SN65HVD05, SN65HVD06, SN65HVD07
SN75HVD05, SN75HVD06, SN75HVD07
SLLS533B
–
MAY 2002
–
REVISED MAY 2003
www.ti.com
4
DRIVER SWITCHING CHARACTERISTICS NIL
over operating free-air temperature range unless otherwise noted
PARAMETER
TEST
CONDITIONS
MIN
TYP(1)
MAX
UNIT
HVD05
6.5
11
tPLH
Propagation delay time, low-to-high-level output
Pro agation delay time, low to high level out ut
HVD06
27
40
ns
HVD07
250
400
HVD05
6.5
11
tPHL
Propagation delay time, high-to-low-level output
Pro agation delay time, high to low level out ut
HVD06
27
40
ns
HVD07
250
400
HVD05
RL= 54
RL = 54
,
CL = 50 pF,
CL 50 F,
See Figure 4
2.7
3.6
6
tr
Differential output signal rise time
Differential out ut signal rise time
HVD06
18
28
55
ns
HVD07
150
300
450
HVD05
2.7
3.6
6
tf
Differential output signal fall time
Differential out ut signal fall time
HVD06
18
28
55
ns
HVD07
150
300
450
HVD05
2
tsk(p)
tsk( )
–
Pulse skew (|tPHL tPLH|)
HVD06
2.5
ns
HVD07
10
HVD05
3.5
tsk(pp)(2)
Part-to-part skew
Part to art skew
HVD06
14
ns
HVD07
100
HVD05
25
tPZH1
Propagation delay time, high-impedance-to-high-level output
Pro agation delay time, high im edance to high level out ut
HVD06
45
ns
HVD07
RE at 0 V,
RL = 110
,
See Figure 5
250
HVD05
25
tPHZ
Propagation delay time, high-level-to-high-impedance output
Pro agation delay time, high level to high im edance out ut
HVD06
60
ns
HVD07
250
HVD05
15
tPZL1
Propagation delay time, high-impedance-to-low-level output
Pro agation delay time, high im edance to low level out ut
HVD06
45
ns
HVD07
RE at 0 V,
RL = 110
,
See Figure 6
200
HVD05
14
tPLZ
Propagation delay time, ow-level-to-high-impedance output
Pro agation delay time, ow level to high im edance out ut
HVD06
90
ns
HVD07
550
tPZH2
Propagation delay time, standby-to-high-level output
RL = 110
,
RE at 3 V,
See Figure 5
6
μ
s
tPZL2
Propagation delay time, standby-to-low-level output
RL = 110
,
RE at 3 V,
See Figure 6
6
μ
s
(1)All typical values are at 25
°
C and with a 5-V supply.
(2)tsk(pp) is the magnitude of the difference n propagation delay times between any specified terminals of two devices when both devices operate
with the same supply voltages, at the same temperature, and have identical packages and test circuits.