参数资料
型号: ACPL-J313-300
元件分类: 光电耦合器
英文描述: 1 CHANNEL LOGIC OUTPUT OPTOCOUPLER
文件页数: 3/20页
文件大小: 449K
代理商: ACPL-J313-300
Figure 1. VOH vs. Temperature.
Notes:
1. Deratelinearlyabove70°Cfree-airtemperatureatarateof0.3mA/°C.
2. Maximumpulsewidth=10s,maximumdutycycle=0.2%.ThisvalueisintendedtoallowforcomponenttolerancesfordesignswithIOpeak
minimum=2.0A.SeeApplicationssectionforadditionaldetailsonlimitingIOHpeak.
3. Deratelinearlyabove70°Cfree-airtemperatureatarateof4.8mW/°C.
4. Deratelinearlyabove70°Cfree-airtemperatureatarateof5.4mW/°C.ThemaximumLEDjunctiontemperatureshouldnotexceed125°C.
5. Maximumpulsewidth=50s,maximumdutycycle=0.5%.
6. InthistestVOHismeasuredwithadcloadcurrent.WhendrivingcapacitiveloadsVOHwillapproachVCCasIOHapproacheszeroamps.
7. Maximumpulsewidth=1ms,maximumdutycycle=20%.
8. InaccordancewithUL1577,eachoptocouplerisprooftestedbyapplyinganinsulationtestvoltage 4500 V
4500 V
4500Vrmsfor1second(leakagedetection
currentlimit,II-O≤ 5 A).
≤ 5 A).
5A).
9. InaccordancewithUL1577,eachoptocouplerisprooftestedbyapplyinganinsulationtestvoltage 4500 V
4500 V
4500Vrmsfor1second(leakagedetection
currentlimit,II-O≤ 5 A).
≤ 5 A).
5A).
10.InaccordancewithUL1577,eachoptocouplerisprooftestedbyapplyinganinsulationtestvoltage 6000 V
6000 V
6000Vrmsfor1second(leakagedetection
currentlimit,II-O≤ 5 A).
≤ 5 A).
5A).
11.Deviceconsideredatwo-terminaldevice:pins1,2,3,and4shortedtogetherandpins5,6,7,and8shortedtogether.
12.ThedifferencebetweentPHLandtPLHbetweenanytwoACPL-3130,ACPL-J313orACNW3130partsunderthesametestcondition.
13.Pins1and4needtobeconnectedtoLEDcommon.
14.CommonmodetransientimmunityinthehighstateisthemaximumtolerabledVCM/dtofthecommonmodepulse,VCM,toassurethattheoutput
willremaininthehighstate(i.e.,VO>15.0V).
15.CommonmodetransientimmunityinalowstateisthemaximumtolerabledVCM/dtofthecommonmodepulse,VCM,toassurethattheoutput
willremaininalowstate(i.e.,VO<1.0V).
16.Thisloadconditionapproximatesthegateloadofa1200V/75AIGBT.
17.PulseWidthDistortion(PWD)isdefinedas|tPHL-tPLH|foranygivendevice.
Figure 3. VOH vs. IOH.
Figure 2. IOH vs. Temperature.
Figure 4. VOL vs. Temperature.
(V
OH
-V
CC
)-
HIGH
OUTPUT
VOLTAGE
DROP
-
V
-40
-4
TA - TEMPERATURE - °C
100
-1
-2
-20
0
2 0
40
-3
60
80
IF = 7 to 16 mA
IOUT = -100 mA
VCC = 15 to 30 V
VEE = 0 V
I OH
-OUTPUT
HIGH
CURRENT
-
A
-40
1.0
TA - TEMPERATURE - °C
100
1.8
1.6
-20
2.0
0
2 0
40
1.2
60
80
IF = 7 to 16 mA
VOUT = (V CC - 4 V)
VCC = 15 to 30 V
VEE = 0 V
1.4
(V
OH
-V
CC
)-
OUTPUT
HIGH
VOLTAGE
DROP
-
V
0
-6
IOH - OUTPUT HIGH CURRENT - A
2.5
-2
-3
0.5
-1
1.0
1.5
-5
2.0
IF = 7 to 16 mA
VCC = 15 to 30 V
VEE = 0 V
-4
100
°C
25
°C
-40
°C
V OL
-OUTPUT
LOW
VOLTAGE
-
V
-40
0
TA - TEMPERATURE - °C
-20
0.25
0
2 0
0.05
100
0.15
0.20
0.10
40
60
80
VF (OFF) = -3.0 TO 0.8 V
IOUT = 100 mA
VCC = 15 TO 30 V
VEE = 0 V
I OL
-OUTPUT
LOW
CURRENT
-
A
-40
0
TA - TEMPERATURE - °C
-20
4
0
2 0
1
100
2
3
40
60
80
VF (OFF) = -3.0 TO 0.8 V
VOUT = 2.5 V
VCC = 15 TO 30 V
VEE = 0 V
V OL
-OUTPUT
LOW
VOLTAGE
-
V
0
IOL - OUTPUT LOW CURRENT - A
2.5
3
0.5
4
1.0
1.5
1
2.0
VF(OFF) = -3.0 to 0.8 V
VCC = 15 to 30 V
VEE = 0 V
2
100 °C
25 °C
-40 °C
Figure 5. IOL vs. Temperature.
Figure 6. VOL vs. IOL.
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