DATA SHEET
PHOTOCOUPLER
PS9713
1 Mbps, OPEN COLLECTOR OUTPUT, FOR GATE DRIVE INTERFACE INTELLIGENT POWER MODULE −NEPOC Series− 5-PIN SOP PHOTOCOUPLER
TM
DESCRIPTION
The PS9713 is an optically coupled isolator containing a GaAlAs LED on the input side and a photo diode and a signal processing circuit on the output side on one chip.
FEATURES
• High instantaneous common mode rejection voltage (CMH, CML = ±15 kV/µs MIN.) • Small package (5-pin SOP) • High-speed response (tPHL = 500 ns MAX., tPLH = 750 ns MAX.) • Maximum propagation delays (tPLH − tPHL = 270 ns TYP.) • Pulse width distortion ( | tPHL − tPLH | = 270 ns TYP.) • Ordering number of taping product: PS9713-F3, F4: 3 500 pcs/reel • UL approved: File No. E72422 (S) • VDE0884 approved (Option)
APPLICATIONS
• IPM Driver • General purpose inverter
The information in this document is subject to change without notice. Before using this document, please confirm that this is the latest version.
Not all devices/types available in every country. Please check with local NEC representative for availability and additional information.
Document No. P13982EJ2V0DS00 (2nd edition) Date Published May 2000 NS CP(K) Printed in Japan
©
1998, 2000
PS9713
PACKAGE DIMENSIONS (in millimeters)
4.0±0.5
TOP VIEW
6 5 4 1. Anode 3. Cathode 4. GND 5. VO 6. VCC 1 3 7.0±0.3 4.4
2.1±0.2 0.15 +0.10 –0.05
0.1±0.1
1.27 0.4 +0.10 –0.05 0.25 M
0.5±0.3
FUNCTIONAL DIAGRAM
6 1 5
3 4 Shield LED ON OFF Output L H
2
Data Sheet P13982EJ2V0DS00
PS9713
ORDERING INFORMATION
Part Number PS9713 PS9713-F3 PS9713-F4 PS9713-V PS9713-V-F3 PS9713-V-F4 Magazine case 100 pcs Embossed Tape 3 500 pcs/reel VDE0884 approved Package 5-pin SOP Packing Style Magazine case 100 pcs Embossed Tape 3 500 pcs/reel Safety Standards Approval UL approved Application Part *1 Number PS9713
*1 For the application of the Safety Standard, following part number should be used.
ABSOLUTE MAXIMUM RATINGS (TA = 25 °C, unless otherwise specified)
Parameter Diode Forward Current Reverse Voltage
Detector
Symbol IF VR VCC VO IO PC BV TA Tstg
Ratings 25 3.0 −0.5 to +35 −0.5 to +35 15 100 2 500 −40 to +100 −55 to +125
Unit mA V V V mA mW Vr.m.s. °C °C
Supply Voltage Output Voltage Output Current Power Dissipation
Isolation Voltage
*1
Operating Ambient Temperature Storage Temperature
*1 AC voltage for 1 minute at TA = 25 °C, RH = 60 % between input and output.
RECOMMENDED OPERATING CONDITIONS
Parameter High Level Input Current Output Voltage Supply Voltage LED Off Voltage Symbol IFH VO VCC VF MIN. 10 0 4.5 0 TYP. MAX. 20 30 30 0.8 Unit mA V V V
Data Sheet P13982EJ2V0DS00
3
PS9713
ELECTRICAL CHARACTERISTICS (TA = −40 to +100 °C, VCC = 15 V, unless otherwise specified)
Parameter Diode Forward Voltage Reverse Current Terminal Capacitance Detector Low Level Output Voltage High Level Output Current High Level Supply Current Low Level Supply Current Coupled Threshold Input Current (H → L) Current Transfer Ratio (IC/IF) Isolation Resistance Isolation Capacitance Propagation Delay Time *2 (H → L) Propagation Delay Time *2 (L → H) Maximum Propagation Delays Pulse Width Distortion *2 (PWD) Instantaneous Common Mode Rejection Voltage *3 (Output: High) Instantaneous Common Mode Rejection Voltage *3 (Output: Low) Symbol VF IR Ct VOL IOH ICCH ICCL IFHL CTR RI-O CI-O tPHL tPLH tPLH−tPHL |tPHL−tPLH| TA = 25 °C, IF = 0 mA, VO > 3.0 V, VCM = 1.5 kV, RL = 20 kΩ, CL = 100 pF TA = 25 °C, IF = 10 mA, VO < 1.0 V, VCM = 1.5 kV, RL = 20 kΩ, CL = 100 pF −200 IF = 10 mA VR = 3 V V = 0 V, f = 1 MHz, TA = 25 °C IF = 10 mA, VCC = 5 V, IO = 2.4 mA VCC = 30 V, VF = 0.8 V VCC = 30 V, VF = 0.8 V, VO = open VCC = 30 V, IF = 10 mA, VO = open VO = 0.8 V, IO = 0.75 mA IF = 10 mA, VO = 0.6 V VI-O = 1 kVDC, RH = 40 to 60 %, TA = 25 °C V = 0 V, f = 1 MHz, TA = 25 °C IF = 10mA, RL = 20 kΩ, CL = 100 pF, VTHHL = 1.5 V, VTHLH = 2.0 V 44 10
11
Conditions
MIN. 1.3
TYP.
