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PDF PS9332L Data sheet ( Hoja de datos )

Número de pieza PS9332L
Descripción 2.0A OUTPUT CURRENT HIGH CMR IGBT GATE DRIVE ACTIVE MILLER CLAMP 8-PIN SDIP PHOTOCOUPLER
Fabricantes California Eastern Labs 
Logotipo California Eastern Labs Logotipo



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No Preview Available ! PS9332L Hoja de datos, Descripción, Manual

A Business Partner of Renesas Electronics Corporation.
PS9332L, PS9332L2
Data Sheet
R08DS0105EJ0100
Rev.1.00
Sep 06, 2013
2.0 A OUTPUT CURRENT, HIGH CMR, IGBT GATE DRIVE, ACTIVE MILLER CLAMP, 8-PIN SDIP PHOTOCOUPLER
DESCRIPTION
The PS9332L and PS9332L2 are optical coupled isolators containing a GaAlAs LED on the input side and a photo
diode, a signal processing circuit and a power output transistor on the output side on one chip.
The PS9332L and PS9332L2 are designed specifically for high common mode transient immunity (CMR), high output
current, active miller clamp and high switching speed.
The PS9332L and PS9332L2 are suitable for driving IGBTs and MOS FETs.
FEATURES
Long creepage distance (8 mm MIN.: PS9332L2)
Peak output current (2.0 A MAX., 1.5 A MIN.)
High speed switching (tPLH, tPHL = 200 ns MAX.)
UVLO (Under Voltage Lock Out) protection with hysteresis
Built-in Active Miller Clamp
High common mode transient immunity (CMH, CML = ±50 kV/μs MIN.)
Operating Ambient Temperature (125 °C)
Embossed tape product : PS9332L-E3, PS9332L2-E3: 2 000 pcs/reel
Pb-Free product
<R> Safety standards
UL approved: No. E72422
CSA approved: No. CA 101391 (CA5A, CAN/CSA-C22.2 60065, 60950)
SEMKO approved (EN 60065, EN 60950)
DIN EN 60747-5-5 (VDE 0884-5) approved (Option)
APPLICATIONS
IGBT, Power MOS FET Gate Driver
Industrial inverter
IH (Induction Heating)
The mark <R> shows major revised points.
The revised points can be easily searched by copying an "<R>" in the PDF file and specifying it in the "Find what:" field.
R08DS0105EJ0100 Rev.1.00
Sep 06, 2013
Page 1 of 18

