ON-resistance  
At recommended operating conditions; voltages are referenced to GND (ground = 0 V); for test  
circuit see Figure 7.  
Symbol  
Tamb = 40 °C to +85 °C[1]; see Figure 8  
RON(peak) ON-resistance (peak) VI = VIH or VIL  
Parameter  
Conditions  
Min Typ Max Unit  
[2]  
[2]  
[2]  
VCC = 1.2 V  
VCC = 2.0 V  
-
-
-
-
-
-
300  
60  
41  
37  
25  
23  
-
130  
60  
72  
52  
47  
VCC = 2.7 V  
VCC = 3.0 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
RON(rail)  
ON-resistance (rail)  
VI = VIH or VIL; Vis = GND  
VCC = 1.2 V  
-
-
-
-
-
-
75  
35  
26  
24  
15  
13  
-
VCC = 2.0 V  
98  
60  
52  
40  
35  
VCC = 2.7 V  
VCC = 3.0 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
VI = VIH or VIL; Vis = VCC  
VCC = 1.2 V  
-
-
-
-
-
-
75  
40  
35  
30  
22  
20  
-
VCC = 2.0 V  
110  
72  
65  
47  
40  
VCC = 2.7 V  
VCC = 3.0 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
RON(flatness) ON-resistance  
(flatness)  
VI = VIH or VIL; Vis = VCC  
VCC = 2.0 V  
-
-
-
-
-
5
4
4
3
2
-
-
-
-
-
VCC = 2.7 V  
VCC = 3.0 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
Tamb = 40 °C to +125 °C  
RON(peak)  
ON-resistance (peak) VI = VIH or VIL  
VCC = 2.0 V  
-
-
-
-
-
-
-
-
-
-
150  
90  
83  
60  
54  
VCC = 2.7 V  
VCC = 3.0 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
8 of 23  
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
Table 8:  
ON-resistance …continued  
At recommended operating conditions; voltages are referenced to GND (ground = 0 V); for test  
circuit see Figure 7.  
Symbol  
Parameter  
Conditions  
Min Typ Max Unit  
RON(rail)  
ON-resistance (rail)  
VI = VIH or VIL; Vis = GND  
VCC = 2.0 V  
-
-
-
-
-
-
-
-
-
-
115  
68  
60  
45  
40  
VCC = 2.7 V  
VCC = 3.0 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
VI = VIH or VIL; Vis = VCC  
VCC = 2.0 V  
-
-
-
-
-
-
-
-
-
-
130  
85  
75  
55  
47  
VCC = 2.7 V  
VCC = 3.0 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
[1] All typical values are measured at Tamb = 25 °C.  
[2] At supply voltage 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.  
001aad275  
80  
R
ON  
()  
60  
nE  
V
= 2.0 V  
CC  
V
IH  
V
40  
20  
0
nY  
nZ  
3.0 V  
4.5 V  
V
is  
= 0 V to (V  
GND)  
I
is  
CC  
GND  
001aad272  
0
1.2  
2.4  
3.6  
4.8  
V
(V)  
is  
Fig 7. Test circuit for measuring ON-resistance  
Fig 8. ON-resistance as a function of input voltage  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
9 of 23  
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
11. Dynamic characteristics  
Table 9:  
Dynamic characteristics  
Voltages are referenced to GND (ground = 0 V); for test circuit see Figure 11.  
