HCPL-5300-100 HP [Agilent(Hewlett-Packard)], HCPL-5300-100 Datasheet

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HCPL-5300-100

Manufacturer Part Number
HCPL-5300-100
Description
Intelligent Power Module and Gate Drive Interface Hermetically Sealed Optocouplers
Manufacturer
HP [Agilent(Hewlett-Packard)]
Datasheet
Intelligent Power Module
and Gate Drive Interface
Hermetically Sealed
Optocouplers
Technical Data
Features
• Performance Specified Over
• Fast Maximum Propagation
• Minimized Pulse Width
• High Common Mode
• CTR > 30% at I
• 1500 Vdc Withstand Test
• Manufactured and Tested on
• Hermetically Sealed
• Dual Marked with Device
• QML-38534, Class H and K
• HCPL-4506 Function
The connection of a 0.1 F 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.
Full Military Temperature
Range: -55 C to +125 C
Delays
t
t
Distortion (PWD = 450 ns)
Rejection (CMR): 10 kV/ s at
V
Voltage
a MIL-PRF-38534 Certified
Line
Packages
Part Number and DSCC
Drawing Number
Compatibility
PHL
PLH
CM
= 1000 V
= 450 ns,
= 650 ns
F
= 10 mA
Schematic Diagram
Applications
• Military and Space
• High Reliability Systems
• Harsh Industrial
• Transportation, Medical, and
• IPM Isolation
• Isolated IGBT/MOSFET Gate
• AC and Brushless DC Motor
• Industrial Inverters
Description
The HCPL-530X devices consist
of a GaAsP LED optically coupled
to an integrated high gain photo
detector in a hermetically sealed
package. The products are
Environments
Life Critical Systems
Drive
Drives
1
2
3
4
SHIELD
20 k
8
7
6
5
HCPL-5300
HCPL-5301
HCPL-530K
5962-96852
Truth Table
capable of operation and storage
over the full military temperature
range and can be purchased as
either standard product or with
full MIL-PRF-38534 Class Level
H or K testing or from the DSCC
Drawing 5962-96852. All devices
are manufactured and tested on a
MIL-PRF-38534 certified line and
are included in the DSCC
Qualified Manufacturers List
QML-38534 for Hybrid Micro-
circuits. Minimized propagation
delay difference between devices
make these optocouplers excellent
solutions for improving inverter
efficiency through reduced
switching dead time. An on chip
20 k 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 applica-
tions. Specifications and
performance plots are given for
typical IPM applications.
LED
OFF
ON
V
H
L
O

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HCPL-5300-100 Summary of contents

Page 1

... IPM Isolation • Isolated IGBT/MOSFET Gate Drive • AC and Brushless DC Motor Drives • Industrial Inverters Description The HCPL-530X devices consist of a GaAsP LED optically coupled to an integrated high gain photo detector in a hermetically sealed package. The products are Schematic Diagram 1 ...

Page 2

... Butt Cut/Gold Plate Butt Cut/Soldered Gull Wing/Soldered Outline Drawing 9.40 (0.370) 9.91 (0.390) 0.76 (0.030) 1.27 (0.050) 0.51 (0.020) MIN. 2.29 (0.090) 2.79 (0.110) NOTE: DIMENSIONS IN MILLIMETERS (INCHES). HCPL-5300 HCPL-5301 HCPL-530K Gold Plate Option #200 Option #100 Option #300 5962- 9685201HPX 9685201HPC 9685201HPA 9685201HYC 9685201HYA 9685201HXA 5962- 9685201KPX 9685201KPC ...

Page 3

Device Marking Agilent DESIGNATOR A QYYWWZ Agilent P/N XXXXXX DSCC SMD* XXXXXXX DSCC SMD* XXX XXX PIN ONE/ 50434 ESD IDENT * QUALIFIED PARTS ONLY Hermetic Optocoupler Options Option 100 Surface mountable hermetic optocoupler with leads trimmed for butt joint ...

Page 4

Absolute Maximum Ratings Storage Temperature (T ) ............................................................................................................. -65 to 150 C S Operating Temperature (T ) ......................................................................................................... -55 to 125 C A Junction Temperature (T ) ...................................................................................................................... 175 C J Average Input Current (I ) ............................................................................................................... 25 mA F(AVG) ...

Page 5

Electrical Specifications Over recommended operating conditions ( mA 0.8 V) unless otherwise specified. F(ON) F(OFF) Group A Parameter Symbol groups Current Transfer CTR Ratio Low Level Output I OL ...

Page 6

Switching Specifications (R Over recommended operating conditions - +125 +4 otherwise specified. Group A Parameter Symbol Subgrps. Propagation t 9, 10, 11 PHL Delay Time to ...

Page 7

Switching Specifications (R Over recommended operating conditions - +125 +4 otherwise specified. Group A Parameter Symbol Subgrps. Propagation t 9, 10, 11 PHL Delay Time to ...

Page 8

... CMR failure is capacitive coupling from the input side of the optocoupler, through the package, to the detector IC as shown in Figure 14. The HCPL- 530X improves CMR performance by using a detector IC with an optically transparent Faraday shield, which diverts the capacitively coupled current away from the sensitive IC circuitry ...

Page 9

... PHL delays as shown in Figure 24. The maximum dead time is also equivalent to the difference between the maximum and minimum propagation delay difference specifications. The maximum dead time (due to the optocouplers) for the HCPL-530X is 670 ns (= 500 ns - (-170 ns)) over an operating temperature range of - +125 C. ...

Page 10

125 °C 25 °C -55 ° – FORWARD LED CURRENT – Figure 1. Typical Transfer Characteristics. 1000 T = 25°C A ...

Page 11

SHIELD V FF – 1000 V CM Figure 6. CMR Test Circuit. Typical CMR Waveform. 600 ...

Page 12

100 pF PLH PHL T = 25°C 400 A 300 200 100 – FORWARD LED CURRENT – Figure ...

Page 13

I I TOTAL* CLEDP LED02 LEDP 300 C LED01 I CLED01 LEDN 4 5 SHIELD * THE ARROWS INDICATE THE DIRECTION OF CURRENT FLOW FOR +dV /dt ...

Page 14

... PLH MAX. - *PDD = PROPAGATION DELAY DIFFERENCE NOTE: THE PROPAGATION DELAYS USED TO CALCULATE PDD ARE TAKEN AT EQUAL TEMPERATURES. Figure 23. Minimum LED Skew for Zero Dead Time. V CC1 OUT1 HCPL-5300 V CC2 HCPL-5300 20 k HCPL-5300 V OUT2 HCPL-5300 HCPL-5300 PHL MIN. 14 IPM + -HV M ...

Page 15

I LED1 OUT1 V OUT2 Q2 OFF I LED2 t PLH MIN. t PLH MAX. t PDD* PHL MIN. MAX. t PHL MAX. MAX. DEAD TIME MAXIMUM DEAD TIME = ( PLH MAX. PLH MIN. ...

Page 16

Data subject to change. Copyright © 2000 Agilent Technologies Obsoletes 5967-5808E 5968-9402E (10/00) ...

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