HCPL-2503 Avago Technologies US Inc., HCPL-2503 Datasheet

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HCPL-2503

Manufacturer Part Number
HCPL-2503
Description
OPTOCOUPLER 1MBS 8-DIP
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HCPL-2503

Input Type
DC
Package / Case
8-DIP (0.300", 7.62mm)
Voltage - Isolation
3750Vrms
Number Of Channels
1, Unidirectional
Current - Output / Channel
8mA
Data Rate
250kbps
Propagation Delay High - Low @ If
1µs @ 8mA
Current - Dc Forward (if)
25mA
Output Type
Open Collector
Mounting Type
Through Hole
Isolation Voltage
3750 Vrms
Maximum Forward Diode Current
8 mA
Output Device
Phototransistor
Configuration
1 Channel
Current Transfer Ratio
22 %
Maximum Baud Rate
1 MBps
Maximum Forward Diode Voltage
1.7 V
Maximum Reverse Diode Voltage
5 V
Maximum Input Diode Current
25 mA
Maximum Power Dissipation
100 mW
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
ATIHCPL-2503

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HCPL-2503
Manufacturer:
AGILENT
Quantity:
5 510
Part Number:
HCPL-2503
Manufacturer:
NSC
Quantity:
5 510
HCPL-2503
Single Channel, High Speed Logic Interface Optocoupler
Data Sheet
Description
The HCPL-2503 optocoupler is specified for use in LSTTL-
to-LSTTL and TTL-to-LSTTL logic interfaces. A nominal
8 mA sink current through the input LED will provide
enough output current for proper operation of 1 LSTTL
gate under worst-case conditions when used in the rec-
ommended circuits. The CTR of the HCPL-2503 is 15%
minimum at I
The HCPL-2503 contains a light emitting diode and an in-
tegrated photon detector with a 3000 Vdc withstand test
between input and output. Separate connection for the
photodiode bias and output transistor collector reduce
the base-collector capacitance, giving improved speed
compared with conventional phototransistor couplers.
Schematic
- A 0.1uF bypass capacitor must be connected between 5 and 8.
CATHODE
RoHS 6 fully compliant options available;
-xxxE denotes a lead-free product
ANODE
V
2
+
-
3
F
SHIELD
Lead (Pb) Free
RoHS 6 fully
compliant
I
F
F
= 8 mA.
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.
7
V
B
*
I
B
I
I
CC
O
6
8
5
V
V
GND
CC
O
Features
• Data rates to 250 kb/s NRZ
• LSTTL compatible
• High common mode transient immunity:
• 3750 Vdc withstand test voltage
• Open collector output
• Guaranteed performance from temperature: 0°C to
• Safety approval
Applications
• High speed logic ground isolation
• High voltage isolation
• Analog signal ground isolation
> 1000 V/µs
70°C
- UL Recognized - 3750Vrms for 1min (5000Vrms for
- IEC/EN/DIN EN 60747-5-2 Approved
- VIORM = 630 Vpeak for option 060
– LSTTL-to-LSTTL and TTL-to-LSTTL
1 min Option 020 devices) per UL1577.

Related parts for HCPL-2503

HCPL-2503 Summary of contents

Page 1

... Description The HCPL-2503 optocoupler is specified for use in LSTTL- to-LSTTL and TTL-to-LSTTL logic interfaces. A nominal 8 mA sink current through the input LED will provide enough output current for proper operation of 1 LSTTL gate under worst-case conditions when used in the rec- ommended circuits. The CTR of the HCPL-2503 is 15% minimum mA. F The HCPL-2503 contains a light emitting diode and an in- tegrated photon detector with a 3000 Vdc withstand test between input and output. Separate connection for the ...

Page 2

Outline Drawing 8-Pin DIP Package 9.65 ± 0.25 (0.380 ± 0.010 TYPE NUMBER A XXXXZ YYWW 1.78 (0.070) MAX. 1.19 (0.047) MAX. 3.56 ± 0.13 (0.140 ± 0.005) 1.080 ± 0.320 ...

