ACPL-K370-060E Avago Technologies US Inc., ACPL-K370-060E Datasheet - Page 6

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ACPL-K370-060E

Manufacturer Part Number
ACPL-K370-060E
Description
Isolated Volt/Curr Det,IEC+LF
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of ACPL-K370-060E

Voltage - Isolation
5000Vrms
Number Of Channels
1, Unidirectional
Current - Output / Channel
30mA
Propagation Delay High - Low @ If
3.7µs
Input Type
Logic
Output Type
Open Collector
Mounting Type
Surface Mount
Package / Case
8-SOIC (0.268", 6.81mm Width)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Table 6. Electrical Specifications
Unless otherwise noted, T
Notes:
1. All typical values are at T
2. AC voltage is instantaneous voltage.
3. A logic “Low” output level at pin 6 occurs under the conditions of V
4. A logic “High” output level at pin 6 occurs under the conditions of V
6
Parameter
Upper Threshold
Voltage, DC Input
(Pins 2, 3)
Lower Threshold
Voltage, DC Input
(Pins 2, 3)
Upper Threshold
Voltage, AC Input
(Pins 1, 4)
Lower Threshold
Voltage, AC Input
(Pins 1, 4)
Upper Threshold
Current
Upper Threshold
Current
Lower Threshold
Current
Lower Threshold
Current
Current Hysteresis
Voltage Hysteresis
Input Clamp Voltage
Input Current
Input Current
Bridge Diode
Forward Voltage
Logic Low Output
Voltage
Logic High Output
Current
Logic Low Supply
Current
Logic High Supply
Current
Input Capacitance
A
= 25°C unless otherwise stated.
Sym.
V
V
V
V
I
I
I
I
I
V
V
V
V
V
I
I
V
V
V
I
I
I
C
TH+
TH+
TH–
TH–
HYS
IN
IN
OH
CCL
CCH
HYS
IHC1
IHC2
IHC3
ILC
D1,2
D3,4
OL
TH+
TH–
TH+
TH–
IN
A
= –40°C to +105°C and V
Device
ACPL-K370 2.26
ACPL-K376 1.03
ACPL-K370 1.09
ACPL-K376 0.48
ACPL-K370
ACPL-K376
ACPL-K370 3.2
ACPL-K376 1.5
ACPL-K370
ACPL-K376
ACPL-K370
ACPL-K376
ACPL-K370
ACPL-K376
Min
3.6
(–5%)
3.35
2.45
(–5%)
2.01
4.7
(–6%)
4.23
3.57
(–6%)
2.87
1.96
0.87
1
0.43
5.4
6.1
CC
Typ
3.8
2.59
5
3.8
2.77
1.32
1.44
0.68
1.2
0.6
1.2
6.1
6.8
12.5
–0.76
3.9
1.9
0.59
0.47
0.78
0.73
0.05
0.9
0.5
0.002
50
= 3 V to 5.5 V.
[1]
IN
IN
≤ V
≥ V
TH–
TH+
Max
4
(+5%)
4.05
2.72
(+5%)
2.96
5.3
(+6%)
5.5
4.03
(+6%)
4.42
2.99
3.11
1.46
1.56
1.59
1.62
0.77
0.8
6.8
7.4
13.4
4.4
2.2
0.4
100
4
3
4
as well as the range of V
as well as the range of V
Units Test Conditions/Notes
V
V
V
V
V
V
V
V
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
V
V
V
V
V
mA
mA
V
V
V
V
V
PA
mA
mA
PA
pF
T
AC1 and AC2 open
T
AC1 and AC2 open
T
DC+ and DC– open; Note 2
V
T
DC+ and DC– open
V
T
T
T
T
I
V
V
AC1 & AC2 connected to DC–
V
DC+ and DC– open
V
AC1 & AC2 open
V
V
V
I
I
I
I
V
V
V
V
f = 1 MHz, V
V
V
HYS
IN
IN
IN
IN
A
A
A
A
A
A
A
A
IN
IN
HYS
IHC1
IHC2
IHC3
ILC
DC+
DC+
CC
OH
DC+
CC
IN
IN
= 25°C, V
= 25°C, V
= 25°C, V
= 25°C, V
= 25°C
= 25°C
= 25°C
= 25°C
= 3 mA
= 1.5 mA
= 3 mA
= 1.5 mA
= V
= V
= V
= V
= 4.5 V, I
= 18 V, V
= I
= V
= V
= V
– V
– V
– V
= V
= |V
= V
IN
AC1
AC1
TH+
DC+
DC+
IN
DC+
CC
TH+
DC–
DC–
DC–
< V
DC+
DC+
> V
AC1
= 18 V; Note 4
– V
– V
– I
– V
– V
TH+
IN
IN
IN
– V
IN
IN
OL
TH–
– V
= 5 V, AC1 and AC2 open
= 5 V, AC1 and AC2 open
= 5 V, V
O
TH–
– V
– V
AC2
AC2
– V
= V
= V
= V
= 0 V
open
DC–
= V
DC–
DC–
once V
= 4.2 mA; Note 3
TH–
once V
DC–
DC–
AC2
, DC+ and DC– open
, DC+ and DC– open
AC1
AC1
DC+
; AC1 and AC2 open
DC+
; AC1 and AC2 open
, I
, I
|, |I
, I
O
IN
IN
– V
– V
IN
IN
– V
open
IN
– V
= –10 mA
IN
has decreased below V
= 10 mA,
= 15 mA,
has exceeded V
AC2
AC2
| = 10 mA,
DC–
DC–
,
,
;
;
TH+
.
Fig.
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5, 6
5
5
4
4
4
8
8
8
9
7
TH–
.

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