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SM65MLVD080DGGR Datenblatt(PDF) 4 Page - Texas Instruments

Teilenummer SM65MLVD080DGGR
Bauteilbeschribung  8 CHANNEL HALF DUPLEX M LVDS LINE TRANSCEIVERS
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Hersteller  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

SM65MLVD080DGGR Datenblatt(HTML) 4 Page - Texas Instruments

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SN65MLVD080
SN65MLVD082
SLLS581A − SEPTEMBER 2003 − REVISED SEPTEMBER 2003
www.ti.com
4
RECEIVER ELECTRICAL CHARACTERISTICS
over recommended operating conditions unless otherwise noted(1)
PARAMETER
TEST CONDITIONS
MIN
TYP(1)
MAX
UNIT
VIT+
Positive-going differential input voltage
Type 1
50
mV
VIT+
Positive-going differential input voltage
threshold (A, B)
Type 2
150
mV
VIT−
Negative-going differential input voltage
Type 1
See Figure 9 and Table 1 and
−50
mV
VIT−
Negative-going differential input voltage
threshold (A, B)
Type 2
See Figure 9 and Table 1 and
Table 2
50
mV
VHYS
Differential input voltage hysteresis,
Type 1
Table 2
25
mV
VHYS
Differential input voltage hysteresis,
(VIT+ − VIT) (A, B)
Type 2
0
mV
VOH
High-level output voltage (R)
IOH = −8 mA
2.4
V
VOL
Low-level output voltage (R)
IOL = 8 mA
0.4
V
IIH
High-level input current (RE)
VIH = 2 V to VCC
−10
µA
IIL
Low-level input current (RE)
VIL = GND to 0.8 V
−10
µA
IOZ
High-impedance output current (R)
VO = 0 V or VCC
−10
15
µA
(1) All typical values are at 25°C and with a 3.3-V supply voltage.
BUS INPUT AND OUTPUT ELECTRICAL CHARACTERISTICS
over recommended operating conditions unless otherwise noted
PARAMETER
TEST CONDITIONS
MIN
TYP(1)
MAX
UNIT
Receiver or transceiver with driver
VA = 3.8 V,
VB = 1.2 V,
0
32
IA
Receiver or transceiver with driver
disabled input current
VA = 0 V or 2.4 V,
VB = 1.2 V
−20
20
µA
IA
disabled input current
VA = −1.4 V,
VB = 1.2 V
−32
0
µA
Receiver or transceiver with driver
VB = 3.8 V,
VA = 1.2 V
0
32
IB
Receiver or transceiver with driver
disabled input current
VB = 0 V or 2.4 V,
VA = 1.2 V
−20
20
µA
IB
disabled input current
VB = −1.4 V,
VA = 1.2 V
−32
0
µA
IAB
Receiver or transceiver with driver
disabled differential input current
(IA − IB)
VA = VB,
−1.4
≤ VA ≤ 3.8 V
−4
4
µA
Receiver or transceiver power-off input
VA = 3.8 V,
VB = 1.2 V, 0 V ≤ VCC ≤ 1.5 V
0
32
IA(OFF)
Receiver or transceiver power-off input
current
VA = 0 V or 2.4 V,
VB = 1.2 V, 0 V ≤ VCC ≤ 1.5 V
−20
20
µA
IA(OFF)
current
VA = −1.4 V,
VB= 1.2 V,
0 V
≤ VCC ≤ 1.5 V
−32
0
µA
Receiver or transceiver power-off input
VB = 3.8 V,
VA = 1.2 V, 0 V ≤ VCC ≤ 1.5 V
0
32
IB(OFF)
Receiver or transceiver power-off input
current
VB = 0 V or 2.4 V,
VA = 1.2 V, 0 V ≤ VCC ≤ 1.5 V
−20
20
µA
IB(OFF)
current
VB = −1.4 V,
VA = 1.2 V, 0 V ≤ VCC ≤ 1.5 V
−32
0
µA
IAB(OFF)
Receiver input or transceiver
power-off differential input current
(IA(off) − IB(off))
VA = VB, 0 V ≤ VCC ≤ 1.5 V, −1.4 ≤ VA ≤ 3.8 V
−4
4
µA
CA
Transceiver with driver disabled input
capacitance
VA = 0.4 sin (30E6πt) + 0.5V(2), VB =1.2 V
5
pF
CB
Transceiver with driver disabled input
capacitance
VB = 0.4 sin (30E6πt) + 0.5V(2), VA =1.2 V
5
pF
CAB
Transceiver with driver disabled
differential input capacitance
VAB = 0.4 sin (30E6πt)V (2)
3
pF
CA/B
Transceiver with driver disabled input
capacitance balance, (CA/CB)
0.99
1.01
(1) All typical values are at 25°C and with a 3.3-V supply voltage.
(2) HP4194A impedance analyzer (or equivalent)


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