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PDF PC923L0NSZ Data sheet ( Hoja de datos )

Número de pieza PC923L0NSZ
Descripción Gate Drive DIP 8 pin OPIC Photocoupler
Fabricantes Sharp Electrionic 
Logotipo Sharp Electrionic Logotipo



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PC923L0NSZ
Series
PC923L0NSZ Series
High Speed, Gate Drive DIP 8 pin
OPIC Photocoupler
Description
PC923L0NSZ Series contains a LED optically cou-
pled to an OPIC chip.
It is packaged in a 8 pin DIP, available in SMT gullw-
ing lead form option.
Input-output isolation voltage(rms) is 5.0 kV, High
speed response (tPHL, tPLH : MAX. 0.5 µs).
Features
1. 8 pin DIP package
2. Double transfer mold package
(Ideal for Flow Soldering)
3. Built-in direct drive circuit for MOSFET / IGBT drive
(IO1P, IO2P : 0.6 A)
4. High speed response (tPHL, tPLH : MAX. 0.5 µs)
5. Wide operating supply voltage range
(VCC=15 to 30 V)
6. High noise immunity due to high instantaneous com-
mon mode rejection voltage (CMH : MIN. 15kV/µs,
CML : MIN. 15kV/µs)
7. High isolation voltage between input and output
(Viso(rms) : 5.0 kV)
Agency approvals/Compliance
1. Recognized by UL1577 (Double protection isolation),
file No. E64380 (as model No. PC923L)
2. Approved by VDE (VDE0884) (as an option), file No.
87446 (as model No. PC923L)
3. Package resin : UL flammability grade (94V-0)
Applications
1. IGBT/MOSFET gate drive for inverter control
"OPIC"(Optical IC) is a trademark of the SHARP Corporation. An OPIC consists of a light-detecting element and a signal-processing
circuit integrated onto a single chip.
Notice The content of data sheet is subject to change without prior notice.
In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that may occur in equipment using any SHARP
devices shown in catalogs, data books, etc. Contact SHARP in order to obtain the latest device specification sheets before using any SHARP device.
Sheet No.: D2-A06001EN
1 Date Nov. 28. 2003
© SHARP Corporation