Symbol Parameter  
Conditions  
Min Typ Max Unit  
Tamb = 40 °C to +85 °C[1]  
tPHL  
tPLH  
,
propagation delay Vis to Vos see Figure 9  
VCC = 1.2 V  
VCC = 2.0 V  
-
-
-
-
-
8
5
3
2
2
-
ns  
ns  
ns  
ns  
ns  
26  
15  
13  
10  
VCC = 2.7 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
tPZH  
,
turn-on time nE to Vos  
see Figure 9  
tPZL  
VCC = 1.2 V  
-
-
-
-
-
-
40  
22  
12  
10  
10  
8
-
ns  
ns  
ns  
ns  
ns  
ns  
VCC = 2.0 V  
43  
25  
-
VCC = 2.7 V to 3.6 V  
VCC = 3.3 V; CL = 15 pF  
VCC = 4.5 V  
21  
16  
VCC = 6.0 V  
tPHZ  
tPLZ  
,
turn-off time nE to Vos  
see Figure 9  
VCC = 1.2 V  
-
-
-
-
-
-
-
50  
27  
15  
13  
13  
12  
11  
-
ns  
ns  
ns  
ns  
ns  
ns  
pF  
VCC = 2.0 V  
65  
38  
-
VCC = 2.7 V to 3.6 V  
VCC = 3.3 V; CL = 15 pF  
VCC = 4.5 V  
32  
28  
-
VCC = 6.0 V  
[2] [3]  
CPD  
power dissipation  
VCC = 3.3 V; CL = 15 pF  
capacitance per switch  
Tamb = 40 °C to +125 °C  
tPHL propagation delay Vis to Vos see Figure 9  
tPLH  
,
VCC = 2.0 V  
VCC = 2.7 V to 3.6 V  
VCC = 4.5 V  
-
-
-
-
-
-
-
-
31  
18  
15  
12  
ns  
ns  
ns  
ns  
VCC = 6.0 V  
tPZH  
,
turn-on time nE to Vos  
see Figure 9  
tPZL  
VCC = 2.0 V  
-
-
-
-
-
-
-
-
51  
30  
26  
20  
ns  
ns  
ns  
ns  
VCC = 2.7 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
10 of 23  
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
Table 9:  
Dynamic characteristics …continued  
Voltages are referenced to GND (ground = 0 V); for test circuit see Figure 11.  
Symbol Parameter  
tPHZ turn-off time nE to Vos  
tPLZ  
Conditions  
Min Typ Max Unit  
,
see Figure 9  
VCC = 2.0 V  
-
-
-
-
-
-
-
-
81  
47  
40  
34  
ns  
ns  
ns  
ns  
VCC = 2.7 V to 3.6 V  
VCC = 4.5 V  
VCC = 6.0 V  
[1] Typical values are measured at nominal VCC and Tamb = 25 °C.  
[2] CPD is used to determine the dynamic power dissipation (PD in µW).  
PD = CPD × VCC2 × fi × N + Σ[(CL + CS) × VCC2 × fo] where:  
fi = input frequency in MHz;  
fo = output frequency in MHz;  
CL = output load capacitance in pF;  
CS = maximum switch capacitance in pF;  
VCC = supply voltage in V;  
N = number of inputs switching;  
Σ[(CL + CS) × VCC2 × fo] = sum of the outputs.  
[3] The condition is VI = GND to VCC  
.
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
11 of 23  
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
12. Waveforms  
V
I
V
V
V
V
M
is  
M
GND  
t
t
PHL  
PLH  
V
OH  
V
V
M
os  
M
V
OL  
001aad284  
Measurement points are given in Table 10.  
VOL and VOH are typical voltage output drop that occur with the output load.  
Fig 9. Input to output propagation delays  
V
I
nE input  
V
M
t
GND  
t
PLZ  
PZL  
V
CC  
output  
V
LOW-to-OFF  
OFF-to-LOW  
M
V
X
V
OL  
t
t
PZH  
PHZ  
V
OH  
V
Y
output  
HIGH-to-OFF  
OFF-to-HIGH  
V
M
GND  
outputs  
enabled  
outputs  
disabled  
outputs  
enabled  
001aad285  
Measurement points are given in Table 10.  
VOL and VOH are typical voltage output drop that occur with the output load.  
Fig 10. Turn-on and turn-off times for the inputs to the output  
Table 10: Measurement points  
Supply voltage  
VCC  
Input  
VM  
Output  
VM  
VX  
VY  
2.7 V  
1.5 V  
1.5 V  
VOL + 0.3  
VOL + 0.15  
V
OH 0.3 V  
OH 0.15 V  
< 2.7 V  
0.5 × VCC  
0.5 × VCC  
V
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
12 of 23  
 
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
t
W
V
I
90 %  
90 %  
negative  
pulse  
V
V
M
M
10 %  
0 V  
t
(t )  
f
t
(t )  
TLH r  
THL  
t
(t )  
t
(t )  
THL f  
TLH  
r
V
I
90 %  
positive  
pulse  
V
M
V
M
10 %  
10 %  
0 V  
t
W
001aac221  
a. Input pulse definition  
V
EXT  
V
CC  
R
L
V
V
O
I
PULSE  
GENERATOR  
DUT  
C
L
R
L
R
T
mna616  
Test data is given in Table 11.  
Definitions test circuit:  
RL = Load resistor.  
CL = Load capacitance includes jig and probe capacitance.  
RT = Termination resistance should be equal to Zo of the pulse generator.  
