H11B255ST1-G [CTMICRO]
DC Input 6-Pin Photodarlington Optocoupler;型号: | H11B255ST1-G |
厂家: | CT Micro International Corporation |
描述: | DC Input 6-Pin Photodarlington Optocoupler |
文件: | 总13页 (文件大小:1219K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Features
Description
The 4N29, 4N30, 4N31, 4N32, 4N33, H11B1,
•
•
•
•
•
High isolation 5000 VRMS
CTR flexibility available see order information
H11B2, H11B3, H11B255, and TIL113 series
consists of a photodarlington transistor optically
coupled to a gallium arsenide Infrared-emitting diode
in a 4-lead DIP package with bending option.
DC input with transistor output
Temperature range - 55 °C to 100 °C
Regulatory Approvals
ꢀ
ꢀ
ꢀ
ꢀ
UL - UL1577 (E364000)
VDE - EN60747-5-5(VDE0884-5)
CQC – GB4943.1, GB8898
IEC60065, IEC60950
Applications
•
•
•
Switch mode power supplies
Computer peripheral interface
Microprocessor system interface
Package Outline
Schematic
Note: Different bending options available. See package
dimension.
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 1
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Absolute Maximum Rating at 25oC
Symbol
Parameters
Ratings
5000
Units
VRMS
0C
Notes
Isolation voltage
V
ISO
Operating temperature
Storage temperature
Soldering temperature
-55 ~ +100
-55 ~ +150
260
T
OPR
STG
T
0C
T
SOL
0C
Emitter
IF
Forward current
60
1
mA
A
Peak transient current (≤1µs P.W,300pps)
Reverse voltage
IF(TRANS)
VR
6
V
Power dissipation
120
mW
PD
Detector
PD
Power dissipation
150
55
55
7
mW
V
Collector-Emitter Breakdown Voltage
Collector-Base Breakdown Voltage
Emitter-Collector Breakdown Voltage
Emitter-Base Breakdown Voltage
BVCEO
BVCBO
BVECO
BVEBO
V
V
7
V
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 2
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Electrical Characteristics TA = 25°C (unless otherwise specified)
Emitter Characteristics
Symbol
Parameters
Forward voltage
Test Conditions
IF=10mA
Min
Typ
1.24
1.45
-
Max
1.4
1.5
5
Units Notes
V
V
VF
VF
IR
Forward voltage
Reverse Current
Input Capacitance
H11B3
IF=50mA
VR = 6V
f= 1MHz
-
-
µA
pF
45
-
CIN
Detector Characteristics
Symbol
BVCEO
BVECO
BVCBO
ICEO
Parameters
Test Conditions
Min
55
7
Typ
Max
Units
V
Notes
Collector-Emitter Breakdown
Emitter-Collector Breakdown
Collector-Base Breakdown
Collector-Emitter Dark Current
IC= 100µA
-
-
-
-
-
IE= 100µA
-
-
V
IC= 100µA
55
-
V
VCE= 10V, IF=0mA
100
nA
Transfer Characteristics
Symbol
Parameters
4N29, 4N30
4N31
Test Conditions
Min
100
50
Typ
Max
Units
Notes
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
IF= 10mA, VCE= 10V
4N32, 4N33
H11B1
500
500
200
100
100
300
Current
Transfer
Ratio
%
CTR
H11B2
IF= 1mA, VCE= 10V
H11B3
H11B255
TIL113
IF= 10mA, VCE= 5V
IF= 10mA, VCE= 1V
Collector-
Emitter
4N29, 4N30, 4N32,
4N33
IF= 8mA, IC= 2mA
IF= 8mA, IC= 2mA
IF= 1mA, IC= 1mA
-
-
-
-
-
-
-
1.0
1.2
1.0
1.0
Saturation
Voltage
4N31, TIL113
H11B1, H11B2,
H11B3
V
VCE(SAT)
H11B255
IF=50mA, IC= 50mA
VIO= 500VDC
f= 1Mhz
-
Isolation Resistance
Isolation Capacitance
1x1011
Ω
RIO
CIO
0.25
pF
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 3
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Switching Characteristics
Symbol
Parameters
4N29, 4N30,
Test Conditions
Min
Typ
Max
Units Notes
IF= 200mA, Ic= 50mA, RL=
4N31, 4N32,
4N33, TIL113
H11B1, H11B2,
-
-
4.7
100Ω
Turn On Time
µs
TON
IF= 10mA, VCE= 10V, RL=
-
-
-
-
24
-
-
H11B3, H11B255 100Ω
4N29, 4N30,
30
90
-
4N31
IF= 200mA, Ic= 50mA, RL=
100Ω
4N32, 4N33,
TIL113
Turn Off Time
-
µs
TOFF
H11B1, H11B2,
IF= 10mA, VCE= 10V, RL=
17
H11B3, H11B255 100Ω
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 4
