CT Micro CTM611T2 10mbit/s 5-pin mini-flat logic gate optocoupler Datasheet

CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Description
Features
•
High speed 10MBit/s
•
High isolation voltage between input and output
The CTM600, CTM601, and CTM611 optocouplers
consist of an AlGaAS LED, optically coupled to a
very high speed integrated photo-detector logic gate
(Viso=3750 Vrms )
•
Guaranteed CTR performance from 0°C to 70°C
•
Wide operating temperature range of -40°C to
with a strobe able output. The output of the detect IC
is a high speed logic gate integrated with a photo
detector. The switching parameters are guaranteed
85°C
over the temperature range of -40°C to +85°C. A
•
Green Package
•
Regulatory Approvals
UL - UL1577 (E364000)
VDE - EN60747-5-5(VDE0884-5)
CQC – GB4943.1, GB8898
IEC60065, IEC60950
maximum input signal of 5mA will provide a minimum
output sink current of 13mA (fan out of 8).
Applications
Package Outline
•
Line receivers
•
Telecommunication equipment
•
High speed logic ground isolation
•
Feedback loop in switch-mode power supplies
•
Home appliances
Schematic
Note: Different bending options available. See package
dimension.
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Absolute Maximum Rating at 25oC
Symbol
Parameters
Ratings
Units
Notes
3750
VRMS
1
VISO
Isolation voltage
TOPR
Operating temperature
-40 ~ +100
oC
TSTG
Storage temperature
-55 ~ +150
oC
TSOL
Soldering temperature
260
oC
2
Emitter
IF
Forward current
50
mA
VR
Reverse voltage
5
V
PD
Power dissipation
100
mW
PD
Power dissipation
85
mW
IO
Average Output current
50
mA
VCC
Supply voltage
7
V
VO
Output voltage
7
V
Detector
Notes
1.
AC for 1 minute, RH = 40 ~ 60%.
2.
For 10 second peak
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Electrical Characteristics
TA = 0 - 70°C (unless otherwise specified). Typical values are measured at TA = 250C and VCC=5V
Emitter Characteristics
Symbol
Parameters
Test Conditions
Min
Typ
Max
Units
-
1.4
1.6
V
VF
Forward voltage
IF = 10mA
VR
Reverse Voltage
IR = 5µA
5.0
-
-
V
IF =10mA
-
-1.6
-
mV/°C
Test Conditions
Min
Typ
Max
Units
∆VF/∆TA
Notes
Temperature coefficient of forward
voltage
Detector Characteristics
Symbol
Parameters
ICCL
Logic Low Supply Current
IF=10mA, VO=Open, VCC=5V
-
9
13
mA
ICCH
Logic High Supply Current
IF=0mA, VO=Open, VCC=5V
-
6
9
mA
Min
Typ
Max
Units
2
100
uA
-
3.3
5
mA
-
0.35
0.6
V
Notes
Transfer Characteristics
Symbol
Parameters
IOH
Logic High Output Current
IFT
Input Threshold Current
VOL
Logic Low Output Voltage
Test Conditions
IF=250uA, VO= 5.5V,
Notes
VCC=5.5V, VO=0.6V,
IO=13mA
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IF=5mA, IO=13mA, VCC=5.5V,
Page 3
Rev 2
Nov, 2015
CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Switching Characteristics
Symbol
TPHL
TPLH
Parameters
Test Conditions
Min
Typ
Max
Units
-
40
75
ns
-
35
75
ns
Notes
Propagation Delay Time Logic
High to Logic Low
Propagation Delay Time Logic
CL=15pF,RL=350Ω
Low to Logic High
Tr
Output Rise Time
-
40
-
ns
Tf
Output Fall Time
-
10
-
ns
-
-
-
5000
-
-
20000
-
-
-
-
-
5000
-
-
20000
-
-
IF = 7.5mA , VOH=2.0V,
CTM600
RL=350Ω, TA=25°C,
VCM=10Vp-p
IF = 7.5mA , VOH=2.0V,
Common Mode
CMH
Transient Immunity
CTM601
RL=350Ω, TA=25°C,
V/µs
VCM=50Vp-p
at Logic High
IF = 7.5mA , VOH=2.0V,
CTM611
RL=350Ω, TA=25°C,
VCM=1000Vp-p
IF = 0mA , VOL=0.8V,
CTM600
RL=350Ω, TA=25°C,
VCM=10Vp-p
IF = 0mA , VOL=0.8V,
Common Mode
CML
Transient Immunity
CTM601
RL=350Ω, TA=25°C,
V/µs
VCM=50Vp-p
at Logic Low
IF = 0mA , VOL=0.8V,
CTM611
RL=350Ω, TA=25°C,
VCM=1000Vp-p
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Typical Characteristic Curves
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Test Circuits
Figure 11
Figure 12
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Test Circuits
Figure 13
Figure 14
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Package Dimension Dimensions in mm unless otherwise stated
Recommended Solder Mask Dimensions in mm unless otherwise stated
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Device Marking
CT
600
VYWWK
CT
: Denotes “CT Micro”
600
V
Y
WW
: Product Number
: VDE Option
: Fiscal Year
: Work Week
K
: Production Code
Ordering Information
CTM6XX(V)(Z)
X = Part No. (00, 01, or 11)
V = VDE option (V or none)
Z = Tape and reel option (T1 or T2)
Option
Description
Quantity
T1
Surface Mount Lead Forming – With Option 1 Taping
3000 Units/Reel
T2
Surface Mount Lead Forming – With Option 2 Taping
3000 Units/Reel
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Carrier Tape Specifications Dimensions in mm unless otherwise stated
Option T1
Option T2
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
Reflow Profile
Profile Feature
Pb-Free Assembly Profile
Temperature Min. (Tsmin)
150°C
Temperature Max. (Tsmax)
200°C
Time (ts) from (Tsmin to Tsmax)
60-120 seconds
Ramp-up Rate (tL to tP)
3°C/second max.
Liquidous Temperature (TL)
217°C
Time (tL) Maintained Above (TL)
60 – 150 seconds
Peak Body Package Temperature
260°C +0°C / -5°C
Time (tP) within 5°C of 260°C
30 seconds
Ramp-down Rate (TP to TL)
6°C/second max
Time 25°C to Peak Temperature
8 minutes max.
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CTM600, CTM601, CTM611
10Mbit/s 5-Pin Mini-Flat Logic Gate Optocoupler
DISCLAIMER
CT MICRO RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS
HEREIN TO IMPROVE RELIABILITY, 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 MICRO ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR
SYSTEMS WITHOUT EXPRESS WRITTEN APPROVAL OF CT MICRO INTERNATIONAL CORPORATION.
1. Life support devices or systems are devices or
2. A critical component is any component of a life
systems which, (a) are intended for surgical
support device or system whose failure to perform
implant into the body, or (b) support or sustain life,
can be reasonably expected to cause the failure of
or (c) whose failure to perform when properly used
the life support device or system, or to affect its
in accordance with instruction for use provided in
safety or effectiveness.
the labelling, can be reasonably expected to result
in significant injury to the user.
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