VEXT = Test voltage for switching times.  
b. Test circuit  
Fig 11. Load circuitry for switching times  
Table 11: Test data  
Supply voltage  
VCC  
Input  
VI  
Load  
CL  
VEXT  
[1]  
tr, tf  
RL  
tPHZ, tPZH tPLZ, tPZL tPLH, tPHL  
< 2.7 V  
VCC  
2.7 V  
VCC  
2.5 ns 50 pF  
2.5 ns 50 pF  
2.5 ns 50 pF  
1 kΩ  
1 kΩ  
1 kΩ  
GND  
GND  
GND  
2 × VCC  
2 × VCC  
2 × VCC  
open  
open  
open  
2.7 V to 3.6 V  
4.5 V  
[1] RL = ∞ Ω for measuring the propagation delays tPLH and tPHL  
.
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
13 of 23  
 
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
13. Additional dynamic characteristics  
Table 12: Additional dynamic characteristics  
Voltages are referenced to GND (ground = 0 V); Vis is the input voltage at pin nY or nZ, whichever is  
assigned as an input; Vos is the output voltage at pin nY or nZ, whichever is assigned as an output.  
Symbol  
Parameter  
Conditions  
Min Typ Max Unit  
dsin  
sine-wave distortion  
RL = 10 k; f = 1 kHz;  
CL = 50 pF; see Figure 12  
VCC = 3.0 V; Vis = 2.75 V (p-p)  
VCC = 6.0 V; Vis = 5.50 V (p-p)  
-
-
0.04 -  
0.02 -  
%
%
RL = 10 k; f = 10 kHz;  
CL = 50 pF; see Figure 12  
VCC = 3.0 V; Vis = 2.75 V (p-p)  
VCC = 6.0 V; Vis = 5.50 V (p-p)  
-
-
0.12 -  
0.06 -  
%
%
[1]  
αOFF(feedthru) switch OFF-state  
signal feed-through  
attenuation  
RL = 600 k; f = 1 MHz;  
CL = 50 pF; see Figure 13 and  
Figure 14  
VCC = 3.0 V  
VCC = 6.0 V  
-
-
50  
50  
-
-
dB  
dB  
[1]  
[2]  
αct(S)  
crosstalk between  
switches  
RL = 600 k; f = 1 MHz;  
CL = 50 pF; see Figure 15  
VCC = 3.0 V  
-
-
60  
60  
-
-
dB  
dB  
VCC = 6.0 V  
Vct(pp)  
crosstalk voltage  
RL = 600 k; f = 1 MHz;  
between enable input CL = 50 pF; see Figure 16 and  
to any switch  
Figure 17  
(peak-to-peak value)  
VCC = 3.0 V  
VCC = 6.0 V  
-
-
110  
220  
-
-
mV  
mV  
[3]  
fmax  
minimum frequency  
RL = 50 k; CL = 50 pF;  
response (3 dB)  
see Figure 18 and Figure 19  
VCC = 3.0 V  
VCC = 6.0 V  
-
-
-
180  
200  
8
-
-
-
MHz  
MHz  
pF  
CS  
maximum switch  
capacitance  
[1] Adjust input voltage Vis is 0 dBm level (0 dBm = 1 mW into 600 ).  
[2] Pin nE: square wave between VCC and GND, tr = tf = 6 ns.  
[3] Adjust input voltage Vis is 0 dBm level at Vos for 1 MHz (0 dBm = 1 mW into 50 ).  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
14 of 23  
 
 
 
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
V
CC  
2R  
L
10 µF  
nY/nZ  
nZ/nY  
V
V
os  
is  
f
= 1 kHz  
distortion  
meter  
in  
2R  
L
C
L
channel  
ON  
sine-wave  
GND  
001aad282  
Fig 12. Test circuit for measuring sine-wave distortion  
001aad276  
0
α
OFF(feedthru)  
(dB)  
20  
40  
60  
80  
V
CC  
2R  
L
0.1 µF  
nY/nZ  
nZ/nY  
V
V
os  
is  
2R  
C
L
dB  
L
channel  
OFF  
GND  
001aad283  
100  
2
3
4
5
6
10  
10  
10  
10  
10  
10  
f (kHz)  
VCC = 3.0 V; GND = 0 V; RL = 50 ;  
RSOURCE = 1 k.  
