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PDF ACPL-339J Data sheet ( Hoja de datos )

Número de pieza ACPL-339J
Descripción Dual-Output Gate Drive Optocoupler Interface
Fabricantes AVAGO 
Logotipo AVAGO Logotipo



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No Preview Available ! ACPL-339J Hoja de datos, Descripción, Manual

ACPL-339J
Dual-Output Gate Drive Optocoupler Interface with Integrated
(VCE) DESAT Detection, FAULT and UVLO Status Feedback
Data Sheet
Description
The ACPL-339J is an advanced 1.0 A dual-output, easy-to-
use, intelligent IGBT and Power MOSFET gate drive opto-
coupler interface. Uniquely designed to support MOSFET
buffer of various current ratings, the ACPL-339J makes it
easier for system engineers to support different system
power ratings using one hardware platform by inter-
changing the MOSFET buffers and power IGBT/MOSFET
switches. These changes can be made without redesign-
ing the critical circuit isolation and short-circuit protec-
tion. This concept maximizes gate drive design scalabil-
ity for motor control and power conversion applications
ranging from low to high power ratings.
The ACPL-339J contains a AlGaAs LED. The LED is
optically coupled to an integrated circuit with two power
output stages with active timing control to prevent
cross conduction at external MOSFET buffer. It is also
integrated with features such as VCE detection, under
voltage lockout (UVLO), “soft” IGBT turn-off, and isolated
open collector fault feedback to provide maximum design
flexibility and circuit protection. The ACPL-339J has an
insulation voltage of VIORM = 1414 Vpeak in IEC/EN/DIN EN
60747-5-5.
Functional Diagram
UVLO_P
3
ANODE
CATHODE 2, 4
LED1
D
R
I
V
E
R
Drive Logic
& Overlap
Protection
13 VCC2
12 VOUTP
16 VE
VCC1
FAULT
6
7
SHIELD
LED2
5, 8
VGND1
SHIELD
UVLO_N
DESAT
11 VOUTN
9 VEE
15 DESAT
VGMOS
14
Features
Dual output drive for external NMOS and PMOS buffer
1.0 A minimum peak output current
Active timing control to prevent cross conduction in
MOSFET buffer
IGBT desaturation detection
Isolated DESAT and UVLO fault feedback
Configurable “Soft” shutdown during fault
Under Voltage Lock-Out Protection (UVLO) with
Hysteresis for positive and negative power supply
300 ns maximum propagation delay over temperature
range.
6.0 mA to 10.0 mA Low LED input current
25 kV/µs Minimum Common Mode Rejection (CMR) at
VCM = 1500 V
Wide Operating VCC Range: 15 to 30 Volts
Industrial temperature range: -40° C to 105° C
SO-16 package
Safety Approval Pending
– UL Recognized 5000 VRMS for 1 min.
– CSA
– IEC/EN/DIN EN 60747-5-5 VIORM = 1414 Vpeak
Applications
IGBT/Power MOSFET gate drive Interface
AC and brushless DC motor drives
Renewable energy inverters
Industrial Inverters
Switching power supplies
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.

1 page




ACPL-339J pdf
Table 3. Absolute Maximum Ratings
Parameter
Symbol
Min.
Max.
Units Note
Storage Temperature
Operating Temperature
Output IC Junction Temperature
Average Input Current
Peak Transient Input Current
(< 1 µs pulse width, 300 pps)
TS
TA
TJ
IF(AVG)
IF(TRAN)
-55
-40
125
105
125
25
1.0
°C
°C
°C
mA 1
A
Reverse Input Voltage
VR 5 V
“High” Peak Output Current
IOH(PEAK)
5.5 A 2
“Low” Peak Output Current
IOL(PEAK)
5.5 A 2
Positive Input Supply Voltage
VCC1
0
7
V
FAULT Output Current
IFAULT
8 mA
FAULT Pin Voltage
VFAULT
-0.5
VCC1
V
Total Output Supply Voltage
(VCC2 – VEE)
0
35
V
Negative Output Supply Voltage
(VE – VEE)
0
17
V
Positive Output Supply Voltage
(VCC2 – VE)
0
35 – (VE – VEE)
V
High Side Output Voltage
VOUTP(PEAK)
VE – 0.5
VCC2 + 0.5
V
Low Side Output Voltage
VOUTN(PEAK)
VEE – 0.5
VE + 0.5
V
DESAT Voltage
VDESAT
VE – 0.5
VCC2 + 0.5
V
VGMOS Voltage
VGMOS
VEE – 0.5
VE + 0.5
V
Output IC Power Dissipation
PO
600 mW 3
Input LED Power Dissipation
PI
150 mW 4
Notes:
1. Derate linearly above 70° C free-air temperature at a rate of 0.3 mA/°C.
2. Maximum pulse width = 10 µs
3. Derate linearly above 95° C free-air temperature at a rate of 20 mW/°C.
4. Derate linearly above 95° C free-air temperature at a rate of 4 mW/°C. The maximum LED junction temperature should not exceed 125° C.
Table 4. Recommended Operating Conditions
Parameter
Operating Temperature
Positive input supply voltage
Total Output Supply Voltage
Negative Output Supply Voltage
Positive Output Supply Voltage
Input Current (ON)
Input Voltage (OFF)
Symbol
TA
VCC1
(VCC2 – VEE)
(VE – VEE)
(VCC2 – VE)
IF(ON)
VF(OFF)
Min.
-40
3.3
21
6
15
6
-3.6
Max.
105
5.5
30
15
30 – (VE – VEE)
10
0.8
Units
°C
V
V
V
V
mA
V
Note
5

5 Page





ACPL-339J arduino
8.55
8.5
8.45
8.4
8.35
8.3
8.25
8.2 IVFF==80mVA(I(EIEEHEL))
8.15-40
-20
0 25 50
TA - TEMPERATURE - °C
Figure 11. IEE vs. temperature
IEEH
IEEL
85 105
8.3
8.25
8.2
8.15
8.1
8.05
8
7.95
VTVIFAFC=C==2-8V20mE5V°=A(CI1(EI5EEHEVL) )
7.9 6 7 8
9
Figure 12. IEE vs. VEE
10 11
VE-VEE - V
IEEL
IEEH
12 13 14 15
20
VOUTP
15 VOUTN
10 TA = 25° C
5
0
-5
-10 0 0.5 1 1.5 2 2.5
LOW TO HIGH INPUT CURRENT THRESHOLD - mA
Figure 13. VOUTPH/VOUTNH vs. IFLH
3
2.5
2
1.5
1
0.5
0 -40 -20
0 25 50
TA - TEMPERATURE - °C
Figure 14. IFLH vs. temperature
IFLH ON
IFLH OFF
85 105
8.18
8.16
8.14
8.12
8.1
8.08
8.06
8.04 -40
-20
0 25 50
TA - TEMPERATURE - °C
Figure 15. VDESAT vs. temperature
85 105
235
230
225
220
215
210 -40
-20
0 25 50
TA - TEMPERATURE - °C
Figure 16. ICHG vs. temperature
85 105
11

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