High Speed Optocouplers 1Mbit/s 1Ch Optocoup Transistor Hi Speed

HCPL4502_Q

Manufacturer Part NumberHCPL4502_Q
DescriptionHigh Speed Optocouplers 1Mbit/s 1Ch Optocoup Transistor Hi Speed
ManufacturerFairchild Semiconductor
HCPL4502_Q datasheet
 


Specifications of HCPL4502_Q

Input TypeDCIsolation Voltage2500 Vrms
Maximum Fall Time0.8 usMaximum Rise Time0.8 us
Output DevicePhototransistorConfiguration1 Channel
Current Transfer Ratio27 %Maximum Baud Rate1 MBps
Maximum Forward Diode Voltage1.7 VMaximum Reverse Diode Voltage5 V
Maximum Input Diode Current25 mAMaximum Power Dissipation100 mW
Maximum Operating Temperature+ 100 CMinimum Operating Temperature- 55 C
Package / CasePDIP-8Lead Free Status / RoHS StatusLead free / RoHS Compliant
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Single-Channel: 6N135, 6N136, HCPL2503, HCPL4502
Dual-Channel: HCPL2530, HCPL2531
High Speed Transistor Optocouplers
Features
High speed –1 MBit/s
Superior CMR – 10kV/µs
Dual-Channel HCPL2530/HCPL2531
Double working voltage – 480V RMS
CTR guaranteed 0–70°C
U.L. recognized (File # E90700)
Applications
Line receivers
Pulse transformer replacement
Output interface to CMOS-LSTTL-TTL
Wide bandwidth analog coupling
Schematics
V
1
N/C
8
CC
+
V
2
7
B
V
F
_
V
3
6
O
N/C
GND
4
5
6N135, 6N136, HCPL2503, HCPL4502
Pin 7 is not connected in
Part Number HCPL4502
©2005 Fairchild Semiconductor Corporation
6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7
Description
The HCPL4502, HCPL2503, 6N135, 6N136, HCPL2530
and HCPL2531 optocouplers consist of an AlGaAs
LED optically coupled to a high speed photodetector
transistor.
A separate connection for the bias of the photodiode
improves the speed by several orders of magnitude over
conventional phototransistor optocouplers by reducing
the base-collector capacitance of the input transistor.
An internal noise shield provides superior common
mode rejection of 10kV/µs. An improved package allows
superior insulation permitting a 480V working voltage
compared to industry standard of 220V.
Package Outlines
V
+
1
8
CC
V
F1
_
V
2
7
01
_
V
3
6
02
V
F2
+
4
5
GND
HCPL2530/HCPL2531
August 2008
8
1
8
8
1
1
www.fairchildsemi.com

HCPL4502_Q Summary of contents

  • Page 1

    ... HCPL2503, HCPL4502 Pin 7 is not connected in Part Number HCPL4502 ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7 Description The HCPL4502, HCPL2503, 6N135, 6N136, HCPL2530 and HCPL2531 optocouplers consist of an AlGaAs LED optically coupled to a high speed photodetector transistor ...

  • Page 2

    ... Derate linearly above 70°C free-air temperature at a rate of 1.6mA/°C. 3. Derate linearly above 70°C free-air temperature at a rate of 0.9 mW/°C. 4. Derate linearly above 70°C free-air temperature at a rate of 2.0 mW/°C. ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0 25° ...

  • Page 3

    ... I Logic High Output Current OH I Logic Low Supply Current CCL I Logic High Supply Current CCH *All Typicals 25°C A ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0 70°C Unless otherwise specified) A Test Conditions I = 16mA, T =25° 16mA ...

  • Page 4

    ... Logic LOW Output OL Voltage *All Typicals 25°C A Note: 5. Current Transfer Ratio is defined as a ratio of output collector current, I times 100%. ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7 (Continued 70°C unless otherwise specified) A Test Conditions I = 16mA 0.4 V, ...

  • Page 5

    ... Common mode transient immunity in logic high level is the maximum tolerable (positive the common mode pulse signal V Common mode transient immunity in logic low level is the maximum tolerable (negative the common mode pulse signal, V ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7 (Continued 70°C unless otherwise specified) ...

  • Page 6

    ... Device is considered a two terminal device: Pins and 4 are shorted together and Pins and 8 are shorted together. 10. Measured between pins 1 and 2 shorted together, and pins 3 and 4 shorted together. ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7 (Continued 70°C unless otherwise specified 70° ...

  • Page 7

    ... R = 4.1k (TPLH) L 500 R = 4.1k (TPLH) L 400 R = 1.9k (TPHL) L 300 R = 1.9k (TPLH) L 200 100 0 -60 -40 - – TEMPERATURE ( C) A ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7 1.2 1.0 0.8 0 0.2 0.0 10 100 -60 1000 I = 40mA ...

  • Page 8

    ... Test Circuit for 6N135, 6N136, HCPL-2503 and HCPL- 4502 I F Noise Shield Pulse Gen Test Circuit for 6N135, 6N136, HCPL-2503 and HCPL-4502 ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7 Pulse V Generator 5ns 10% DUTY CYCLE I/f < 100 ...

  • Page 9

    ... TYP Lead Coplanarity : 0.004 (0.10) MAX Note: All dimensions are in inches (millimeters) ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7 0.4" Lead Spacing 0.200 (5.08) 0.140 (3.55) 15 MAX 0.300 (7.62) TYP ...

  • Page 10

    ... SDV Marking Information Definitions ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7 Example Part Number 6N135S Surface Mount Lead Bend 6N135SD Surface Mount; Tape and reel 6N135W 0.4" Lead Spacing 6N135V VDE0884 6N135WV VDE0884; 0.4” lead spacing 6N135SV VDE0884 ...

  • Page 11

    ... MAX User Direction of Feed Reflow Profile 300 250 200 150 100 ©2005 Fairchild Semiconductor Corporation 6N135, 6N136, HCPL2503, HCPL4502, HCPL2530, HCPL2531 Rev. 1.0.7 12.0 0.1 4.0 0.1 4.0 0.1 0.05 10.30 0.20 225C peak Time above 183C, 60–150 sec ...

  • Page 12

    ... TRADEMARKS The following includes registered and unregistered trademarks and service marks, owned by Fairchild Semiconductor and/or its global subsidiaries, and is not intended exhaustive list of all such trademarks. Build it Now™ CorePLUS™ CorePOWER™ CROSSVOLT™ CTL™ Current Transfer Logic™ ...