Fig 13. Test circuit for measuring switch OFF-state  
signal feed-through  
Fig 14. Switch OFF-state signal feed-through as a  
function of frequency  
V
V
V
CC  
CC  
CC  
2R  
L
2R  
L
2R  
L
0.1 µF  
R
L
nY/nZ  
nZ/nY  
nY/nZ  
nZ/nY  
V
V
os  
is  
2R  
L
C
L
R
L
2R  
L
C
L
dB  
channel  
ON  
channel  
OFF  
GND  
GND  
001aad314  
001aad278  
a. Channel on condition  
b. Channel off condition  
Fig 15. Test circuit for measuring crosstalk between switches  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
15 of 23  
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
V
V
CC  
nE  
CC  
V
CC  
GND  
2R  
L
2R  
L
nY/nZ  
nZ/nY  
DUT  
V
CT(pp)  
2R  
L
2R  
L
C
L
oscilloscope  
001aad281  
GND  
001aad279  
Fig 16. Test circuit for measuring crosstalk between  
enable and any switch  
Fig 17. Crosstalk definition (oscilloscope output)  
001aad277  
5
V
os  
(dB)  
V
CC  
2R  
L
0.1 µF  
nY/nZ  
nZ/nY  
V
V
os  
is  
0
sine-wave  
2R  
L
C
L
dB  
channel  
ON  
GND  
001aad280  
5  
2
3
4
5
6
10  
10  
10  
10  
10  
10  
f (kHz)  
VCC = 3.0 V; GND = 0 V; RL = 50 ;  
RSOURCE = 1 k.  
Fig 18. Test circuit for measuring minimum frequency  
response  
Fig 19. Frequency response  
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© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
16 of 23  
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
14. Package outline  
DIP14: plastic dual in-line package; 14 leads (300 mil)  
SOT27-1  
D
M
E
A
2
A
A
1
L
c
e
w M  
Z
b
1
(e )  
1
b
M
H
14  
8
pin 1 index  
E
1
7
0
5
10 mm  
scale  
DIMENSIONS (inch dimensions are derived from the original mm dimensions)  
(1)  
Z
A
A
A
2
(1)  
(1)  
1
UNIT  
mm  
b
b
c
D
E
e
e
L
M
M
H
w
1
1
E
max.  
min.  
max.  
max.  
1.73  
1.13  
0.53  
0.38  
0.36  
0.23  
19.50  
18.55  
6.48  
6.20  
3.60  
3.05  
8.25  
7.80  
10.0  
8.3  
4.2  
0.51  
3.2  
2.54  
0.1  
7.62  
0.3  
0.254  
0.01  
2.2  
0.068  
0.044  
0.021  
0.015  
0.014  
0.009  
0.77  
0.73  
0.26  
0.24  
0.14  
0.12  
0.32  
0.31  
0.39  
0.33  
inches  
0.17  
0.02  
0.13  
0.087  
Note  
1. Plastic or metal protrusions of 0.25 mm (0.01 inch) maximum per side are not included.  
REFERENCES  
OUTLINE  
EUROPEAN  
PROJECTION  
ISSUE DATE  
VERSION  
IEC  
JEDEC  
JEITA  
99-12-27  
03-02-13  
SOT27-1  
050G04  
MO-001  
SC-501-14  
Fig 20. Package outline SOT27-1 (DIP14)  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
17 of 23  
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
SO14: plastic small outline package; 14 leads; body width 3.9 mm  
SOT108-1  
D
E
A
X
c
y
H
v
M
A
E
Z
8
14  
Q
A
2
A
(A )  
3
A
1
pin 1 index  
θ
L
p
L
1
7
e
detail X  
w
M
b
p
0
2.5  
scale  
5 mm  
DIMENSIONS (inch dimensions are derived from the original mm dimensions)  
A
(1)  
(1)  
(1)  
UNIT  
A
A
A
b
c
D
E
e
H
L
L
p
Q
v
w
y
Z
θ
1
2
3
p
E
max.  
