ACPL-W343-500E Avago Technologies US Inc., ACPL-W343-500E Datasheet

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ACPL-W343-500E

Manufacturer Part Number
ACPL-W343-500E
Description
Gate Drive Optocoupler,T/R+LF
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of ACPL-W343-500E

No. Of Channels
1
Optocoupler Output Type
Gate Drive
Input Current
16mA
Opto Case Style
SOIC
No. Of Pins
6
Leaded Process Compatible
Yes
Peak Reflow Compatible (260 C)
Yes
Rohs Compliant
Yes
Lead Free Status / Rohs Status
 Details

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ACPL-W343-500E
Manufacturer:
AVAGO/安华高
Quantity:
20 000
ACPL-P343 and ACPL-W343
4.0 Amp Output Current IGBT Gate Drive Optocoupler
with Rail-to-Rail Output Voltage in Stretched SO6
Data Sheet
Description
The ACPL-P343/W343 contains an AlGaAs LED, which is
optically coupled to an integrated circuit with a power
output stage. This optocoupler is ideally suited for driving
power IGBTs and MOSFETs used in motor control inverter
applications. The high operating voltage range of the
output stage provides the drive voltages required by gate
controlled devices. The voltage and high peak output
current supplied by this optocoupler make it ideally
suited for direct driving IGBT with ratings up to 1200 V
/ 200 A. For IGBTs with higher ratings, this optocoupler
can be used to drive a discrete power stage which drives
the IGBT gate. The ACPL-P343 and ACPL-W343 have the
highest insulation voltage of V
= 1140 V
Functional Diagram
CATHODE
CATHODE
Note: A 1 F bypass capacitor must be connected between pins V
V
Truth Table
EE
OFF
ANODE
ANODE
LED
ON
ON
ON
.
NC
NC
peak
“POSITIVE GOING”
1
2
3
(i.e., TURN-ON)
12.1 – 13.5 V
13.5 – 30 V
0 – 12.1 V
V
0 – 30 V
respectively in the IEC/EN/DIN EN 60747-5-2.
CC
– V
CAUTION:
of this component to prevent damage and/or degradation which may be induced by ESD.
EE
It is advised that normal static precautions be taken in handling and assembly
“NEGATIVE GOING”
(i.e., TURN-OFF)
11.1 – 12.4 V
12.4 – 30 V
0 – 11.1 V
IORM
V
0 – 30 V
CC
– V
= 891 V
EE
6
5
4
peak
V
V
V
TRANSITION
CC
OUT
EE
and V
HIGH
LOW
LOW
V
O
CC
IORM
and
Features
 4.0 A maximum peak output current
 3.0 A minimum peak output current
 Rail-to-rail output voltage
 200 ns maximum propagation delay
 100 ns maximum propagation delay diff erence
 LED current input with hysteresis
 35 kV/s minimum Common Mode Rejection (CMR) at
 I
 Under Voltage Lock-Out protection (UVLO) with
 Wide operating V
 Industrial temperature range: -40° C to 105° C
 Safety Approval Pending
Applications
 IGBT/MOSFET gate drive
 AC and Brushless DC motor drives
 Renewable energy inverters
 Industrial inverters
 Switching power supplies
V
hysteresis
– UL Recognized 3750/5000 V
– CSA
– IEC/EN/DIN EN 60747-5-2 V
CC
CM
= 3.0 mA maximum supply current
= 1500 V
CC
Range: 15 to 30 V
IORM
RMS
for 1 min.
= 891/1140 V
peak

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ACPL-W343-500E Summary of contents

Page 1

... IGBT with ratings up to 1200 V / 200 A. For IGBTs with higher ratings, this optocoupler can be used to drive a discrete power stage which drives the IGBT gate. The ACPL-P343 and ACPL-W343 have the highest insulation voltage of V IORM = 1140 V respectively in the IEC/EN/DIN EN 60747-5-2 ...

Page 2

... To order, choose a part number from the part number column and combine with the desired option from the option column to form an order entry. Example 1: ACPL-P343-560E to order product of Stretched SO-6 Surface Mount package in Tape and Reel packaging with IEC/EN/ DIN EN 60747-5-2 Safety Approval in RoHS compliant. Example 2: ACPL-W343-000E to order product of Stretched SO-6 Surface Mount package in Tube packaging and RoHS compliant ...

Page 3

... NOM. (0.040 ±0.010) 9.7 ±0.250 (0.382 ±0.010) ACPL-W343 Stretched SO-6 Package (8 mm clearance) 1.27 (0.050) BSG 0.381 ±0.127 (0.015 ±0.005 7.62 (0.300) + 0.127 6.807  0.005 ( ) 0.268  ...

