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5962-9685201HYC データシートの表示(PDF) - Broadcom Corporation

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5962-9685201HYC Datasheet PDF : 16 Pages
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HCPL-5300, HCPL-5301, HCPL-530K, 5962-96852
Data Sheet
Electrical Specifications
Electrical Specifications
Over recommended operating conditions (TA = –55°C to +125°C, VCC = +4.5V to 30V, IF(ON) = 10 mA to 20 mA, VF(OFF) = –5V to 0.8V)
unless otherwise specified.
Parameter
Symbol
Group A
Subgroupsa
Min
Typb
Max
Unit Test Conditions Fig Note
Current Transfer Ratio
Low Level Output Current
Low Level Output Voltage
Input Threshold Current
High Level Output Current
High Level Supply Current
Low Level Supply Current
Input Forward Voltage
Temperature Coefficient of
Forward Voltage
Input Reverse Breakdown
Voltage
Input Capacitance
Input-Output Insulation
Leakage Current
CTR
IOL
VOL
ITH
IOH
ICCH
ICCL
VF
ΔVF/ΔTA
BVR
CIN
II-O
1, 2, 3
1, 2, 3
1, 2, 3
1, 2, 3
1, 2, 3
1, 2, 3
1, 2, 3
1, 2, 3
1, 2, 3
1
Resistance (Input-Output)
RI-O
Capacitance (Input-Output)
CI-O
Internal Pull-up Resistor
RL
1
Internal Pull-up Resistor
Temperature Coefficient
ΔRL/ΔTA
30
90
%
IF = 10 mA,
c
VO = 0.6V
3.0
9.0
mA
IF = 10 mA,
1, 2
VO = 0.6V
0.3
0.6
V
IO = 2.4 mA
1.5
5.0
mA
VO = 0.8V,
1
d
IO = 0.75 mA
5
75
μA
VF = 0.8V
3
0.6
1.5
mA
VF = 0.8V,
d
VO = Open
0.6
1.5
mA
IF = 10 mA,
d
VO = Open
1.0
1.5
1.8
V
IF = 10 mA
4
–1.6
mV/°C
IF = 10 mA
5
V
IR = 100 μA
90
pF
f = 1 MHz,
VF = 0V
1.0
μA
RH ≤ 65%,
e
t = 5 sec,
VI-O = 1500 Vdc,
TA = 25°C
1012
Ω
VI-O = 500 Vdc
e
2.4
pF
f = 1 MHz
e
14
20
28
TA = 25°C
f, g, h
0.014
kΩ/°C
a. Commercial parts receive 100% testing at 25°C (Subgroups 1 and 9). SMD, Class H and K parts receive 100% testing at 25°C, +125°C, and –55°C (Subgroups 1
and 9, 2 and 10, 3 and 11 respectively).
b. All typical values at 25°C, VCC = 15V.
c. Current Transfer Ratio in percent is defined as the ratio of output collector current (IO) to the forward LED input current (IF) times 100.
d. Use of a 0.1 μF bypass capacitor connected between pins 5 and 8 can improve performance by filtering power supply line noise.
e. Device considered a two-terminal device: Pins 1, 2, 3, and 4 shorted together and Pins 5, 6, 7, and 8 shorted together.
f. The internal 20 kΩ resistor can be used by shorting pins 6 and 7 together.
g. Due to the tolerance of the internal resistor, and since propagation delay is dependent on the load resistor value, performance can be improved by using an
external 20 kΩ 1% load resistor. For more information on how propagation delay varies with load resistance, see Figure 8.
h. The RL = 20 kΩ, CL = 100 pF represents a typical IPM (Intelligent Power Module) load.
Broadcom
-5-

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