KTLP350 Series - COSMO Electronics Corporation

KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
z
z Schematic
Description
The KTLP350 series consists of an GaAlAs
light emitter diode and an integrated. This unit is
1
8
2
7
3
6
4
5
8-lead DIP package. KTLP350 series is suitable
for gate driving circuit of IGBT or power
MOSFET.
z
1. N.C.
5. GND
2. Anode
6. Vo (Voltage Output)
3. Cathode
7. Vo (Voltage Output)
4. N.C.
8. Vcc
Features
1. This unit is 8.lead DIP package.
2. Input threshold current: IF=5mA(max.)
3. Supply current (Icc): 3 mA (max.)
4. Supply voltage (Vcc): 10 – 30V
5. Output current (IO): ±2.5A (max.)
6. Switching time (tpLH/tpHL): 0.5µs(max.)
7. Isolation voltage: 5000Vrms(min.)
8. Agency Approvals:
• UL1577 / CUL C22.2 No.1 & NTC No.5, File No. E169586
• VDE EN 60747-5-2, File No. 40020973
z
Applications
• Transistor inverter
• Inverter for air conditioner
• IGBT gate drive
• Power MOSFET gate drive
• IH(Induction Heating)
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Truth Table
LED
OUTPUT
Q1
Q2
ON
HIGH LEVEL
ON
OFF
OFF
LOW LEVEL
OFF
ON
*The use of a 0.1μF bypass capacitor must be
connected between pins 8 and 5 is recommended.
Cosmo Electronics Corp.
Document No. 69P51008.1
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
z
Unit : mm
Outside Dimension
1.Dual-in-line type
2.Surface mount type
KTLP350
KTLP350S
9.68
2.70
3.00
0
2
.
1
4
5
.
2
4
5
.
2
2.54
4
5
.
2
0
0
.
0
1
°
13.00
0.5
1.20
8 0
7 0
. .
0 1
0.26
5
2
.
0
0.4
0
5
.
3
3.50
8
6
.
9
2 0
6 5
. .
7 6
7.62
6.50
°
13.00
4.Long creepage distance
for surface mount type
3.Long creepage distance type
KTLP350H
KTLP350L
8
6
.
9
6 2 0
1
. 6 5
0 . .
1 7 6
8
6
.
9
0
5
.
3
0
5
.
3
~°
5
2
.
0
0
8
.
1
1
0
2
.
1
25
..
00
+-
±
0
1
0
5
2
.
0
0
9
.
0
5
2
.
0
0
9
.
0
0
7
.
2
3
.
0
0
0
.
3
±
5
2
.
0
4
5
.
2
4
5
.
2
4
5
.
2
5
. 0
0 2
.
1
4
5
.
2
4
5
.
2
4
5
.
2
:
TOLERANCE
±0.2mm
z Device Marking
Notes:
cosmo
cosmo
350
350
YWW
Y WW
Cosmo Electronics Corp.
Document No. 69P51008.1
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Y: Year code / WW: Week code
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
z
(Ta = 25°C)
Absolute Maximum Ratings
Parameter
Symbol
Rating
Unit
IF
20
mA
ΔIF / ΔTa
-0.54
mA /℃
IFPT
1
A
Reverse voltage
VR
5
V
Junction temperature
Tj
125
℃
“H” Peak output current (*Note 2)
IOPH
-2.5
A
“L”Peak output current (*Note 2)
IOPL
+2.5
A
Forward current
Forward current derating(Ta≧70℃)
Input
Output
Peak transient forward current
(*Note 1)
Output voltage
(Ta﹤95℃)
VO
35
V
Supply voltage
(Ta﹤95℃)
Vcc
35
V
Output voltage derating (Ta≧95℃)
ΔVO / ΔTa
-1.0
V/℃
Supply Voltage derating(Ta≧95℃)
ΔVCC /ΔTa
-1.0
V/℃
Tj
125
℃
f
50
KhZ
Operating temperature range
Topr
-40~115
℃
Storage temperature range
Tstg
-55~125
℃
Junction temperature
Operating frequency
(*Note 3)
Lead soldering temperature(10s)
(*Note 4)
Tsol
260
℃
Isolation voltage (AC,1min.,R.H≦60%)
(*Note 5)
BVs
5000
Vrms
*Note1: Pulse width Pw ≦ 1μs,300pps.