*1
MAX. 2.1 200
Unit V
1.65
µA
pF
30 0.13 1.0 0.6 0.6 1.5 110 0.6 50 1.3 1.3 5.0
V
µA
mA mA mA % Ω
0.6 250 520 270 500 750 650
pF ns
270
650 kV/µs
CMH
15
CML
15
kV/µs
4
Data Sheet P13982EJ2V0DS00
PS9713
*1 Typical values at TA = 25 °C. *2 Test circuit for propagation delay time
VCC = 15 V 0.1 µ F RL = 20 kΩ VO (Monitor) CL = 100 pF VTHHL = 1.5 V tPHL tPLH VOL Input IF (ON) 50 % IF (ON) 15 V Output VTHLH = 2.0 V
Pulse input (IF = 10 mA) (PW = 10 µ s, Duty cycle = 1/10) Input (Monitor)
47 Ω
CL is approximately which includes probe and stray wiring capacitance. *3 Test circuit for common mode transient immunity
VCM 90 % GL SW IF 0.1 µ F VCC = 15 V RL = 20 kΩ VO (Monitor) CL = 100 pF 10 % tr tf 15 V 3.0 V 1.0 V VOL 1.5 kV 0V
B
A
VO (Switch A: IF = 0 mA) VCM VO (Switch B: IF = 10 mA)
CL is approximately which includes probe and stray wiring capacitance.
USAGE CAUTION
By-pass capacitor of more than 0.1 µF is used between VCC and GND near device. Also, ensure that the distance between the leads of the photocoupler and capacitor is no more than 10 mm.
Data Sheet P13982EJ2V0DS00
5
PS9713
TYPICAL CHARACTERISTICS (TA = 25 °C, unless otherwise specified)
MAXIMUM FORWARD CURRENT vs. AMBIENT TEMPERATURE
40
Detector Power Dissipation PC (mW) Maximum Forward Current IF (mA)
DETECTOR POWER DISSIPATION vs. AMBIENT TEMPERATURE
150
30
100
20
50
10
0
20
40
60
80
100
0
20
40
60
80
100
Ambient Temperature TA (˚C)
Ambient Temperature TA (˚C)
FORWARD CURRENT vs. FORWARD VOLTAGE
100
High Level Supply Current ICCH (µA), Low Level Supply Current ICCL (µA)
SUPPLY CURRENT vs. AMBIENT TEMPERATURE
1 200 1 000 800 ICCL 600 400 200 0 –50 ICCH VCC = 30 V, VO = Open, ICCH : VF = 0.8 V, ICCL : IF = 10 mA
Forward Current IF (mA)
10 TA = +85 ˚C +50 ˚C +25 ˚C 0 ˚C –25 ˚C
1
0.1
0.01 1.0
1.2
1.4
1.6
1.8
2.0
2.2
2.4
–25
0
25
50
75
100
Forward Voltage VF (V)
Ambient Temperature TA (˚C)
THRESHOLD INPUT CURRENT vs. AMBIENT TEMPERATURE
5
Threshold Input Current IFHL (mA) Low Level Output Voltage VOL (V)
LOW LEVEL OUTPUT VOLTAGE vs. AMBIENT TEMPERATURE
0.6 VCC = 15 V, IF = 10 mA, IO = 2.4 mA
4
VCC = 15 V, VO = 0.8 V, IO = 0.75 mA
0.5 0.4 0.3 0.2 0.1 0 –50
3
2
1
0 –50
–25
0
25
50
75
100
–25
0
25
50
75
100
