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PDF HCPL-316J Data sheet ( Hoja de datos )

Número de pieza HCPL-316J
Descripción 2.0 Amp Gate Drive Optocoupler with Integrated (VCE) Desaturation Detection and Fault Status Feedback
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No Preview Available ! HCPL-316J Hoja de datos, Descripción, Manual

2.0 Amp Gate Drive Optocoupler
with Integrated (VCE) Desaturation
Detection and Fault Status
Feedback
Technical Data
HCPL-316J
Features
• Drive IGBTs up to
IC = 150 A, VCE = 1200 V
• Optically Isolated, FAULT
Status Feedback
• SO-16 Package
• CMOS/TTL Compatible
• 500 ns Max. Switching
Speeds
• “Soft” IGBT Turn-off
• Integrated Fail-Safe IGBT
Protection
– Desat (VCE) Detection
– Under Voltage Lock-Out
Protection (UVLO) with
Hysterisis
• User Configurable:
Inverting, Non-inverting,
Auto-Reset, Auto-Shutdown
• Wide Operating VCC Range:
15 to 30 Volts
• -40°C to +100°C Operating
Temperature Range
• 15 kV/µs Min. Common Mode
Rejection (CMR) at
VCM = 1500 V
• Regulatory Approvals: UL,
CSA, VDE 0884 (891 Vpeak
Working Voltage)
Fault Protected IGBT Gate Drive
+HV
ISOLATION
BOUNDARY
ISOLATION
BOUNDARY
ISOLATION
BOUNDARY
HCPL - 316J
HCPL - 316J
HCPL - 316J
3-PHASE
INPUT
M
HCPL - 316J
ISOLATION
BOUNDARY
–HV
HCPL - 316J
ISOLATION
BOUNDARY
HCPL - 316J
ISOLATION
BOUNDARY
FAULT
MICRO-CONTROLLER
HCPL - 316J
ISOLATION
BOUNDARY
Agilent’s 2.0 Amp Gate Drive Optocoupler with Integrated Desaturation (VCE) Detection and Fault Status
Feedback makes IGBT VCE fault protection compact, affordable, and easy-to-implement while
satisfying worldwide safety and regulatory requirements.
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.

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HCPL-316J pdf
5
Ordering Information
Specify Part Number followed by Option Number (if desired).
Example: HCPL-316J#XXX
No Option = 16-Lead, Surface Mt. package, 45 per tube.
500 = Tape and Reel Packaging Option, 850 per reel.
Option data sheets available. Contact Agilent sales representative, authorized distributor, or visit our WEB
site at www.hp.com/go/isolator.
0.018
(0.457)
0.050
(1.270)
Package Outline Drawings 16 15 14 13 12 11 10 9
16-Lead Surface Mount
dimensions in: inches
(millimeters)
A 316J
YYWW
TYPE NUMBER
DATE CODE
0.295 ± 0.010
(7.493 ± 0.254)
NOTE:
INITIAL AND CONTINUED VARIATION IN THE
COLOR OF THE HCPL-316J’s WHITE MOLD
COMPOUND IS NORMAL AND DOES NOT AFFECT
DEVICE PERFORMANCE OR RELIABILITY.
12345678
0.406 ± 0.10
(10.312 ± 0.254)
0.345 ± 0.010
(8.986 ± 0.254)
ALL LEADS
TO BE
COPLANAR
± 0.002
Package Characteristics
0.018
(0.457)
0.138 ± 0.005
(3.505 ± 0.127)
0–8°
0.025 MIN.
0.408 ± 0.010
(10.160 ± 0.254)
0.008 ± 0.003
(0.203 ± 0.076)
STANDOFF
All specifications and figures are at the nominal (typical) operating conditions of VCC1 = 5 V, VCC2 - VEE =
30 V, VE - VEE = 0 V, and TA = +25°C.
Parameter
Symbol Min. Typ. Max. Units Test Conditions Note
Input-Output Momentary
Withstand Voltage
Resistance (Input - Output)
Capacitance (Input - Output)
Output IC-to-Pins 9 &10
Thermal Resistance
Input IC-to-Pin 4 Thermal Resistance
VISO
RI-O
CI-O
θO9-10
θI4
3750
>109
1.3
30
60
Vrms
pF
°C/W
RH < 50%, t = 1 min.,
TA = 25°C
VI-O = 500 Vdc
f = 1 MHz
TA = 100°C
1, 2,
3
3
Maximum Solder Reflow Temperature Profile
260
240
220
200
180
160
140
120
100
80
60
40
20
0
0
T = 115°C, 0.3°C/SEC
T = 100°C, 1.5°C/SEC
1 23 4 5 6 7 8
TIME – MINUTES
T = 145°C, 1°C/SEC
9 10 11 12
(NOTE: USE OF NON-CHLORINE ACTIVATED FLUXES IS RECOMMENDED.)

5 Page





HCPL-316J arduino
11
Performance Plots
2.0
1.8
1.6
1.4
1.2
1.0
-40 -20 0 20 40 60 80 100
TA – TEMPERATURE – °C
7
6
5
4
VOUT = VEE + 15 V
VOUT = VEE + 2.5 V
3
2
1
0
-40 -20 0 20 40 60 80 100
TA – TEMPERATURE – °C
200
175
150
125
100
-40°C
75 25°C
100°C
50
25
0 5 10 15 20 25 30
VOUT – OUTPUT VOLTAGE – V
Figure 3. IOH vs. Temperature.
Figure 4. IOL vs. Temperature.
Figure 5. IOLF vs. VOUT.
0
IOUT = -650 µA
IOUT = -100 mA
-1
-2
-3
-4
-40 -20 0 20 40 60 80 100
TA – TEMPERATURE – °C
0.25
0.20
0.15
IOUT = 100 mA
0.10
0.05
0
-40 -20 0 20 40 60 80 100
TA – TEMPERATURE – °C
29.0
28.8
28.6
+100°C
+25°C
-40°C
28.4
28.2
28.0
27.8
27.6
27.4
0 0.2 0.4 0.6 0.8 1.0
IOH – OUTPUT HIGH CURRENT – mA
Figure 6. VOH vs. Temperature.
Figure 7. VOL vs. Temperature.
Figure 8. VOH vs. IOH.
6
+100°C
5 +25°C
-40°C
4
3
2
1
0
0.1 0.5 1.0 1.5 2.0 2.5
IOL – OUTPUT LOW CURRENT – A
20
15
ICC1H
ICC1L
10
5
0
-40 -20 0 20 40 60 80 100
TA – TEMPERATURE – °C
2.6
2.5
2.4
ICC2H
ICC2L
2.3
2.2
-40 -20 0 20 40 60 80 100
TA – TEMPERATURE – °C
Figure 9: VOL vs. IOL.
Figure 10. ICC1 vs. Temperature.
Figure 11: ICC2 vs. Temperature.

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