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Typical Characteristic Curves
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 5
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 6
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Package Dimension Dimensions in mm unless otherwise stated
Standard DIP – Through Hole
Wide Lead Forming – Through Hole (M Type)
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 7
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Surface Mount Forming (S Type)
Surface Mount Forming (Low Profile) (SL Type)
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 8
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Recommended Solder Mask Dimensions in mm unless otherwise stated
Marking Information
CT
4N29
YWWK
Note:
CT
4N29
Y
: Denotes “CT Micro”
: Part Number
: Fiscal Year
WW
K
: Work Week
: Manufacturing Code
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 9
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Ordering Information
4N2X(Y)(Z)-G, 4N3X(Y)(Z)-G, H11BX(Y)(Z)-G, TIL113(Y)(Z)-G
X = (9 for 4N2X), (0,1,2,3 for 4N3X series), (1,2,3,255 for H11BX series)
Y = Lead form option (S, SL, M or none)
Z = Tape and reel option (T1, T2 or none)
G= Material option (G: Green, None: Non-green)
Option
None
M
Description
Quantity
Standard 6 Pin Dip
65Units/Tube
Wide Lead Forming
65Units/Tube
S(T1)
S(T2)
SL(T1)
SL(T2)
Surface Mount Lead Forming – With Option 1 Taping
Surface Mount Lead Forming – With Option 2 Taping
Surface Mount Lead Forming(Low Profile) – With Option 1 Taping
Surface Mount Lead Forming(Low Profile) – With Option 2 Taping
1000 Units/Reel
1000 Units/Reel
1000 Units/Reel
1000 Units/Reel
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 10
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Carrier Tape SpecificationsDimensions in mm unless otherwise stated
Option S(T1) & SL(T1)
Option S(T2) & SL(T2)
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 11
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
Reflow Profile
Profile Feature
Pb-Free Assembly Profile
150°C
Temperature Min. (Tsmin)
Temperature Max. (Tsmax)
Time (ts) from (Tsmin to Tsmax)
Ramp-up Rate (tL to tP)
200°C
60-120 seconds
3°C/second max.
217°C
Liquidous Temperature (TL)
Time (tL) Maintained Above (TL)
Peak Body Package Temperature
Time (tP) within 5°C of 260°C
Ramp-down Rate (TP to TL)
Time 25°C to Peak Temperature
60 – 150 seconds
260°C +0°C / -5°C
30 seconds
6°C/second max
8 minutes max.
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 12
4N29, 4N30, 4N31, 4N32, 4N33
H11B1, H11B2, H11B3, H11B255, TIL113
DC Input 6-Pin Photodarlington Optocoupler
DISCLAIMER
CT MICROELECTRONICS RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY
PRODUCTS HEREIN TO IMPROVE RELIABILIBILITY, FUNCTION OR DESIGN. CT MICRO 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.
______________________________________________________________________________________
CT MICROELECTRONICS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT
DEVICES OR SYSTEMS WITHOUT EXPRESS WRITTTEN APPROVAL OF CT MICROELECTRONICS LTD.
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,
or (c) whose failure to perform when properly used
in accordance with instruction for use provided in
the labeling, can be reasonably expected to result
in significant injury to the user.
2. A critical component is 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.
CT Microelectronics
Proprietary & Confidential
Rev 1
Apr, 2014
Page 13
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