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 PHOTODARLINGTON OPTOCOUPLERS
DESCRIPTION
The CNX48U, H11BX, MOC8080 and TIL113 have a gallium arsenide infrared emitter optically coupled to a silicon planar photodarlington.
CNX48U H11B1 MOC8080 TIL113
H11B2
H11B255
H11B3
FEATURES
* High sensitivity to low input drive current * Meets or exceeds all JEDEC Registered Specifications * VDE 0884 approval available as a test option -add option .300. (e.g., H11B1.300)
6 1 6 1
ANODE 1 6 BASE
SCHEMATIC
APPLICATIONS
* * * * * Low power logic circuits 6 Telecommunications equipment Portable electronics Solid state relays Interfacing coupling systems of different potentials and impedances.
CATHODE 2 5 COLLECTOR
1
N/C 3
4 EMITTER
Parameter TOTAL DEVICE Storage Temperature Operating Temperature Lead Solder Temperature Total Device Power Dissipation @ TA = 25C Derate above 25C EMITTER Continuous Forward Current Reverse Voltage Forward Current - Peak (300 s, 2% Duty Cycle) LED Power Dissipation @ TA = 25C Derate above 25C DETECTOR
Symbol TSTG TOPR TSOL PD IF VR IF(pk) PD
Device All All All All All All All All CNX48U, TIL113 H11B1, H11B2
Value -55 to +150 -55 to +100 260 for 10 sec 250 3.3 100 6 3.0 100 1.8 30 25 55
Units C C C mW mW/C mA V A mW mW/C
Collector-Emitter Breakdown Voltage
BVCEO
H11B3 H11B255 MOC8080 CNX48U, H11B1 H11B2, H11B3
V
30
V
Collector-Base Breakdown Voltage
BVCBO
TIL113 H11B255 MOC8080 55 7 150 2.0 V V mW mW/C
Emitter-Collector Breakdown Voltage Detector Power Dissipation @ TA = 25C Derate above 25C
BVECO PD
All All
6/1/00
200042A
PHOTODARLINGTON OPTOCOUPLERS
CNX48U H11B1 MOC8080 TIL113 ELECTRICAL CHARACTERISTICS
(TA = 25C Unless otherwise specified.)
H11B2
H11B255
H11B3
INDIVIDUAL COMPONENT CHARACTERISTICS
Parameter EMITTER (IF = 10 mA) Input Forward Voltage VF Test Conditions Symbol Device H11B1, H11B2 H11B255 MOC8080 TIL113 CNX48U MOC8080 H11B3 IR C All All CNX48U BVCEO TIL113 H11B1, H11B2 H11B3 H11B255 MOC8080 CNX48U, H11B1 Collector-Base Breakdown Voltage (IC = 100 A, IF = 0) Emitter-Collector Breakdown Voltage Collector-Emitter Dark Current Note ** Typical values at TA = 25C (IE = 100 A, IB = 0) (VCE = 10 V, Base Open) BVECO ICEO (IC = 100 A, IE = 0) BVCBO H11B2, H11B3 TIL113 H11B255 MOC8080 All All 55 7 100 10 1 100 V nA 30 100 V 25 55 60 70 V 30 0.9 0.7 1.2 1.3 1.05 1.35 0.001 50 60 1.3 1.7 1.4 1.5 10 A pF 0.8 1.2 1.5 V Min Typ** Max Unit
(IF = 10 mA) (IF = 10 mA, TA = -55C) (IF = 10 mA, TA = 100C) (IF = 50 mA)
Reverse Leakage Current Capacitance DETECTOR
(VR = 6 V) (VF = 0 V, f = 1.0 MHz) (IC = 1 mA, IF = 0) (IC = 100 A, IF = 0) (IC = 10 mA, IF = 0) (IC = 100 A, IF = 0) (IC = 1 mA, IF = 0)
Collector-Emitter Breakdown Voltage
6/1/00
200042A
PHOTODARLINGTON OPTOCOUPLERS
CNX48U H11B1 MOC8080 TIL113 TRANSFER CHARACTERISTICS