Ambient Temperature TA (˚C)
Ambient Temperature TA (˚C)
6
Data Sheet P13982EJ2V0DS00
PS9713
OUTPUT CURRENT vs. AMBIENT TEMPERATURE
1.10
OUTPUT CURRENT vs. FORWARD CURRENT
14 VO = 0.6 V 12
Output Current (Relative Value)
IF = 10 mA, 1.05 VO = 0.6 V 1.00 0.95 0.90 0.85 0.80 0.75 0.70 –40 –20 0 20 40 60 80 100
Output Current IO (mA)
10 TA = +25 ˚C 8 6 4 2 0 0 5 10 15 20 +100 ˚C –40 ˚C
Forward Current IF (mA)
Ambient Temperature TA (˚C)
Propagation Delay Time tPHL, tPLH (ns), Maximum Propagation Delays tPLH – tPHL (ns)
Propagation Delay Time tPHL, tPLH (ns), Maximum Propagation Delays tPLH – tPHL (ns)
PROPAGATION DELAY TIME, MAXIMUM PROPAGATION DELAYS vs. FORWARD CURRENT
700 VCC = 15 V, 600 CL = 100 pF, RL = 20 kΩ 500 tPLH 400 300 200 100 0 0 5 10 15 20 tPHL
PROPAGATION DELAY TIME, MAXIMUM PROPAGATION DELAYS vs. SUPPLY VOLTAGE
1 800 1 600 1 400 1 200 1 000 800 600 400 200 0 –200 0 10 tPLH tPHL tPLH – tPHL 20 30 40 IF = 10 mA, CL = 100 pF, RL = 20 kΩ
tPLH – tPHL
Forward Current IF (mA)
Supply Voltage VCC (V)
PROPAGATION DELAY TIME, PULSE WIDTH DISTORTION vs. AMBIENT TEMPERATURE
Propagation Delay Time tPHL, tPLH (ns), Pulse Width Distortion tPHL – tPLH (ns) Propagation Delay Time tPHL, tPLH (ns)
700 600 500 400 300 200 100 0 –40 –20 0 20 40 tPHL tPLH 1 600
PROPAGATION DELAY TIME vs. LOAD CAPACITANCE
IF = 10 mA, 1 400 VCC = 15 V, RL = 20 kΩ 1 200 1 000 800 600 400 200 0 0 100 200 300 400 500 tPHL
tPLH
PWD
IF = 10 mA, VCC = 15 V, CL = 100 pF, RL = 20 kΩ 60 80 100
Ambient Temperature TA (˚C)
Load Capacitance CL (pF)
Data Sheet P13982EJ2V0DS00
7
PS9713
PROPAGATION DELAY TIME, MAXIMUM PROPAGATION DELAYS vs. LOAD RESISTANCE
IF = 10 mA, VCC = 15 V, 800 CL = 100 pF 600 tPLH – tPHL 400 tPHL 200 0 –200 0 tPLH
Propagation Delay Time tPHL, tPLH (ns), Maximum Propagation Delays tPLH – tPHL (ns)
Propagation Delay Time tPHL, tPLH (ns), Maximum Propagation Delays tPLH – tPHL (ns)
PROPAGATION DELAY TIME, MAXIMUM PROPAGATION DELAYS vs. LOAD RESISTANCE
500 IF = 10 mA, 450 VCC = 5 V, 400 CL = 15 pF 350 300 250 200 150 100 50 0 0 5 10 15 20 25 tPHL tPLH – tPHL tPLH
1 000
10
20
30
40
50
Load Resistance RL (kΩ)
Load Resistance RL (kΩ)
Remark The graphs indicate nominal characteristics.