0.25  
0.10  
1.45  
1.25  
0.49  
0.36  
0.25  
0.19  
8.75  
8.55  
4.0  
3.8  
6.2  
5.8  
1.0  
0.4  
0.7  
0.6  
0.7  
0.3  
mm  
1.75  
1.27  
0.05  
1.05  
0.25  
0.01  
0.25  
0.1  
0.25  
0.01  
8o  
0o  
0.010 0.057  
0.004 0.049  
0.019 0.0100 0.35  
0.014 0.0075 0.34  
0.16  
0.15  
0.244  
0.228  
0.039 0.028  
0.016 0.024  
0.028  
0.012  
inches  
0.041  
0.01 0.004  
0.069  
Note  
1. Plastic or metal protrusions of 0.15 mm (0.006 inch) maximum per side are not included.  
REFERENCES  
OUTLINE  
EUROPEAN  
PROJECTION  
ISSUE DATE  
VERSION  
IEC  
JEDEC  
JEITA  
99-12-27  
03-02-19  
SOT108-1  
076E06  
MS-012  
Fig 21. Package outline SOT108-1 (SO14)  
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Product data sheet  
Rev. 03 — 4 July 2005  
18 of 23  
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
SSOP14: plastic shrink small outline package; 14 leads; body width 5.3 mm  
SOT337-1  
D
E
A
X
c
y
H
v
M
A
E
Z
8
14  
Q
A
2
A
(A )  
3
A
1
pin 1 index  
θ
L
p
L
7
1
detail X  
w
M
b
p
e
0
2.5  
5 mm  
scale  
DIMENSIONS (mm are the original dimensions)  
A
(1)  
(1)  
(1)  
UNIT  
A
A
A
b
c
D
E
e
H
L
L
Q
v
w
y
Z
θ
p
p
1
2
3
E
max.  
8o  
0o  
0.21  
0.05  
1.80  
1.65  
0.38  
0.25  
0.20  
0.09  
6.4  
6.0  
5.4  
5.2  
7.9  
7.6  
1.03  
0.63  
0.9  
0.7  
1.4  
0.9  
mm  
2
0.25  
0.65  
1.25  
0.2  
0.13  
0.1  
Note  
1. Plastic or metal protrusions of 0.25 mm maximum per side are not included.  
REFERENCES  
OUTLINE  
EUROPEAN  
PROJECTION  
ISSUE DATE  
VERSION  
IEC  
JEDEC  
JEITA  
99-12-27  
03-02-19  
SOT337-1  
MO-150  
Fig 22. Package outline SOT337-1 (SSOP14)  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
19 of 23  
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
TSSOP14: plastic thin shrink small outline package; 14 leads; body width 4.4 mm  
SOT402-1  
D
E
A
X
c
y
H
v
M
A
E
Z
8
14  
Q
(A )  
3
A
2
A
A
1
pin 1 index  
θ
L
p
L
1
7
detail X  
w
M
b
p
e
0
2.5  
5 mm  
scale  
DIMENSIONS (mm are the original dimensions)  
A
(1)  
(2)  
(1)  
UNIT  
A
A
A
b
c
D
E
e
H
L
L
Q
v
w
y
Z
θ
1
2
3
p
E
p
max.  
8o  
0o  
0.15  
0.05  
0.95  
0.80  
0.30  
0.19  
0.2  
0.1  
5.1  
4.9  
4.5  
4.3  
6.6  
6.2  
0.75  
0.50  
0.4  
0.3  
0.72  
0.38  
mm  
1.1  
0.65  
0.25  
1
0.2  
0.13  
0.1  
Notes  
1. Plastic or metal protrusions of 0.15 mm maximum per side are not included.  
2. Plastic interlead protrusions of 0.25 mm maximum per side are not included.  
REFERENCES  
OUTLINE  
EUROPEAN  
PROJECTION  
ISSUE DATE  
VERSION  
IEC  
JEDEC  
JEITA  
99-12-27  
03-02-18  
SOT402-1  
MO-153  
Fig 23. Package outline SOT402-1 (TSSOP14)  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
20 of 23  
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
15. Revision history  
Table 13: Revision history  
Document ID  
74LV4066_3  
Modifications:  
Release date Data sheet status  
20050704 Product data sheet  
Change notice Doc. number  
Supersedes  
-
9397 750 15209 74LV4066_2  
The format of this data sheet has been redesigned to comply with the new presentation and  
information standard of Philips Semiconductors.  
Table 2: corrected package names.  
74LV4066_2  
19980623  
Product specification  
-
9397 750 04659  
-
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
21 of 23  
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
16. Data sheet status  
Level Data sheet status[1] Product status[2] [3]  
Definition  
I
Objective data  
Development  
This data sheet contains data from the objective specification for product development. Philips  
Semiconductors reserves the right to change the specification in any manner without notice.  
II  
Preliminary data  
Qualification  
This data sheet contains data from the preliminary specification. Supplementary data will be published  
at a later date. Philips Semiconductors reserves the right to change the specification without notice, in  
order to improve the design and supply the best possible product.  
III  
Product data  
Production  
This data sheet contains data from the product specification. Philips Semiconductors reserves the  
right to make changes at any time in order to improve the design, manufacturing and supply. Relevant  
changes will be communicated via a Customer Product/Process Change Notification (CPCN).  
