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AM26C31C Datasheet(PDF) 5 Page - Texas Instruments

Part No. AM26C31C
Description  QUADRUPLE DIFFERENTIAL LINE DRIVER
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Maker  TI [Texas Instruments]
Homepage  http://www.ti.com
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AM26C31
QUADRUPLE DIFFERENTIAL LINE DRIVER
SLLS103K − DECEMBER 1990 − REVISED SEPTEMBER 2004
5
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
electrical characteristics over recommended ranges of supply voltage and operating free-air
temperature (unless otherwise noted)
PARAMETER
TEST CONDITIONS
AM26C31C
AM26C31I
UNIT
PARAMETER
TEST CONDITIONS
MIN
TYP†
MAX
UNIT
VOH
High-level output voltage
IO = −20 mA
2.4
3.4
V
VOL
Low-level output voltage
IO = 20 mA
0.2
0.4
V
|VOD|
Differential output voltage magnitude
RL = 100 Ω,
See Figure 1
2
3.1
V
∆|VOD|
Change in magnitude of differential output voltage‡
RL = 100 Ω,
See Figure 1
±0.4
V
VOC
Common-mode output voltage
RL = 100 Ω,
See Figure 1
3
V
∆|VOC|
Change in magnitude of common-mode output voltage‡
RL = 100 Ω,
See Figure 1
±0.4
V
II
Input current
VI = VCC or GND
±1
µA
IO(off)
Driver output current with power off
VCC = 0
VO = 6 V
100
A
IO(off)
Driver output current with power off
VCC = 0
VO = −0.25 V
−100
µA
IOS
Driver output short-circuit current
VO = 0
−30
−150
mA
IOZ
High-impedance off-state output current
VO = 2.5 V
20
A
IOZ
High-impedance off-state output current
VO = 0.5 V
−20
µA
VI = 0 V or 5 V
100
µA
ICC
Quiescent supply current
IO = 0
VI = 2.4 V
or 0.5 V,
1.5
3
mA
ICC
Quiescent supply current
IO = 0
I
or 0.5 V,
See Note 4
1.5
3
mA
Ci
Input capacitance
6
pF
† All typical values are at VCC = 5 V and TA = 25°C.
‡ ∆|VOD| and ∆|VOC| are the changes in magnitude of VOD and VOC, respectively, that occur when the input is changed from a high level to a low
level.
NOTE 4: This parameter is measured per input. All other inputs are at 0 or 5 V.
switching characteristics over recommended ranges of supply voltage and operating free-air
temperature (unless otherwise noted)
PARAMETER
TEST CONDITIONS
AM26C31C
AM26C31I
UNIT
PARAMETER
TEST CONDITIONS
MIN
TYP†
MAX
UNIT
tPLH
Propagation delay time, low- to high-level output
S1 is open,
See Figure 2
3
7
12
ns
tPHL
Propagation delay time, high- to low-level output
S1 is open,
See Figure 2
3
7
12
ns
tsk(p)
Pulse skew time (|tPLH − tPHL|)
S1 is open,
See Figure 2
0.5
4
ns
tr(OD), tf(OD) Differential output rise and fall times
S1 is open,
See Figure 3
5
10
ns
tPZH
Output enable time to high level
S1 is closed,
See Figure 4
10
19
ns
tPZL
Output enable time to low level
S1 is closed,
See Figure 4
10
19
ns
tPHZ
Output disable time from high level
S1 is closed,
See Figure 4
7
16
ns
tPLZ
Output disable time from low level
S1 is closed,
See Figure 4
7
16
ns
Cpd
Power dissipation capacitance (each driver)
(see Note 5)
S1 is open,
See Figure 2
170
pF
† All typical values are at VCC = 5 V and TA = 25°C.
NOTE 5: Cpd is used to estimate the switching losses according to PD = Cpd × VCC2 × f, where f is the switching frequency.




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