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PDF HCPL-0466 Data sheet ( Hoja de datos )

Número de pieza HCPL-0466
Descripción Intelligent Power Module and Gate Drive Interface Optocouplers
Fabricantes Agilent(Hewlett-Packard) 
Logotipo Agilent(Hewlett-Packard) Logotipo



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H
Intelligent Power Module and
Gate Drive Interface Optocouplers
Technical Data
HCPL-4506
HCPL-0466
HCNW4506
Features
Applications
• Performance Specified for
• IPM Isolation
Common IPM Applications
over Industrial Temperature
Range: -40°C to 100°C
• Fast Maximum Propagation
Delays
tPHL = 400 ns
tPLH = 550 ns
• Minimized Pulse Width
• Isolated IGBT/MOSFET Gate
Drive
• AC and Brushless DC Motor
Drives
• Industrial Inverters
Description
Distortion (PWD = 450 ns)
The HCPL-4506 and HCPL-0466
• 15 kV/µs Minimum Common contain a GaAsP LED while the
Mode Transient Immunity at HCNW4506 contains an AlGaAs
VCM = 1500 V
• CTR > 44% at IF = 10 mA
• Safety Approval
LED. The LED is optically
coupled to an integrated high gain
photo detector. Minimized propa-
UL Recognized - 2500 V rms
for 1 minute (5000 V rms for Functional Diagram
1 minute for HCNW4506 and
HCPL-4506 Option 020) per
UL1577
NC 1
8 VCC
CSA Approved
20 k
VDE 0884 Approved
ANODE 2
7 VL
-VIORM = 630 V peak for
HCPL-4506 Option 060
-VIORM = 1414 V peak for
HCNW4506
BSI Certified (HCNW4506)
CATHODE 3
NC 4
SHIELD
6 VO
5 GND
gation delay difference between
devices make these optocouplers
excellent solutions for improving
inverter efficiency through
reduced switching dead time.
An on chip 20 koutput pull-up
resistor can be enabled by short-
ing output pins 6 and 7, thus
eliminating the need for an
external pull-up resistor in
common IPM applications. Speci-
fications and performance plots
are given for typical IPM
applications.
Truth Table
LED
ON
OFF
VO
L
H
Selection Guide
Operating Temperature
TA [°C]
Min.
-40
-55
Max.
100
125
8-Pin DIP
(300 Mil)
HCPL-4506
Single Channel Packages
Small Outline
SO-8
Widebody
(400 Mil)
HCPL-0466
HCNW4506
*Technical data for these products are on separate HP publications.
Hermetic*
HCPL-5300
HCPL-5301
The connection of a 0.1 µF bypass capacitor between pins 5 and 8 is recommended.
CAUTION: It is advised that normal static precautions be taken in handling and assembly of this component to
prevent damage and/or degradation which may be induced by ESD.
5965-3603E
1-49

