HCPL-3700 Avago Technologies US Inc., HCPL-3700 Datasheet

OPTOCOUPLER AC/DC LOGIC 8-DIP

HCPL-3700

Manufacturer Part Number
HCPL-3700
Description
OPTOCOUPLER AC/DC LOGIC 8-DIP
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HCPL-3700

Mounting Type
Through Hole
Voltage - Isolation
3750Vrms
Number Of Channels
1, Unidirectional
Current - Output / Channel
30mA
Propagation Delay High - Low @ If
4µs
Current - Dc Forward (if)
50mA
Input Type
Logic
Output Type
Open Collector
Package / Case
8-DIP (0.300", 7.62mm)
No. Of Channels
1
Isolation Voltage
3.75kV
Optocoupler Output Type
Photodarlington
Input Current
3.7mA
Output Voltage
20V
Opto Case Style
DIP
No. Of Pins
8
Propagation Delay
10µs
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
516-1131-5

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HCPL-3700
Manufacturer:
AVAGO
Quantity:
10 000
Part Number:
HCPL-3700
Manufacturer:
TI
Quantity:
53
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HCPL-3700
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Part Number:
HCPL-3700#300
Manufacturer:
AVAGO
Quantity:
20 000
Part Number:
HCPL-3700#500
Manufacturer:
AVAGO
Quantity:
20 000
Part Number:
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Quantity:
800
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HCPL-3700-000E
Manufacturer:
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Quantity:
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AVAGO/安华高
Quantity:
20 000
Part Number:
HCPL-3700-060E
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Part Number:
HCPL-3700-320E
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Company:
Part Number:
HCPL-3700-500E
Quantity:
109
HCPL-0370, HCPL-3700, HCPL-3760
Isolated Voltage/Current Detectors
Data Sheet
Description
The HCPL-0370/3700 and HCPL-3760 are voltage/cur-
rent threshold detection optocouplers. The HCPL-3760 is
a low-current version of the HCPL-0370/3700. To obtain
lower current operation, the HCPL-3760 uses a high-effi-
ciency AlGaAs LED which provides higher light output at
lower drive currents. The devices utilize threshold sens-
ing input buffer ICs which permit control of threshold
levels over a wide range of input voltages with a single
external resistor.
The input buffer incorporates several features: hysteresis
for extra noise immunity and switching immunity, a di-
ode bridge for easy use with ac input signals, and inter-
nal clamping diodes to protect the buffer and LED from
a wide range of over-voltage and over-current transients.
Because threshold sensing is done prior to driving the
LED, variations in optical coupling from the LED to the
detector will have no effect on the threshold levels.
Functional Diagram
RoHS 6 fully compliant options available;
-xxxE denotes a lead-free product
DC+
DC-
AC
AC
1
2
3
4
Lead (Pb) Free
RoHS 6 fully
compliant
HCPL-3700 Functional Diagram
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.
(POSITIVE LOGIC)
INPUT
TRUTH TABLE
H
L
OUTPUT
L
H
8
7
6
5
V
NC
V
GND
CC
O
Features
• Standard (HCPL-0370/3700) and low input current
• AC or DC input
• Programmable sense voltage
• Hysteresis
• Logic compatible output
• Thresholds guaranteed over temperature
• Thresholds independent of LED optical parameters
• Recognized under UL 1577 and CSA approved for
Applications
• Limit switch sensing
• Low voltage detector
• AC mains and DC link voltage detection
• Relay contact monitor
• Relay coil voltage monitor
• Current sensing
• Microprocessor interfacing
(HCPL-3760) versions
dielectric withstand proof test voltage of 3750 Vac, 1
minute

Related parts for HCPL-3700

HCPL-3700 Summary of contents

Page 1

... LOGIC) INPUT OUTPUT HCPL-3700 Functional Diagram CAUTION 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. Features • Standard (HCPL-0370/3700) and low input current (HCPL-3760) versions • input • Programmable sense voltage • ...

Page 2

... Example 1: HCPL-3760-500E to order product of Gull Wing Surface Mount package in Tape and Reel packaging with and RoHS compliant. Example 2: HCPL-3700 to order product of 300 mil DIP package in Tube packaging and non RoHS compliant. Option datasheets are available. Contact your Avago sales representative or authorized distributor for information. ...

Page 3

... Schematic Package Outline Drawings Standard DIP Package (HCPL-3700/3760) 9.40 (0.370) 9.90 (0.390 XXXX YYWW PIN ONE 1.19 (0.047) MAX. 3.56 ± 0.13 (0.140 ± 0.005) 0.76 (0.030) 1.40 (0.056 TYPE NUMBER DATE CODE 6.10 (0.240) 6.60 (0.260) 7.36 (0.290) 7.88 (0.310) ...