*Note2: Exporenential waveform pulse width Pw≦0.3us,f≦15kHz.
*Note3: Exporenential waveform,IOPH ≧ -2.0A (≦0.3μs),IOPL ≦ +2.0A (≦0.3μs).
*Note4: It is 2 mm or more from a lead root.
*Note5: Device is considered as a two terminal device: Pin1,2,3 and 4 shorted together, and pins 5,6,7 and 8
shorted together.
z
(Ta = 25℃)
Electrical Characteristics
Parameter
Symbol
Test Circuit
Test Condition
Min.
Typ.
Max.
Unit
VF
—
IF=10mA,Ta=25℃
—
1.6
1.8
V
△VF/△Ta
—
IF=10mA
—
-2.0
—
mV/℃
Input reverse current
IR
—
VR=5V,Ta=25℃
—
—
10
μA
Input capacitance
CT
—
V=0,f=1MHz,Ta=25℃
—
45
250
pF
—
-1.6
-1.0
A
—
—
-2.0
Input forward voltage
Temperature coefficient of
forward voltage
VCC=30V IF=5mA
Output current
“H” level
IOPH
3
Vb=3.5V
VCC=15V IF=5mA
Vb=7.0V
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
VCC=30V IF=0mA
“L” level
2
IOPL
Va=2.5V
VCC=15V IF=0mA
Va=7.5V
“H” level
VOH
4
Output voltage
“L” level
VOL
5
“H” level
ICCH
—
Supply current
“L” level
Threshold input
“Output
current
L→H”
Threshold input
“Output
voltage
H→L”
Supply voltage
Capacitance
(input-output)
Resistance (input-output )
ICCL
—
IFLH
—
VFHL
—
VCC
—
CS
—
RS
—
VCC1=15V,VEE1=-15V
RL=200Ω,IF=5mA
VCC1=15V,VEE1=-15V
RL=200Ω,VF=0.8V
VCC=30V,IF=10mA,
Ta=25℃
VCC=30V,IF=0mA,
Ta=25℃
VCC1=15V,
Vo>1V,Io=0mA
VCC1=15V,
Vo>1V,Io=0mA
Vs=0,f=1MHz,Ta=25℃
Vs=500V,Ta=25℃,
R.H.≦60%
1.0
1.6
—
2.0
—
—
11
13.7
—
V
—
-14.9
-12.5
—
2
3.0
mA
—
2
3.0
—
1.8
5
mA
0.8
—
—
V
10
—
30
V
—
1.0
2.0
pF
1*1012
1014
—
Ω
*All typical values are at Ta=25℃ (*A):Duration of IO time ≦ 50μs(1 Pulse)
z
(Ta = 25℃)
Switching Characteristics
Parameter
Symbol
Propagation
“L→H”
tpLH
delay time
“H→L”
tpHL
Output rise time
tr
Output fall time
tf
Test Circuit
IF=5mA (Note8)
6
VCC=30V
Rg=20Ω,Cg=10nF
Common mode transient
immunity at high level
Test Condition
Typ.
Max.
Unit
50
260
500
50
260
500
—
15
—
—
8
—
-15
—
—
KV / μs
15
—
—
KV / μs
ns
VCM=1000Vp-p,IF=5mA
CMH
7
VCC=30V,Vo(min)=26V
output
Ta=25℃
Common mode transient
immunity at low level
Min.
VCM=1000Vp-p,IF=0
CML
7
VCC=30V, Vo(max)=1V
output
Ta=25℃
*All typical values are at Ta=25℃.
*Note 8: Input signal rise time (fall time) < 0.5μs.