1 page




HCPL-0466 pdf
VDE 0884 Insulation Related Characteristics
(HCPL-4506 OPTION 060 ONLY)
Description
Installation classification per DIN VDE 0110/1.89, Table 1
for rated mains voltage 300 V rms
for rated mains voltage 450 V rms
Climatic Classification
Pollution Degree (DIN VDE 0110/1.89)
Maximum Working Insulation Voltage
Input to Output Test Voltage, Method b*
VIORM x 1.875 = VPR, 100% Production Test with tm = 1 sec,
Partial Discharge < 5 pC
Input to Output Test Voltage, Method a*
VIORM x 1.5 = VPR, Type and sample test,
tm = 60 sec, Partial Discharge < 5 pC
Highest Allowable Overvoltage*
(Transient Overvoltage, tini = 10 sec)
Safety Limiting Values
(Maximum values allowed in the event of a failure,
also see Figure 18, Thermal Derating curve.)
Case Temperature
Input Current
Output Power
Insulation Resistance at TS, VIO = 500 V
Symbol
VIORM
VPR
Characteristic Units
I-IV
I-III
55/100/21
2
630
V peak
1181
V peak
VPR
945
V peak
VIOTM
6000
V peak
TS
IS,INPUT
PS,OUTPUT
RS
175
230
600
109
°C
mA
mW
VDE 0884 Insulation Related Characteristics (HCNW4506 ONLY)
Description
Installation classification per DIN VDE 0110/1.89, Table 1
for rated mains voltage 600 V rms
for rated mains voltage 1000 V rms
Climatic Classification
Pollution Degree (DIN VDE 0110/1.89)
Maximum Working Insulation Voltage
Input to Output Test Voltage, Method b*
VIORM x 1.875 = VPR, 100% Production Test with tm = 1 sec,
Partial Discharge < 5 pC
Symbol Characteristic
VIORM
I-IV
I-III
55/100/21
2
1414
VPR 2652
Input to Output Test Voltage, Method a*
VIORM x 1.5 = VPR, Type and sample test,
tm = 60 sec, Partial Discharge < 5 pC
Highest Allowable Overvoltage*
(Transient Overvoltage, tini = 10 sec)
Safety Limiting Values
(Maximum values allowed in the event of a failure,
also see Figure 18, Thermal Derating curve.)
Case Temperature
Input Current
Output Power
Insulation Resistance at TS, VIO = 500 V
VPR
VIOTM
2121
8000
TS
IS,INPUT
PS,OUTPUT
RS
150
400
700
109
Units
V peak
V peak
V peak
V peak
°C
mA
mW
*Refer to the front of the optocoupler section of the current catalog, under Product Safety Regulations section (VDE 0884), for a
detailed description.
Note: Isolation characteristics are guaranteed only within the safety maximum ratings which must be ensured by protective circuits in
application.
1-53

5 Page





HCPL-0466 arduino
HCPL-4506 OPTION 060
800
PS (mW)
700 IS (mA)
600
500
400
300
(230)
200
100
0
0 25 50 75 100 125 150 175 200
TS – CASE TEMPERATURE – °C
1000
900
800
HCNW4506
PS (mW)
IS (mA)
700
600
500
400
300
200
100
0
0 25 50 75 100 125 150 175
TS – CASE TEMPERATURE – °C
Figure 18. Thermal Derating Curve, Dependence of Safety Limiting Value with
Case Temperature per VDE 0884.
1
CLEDP
2
20 k
8
7
3
CLEDN
4
SHIELD
6
5
Figure 20. Optocoupler Input to
Output Capacitance Model for
Unshielded Optocouplers.
1
+5 V
310
CMOS
2
3
4
20 k
8
0.1 µF
7
20 k
+
VCC = 15 V
SHIELD
6 VOUT
100 pF
5
*100 pF TOTAL
CAPACITANCE
Figure 19. Recommended LED Drive Circuit.
18
20 k
2 CLEDPCLED02
7
CLED01
3
CLEDN
6
4
SHIELD
5
Figure 21. Optocoupler Input to
Output Capacitance Model for
Shielded Optocouplers.
+5 V
310
1
2
20 k
8
0.1 µF
7
20 k
+
VCC = 15 V
CMOS
3
4
SHIELD
6 VOUT
100 pF
5
*100 pF TOTAL
CAPACITANCE
1
ITOTAL*
310
2
ICLEDP
CLED02
IF CLEDP
ICLED01
3
CLEDN
20
k
CLED01
8
7
6
4
SHIELD
5
VOUT
20 k
100 pF
* THE ARROWS INDICATE THE DIRECTION OF CURRENT
FLOW FOR +dVCM/dt TRANSIENTS.
+
VCM
Figure 22. LED Drive Circuit with Resistor Connected to LED
Anode (Not Recommended).
Figure 23. AC Equivalent Circuit for Figure 22 During
Common Mode Transients.
1-59

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