Page 4

... Recommended Pb-Free IR Profi le Recommended refl ow condition as per JEDEC Standard, J-STD-020 (latest revision). Non- Halide Flux should be used. Regulatory Information The ACPL-P343/W343 is pending approval by the following organizations: UL Recognized under UL 1577, component recognition program (ACPL-W343) expected prior to product release. CSA CSA Component Acceptance Notice #5, File CA 88324 ...

Page 5

... Output IC Power Dissipation Total Power Dissipation Lead Solder Temperature Table 4. Recommended Operating Conditions Parameter Operating Temperature Output Supply Voltage Input Current (ON) Input Voltage (OFF) 5 ACPL-P343 ACPL-W343 Units Conditions 7.0 8.0 mm Measured from input terminals to output terminals, shortest distance through air. 8.0 8.0 mm Measured from input terminals to output terminals, shortest distance path along body ...

Page 6

Table 5. Electrical Specifi cations (DC) Unless otherwise noted, all typical values are at T specifi cations are at recommended operating conditions ( Ground V Parameter Symbol High Level Peak Output ...

Page 7

... PLH kV/ kV/ 25° C; all minimum/maximum specifi cations are at recommended A Device Min. Typ. Max. ACPL-P343 3750 ACPL-W343 5000 12 >50 0.6 135 Ground; all minimum and maximum mA -3.6 to 0.8 V, F(ON) F(OFF) Test Conditions Fig  nF, 14, 15 kHz, 16, 17, Duty Cycle = 50%, ...

Page 8

... Maximum pulse width = 1 ms. 11. Pulse Width Distortion (PWD) is defi ned as |t 12. The diff erence between t and t between any two ACPL-P343 parts under the same test condition. PHL PLH 13. Pin 2 needs to be connected to LED common. 14. Common mode transient immunity in the high state is the maximum tolerable dV output will remain in the high state (i ...

Page 9

T - TEMPERATURE - °C A Figure 1. High output rail voltage vs. temperature 0 -0.5 -1 ...

Page 10

V - OUTPUT LOW VOLTAGE - V OL Figure 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 ...

Page 11

0 -40 -30 -20 - 100 ...

Page 12

V - FORWARD VOLTAGE - V F Figure 19. Input current vs. forward voltage Figure 20. I test circuit ...

Page 13

Figure 22. V test circuit Figure 23. V test circuit Figure 24. I test circuit FLH 13 ...

Page 14

Figure 25. UVLO test circuit mA kHz, 50% Duty Cycle 2 3 Figure 26 and t test ...

Page 15

... The gate resistor RG serves to limit gate charge current and controls the IGBT collector voltage rise and fall times board design, care should be taken to avoid routing the IGBT collector or emitter traces close to the ACPL-P343 input as this can result in unwanted coupling of transient signals into ACPL-P343 and degrade performance. ...

Page 16

... ANODE CATHODE 3 Figure 30. ACPL-P343/W343 with PMOS and NMOS output stage for rail-to-rail output voltage 16 ACPL-P343 uses a power PMOS to deliver the large current and pull shown in Figure 30. This ensures that the IGBT’s gate . To ensure the V voltage is driven to the optimum intended level with no ...

Page 17

... ≥ I OLPEAK – 2 4.3   5  The V value of 2 the previous equation is the V OL Step 1: Check the ACPL-P343/W343 power dissipation and increase Rg if necessary. The ACPL-P343/W343 total power dissipation ( equal to the sum of the emitter power ( • V • Duty Cycle E ...

Page 18

... CM performance by shunting the LED in the off state depend on the LN is close to the F (i.e. when dV /dt > Figure 32. Recommended high-CMR drive circuit for the ACPL-P343/W343 I Direction LP Away from LED cathode through C LC Toward LED cathode through C LC ...

Page 19

... The maximum dead time is equivalent to the diff erence between the maximum and minimum propagation delay diff erence specifi cations as shown in Figure 34. The maximum dead time for the ACPL-P343/ W343 is 200 ns (= 100 ns – (-100 ns)) over an operating temperature range of -40° 105° C. ...

Page 20

... Under Voltage Lockout The ACPL-P343/W343 Under Voltage Lockout (UVLO) feature is designed to prevent the application of insuffi - cient gate voltage to the IGBT by forcing the ACPL-P343/ W343 output low during power-up. IGBTs typically require gate voltages achieve their rated V At gate voltages below 13 V typically, the V increases dramatically, especially at higher currents ...

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