Cosmo Electronics Corp.
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
Fig.2 Output Voltage
vs. Forward Current
100
50
30
Forward Voltage Temperature
Coefficient VF / Ta (mV/℃)
Forward Current IF (mA)
Fig.1 Forward Current
vs. Forward Voltage
10
5
3
1
0.5
0.3
0.1
0.05
0.03
0.01
0.8
1.0
1.2
1.8
1.6
1.4
2.0
- 2 .6
- 2 .4
- 2 .2
- 2 .0
- 1 .8
- 1 .6
- 1 .4
0 .1
0 .3
Forward Voltage VF (V)
5
10
30
Fig.4 Supply Voltage
vs. Ambient Temperature
40
40
Supply Voltage Vcc (V)
Allowable Forward Current IF (mA)
3
Forward Current IF (mA)
Fig.3 Allowable Forward Current
vs. Ambient Temperature
30
20
10
0
-40
0
20
40
60
80
100
30
20
10
0
-40
120
Ambient Temperature Ta (℃)
High Level Output Voltage
VOH(V)
-20
-15
VCC1=15V,VEE1=-15VRL=200Ω,VF=0.8V
-5
0
-40 -20
0
20
40
60
40
60
80
100
120
25
20
15
10
VCC1=15V,VEE1=-15VRL=200Ω,IF=5mA
5
0
-40 -20
80 100 120
Ambient Temperature Ta (℃)
Cosmo Electronics Corp.
Document No. 69P51008.1
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Fig.6 High Level Output Voltage
vs. Ambient Temperature
-25
-10
0
Ambient Temperature Ta (℃)
Fig.5 Low Level Output Voltage
vs. Ambient Temperature
Low Level Output Voltage VOL(V)
1
0 .5
0
20
40
60
80
100 120
Ambient Temperature Ta (℃)
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
Fig.8 High Level Supply Current
vs. Ambient Temperature
Vcc=30V
5
High Level Supply Current ICCH
(mA)
Low Level Supply Current ICCL (mA)
Fig.7 Low Level Supply Current
vs. Ambient Temperature
4
3
2
1
0
-40 -20
0
20
40
60
80 100 120
Ambient Temperature Ta (℃)
Vcc=30V
I F =10mA
5
4
3
2
1
0
-40 -20
0
20
40
60
80
100 120
Ambient Temperature Ta (℃)
Fig.9 Propagation Delay Time
vs. Ambient Temperature
I F =5mA,Vcc=30V,
Rg=20Ω,Cg=10nF
tPLH, tPHL (ns)
Propagation Delay Time
500
400
300
200
100
0
-40 -20
0
20
40
60
80 100 120
Ambient Temperature Ta (℃)
z
Test Circuit
1.
Top View
Cosmo Electronics Corp.
Document No. 69P51008.1
2.
-6-
IOPL Measure
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
3.
IOPH Measure
5.
VOL Measure
6.
tpLH, tpHL, tr, tf,Measure
IF
4.
VOH Measure
IF
ˆ
104PF
M
VCC
VO
Rg
cg
VOH 80%
GND
VO
100Ω
VOL 80%
‡/+
Cosmo Electronics Corp.
Document No. 69P51008.1
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
7.
CMH, CML,Measure
V CM
1000V
90%
10%
ˆ
M
S W :A ( IF = 5 m A )
C MH
1V
C ML
S W :B ( IF = 0 )
CML=
800(V)
tr (μs)
;
CMH=
26V
800(V)
tf (μs)
*CML(CMH) is the maximum rate of rise (fall) of the common mode voltage that can be sustained with the output
voltage in the low (high) state.
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
z Recommended Soldering Conditions
(a) Infrared reflow soldering:
„
Peak reflow soldering:
260℃ or below (package surface temperature)
„
Time of peak reflow temperature:
10 sec
„
Time of temperature higher than 230℃:
30-60 sec
„
Time to preheat temperature from 180~190℃: 60-120 sec
„
Time(s) of reflow:
Two
„
Flux:
Rosin flux containing small amount of chlorine (The
flux with a maximum chlorine content of 0.2 Wt% is
recommended.)