8
Data Sheet P13982EJ2V0DS00
PS9713
TAPING SPECIFICATIONS (in millimeters)
Outline and Dimensions (Tape)
2.0±0.1 4.0±0.1 1.75±0.1
1.55±0.1
2.4±0.1 12.0±0.2
5.5±0.1
1.55±0.1 8.0±0.1
4.6±0.1
0.3
Tape Direction
PS9713-F3
PS9713-F4
Outline and Dimensions (Reel)
1.5
120 ˚
φ 21.0±0.8
7.4±0.1
1.5±0.5
60
˚
6.0±1
φ 330
2.0±0.5
φ 13.0±0.5
φ 80±5.0
12.4+2.0 –0.0
Packing: 3 500 pcs/reel
Data Sheet P13982EJ2V0DS00
9
PS9713
RECOMMENDED SOLDERING CONDITIONS
(1) Infrared reflow soldering • Peak reflow temperature • Time of temperature higher than 210 °C • Number of reflows • Flux 235 °C or below (package surface temperature) 30 seconds or less Three Rosin flux containing small amount of chlorine (The flux with a maximum chlorine content of 0.2 Wt % is recommended.)
Recommended Temperature Profile of Infrared Reflow
Package Surface Temperature T (˚C)
(heating) to 10 s 235 ˚C (peak temperature) 210 ˚C to 30 s 100 to 160 ˚C 60 to 120 s (preheating)
Time (s)
(2) Dip soldering • Temperature • Time • Number of times • Flux 260 °C or below (molten solder temperature) 10 seconds or less One (Allowed to be dipped in solder including plastic mold portion.) Rosin flux containing small amount of chlorine (The flux with a maximum chlorine content of 0.2 Wt % is recommended.) (3) Cautions • Fluxes Avoid removing the residual flux with freon-based and chlorine-based cleaning solvent.
10
Data Sheet P13982EJ2V0DS00
PS9713
CAUTION
Within this device there exists GaAs (Gallium Arsenide) material which is a harmful substance if ingested. Please do not under any circumstances break the hermetic seal.
Data Sheet P13982EJ2V0DS00
11
PS9713
NEPOC is a trademark of NEC Corporation.
• The information in this document is current as of May, 2000. The information is subject to change without notice. For actual design-in, refer to the latest publications of NEC's data sheets or data books, etc., for the most up-to-date specifications of NEC semiconductor products. Not all products and/or types are available in every country. Please check with an NEC sales representative for availability and additional information. • No part of this document may be copied or reproduced in any form or by any means without prior written consent of NEC. NEC assumes no responsibility for any errors that may appear in this document. • NEC does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from the use of NEC semiconductor products listed in this document or any other liability arising from the use of such products. No license, express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of NEC or others. • Descriptions of circuits, software and other related information in this document are provided for illustrative purposes in semiconductor product operation and application examples. The incorporation of these circuits, software and information in the design of customer's equipment shall be done under the full responsibility of customer. NEC assumes no responsibility for any losses incurred by customers or third parties arising from the use of these circuits, software and information. • While NEC endeavours to enhance the quality, reliability and safety of NEC semiconductor products, customers agree and acknowledge that the possibility of defects thereof cannot be eliminated entirely. To minimize risks of damage to property or injury (including death) to persons arising from defects in NEC semiconductor products, customers must incorporate sufficient safety measures in their design, such as redundancy, fire-containment, and anti-failure features. • NEC semiconductor products are classified into the following three quality grades: "Standard", "Special" and "Specific". The "Specific" quality grade applies only to semiconductor products developed based on a customer-designated "quality assurance program" for a specific application. The recommended applications of a semiconductor product depend on its quality grade, as indicated below. Customers must check the quality grade of each semiconductor product before using it in a particular application. "Standard": Computers, office equipment, communications equipment, test and measurement equipment, audio and visual equipment, home electronic appliances, machine tools, personal electronic equipment and industrial robots "Special": Transportation equipment (automobiles, trains, ships, etc.), traffic control systems, anti-disaster systems, anti-crime systems, safety equipment and medical equipment (not specifically designed for life support) "Specific": Aircraft, aerospace equipment, submersible repeaters, nuclear reactor control systems, life support systems and medical equipment for life support, etc. The quality grade of NEC semiconductor products is "Standard" unless otherwise expressly specified in NEC's data sheets or data books, etc. If customers wish to use NEC semiconductor products in applications not intended by NEC, they must contact an NEC sales representative in advance to determine NEC's willingness to support a given application. (Note) (1) "NEC" as used in this statement means NEC Corporation and also includes its majority-owned subsidiaries. (2) "NEC semiconductor products" means any semiconductor product developed or manufactured by or for NEC (as defined above).
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