HCNW4506#500 Avago Technologies US Inc., HCNW4506#500 Datasheet

OPTOCOUPLER IPM DRVR 8-SMD

HCNW4506#500

Manufacturer Part Number
HCNW4506#500
Description
OPTOCOUPLER IPM DRVR 8-SMD
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HCNW4506#500

Output Type
Open Collector
Package / Case
8-SMD (400 mil) Gull Wing
Voltage - Isolation
5000Vrms
Number Of Channels
1, Unidirectional
Current - Output / Channel
15mA
Data Rate
1MBd
Propagation Delay High - Low @ If
200ns @ 10mA
Current - Dc Forward (if)
25mA
Input Type
DC
Mounting Type
Surface Mount, Gull Wing
Configuration
1 Channel
Isolation Voltage
3750 Vrms
Current Transfer Ratio
90 %
Maximum Propagation Delay Time
650 ns
Maximum Forward Diode Voltage
1.85 V
Maximum Reverse Diode Voltage
3 V
Maximum Forward Diode Current
20 mA
Maximum Continuous Output Current
15 mA
Maximum Power Dissipation
145 mW
Maximum Operating Temperature
+ 100 C
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
HCNW4506#500HCNW4506
Manufacturer:
AVAGO
Quantity:
1 000
Company:
Part Number:
HCNW4506#500HCNW4506
Quantity:
2 354
Company:
Part Number:
HCNW4506#500HCNW4506
Manufacturer:
AVAGO
Quantity:
1 000
Company:
Part Number:
HCNW4506#500HCNW4506
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Company:
Part Number:
HCNW4506#500HCNW4506#300
Manufacturer:
AVAGO
Quantity:
5 763
HCPL-4506/J456/0466, HCNW4506
Intelligent Power Module and Gate Drive Interface Optocouplers
Data Sheet
Description
The HCPL-4506 and HCPL-0466 contain a GaAsP LED while
the HCPL-J456 and the HCNW4506 contain an AlGaAs LED.
The LED is optically coupled to an integrated high gain
photo detector. Minimized propagation delay difference
between devices makes these optocouplers excellent so-
lutions for improving inverter efficiency through reduced
switching dead time.
An on chip 20 kΩ output pull-up resistor can be enabled by
shorting output pins 6 and 7, thus eliminating the need for
an external pull-up resistor in common IPM applications.
Specifications and performance plots are given for typical
IPM applications.
Functional Diagram
RoHS 6 fully compliant options available;
-xxxE denotes a lead-free product
CATHODE
ANODE
Truth Table
The connection of a 0.1 µF bypass capacitor
between pins 5 and 8 is recommended.
NC
NC
Lead (Pb) Free
RoHS 6 fully
compliant
1
2
3
4
OFF
HCPL-4506 Functional Diagram
LED
ON
SHIELD
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.
20 kΩ
V
H
L
O
8
7
6
5
V
V
V
GND
CC
L
O
Features
• Performance specified for bommon IPM applications
• Fast maximum propagation delays
• Minimized Pulse Width Distortion
• 15 kV/µs minimum common mode transient immu-
• CTR > 44% at I
• Safety approval:
Applications
• IPM isolation
• Isolated IGBT/MOSFET gate drive
• AC and brushless DC motor drives
• Industrial inverters
over industrial temperature range: -40°C to 100°C
t
t
PWD = 450 ns
nity
at V
UL Recognized
-3750 V rms / 1 min. for HCPL-4506/0466/J456
-5000 V rms / 1 min. for HCPL-4506 Option 020
CSA Approved
IEC/EN/DIN EN 60747-5-2 Approved
-V
-V
-V
-V
PHL
PLH
IORM
IORM
IORM
IORM
and HCNW4506
CM
= 480 ns
= 550 ns
= 1500 V
= 560 Vpeak for HCPL-0466 Option 060
= 630 Vpeak for HCPL-4506 Option 060
= 891 Vpeak for HCPL-J456
= 1414 Vpeak for HCNW4506
F
= 10 mA

Related parts for HCNW4506#500

HCNW4506#500 Summary of contents

Page 1

HCPL-4506/J456/0466, HCNW4506 Intelligent Power Module and Gate Drive Interface Optocouplers Data Sheet Lead (Pb) Free RoHS 6 fully compliant RoHS 6 fully compliant options available; -xxxE denotes a lead-free product Description The HCPL-4506 and HCPL-0466 contain a GaAsP LED while ...

Page 2

Selection Guide Standard Package 8-Pin DIP Type (300 Mil) Part HCPL-4506 Number IEC/EN/DIN V = 630 Vpeak IORM EN 60747- (Option 060) 5-2 Approval *Technical data for these products are on separate Avago publications. 2 White Mold 8-Pin DIP Small ...

Page 3

Ordering Information HCPL-0466, HCPL-4506 and HCPL-J456 are UL Recognized with 3750 Vrms for 1 minute per UL1577. HCNW4506 is UL Recognized with 5000 Vrms for 1 minute per UL1577. HCPL-0466, HCPL-4506, HCPL-J456 and HCNW4506 are approved under CSA Component Acceptance ...