Recommended Temperature Profile of Infrared Reflow
10 sec M ax.
temperature
260℃
230℃
190℃
3 0 -6 0 s e c
180℃
6 0 -1 2 0 s e c
t (s )
(b) Wave soldering:
„
Temperature:
260℃ or below (molten solder temperature)
„
Time:
10 seconds or less
„
Preheating conditions:
120℃ or below (package surface temperature)
„
Time(s) of reflow:
One
„
Flux:
Rosin flux containing small amount of chlorine (The flux with a
maximum
chlorine content of 0.2 Wt% is recommended.)
(c) Cautions:
„
Fluxes:
Avoid removing the residual flux with freon-based and chlorine-based
cleaning solvent.
„
Avoid shorting between portion of frame and leads.
Cosmo Electronics Corp.
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
z
Numbering System
KTLP350 X (Y)
Notes:
KTLP350 = Part No.
X = Lead form option (blank、S、H、L )
Y = Tape and reel option (TL、TR、TLD、TRU)
Option
Packing quantity
S (TL)
surface mount type package + TL tape & reel option
1000 units per reel
S (TR)
surface mount type package + TR tape & reel option
1000 units per reel
L (TLD)
L (TRU)
long creepage distance for surface mount type package +
800 units per reel
TLD tape & reel option
long creepage distance for surface mount type package +
800 units per reel
TRU tape & reel option
Recommended Pad Layout for Surface Mount Lead Form
2.Long creepage distance
for surface mount type
1.Surface mount type
8-pin L
1.9
2.54
2.54
2.54
1.5
2.54
1.9
2.54
1.5
8-pin SMD
2.54
z
Description
8.3
10.7
Unit :mm
Cosmo Electronics Corp.
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
z 8-pin SMD Carrier Tape & Reel
unit:mm
TL
TR
Direction of feed from reel
Direction of feed from reel
Quantity:1000pcs/reel
Cosmo Electronics Corp.
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
z 8-pin L Carrier Tape & Reel
1.75±0.10
2.00±0.10
4.00±0.10
Unit:mm
12.00±0.10
11.50±0.10
24.00±0.30
12.35±0.10
TOLERANCE:±0.2mm
Direction of feed from reel
100±0.50
Direction of feed from reel
13.0±0.20
TRU
330 Max.
TLD
+0.20
24.40 -0.00
30.40 Max.
Quantity:800pcs/reel
Cosmo Electronics Corp.
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KTLP350 Series
8PIN IGBT GATE DRIVE
PHOTOCOUPLER
cosmo
z
Application Notice
The content of datasheet is the guidance for product use only. cosmo takes no responsibility to the
accuracy of the information provided here. For continuously improving all of products, including quality,
reliability, function...etc., cosmo reserves the right to change the specification, characteristics, data,
materials, and structure of products without notice. Please contact with cosmo to obtain the latest
specification.
It would be required to comply with the absolute maximum ratings listed in the specification. cosmo has
no liability and responsibility to the damage caused by improper use of the products.
cosmo products are intended to be designed for use in general electronics application list below:
a. Personal computer
b. OA machine
c. Audio / Video
d. Instrumentation
e. Electrical application
f. Measurement equipment
g. Consumer electronics
h. Telecommunication
cosmo devices shall not be used or related with equipment requiring higher level of quality / reliability, or
malfunction, or failure which may cause loss of human life, bodily injury, includes, without limitation:
a. Medical and other life supporting equipments
b. Space application
c. Telecommunication equipment (trunk lines)
d. Nuclear power control
e. Equipment used for automotive vehicles, trains, ships...etc.
This publication is the property of cosmo. No part of this publication may be reproduced or copied in any
form or any means electronically or mechanically for any purpose, in whole or in part without any written
permission expressed from cosmo.
Cosmo Electronics Corp.
Document No. 69P51008.1
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