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Part No. : LTV-3120 series (REV. 1, APR 15,2011 ) Page 10 of 18
Electrical Specifications
Parameters Test Condition Symbol Min Typ Max Units Figure
Input
Input Forward
Voltage
I
F
= 10mA V
F
1.2 1.37 1.8 V 15
Input Forward
Voltage Temperature
Coefficient
I
F
= 10mA ǻV
F
/ ǻT -1.237 mV/
O
C
Input Reverse
Voltage
I
R
= 10ȝA BV
R
5 V
Input Threshold
Current (Low to High)
V
O
> 5V, I
O
= 0A I
FLH
2.89 5 mA 9,16,21
Input Threshold
Voltage (High to Low)
V
O
< 5V, I
O
= 0A V
FHL
0.8 V
Input Capacitance f = 1 MHz, V
F
= 0 V C
IN
33 pF
Output
Output Open,
High Level Supply
Current
I
F
= 7 to 16 mA
I
CCH
1 3.0 mA 7,8
Output Open,
Low Level Supply
Current
V
F
= -3 to +0.8 V
I
CCL
1 3.0 mA 7,8
High level output
current
(1)
V
O
= (V
CC
- 6 V) I
OH
-2.0 A 2,3,19
Low level output
current
(1)
V
O
= (V
EE
+ 6 V) I
OL
2.0 A 5,6,20
High level output
voltage
I
F
= 10mA,
I
O
= -100mA
V
OH
V
CC -
0.25
V
CC -
0.1
V 1,3,17
Low level output
voltage
I
F
= 0mA, I
O
= 100mA V
OL
V
EE +
0.1
V
EE +
0.25
V 4,6,18
V
O
> 5V, I
F
= 10 mA V
UVLO+
11.5 13.5 V
UVLO Threshold
V
O
< 5V, I
F
= 10 mA V
UVLO-
10 11.5 12 V
UVLO Hysteresis UVLO
HYS
1.6 V
22
Specified over recommended operating conditions.
All Typical values at TA = 25°C and V
CC
= 30 V, unless otherwise specified.
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Part No. : LTV-3120 series (REV. 1, APR 15,2011 ) Page 11 of 18
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Switching Specifications
Parameter Test Condition Symbol Min Typ Max Units Figure
Propagation Delay Time
to High Output Level
T
PLH
0.1 0.28 0.5 ȝs
Propagation Delay Time
to Low Output Level
T
PHL
0.1 0.31 0.5 ȝs
Pulse Width Distortion
(7)
PWD 0.1 ȝs
Propagation delay
difference between any
two parts or channels
(4)
PDD -0.30 0.30 ȝs
10,11,
12,13,
14,23
Output Rise Time (10 to
90%)
Tr 0.1 ȝs
Output Fall Time (90 to
10%)
I
F
= 7 to 16 mA,
Rg = 10 ȍ,
Cg = 10 nF,
f = 10 kHz,
Duty Cycle = 50%
Tf 0.1 ȝs
23
UVLO turn on delay
I
F
= 10 mA,
V
O
> 5 V
T
UVLO ON
1.5 ȝs
UVLO turn off delay
I
F
= 10 mA,
V
O
< 5 V
T
UVLO OFF
0.2 ȝs
Common mode transient
immunity at high level
output
(5)
I
F
= 10 to 16 mA,
V
CM
= 1500 V,
TA = 25°C,
V
CC
= 30 V
CMH 25 35 kV/ȝs
Common mode transient
immunity at low level
output
(6)
V
F
= 0 V,
V
CM
= 1500 V,
TA = 25°C,
V
CC
= 30 V
CML 25 35 kV/ȝs
24
Specified over recommended operating conditions.
All Typical values at TA = 25°C and V
CC
= 30 V, unless otherwise specified.
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Part No. : LTV-3120 series (REV. 1, APR 15,2011 ) Page 12 of 18
Isolation Characteristics
Parameter Test Condition Symbol Min Typ Max Units
Withstand Insulation
Test Voltage
(2) (3)
RH 40-60%,
t = 1min, T
A
= 25
o
C
V
ISO
5000 V
Input-Output
Resistance
(2)
V
I-O
= 500V DC R
I-O
10
12
ȍ
Input-Output
Capacitance
(2)
f = 1MHz, T
A
= 25
o
C C
I-O
0.92 pF
Notes:
1) Maximum pulse width = 10us, maximum duty cycle = 0.2%.
2) Device is considered a two terminal device: pins 1, 2, 3 and 4 are shorted together and pins 5, 6, 7
and 8 are shorted together.
3) According to UL1577, each optocoupler is tested by applying an insulation test voltage 6000
Vrms for 1 second (leakage detection current limit, I
I-O
6 uA).
4) The difference between T
PHL
and T
PLH
between any two LTV-3120 parts under same test
conditions.
5) Common mode transient immunity in high stage is the maximum tolerable negative dVcm/dt on
the trailing edge of the common mode impulse signal, Vcm, to assure that the output will remain
high.
6) Common mode transient immunity in low stage is the maximum tolerable positive dVcm/dt on the
leading edge of the common mode impulse signal, Vcm, to assure that the output will remain low.
7) Pulse Width Distortion is defined as |T
PHL
- T
PLH
| for any given device.

LTV-3120S

Mfr. #:
Manufacturer:
Lite-On
Description:
Logic Output Optocouplers Optocoupler 2.5AIGBT Gate Drive
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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