[1]  
[2]  
Please consult the most recently issued data sheet before initiating or completing a design.  
The product status of the device(s) described in this data sheet may have changed since this data sheet was published. The latest information is available on the Internet at  
URL http://www.semiconductors.philips.com.  
[3]  
For data sheets describing multiple type numbers, the highest-level product status determines the data sheet status.  
customers using or selling these products for use in such applications do so  
at their own risk and agree to fully indemnify Philips Semiconductors for any  
damages resulting from such application.  
17. Definitions  
Short-form specification The data in a short-form specification is  
extracted from a full data sheet with the same type number and title. For  
detailed information see the relevant data sheet or data handbook.  
Right to make changes — Philips Semiconductors reserves the right to  
make changes in the products - including circuits, standard cells, and/or  
software - described or contained herein in order to improve design and/or  
performance. When the product is in full production (status ‘Production’),  
relevant changes will be communicated via a Customer Product/Process  
Change Notification (CPCN). 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.  
Limiting values definition Limiting values given are in accordance with  
the Absolute Maximum Rating System (IEC 60134). Stress above one or  
more of the limiting values may cause permanent damage to the device.  
These are stress ratings only and operation of the device at these or at any  
other conditions above those given in the Characteristics sections of the  
specification is not implied. Exposure to limiting values for extended periods  
may affect device reliability.  
Application information Applications that are described herein for any  
of these products are for illustrative purposes only. Philips Semiconductors  
make no representation or warranty that such applications will be suitable for  
the specified use without further testing or modification.  
19. Trademarks  
Notice — All referenced brands, product names, service names and  
18. Disclaimers  
trademarks are the property of their respective owners.  
Life support — These products are not designed for use in life support  
appliances, devices, or systems where malfunction of these products can  
reasonably be expected to result in personal injury. Philips Semiconductors  
20. Contact information  
For additional information, please visit: http://www.semiconductors.philips.com  
For sales office addresses, send an email to: sales.addresses@www.semiconductors.philips.com  
9397 750 15209  
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.  
Product data sheet  
Rev. 03 — 4 July 2005  
22 of 23  
 
 
 
 
 
74LV4066  
Philips Semiconductors  
Quad bilateral switches  
21. Contents  
1
2
3
4
5
General description . . . . . . . . . . . . . . . . . . . . . . 1  
Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1  
Quick reference data . . . . . . . . . . . . . . . . . . . . . 2  
Ordering information. . . . . . . . . . . . . . . . . . . . . 2  
Functional diagram . . . . . . . . . . . . . . . . . . . . . . 3  
6
6.1  
6.2  
Pinning information. . . . . . . . . . . . . . . . . . . . . . 4  
Pinning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4  
Pin description . . . . . . . . . . . . . . . . . . . . . . . . . 4  
7
7.1  
8
Functional description . . . . . . . . . . . . . . . . . . . 4  
Function table . . . . . . . . . . . . . . . . . . . . . . . . . . 4  
Limiting values. . . . . . . . . . . . . . . . . . . . . . . . . . 5  
Recommended operating conditions. . . . . . . . 5  
Static characteristics. . . . . . . . . . . . . . . . . . . . . 6  
Dynamic characteristics . . . . . . . . . . . . . . . . . 10  
Waveforms . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12  
Additional dynamic characteristics . . . . . . . . 14  
Package outline . . . . . . . . . . . . . . . . . . . . . . . . 17  
Revision history. . . . . . . . . . . . . . . . . . . . . . . . 21  
Data sheet status . . . . . . . . . . . . . . . . . . . . . . . 22  
Definitions . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22  
Disclaimers. . . . . . . . . . . . . . . . . . . . . . . . . . . . 22  
Trademarks. . . . . . . . . . . . . . . . . . . . . . . . . . . . 22  
Contact information . . . . . . . . . . . . . . . . . . . . 22  
9
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
© Koninklijke Philips Electronics N.V. 2005  
All rights are reserved. Reproduction in whole or in part is prohibited without the prior  
written consent of the copyright owner. The information presented in this document does  
not form part of any quotation or contract, is believed to be accurate and reliable and may  
be changed without notice. No liability will be accepted by the publisher for any  
consequence of its use. Publication thereof does not convey nor imply any license under  
patent- or other industrial or intellectual property rights.  
Date of release: 4 July 2005  
Document number: 9397 750 15209  
Published in The Netherlands  

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