Page 4

... Package Outline Drawings, continued Gull Wing Surface Mount Option 300 (HCPL-3700/3760) 9.65 ± 0.25 (0.380 ± 0.010 TYPE NUMBER DATE CODE A XXXX R U YYWW MOLDED 1.19 (0.047) MAX. 1.080 ± 0.320 (0.043 ± 0.013) 2.540 (0.100) BSC DIMENSIONS IN MILLIMETERS (INCHES). TOLERANCES (UNLESS OTHERWISE SPECIFIED): LEAD COPLANARITY MAXIMUM: 0 ...

Page 5

... T = 150 °C smax smin Note: Non-halide flux should be used. Regulatory Information The HCPL-0370/3700/3760 has been approved by the following organizations: IEC/EN/DIN EN 60747-5-5 (with option 060) Maximum Working Insulation Voltage V for HCPL-0370, and 630 Vpeak for HCPL3700/3760. Highest Allowable Overvoltage V IOTM HCPL-0370/3700/3760 ...

Page 6

... Insulation characteristics are guaranteed only within the safety maximum ratings, which must be ensured by protective circuits within the application. 2. Safety-limiting parameters are dependent on case temperature. The Input Current rate of 1.2 mA/°C and 1.53 mA/°C for HCPL-0370 and HCPL-3700/3760 respectively; the Output Power, P free-air case temperature at a rate of 4.8 mW/°C and 4 mW/°C for HCPL-0370 and HCPL-3700/3760 respectively. 6 ...

Page 7

... Solder Reflow Temperature Profile Recommended Operating Conditions Parameter Supply Voltage Operating Temperature Operating Frequency 7 Symbol Temperature Time Average Surge I IN Transient V IN HCPL-3700/3760 P IN HCPL-0370 HCPL-3700/3760 P T HCPL-0370 HCPL-3700/3760 P O HCPL-0370 Average See Package Outline Drawings section Symbol Min. Max Min. Max. Units ...

Page 8

... HYS Input Clamp V IHC1 Voltage V IHC2 V IHC3 V ILC Input Current I HCPL-0370/3700 IN HCPL-3760 Bridge Diode V HCPL-0370/3700 D1,2 Forward Voltage HCPL-3760 V HCPL-0370/3700 D3,4 HCPL-3760 Logic Low V OL Output Voltage Logic High I OH Output Current Logic Low I HCPL-0370/3700 CCL Supply Current HCPL-3760 Logic High I ...

Page 9

... Time to Logic Low t PHL at Output HCPL-3760 Propagation Delay HCPL-0370/3700 Time to Logic High t PLH at Output HCPL-3760 HCPL-0370/3700 Output Rise Time t r (10-90%) HCPL-3760 HCPL-0370/3700 Output Fall Time t f (90-10%) HCPL-3760 Common Mode Transient Immunity | Logic High Output Common Mode HCPL-0370/3700 Transient Immunity | ...

Page 10

... Note that maximum input power must be observed Derate linearly above 70°C free-air temperature at a rate of 4.1 mW/°C (HCPL-3700/3760) and 3.1 mW/°C (HCPL-0370). Maximum input power dissipation of 230 mW (HCPL-3700/3760) and 172 mW (HCPL-0370) allows an input IC junction temperature of 125° ambient tempera- ture 70°C. Excessive P and T may result in IC chip degradation ...

Page 11

... SUPPLY VOLTAGE – HCPL-370 fig 1.6 1 CCH OPEN 1 1.1 1.0 -3 0.9 10 0.8 0 0.6 0.5 0 -40 - – TEMPERATURE – °C A Figure 4. Typical high level supply current, I HCPL-3700 fig 4 temperature. 240 220 200 180 160 140 120 100 18.0 20.0 I CCH vs. CCH ...

Page 12

... HCPL-3760 4.7 kΩ 5 5 PULSE WIDTH 100 µs (10-90 PLH PHL 2 0 -40 - – TEMPERATURE – °C A HCPL-3700 fig 7b HCPL-3760 30 700 25 600 20 500 15 400 4.7 kΩ 5 300 CC 5 PULSE WIDTH 100 Hz 5 200 µs (10-90 100 -40 - – TEMPERATURE – °C A HCPL-3700 fig 8b ...

Page 13

Figure 10. Switching test circuit. Figure 11. Test circuit for common mode transient immunity and typical waveforms. Figure 12. Typical external threshold characteristics, V ± vs ...

Page 14

... R can provide over-current transient protection by X limiting input current during a transient condition. For monitoring con tacts of a relay or switch, the HCPL- 0370/3700/3760 in combina tion with R used to allow a specific current to be conducted through the contacts for clean ing purposes (wetting current). The choice of which input voltage clamp level to choose depends upon the application of this device (see Figure 1) ...

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