DC Characteristics (TA = 25C Unless otherwise specified.) Symbol Device MOC8080 H11B255 CNX48U TIL113 IC (CTR) (IF = 1 mA, VCE = 5 V) (IF = 1 mA, VCE = 1 V) (IF = 0.5 mA, VCE = 1 V) (IF =1 mA, IC = 1 mA) Saturation Voltage (IF = 5 mA, IC = 10 mA) (IF = 50 mA, IC = 50 mA) (IF = 8 mA, IC = 2 mA) AC Characteristics (IC = 10 mA, VCE = 10 V) (RL = 100 ) (Fig.7) ton toff ton toff ton toff ton toff ton TIL113 toff ) MOC8080 CNX48U VCE(sat) H11B1 H11B2 H11B3 CNX48U H11B1, H11B2 H11B3, MOC8080 CNX48U H11B255 TIL113 H11B1 H11B2 H11B255 H11B3
H11B2
H11B255
H11B3
Test Conditions (IF = 10 mA, VCE = 5 V) (IF = 10 mA, VCE = 1 V)
Min 50 (500) 10 (100) 60 (600) 30 (300) 5 (500) 2 (200) 1 (100) 5 (500) 1.75 (350)
Typ**
Max
Units
Collector Output Current(1)
mA (%)
1.0 1.0 1.0 1.25 25 18 3.5 36 s 70 190 3.5 25 0.35 55 5 100 V
(IF = 10 mA, VCC = 5 V) (RE = 100 ), (RBE = 1M ) Switching Times (Fig. 8) (IF = 1 mA, VCC = 5 V) (RE = 1k ), (RBE = 10M ) (Fig. 8) (IF = 5 mA, VCC = 10 V) (RL = 100 ) (Fig.7) (IF = 200 mA, IC = 50 mA) (VCC = 10 V) (RL = 100 (Fig.7)
ISOLATION CHARACTERISTICS
Characteristic Input-Output Isolation Voltage(2) Isolation Resistance(2) Isolation Capacitance(2) Note ** Typical values at TA = 25C (II-O Test Conditions 1 A, Vrms, t = 1 min.) (VI-O = 500 VDC) (VI-O = , f = 1 MHz) RISO CISO Symbol Min 5300 1011 0.8 pf Typ** Max Units Vac(rms)
6/1/00
200042A
PHOTODARLINGTON OPTOCOUPLERS
CNX48U H11B1 MOC8080 TIL113
Fig. 1 Output Current vs. Input Current
CTR - CURRENT TRANSFER RATIO (NORMALIZED)
H11B2
H11B255
H11B3
Fig. 2 Current Transfer Ratio vs. Ambient Temperature
CTR - CURRENT TRANSFER RATIO (NORMALIZED)
10
TA = 0C, 25C TA = 70C TA = 100C TA = -55C 1
1
NORMALIZED TO: CTR @ IF = 10 mA TA = 25C VCE = 5 V 0.1 0.1 1 10 100
NORMALIZED TO: CTR @ IF = 10 mA TA = 25C VCE = 10 V 0.1 -80 -60 -40 -20 0 20 40 60 80 100 120
IF - LED INPUT CURRENT (mA)
TA - AMBIENT TEMPERATURE (C)
Fig. 3 Collector Current vs. Collector-Emitter Voltage
NORMALIZED TO: IF = 1 mA VCE = 5 V
Fig. 4 Dark Current vs. Ambient Temperature
ICEO - COLLECTOR-EMITTER DARK CURRENT (nA)
10000 VCE = 10 V 1000
16
IC - COLLECTOR CURRENT (NORMALIZED)
14
12
IF = 10 mA
10 IF = 5 mA
100
8
10
6
1
4
IF = 2 mA
2
0.1
IF = 1 mA
0 0 1 2 3 4 5 6 7 8 9 10
0.01
0
20
40
60
80
100
VCE- COLLECTOR -EMITTER VOLTAGE (V)
TA - AMBIENT TEMPERATURE (C)
Fig. 5 Turn-On Time vs. Input Current
1000 RL = 1 k VCC = 10 V 100 RL = 100 1000
Fig. 6 Turn-Off Time vs. Input Current
TON - TIME (s)
10
RL = 10
TOFF - TIME (s)
100
RL = 1 k
RL = 100 10 RL = 10
1
VCC = 10 V 1 0.1 0.1 1 10 100 0.1 1 10 100
IF - LED INPUT CURRENT (mA)
IF - LED INPUT CURRENT (mA)
6/1/00
200042A
PHOTODARLINGTON OPTOCOUPLERS
CNX48U H11B1 MOC8080 TIL113 TYPICAL ELECTRO-OPTICAL CHARACTERISTIC CURVES
(25C Free air temperature unless otherwise specified) (Cont.)