1 page




PS9332L pdf
PS9332L, PS9332L2
A Business Partner of Renesas Electronics Corporation.
Chapter Title
<R> ELECTRICAL CHARACTERISTICS (at RECOMMENDED OPERATING CONDITIONS,
VEE = GND, unless otherwise specified)
Parameter
Symbol
Conditions
MIN.
TYP.*1 MAX. Unit
Diode
Forward Voltage
Reverse Current
Input Capacitance
Detector High Level Output Current
Low Level Output Current
Clamp Output Peak
Current
VF
IR
CIN
IOH
IOL
ICLAMP
IF = 10 mA, TA = 25°C
VR = 3 V, TA = 25°C
f = 1 MHz, VF = 0 V, TA =
25°C
VO = (VCC 4 V) *2
VO = (VCC 15 V) *3
VO = (VEE + 2.5 V) *2
VO = (VEE + 15 V) *3
VCLAMP = VEE + 2.5V
1.35 1.56 1.75 V
10 μA
30 pF
0.5 1.5
1.5
0.5 1.5
1.5
0.5 1.6
A
A
A
Clamp Pin Threshold
Voltage
High Level Output Voltage
Low Level Output Voltage
High Level Supply Current
Low Level Supply Current
Vt CLAMP
3.0
VOH IO = - 100 mA *4
VCC 3.0 VCC 1.3
VOL IO = 100 mA
0.1
ICCH IF = 10 mA, VO = open
1.5
ICCL VF = 0 to 0.8 V, VO = open
1.5
0.5
2.5
2.5
V
V
V
mA
mA
UVLO Threshold Voltage
VUVLO+ Vo > 5V , IF = 10mA
10.8 12.4 13.4 V
VUVLO- Vo < 5V , IF = 10mA
9.5 11.2 12.5
UVLO Hysteresis
UVLOHYS (VUVLO+) - (VUVLO-)
1.2
Coupled Threshold Input Current
(L H)
IFLH IO = 0 mA, VO > 5 V
1.5 4.0 mA
Threshold Input Voltage
(H L)
VFHL IO = 0 mA, VO < 5 V
0.8
V
Notes: *1. Typical values at TA = 25°C.
*2. Maximum pulse width = 50 μs, Maximum duty cycle = 0.5%.
*3. Maximum pulse width = 10 μs, Maximum duty cycle = 0.2%.
*4. VOH is measured with the DC load current in this testing. (Maximum pulse width = 2 ms, Maximum duty cycle
= 20%)
<R> SWITCHING CHARACTERISTICS (at RECOMMENDED OPERATING CONDITIONS,
VEE = GND, unless otherwise specified)
Parameter
Symbol
Conditions
MIN.
TYP.*1
MAX.
Unit
Propagation Delay Time (L H)
Propagation Delay Time (H L)
Pulse Width Distortion (PWD)
Propagation Delay Time
(Difference Between Any Two
Products)
tPLH
tPHL
|tPHLtPLH|
tPHLtPLH
Rg = 10 Ω, Cg = 10 nF,
f = 10 kHz,
Duty Cycle = 50%*2,
IF = 10 mA
75 200
110 200
35 75
90 90
ns
ns
ns
ns
Rise Time
tr
Fall Time
tf
Common Mode Transient
Immunity at High Level Output
|CMH|
TA = 25°C, IF = 10 mA,
VCC = 30 V, VCM = 1.5 kV
VO (MIN.) = 26 V
Common Mode Transient
Immunity at Low Level Output
|CML|
TA = 25°C, IF = 0 mA,
VCC = 30 V, VCM = 1.5 kV
VO (MAX.) = 1V
Notes: *1. Typical values at TA = 25°C.
*2. This load condition is equivalent to the IGBT load at 1 200 V/75 A.
50
50
17
17
ns
ns
kV/μs
kV/μs
R08DS0105EJ0100 Rev.1.00
Sep 06, 2013
Page 5 of 18

5 Page





PS9332L arduino
PS9332L, PS9332L2
CLAMP OUTPUT PEAK CURRENT vs.
CLAMP PIN THRESHOLD VOLTAGE
2.0
VCC = 30 V, VEE = GND,
IF = 0 mA
1.5
1.0
0.5
0.0
0.0 0.5 1.0 1.5 2.0 2.5
Clamp Pin Threshold Voltage VCLAMP (V)
CLAMP PIN THRESHOLD VOLTAGE
vs. AMBIENT TEMPERATURE
4.5
VCC = 30 V, VEE = GND,
4.0 IF = 0 mA
3.5
3.0
2.5
2.0
1.5
-50 -25 0 25 50 75 100 125 150
Ambient Temperature TA (°C)
OUTPUT VOLTAGE vs. SUPPLY VOLTAGE
14
12
10
8
UVLOHYS
6
4
VUVLO-
VUVLO+
2 (11.2 V) (12.4 V)
0
0 5 10 15 20
Supply Voltage VCC – VEE (V)
Remark The graphs indicate nominal characteristics.
A Business Partner of Renesas Electronics Corporation.
Chapter Title
CLMAP OUTPUT PEAK CURRENT vs.
AMBIENT TEMPERATURE
3.0
VCC = 30 V, VEE = GND,
2.5 IF = 0 mA, VCLAMP = 2.5 V
2.0
1.5
1.0
0.5
0.0
-50 -25 0 25 50 75 100 125 150
Ambient Temperature TA (°C)
POWER CONSUMPTION PER CYCLE
vs. LOAD RESISTANCE
8
VCC = 30 V, VEE = GND,
7 IF = 10 mA, fsw = 10 kHz
6
5
4 Qg = 1 000 nC
3
Qg = 500 nC
2
Qg = 100 nC
1
0
0 10 20 30 40 50
Load Resistance Rg (Ω)
R08DS0105EJ0100 Rev.1.00
Sep 06, 2013
Page 11 of 18

11 Page







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