Nxp Semiconductors CBT3126 User Manual

Page of 15
CBT3126_2
© NXP B.V. 2008. All rights reserved.
Product data sheet
Rev. 02 — 23 October 2008
4 of 15
NXP Semiconductors
CBT3126
Quad FET bus switch
7.
Limiting values
[1]
The input and output negative voltage ratings may be exceeded if the input and output clamp current ratings are observed.
[2]
The package thermal impedance is calculated from JESD51-7.
[3]
For SO14 package; P
tot
 derates linearly with 8 mW/K above 70
°
C.
[4]
For SSOP14, SSOP16 and TSSOP14 packages; P
tot
 derates linearly with 5.5 mW/K above 70
°
C.
8.
Recommended operating conditions
9.
Static characteristics
Table 4.
Limiting values
In accordance with the Absolute Maximum Rating System (IEC 60134).
Symbol Parameter
Conditions
Min
Max
Unit
V
CC
supply voltage
0.5
+7.0
V
V
I
input voltage
0.5
+7.0
V
I
CC
supply current
continuous current through each V
CC
 or GND pin
-
128
mA
I
IK
input clamping current
V
I
< 0 V
50
-
mA
T
stg
storage temperature
65
+150
°
C
P
tot
total power dissipation
T
amb
 =
40
°
C to +125
°
C
SO14 package
-
500
mW
SSOP14 and SSOP16 package
-
500
mW
TSSOP14 package
-
500
mW
Table 5.
Operating conditions
All unused control inputs of the device must be held at V
CC
 or GND to ensure proper device operation.
Symbol
Parameter
Conditions
Min
Max
Unit
V
CC
supply voltage
4.5
5.5
V
V
IH
HIGH-level input voltage
2.0
-
V
V
IL
LOW-level input voltage
-
0.8
V
T
amb
ambient temperature
operating in free-air
40
+85
°
C
Table 6.
Static characteristics
T
amb
=
40
°
C to +85
°
C.
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
V
IK
input clamping voltage
V
CC
= 4.5 V; I
I
=
18 mA
-
-
1.2
V
V
pass
pass voltage
V
I
= V
CC
= 5.0 V; I
O
=
100
µ
A
-
3.8
-
V
I
I
input leakage current
V
CC
= 5.5 V; V
I
= GND or 5.5 V
-
-
±
1
µ
A
I
CC
supply current
V
CC
= 5.5 V; I
O
= 0 mA;
V
I
= V
CC
or GND
-
-
3
µ
A
I
CC
additional supply current
control pins; per input;
V
CC
= 5.5 V; one input at 3.4 V,
other inputs at V
CC
 or GND
-
-
2.5
mA
C
I
input capacitance
control pins; V
I
= 3 V or 0 V
-
1.7
-
pF
C
io(off)
off-state input/output capacitance
V
O
= 3 V  or  0 V; OE = V
CC
-
3.4
-
pF