H11B2
H11B255
H11B3
VCC
INPUT
RL RIN INPUT PULSE OUTPUT OUTPUT 10% 1.5 V 90% 5V
t on IF
t off
Test Circuit (All devices except CNX48U)
Switching Waveforms (All devices except CNX48U)
Fig. 7 Switching Time Test Circuit and Waveforms (All devices except CNX48U)
VCC INPUT INPUT
RBE 50 OUTPUT RE t on
90%
10%
t off
Test Circuit (CNX48U only)
Switching Waveforms (CNX48U only)
Fig. 8 Switching Time Test Circuit and Waveforms (CNX48U only)
Notes 1. The current transfer ratio(IC/IF) is the ratio of the detector collector current to the LED input current with VCE @ 10 V. 2. For this test, LED pins 1 and 2 are common and phototransistor pins 4,5 and 6 are common.
6/1/00
200042A
PHOTODARLINGTON OPTOCOUPLERS
CNX48U H11B1 MOC8080 TIL113 Package Dimensions (Through Hole)
PIN 1 ID.
H11B2
H11B255
H11B3
Package Dimensions (Surface Mount)
0.350 (8.89) 0.330 (8.38)
3 0.270 (6.86) 0.240 (6.10)
2
1
PIN 1 ID.
0.270 (6.86) 0.240 (6.10)
SEATING PLANE
0.350 (8.89) 0.330 (8.38) 0.070 (1.78) 0.045 (1.14)
4
5
6
0.070 (1.78) 0.045 (1.14)
0.300 (7.62) TYP
0.200 (5.08) 0.115 (2.92)
0.200 (5.08) 0.165 (4.18) 0.020 (0.51) MIN 0.016 (0.40) 0.008 (0.20) 0.022 (0.56) 0.016 (0.41) 0.300 (7.62) TYP 0.020 (0.51) MIN 0.100 (2.54) TYP
0.016 (0.41) 0.008 (0.20)
0.154 (3.90) 0.100 (2.54)
0.016 (0.40) MIN 0.315 (8.00) MIN 0.405 (10.30) MAX
0.022 (0.56) 0.016 (0.41) 0.100 (2.54) TYP
0 to 15
Lead Coplanarity : 0.004 (0.10) MAX
Package Dimensions (0.4"Lead Spacing)
Recommended Pad Layout for Surface Mount Leadform
0.270 (6.86) 0.240 (6.10)
0.070 (1.78)
0.060 (1.52)
0.350 (8.89) 0.330 (8.38) 0.070 (1.78) 0.045 (1.14)
0.415 (10.54)
0.100 (2.54) 0.030 (0.76)
SEATING PLANE
0.295 (7.49)
0.200 (5.08) 0.115 (2.92)
0.154 (3.90) 0.100 (2.54)
0.004 (0.10) MIN
0.016 (0.40) 0.008 (0.20)
0.022 (0.56) 0.016 (0.41) 0.100 (2.54) TYP
0 to 15 0.400 (10.16) TYP
NOTE All dimensions are in inches (millimeters)
6/1/00
200042A
PHOTODARLINGTON OPTOCOUPLERS
CNX48U H11B1 MOC8080 TIL113 ORDERING INFORMATION
Option
S SD W 300 300W 3S 3SD
H11B2
H11B255
H11B3
Order Entry Identifier
.S .SD .W .300 .300W .3S .3SD
Description
Surface Mount Lead Bend Surface Mount; Tape and reel 0.4" Lead Spacing VDE 0884 VDE 0884, 0.4" Lead Spacing VDE 0884, Surface Mount VDE 0884, Surface Mount, Tape & Reel
QT Carrier Tape Specifications ("D" Taping Orientation)
12.0 0.1 4.85 0.20 4.0 0.1 0.30 0.05 4.0 0.1 O1.55 0.05 1.75 0.10
7.5 0.1 13.2 0.2 16.0 0.3 9.55 0.20
0.1 MAX
10.30 0.20
O1.6 0.1
User Direction of Feed
NOTE All dimensions are millimeters
6/1/00
200042A
PHOTODARLINGTON OPTOCOUPLERS
DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. LIFE SUPPORT POLICY FAIRCHILD'S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user. 2. A critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.
www.fairchildsemi.com
(c) 2000 Fairchild Semiconductor Corporation
6/1/00
200042A


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