IC-DL IC-Haus, IC-DL Datasheet - Page 4

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IC-DL

Manufacturer Part Number
IC-DL
Description
3-CHANNEL DIFFERENTIAL LINE DRIVER
Manufacturer
IC-Haus
Datasheet
Item
No.
ELECTRICAL CHARACTERISTICS
Operating Conditions: VB1...3 = 4.5...32 V, VCC = 4...5.5 V, Tj = -40...140 °C, unless otherwise noted
input level lo = 0...0.45 V, hi = 2.4 V...VCC, timing diagram see fig. 1
General (x=1..6)
Driver Outputs A1...6, Low-Side-action (x = 1...6)
Driver Outputs A1...6, High-Side-action (x = 1...6)
Inputs E1...6, DIFF, ENA, TNER
Supply Voltage Control VB
iC-DL
3-CHANNEL DIFFERENTIAL LINE DRIVER
001
002
003
004
005
006
007
008
009
010
011
012
013
101
102
103
104
105
106
107
201
202
203
204
205
206
207
601
602
603
604
605
701
702
Symbol
VBx
I(VBx)
I(VBx)
I(VBx)
I(VBx)
IO(Ax)
VCC
I(VCC)
I(VCC)
Vc()lo
Vc()hi
Vc()hi
I(VBx)
Vs(Ax)lo
Vs(Ax)lo
Isc(Ax)lo
Isc(Ax)lo
Rout(Ax)
SR(Ax)lo
Vc(Ax)lo
Vs(Ax)hi
Vs(Ax)hi
Isc(Ax)hi
Isc(Ax)hi
Rout(Ax)
SR(Ax)hi
Vc(Ax)hi
Vt()hi
Vt()lo
Vt()hys
Ipd()
Ipd()
VBon
VBoff
Parameter
Supply Voltage Range (Driver)
Supply Current in VB1...3
Supply Current in VB1...3
Supply Current in VB1,
Outputs A1...2 Tri-State
Supply Current in VB2...3, Out-
puts A3...6 Tri-State
Output Leakage Current
Supply Voltage Range (Logic)
Supply Current in VCC
Supply Current in VCC
Clamp Voltage low at pins
VB1...3, A1...6, E1...6, DIFF,
ENA TNER, NER, VCC
Clamp Voltage high at Vcc
Clamp Voltage high at pins
VB1...3, A1...6, E1...6, DIFF,
ENA TNER, NER
Supply Current in VB1...3
Saturation Voltage low
Saturation Voltage low
Short circuit current low
Short circuit current low
Output resistance
Slew Rate low
Free Wheel Clamp Voltage low
Saturation Voltage high
Saturation Voltage high
Short circuit current high
Short circuit current high
Output resistance
Slew Rate high
Free Wheel Clamp Voltage high
Threshold Voltage high
Threshold Voltage low
Input Hysteresis
Pull-Down-Current
Pull-Down-Current
Threshold Value at VB1 for Un-
dervoltage Detection on
(NER
Threshold Value at VB1 for Un-
dervoltage Detection off
(NER
low)
high)
Conditions
Ax = lo
Ax = hi
ENA = lo,
V(A1...2) = -0.3...(VB + 0.3 V)
ENA = lo,
V(A3...6) = -0.3...(VB + 0.3 V)
ENA = lo, V(Ax) = 0 ... VB
ENA = hi, Ax = lo
ENA = hi, Ax = hi
I() = -10 mA, all other pins open
I() = 10 mA
I()
ENA = hi, f(E1...6) = 1 MHz
I(Ax) = 10 mA, Ax = low
I(Ax) = 30 mA, Ax = low
V(Ax) = 1.5 V
V(Ax) = VB, Ax = low
VB = 10...40 V, V(Ax) = 0.5 * VB
VB = 40 V, Cl(Ax) = 100 pF
I(Ax) = -100 mA
Vs(Ax)hi = VB - V(Ax),
I(Ax) = -10 mA
Vs(Ax)hi = VB - V(Ax),
I(Ax) = -30 mA, Ax = hi
V(Ax) = VB - 1.5 V, Ax = hi
V(Ax) = 0 V, Ax = hi
VB = 10...40 V, V(Ax) =0.5 * VB
VB= 40 V, Cl(Ax) = 100 pF
I(Ax) = 100 mA,
VB = VCC = GND
Vt()hys = Vt()hi - Vt()lo
V() = 0.8 V
V()
0.75 V
0.75 V
VB1 - VB2 & VB2 - VB3 & VB1 - VB3 <
VB1 - VB2 & VB2 - VB3 & VB1 - VB3 <
2 mA, all other pins open
40 V
Min.
-800
-1.2
200
-1.3
200
200
-20
5.6
-90
0.5
0.8
40
40
40
40
10
4
4
3
Typ.
600
400
400
1.5
-60
60
75
75
5
3
Rev B1, Page 4/9
Max.
3.95
-0.4
800
100
-0.5
100
800
160
1.5
1.2
5.5
0.2
0.4
0.2
0.4
-40
1.3
32
20
10
64
10
90
80
3
1
5
7
2
Unit
V/µs
V/µs
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mV
µA
µA
µA
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V

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