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SN75HVD1176DRG4 Datasheet(PDF) 3 Page - Texas Instruments

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Part # SN75HVD1176DRG4
Description  PROFIBUS RS-485 TRANSCEIVERS
Download  17 Pages
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

SN75HVD1176DRG4 Datasheet(HTML) 3 Page - Texas Instruments

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SN65HVD1176
SN75HVD1176
SLLS563C − JULY 2003 − REVISED APRIL 2005
www.ti.com
3
DRIVER ELECTRICAL CHARACTERISTICS
over recommended operating conditions (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP(1)
MAX
UNIT
VO
Open-circuit output voltage
A or B,
No load
0
VCC
V
RL = 54 Ω,
See Figure 1
2.1
2.9
VOD(SS)
Steady-state differential output voltage magnitude
With common-mode loading,
(VTEST from −7 V to 12 V)
See Figure 2
2.1
2.7
V
∆|VOD(SS)|
Change in steady-state differential output voltage
between logic states
See Figure 1 and Figure 6
−0.2
0
0.2
V
VOC(SS)
Steady-state common-mode output voltage
2
2.5
3
V
∆VOC(SS)
Change in steady-state common-mode output
voltage
See Figure 5
−0.2
0
0.2
V
VOC(PP)
Peak-to-peak common-mode output voltage
0.5
V
VOD(RING)
Differential output voltage over and under shoot
RL = 54 Ω, CL = 50 pF, See Figure 6
10% VOD(PP)
II
Input current
D, DE
−50
50
µA
IO(OFF)
Output current with power off
VCC < = 2.5 V
See receiver line input
IOZ
High impedance state output current
DE at 0 V
See receiver line input
current
IOS(P)
Peak short-circuit output current
VOS = −7 V to 12 V
−250
250
mA
IOS(SS)
Steady-state short-circuit output current
DE at VCC,
See Figure 8
VOS > 4 V,
Output driving low
60
90
135
mA
IOS(SS)
Steady-state short-circuit output current
See Figure 8
VOS < 1 V,
Output driving high
−135
−90
−60
mA
COD
Differential output capacitance
See receiver CI
(1) All typical values are at VCC = 5 V and 25°C.
DRIVER SWITCHING CHARACTERISTICS
over recommended operating conditions (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
tPLH
Propagation delay time low-level-to-high-level output
4
7
10
ns
tPHL
Propagation delay time high-level-to-low-level output
RL = 54 Ω, CL = 50 pF,
4
7
10
ns
tsk(p)
Pulse skew | tPLH – tPHL |
RL = 54 Ω, CL = 50 pF,
See Figure 3
0
2
ns
tr
Differential output rise time
See Figure 3
2
3
7.5
ns
tf
Differential output fall time
2
3
7.5
ns
tt(MLH), tt(MHL)
Output transition skew
See Figure 4
0.2
1
ns
tp(AZH), tp(BZH)
tp(AZL), tp(BZL)
Propagation delay time, high-impedance-to-active output
10
20
ns
tp(AHZ), tp(BHZ)
tp(ALZ), tp(BLZ)
Propagation delay time, active-to- high-impedance output
RE at 0 V
10
20
ns
|tp(AZL) − tp(BZH)|
|tp(AZH) − tp(BZL)|
Enable skew time
RL = 110 Ω,
CL = 50 pF,
See Figure 7a
RE at 0 V
0.55
1.5
ns
|tp(ALZ) − tp(BHZ)|
|tp(AHZ) − tp(BLZ)|
Disable skew time
L
See Figure 7a
and 7b
2.5
ns
tp(AZH), tp(BZH)
tp(AZL), tp(BZL)
Propagation delay time, high-impedance-to-active output
(from sleep mode)
RE at 5 V
1
4
µs
tp(AHZ), tp(BHZ)
tp(ALZ), tp(BLZ)
Propagation delay time, active-output-to high-impedance
(to sleep mode)
RE at 5 V
30
50
ns
t(CFB)
Time from application of short-circuit to current foldback
See Figure 8
0.5
µs
t(TSD)
Time from application of short-circuit to thermal shutdown
TA = 25°C, See Figure 8
100
µs
(1) All typical values are at VCC = 5 V and 25°C.


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