參數(shù)資料
型號: HCPL-0302-060E
廠商: AGILENT TECHNOLOGIES INC
元件分類: 光電耦合器
英文描述: 1 CHANNEL LOGIC OUTPUT OPTOCOUPLER
封裝: SO-8
文件頁數(shù): 15/16頁
文件大?。?/td> 130K
代理商: HCPL-0302-060E
8
Package Characteristics
Parameter
Symbol
Min.
Typ.
Max.
Units
Test Conditions
Fig. Note
Input-Output Momentary
VISO
3750
Vrms
TA = 25°C, RH < 50%
8, 9
Withstand Voltage
Input-Output Resistance
RI-O
1012
VI-O = 500 V
9
Input-Output Capacitance
CI-O
0.6
pF
Freq = 1 MHz
Notes:
1. Derate linearly above 70°C free air temperature at a rate of 0.3 mA/°C.
2. Maximum pulse width = 10 s, maximum duty cycle = 0.2%. This value is intended to allow for component tolerances for designs with IO peak
minimum = 0.2 A. See Application section for additional details on limiting IOL peak.
3. Derate linearly above 85°C, free air temperature at the rate of 4.0 mW/°C.
4. Input power dissipation does not require derating.
5. Maximum pulse width = 50 s, maximum duty cycle = 0.5%.
6. In this test, VOH is measured with a DC load current. When driving capacitive load VOH will approach VCC as IOH approaches zero amps.
7. Maximum pulse width = 1 s, maximum duty cycle = 20%.
8. In accordance with UL 1577, each optocoupler is proof tested by applying an insulation test voltage >4500 Vrms for 1 second (leakage detection
current limit II-O < 5 A). This test is performed before 100% production test for partial discharge (method B) shown in the IEC/EN/DIN EN 60747-5-2
Insulation Characteristics Table, if applicable.
9. Device considered a two-terminal device: pins on input side shorted together and pins on output side shorted together.
10. PDD is the difference between tPHL and tPLH between any two parts or channels under the same test conditions.
11. Common mode transient immunity in the high state is the maximum tolerable |dVCM/dt| of the common mode pulse VCM to assure that the output
will remain in the high state (i.e. VO > 6.0 V).
12. Common mode transient immunity in a low state is the maximum tolerable |dVCM/dt| of the common mode pulse, VCM, to assure that the output will
remain in a low state (i.e. VO < 1.0 V).
13. This load condition approximates the gate load of a 1200 V/20 A IGBT.
14. The power supply current increases when operating frequency and Cg of the driven IGBT increases.
Figure 1. VOH vs. temperature.
Figure 2. VOH vs. IOH.
Figure 3. VOL vs. temperature.
(V
OH
-V
CC
)–
HIGH
OUTPUT
VOLTAGE
DROP
V
-50
-2.5
TA – TEMPERATURE – C
125
-25
0
25
75
100
50
-2.0
-1.5
-1.0
-0.5
0
IOH – OUTPUT HIGH CURRENT – A
0
0.2
0.4
-4
-3
-1
(V
OH
-V
CC
)–
OUTPUT
HIGH
VOLTAGE
DROP
V
-2
V
OL
OUTPUT
LOW
VOLTAGE
V
-50
0.39
TA – TEMPERATURE – C
125
-25
0.44
0
25
75
100
50
0.40
0.41
0.42
0.43
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