Page 3

... To order, choose a part number from the part number column and combine with the desired option from the option column to form an order entry. Example 1: HCPL-2503-000E to order product of 300mil DIP package with RoHS compliant. Example 2: HCPL-2503 to order product of 300mil DIP package in tube packaging and non RoHS compliant. Option datasheets are available. Contact your Avago sales representative or authorized distributor for information. Remarks: The notation ‘#XXX’ is used for existing products, while (new) products launched since 15th July 2001 and RoHS compliant option will use ‘-XXXE‘ . Absolute Maximum Ratings Storage Temperature ...........................................................................................................................................................–55°C to +125°C Operating Temperature .....................................................................................................................................................–55°C to +100°C Lead Solder Temperature (1.6 mm below seating plane) . ...........................................................................................260° ...

Page 4

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 100 ROOM TEMPERATURE 0 0 Note: ...

Page 5

Regulatory Information The devices contained in this data sheet have been approved by the following organizations: UL Recognized under UL 1577, Component Recognition Program, File E55361. CSA Approved under CSA Component Acceptance Notice #5, File CA 88324. Insulation and Safety Related Specifications Parameter Symbol Minimum External L(101) Air Gap (External Clearance) Minimum External L(102) Tracking (External Creepage) Minimum Internal Plastic Gap (Internal Clearance) Minimum Internal Tracking (Internal ...

Page 6

... IEC/EN/DIN EN 60747-5-2 Insulation Related Characteristics (HCPL-2503 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 1.875 = V , 100% Production Test with t IORM PR Partial Discharge < Input to Output Test Voltage, Method 1 Type and sample test, IORM sec, Partial Discharge < Highest Allowable Overvoltage* (Transient Overvoltage sec) ini Safety Limiting Values (Maximum values allowed in the event of a failure, also see Figure 9, Thermal Derating curve.) ...

Page 7

Electrical Specifications, LSTTL-to-LSTTL Over recommended temperature (T Parameter Symbol Current Transfer Ratio CTR Logic Low Output V OL Voltage Logic Low Supply I CCL Current Input Forward Voltage V F ∆V Temperature Coefficient F ∆T of Forward Voltage A *All typicals at 25˚C. Switching Specifications 25°C A ...

Page 8

Electrical Specifications, TTL-to-LSTTL Over recommended temperature (T Parameter Symbol Current Transfer Ratio CTR Logic Low Output V OL Voltage Logic Low Supply I CCL Current Input Forward V F Voltage ∆V Temperature F ∆T Coefficient of Forward A Voltage *All typicals at 25˚C. ...

Page 9

Electrical Specifications Over recommended temperature (T Parameter Symbol Logic High I OH Output Current Logic High I CCH Supply Current Input Reverse V R Breakdown Voltage Input Capacitance C IN Input-Output I I–O Insulation Leakage Current Resistance R ...

Page 10

... T – TEMPERATURE – °C A Figure 5. Logic high output current vs. temperature HCPL-2503 fig 5 HP 8007 PULSE I F GEN Ω 10% DUTY CYCLE 1/f 500 µ MONITOR F 4 100 Ω HCPL-2503 fig 6 1.2 1.0 0 0.2 F NORMALIZED 25° -60 -40 - 100 T – TEMPERATURE – °C A Figure 3 ...

Page 11

... 74LS04 7405 74LS05 74LS05 HCPL-2503 fig 8 initial value over temperature, taken directly from the Electrical Specifications. The value given for I based on the minimum CTR and the minimum I worst case values for R has ample design margin, allowing more than 20% for is given as both F CTR degradation even under these worst case condi- results F tions. For additional information on CTR degradation ...

Page 12

... Output Logic Low Output V (B) OL Voltage – HCPL-2503 Supply Voltage – Output V CC2 Pull-Up Resistor R L Required Current Sink I OL for Logic Low (max) HCPL-2503 Current CTR Transfer Ratio Logic Low Output I OL Current – HCPL-2503 (min) Data Rate f D Notes: 10. The inverting circuit has higher power consumption and must use open collector gates on the input. 11. The load resistor R must be large enough to guarantee logic LOW and small enough to guarantee logic HIGH under worst case conditions: L The selection the same for both inverting and non-inverting circuits. L 12. The maximum current sink required for logic LOW is: where I is the current through ...

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