Page 4

Package Outline Drawings HCPL-4506 Outline Drawing 9.65 ± 0.25 (0.380 ± 0.010 TYPE NUMBER A XXXXZ YYWW 1 2 1.19 (0.047) MAX. 3.56 ± 0.13 (0.140 ± 0.005) 1.080 ± 0.320 (0.043 ± 0.013) HCPL-4506 Gull Wing Surface ...

Page 5

Package Outline Drawings HCPL-J456 Outline Drawing 9.80 ± 0.25 (0.386 ± 0.010 TYPE NUMBER A XXXXZ R YYWW 1.19 (0.047) MAX. 3.56 ± 0.13 (0.140 ± 0.005) 1.080 ± 0.320 (0.043 ± 0.013) HCPL-J456 ...

Page 6

HCPL-0466 Outline Drawing (8-Pin Small Outline Package XXX 3.937 ± 0.127 YWW (0.155 ± 0.005 PIN ONE 0.406 ± 0.076 (0.016 ± 0.003) * 5.080 ± 0.127 (0.200 ± 0.005) 3.175 ± 0.127 (0.125 ...

Page 7

HCNW4506 Gull Wing Surface Mount Option 300 Outline Drawing 11.15 ± 0.15 (0.442 ± 0.006 1.78 ± 0.15 (0.070 ± 0.006) 2.54 (0.100) BSC DIMENSIONS IN MILLIMETERS (INCHES). LEAD COPLANARITY = 0.10 mm (0.004 ...

Page 8

Solder Reflow Temperature Profile 300 PREHEATING RATE 3 ° °C/–0.5 °C/SEC. REFLOW HEATING RATE 2.5 °C ± 0.5 °C/SEC. 200 160 °C 150 °C 140 °C 3 ° °C/–0.5 °C 100 ROOM TEMPERATURE ...

Page 9

Regulatory Information The devices contained in this data sheet have been approved by the following agencies: Agency/Standard Underwriters Laboratories (UL) Recognized under UL 1577, Component Recognized Program, Category FPQU2, File E55361 Canadian Standards Association (CSA) File CA88324 Verband Deutscher Electrotechniker ...

Page 10

All Avago data sheets report the creepage and clearance inherent to the optocoupler component itself. These di- mensions are needed as a starting point for the equip- ment designer when determining the circuit insulation requirements. However, once mounted on a ...

Page 11

Absolute Maximum Ratings Parameter Storage Temperature Operating Temperature [1] Average Input Current [2] Peak Input Current (50% duty cycle, ≤1 ms pulse width) Peak Transient Input Current (<1 µs pulse width, 300 pps) Reverse Input Voltage (Pin 3-2) Average Output ...

Page 12

Electrical Specifications Over recommended operating conditions unless otherwise specified -40°C to +100° +4 Parameter Symbol Current Transfer Ratio CTR Low Level Output Current Low Level Output Voltage V Input ...

Page 13

Switching Specifications ( kΩ External) L Over recommended operating conditions unless otherwise specified -40°C to +100° +4 Parameter Symbol Propagation Delay T PHL Time to Logic HCPL-J456 ...

Page 14

Package Characteristics Over recommended temperature (T Parameter Sym. Input-Output Momentary V ISO Withstand Voltage† Resistance R I-O (Input-Output) Capacitance C I-O (Input-Output) *All typical values at 25° †The Input-Output Momentary Withstand Voltage is a dielectric ...

Page 15

100 °C 25 °C -40 ° – FORWARD LED CURRENT – Figure 1. Typical transfer characteristics. HCPL-4506 fig 5 HCPL-4506/0466 1000 ...

Page 16

SHIELD V FF – 1500 V CM Figure 7. CMR test circuit. Typical CMR waveform. HCPL-4506 fig 11a 500 t PLH t PHL 400 I = ...

Page 17

HCPL-4506 OPTION 060/HCPL-J456 800 P (mW) S 700 I (mA) FOR HCPL-4506 S OPTION 060 600 I (mA) FOR HCPL-J456 S 500 400 300 (230) 200 100 100 125 150 175 T – CASE TEMPERATURE ...

Page 18

I I TOTAL* kΩ CLEDP C 2 LED02 C I LEDP F 310 Ω C LED01 I CLED01 3 C LEDN 4 SHIELD * THE ARROWS INDICATE THE DIRECTION OF CURRENT FLOW FOR +dV /dt TRANSIENTS ...

Page 19

HCPL-4506 Ω 0.1 µF I LED1 310 Ω CMOS 4 5 SHIELD HCPL-4506 Ω 0.1 µF I LED2 310 Ω ...

Page 20

LED Drive Circuit Considerations for Ultra High CMR Performance Without a detector shield, the dominant cause of op- tocoupler CMR failure is capacitive coupl-ing from the input side of the optocoupler, through the package, to the detector IC as shown ...

Page 21

IPM Dead Time and Propagation Delay Specifications The HCPL-4506 series include a Propagation Delay Differ- ence specification intended to help designers minimize “dead time” in their power inverter designs. Dead time is the time period during which both the high ...

Related keywords