1 page




PC923L0NSZ pdf
PC923L0NSZ Series
Absolute Maximum Ratings
(Ta=25˚C)
Parameter
Symbol Rating
Unit
*1 Forward current
Input
Reverse voltage
IF
VR
20 mA
5V
Supply voltage VCC
35
V
O1 output current
*2 O1 Peak output current
IO1
IO1P
0.1
0.6
A
A
Output O2 output current
IO2
*2 O2 Peak output current IO2P
0.1
0.6
A
A
O1 output voltage
*3 Power dissipation
*4 Total power dissipation
*5 Isolation voltage
VO1
PO
Ptot
Viso (rms)
35
500
550
5.0
V
mW
mW
kV
Operating temperature
Topr 40 to +85 ˚C
Storage temperature
*6 Soldering temperature
Tstg 55 to +125 ˚C
Tsol 270 ˚C
*1 The derating factors of a absolute maximum ratings due to ambient
temperature are shown in Fig.10
*2 Pulse width0.15µs, Duty ratio : 0.01
*3, 4 The derating factors of a absolute maximum ratings due to ambient
temperature are shown in Fig.11
*5 AC for 1minute, 40 to 60 %RH, f=60Hz
*6 For 10s
Electro-optical Characteristics*7
(Unless otherwise specified Ta=Topr)
Parameter
Symbol
Conditions
MIN. TYP. MAX. Unit
Forward voltage
VF1
VF2
Ta=25˚C, IF=10mA
Ta=25˚C, IF=0.2mA
1.6 1.75
V
1.2 1.5
V
Reverse current
IR
Ta=25˚C, VR=5V
− − 10 µA
Terminal capacitance
Ct
Ta=25˚C, V=0, f=1MHz
60 150 pF
Supply voltage
VCC
15 30 V
O1 Low level output voltage VO1L VCC1=12V, VCC2=−12V, IO1=0.1A, IF=5mA
0.2 0.4
V
O2 High level output voltage VO2H
VCC=VO1=24V, IO2=−0.1A, IF=5mA
20
22
V
O2 Low level output voltage VO2L
VCC=24V, IO2=0.1A, IF=0
0.5 0.8 V
O1 leak current
IO1L VCC=VO1=35V, IF=0
− − 500 µA
O2 leak current
*9 High level supply current
*9 Low level supply current
*8 "LowHigh"
input threshold current
Isolation resistance
IO2L
ICCH
ICCL
IFLH
RISO
VCC=VO2=35V, IF=5mA
− − 500 µA
VCC=24V, IF=5mA
1.3 3.0 mA
VCC=24V, IF=0
1.3 3.0 mA
Ta=25˚C, VCC=24V
0.3 1.5 3.0 mA
VCC=24V
0.2 5.0 mA
Ta=25˚C, DC500V, 40 to 60%RH
5×1010
1011
"LowHigh" propagation delay time tPLH
0.3 0.5 µs
"HighLow" propagation delay time tPHL
Ta=25˚C, VCC=24V, IF=5mA
0.3 0.5 µs
Rise time
tr RG=47, CG=3 000pF 0.2 0.5 µs
Fall time
tf
0.2 0.5 µs
Instantaneous common mode
rejection voltage
(High level output)
CMH
Ta=25˚C, VCM=1.5kV(p-p)
IF=5mA, VCC=24V,
VO2H=2.0V
-15
kV/µs
Instantaneous common mode
rejection voltage
(Low level output)
CML
Ta=25˚C, VCM=1.5kV(p-p)
IF=0, VCC=24V,
VO2L=2.0V
15
kV/µs
*7 It shall connect a by-pass capacitor of 0.01µF or more between VCC (pin 8 ) and GND (pin 7 ) near the device, when it measures the transfer characteristics and the output
side characteristics
*8 IFLH represents forward current when output goes from "Low" to "High" *9 O2 output terminal is set open
Sheet No.: D2-A06001EN
5

5 Page





PC923L0NSZ arduino
Fig.22 High Level Supply Current vs.
Supply Voltage
3
Ta=25°C
IF=5mA
2.5
2
1.5
1
0.5
0
15 18 21 24 27 30
Supply voltage VCC (V)
Fig.24 High Level Supply Current vs.
Ambient Temperature
3
VCC=24V
IF=5mA
2.5
2
1.5
1
0.5
0
40 20
0
20 40 60 80 100
Ambient temperature Ta (˚C)
Fig.26 Propagation Delay Time vs.
Forward Current
1.0
tPHL
tPLH
0.8
VCC=VO1=24V
RG=47
CG=3 000pF
PC923L0NSZ Series
Fig.23 Low Level Supply Current vs.
Supply Voltage
3
Ta=25°C
IF=0
2.5
2
1.5
1
0.5
0
15 18 21 24 27 30
Supply voltage VCC (V)
Fig.25 Low Level Supply Current vs.
Ambient Temperature
3
VCC=24V
IF=0
2.5
2
1.5
1
0.5
0
40 20
0
20 40 60 80 100
Ambient temperature Ta (˚C)
Fig.27 Propagation Delay Time vs.
Ambient Temperature
1 VCC=VO1=24V
RG=47
CG=3 000pF
0 . 8 IF=5mA
0.6
0.4
0.2
0
0
Ta=85˚C
Ta=25˚C
Ta=−40˚C
Ta=85˚C
Ta=25˚C
Ta=−40˚C
5 10 15 20 25
Forward current IF (mA)
0.6
0.4 tPLH
tPHL
0.2
0
40 20 0
20 40 60 80
Ambient temperature Ta (°C)
100
Remarks : Please be aware that all data in the graph are just for reference and not for guarantee.
Sheet No.: D2-A06001EN
11

11 Page







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