PC2SD11NXPAF Sharp Microelectronics, PC2SD11NXPAF Datasheet

PHOTOCOUPLER TRIAC OUT 6-SMD

PC2SD11NXPAF

Manufacturer Part Number
PC2SD11NXPAF
Description
PHOTOCOUPLER TRIAC OUT 6-SMD
Manufacturer
Sharp Microelectronics
Datasheet

Specifications of PC2SD11NXPAF

Voltage - Isolation
5000Vrms
Number Of Channels
1
Voltage - Off State
400V
Output Type
AC, Triac, Standard
Current - Gate Trigger (igt) (max)
10mA
Current - Hold (ih)
100µA
Current - Dc Forward (if)
50mA
Current - Output / Channel
100mA
Mounting Type
Surface Mount
Package / Case
6-SMD
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
425-2573-2
PC2SD11NXPAF
■ Description
■ Features
PC2SD11NTZ
Series
(PC3SD11NTZ Series)
infrared emitting diode (IRED) optically coupled to an
output Phototriac.
ideal isolated drivers for medium to high current Triacs.
output with superior commutative noise immunity.
1. High repetitive peak off-state voltage (V
2. Non-zero crossing functionality
3. 6 pin DIP package
4. Superior noise immunity (dV/dt : MIN. 1 000V/µs)
5. Lead-free components are also available (see Model
6. Double transfer mold construction (Ideal for Flow
7. High isolation voltage between input and output
V
Notice The content of data sheet is subject to change without prior notice.
DRM
PC2SD11NTZ Series Phototriac Coupler include an
These devices feature full wave control and are
DIP package provides 5.0kV isolation from input to
Line-up section in this datasheet)
Soldering)
(V
iso
: 600V type is also available.
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.
(rms) : 5.0kV)
DRM
: 400V)
1
■ Agency approvals/Compliance
■ Applications
V
Non-zero cross type
DIP 6pin
Phototriac Coupler for triggering
1. Recognized by UL1577 (Double protection isolation),
2. Approved by CSA, file No. CA95323 (as model No.
3. Package resin : UL flammability grade (94V-0)
1. Triggering for Triacs used to switch on and off
2. Triggering for Triacs used for implementing phase
3. AC line control in power supply applications.
DRM
For example heaters, fans, motors, solenoids, and
file No. E64380 (as model No. 2SD11)
2SD11)
devices which require AC Loads.
valves.
control in applications such as lighting control and
temperature control (HVAC).
: 400V
PC2SD11NTZ Series
Sheet No.: D2-A07401EN
© SHARP Corporation
Date Mar. 31. 2004

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PC2SD11NXPAF Summary of contents

Page 1

PC2SD11NTZ Series ∗ 600V type is also available. DRM (PC3SD11NTZ Series) ■ Description PC2SD11NTZ Series Phototriac Coupler include an infrared emitting diode (IRED) optically coupled to an output Phototriac. These devices feature full wave control and are ideal ...

Page 2

Internal Connection Diagram ■ Outline Dimensions 1. Through-Hole [ex. PC2SD11NTZ] ±0.3 1.2 ±0.2 0.6 Model No. SHARP mark Rank mark "S" Anode mark Date code (2 digit) 1 ...

Page 3

Date code (2 digit) 1st digit Year of production A.D. Mark A.D Mark 1990 A 2002 P 1991 B 2003 R 1992 C 2004 S 1993 D 2005 T 1994 E 2006 U 1995 F 2007 V 1996 H 2008 ...

Page 4

Absolute Maximum Ratings Parameter Forward current Input Reverse voltage RMS ON-state current Output Peak one cycle surge current Repetitive peak OFF-state voltage *1 Isolation voltage Operating temperature Storage temperature *2 Soldering temperature * 60%RH, AC for 1minute, ...

Page 5

... Please contact a local SHARP sales representative to inquire about production status. SMT Gullwing Wide Through-Hole Sleeve 50pcs/sleeve PC2SD11NXZAF PC2SD11NVZAF SMT Gullwing Wide SMT Gullwing Taping 1 000pcs/reel PC2SD11NXPAF PC2SD11NWPAF SMT Gullwing Wide Through-Hole Sleeve 50pcs/sleeve PC2SD11NXZA PC2SD11NVZA SMT Gullwing Wide SMT Gullwing Taping ...

Page 6

Fig.1 Forward Current vs. Ambient Temperature − Ambient temperature T Fig.3 Forward Current vs. Forward Voltage 100 T =100° 75°C 50°C 25°C 0°C 10 −30° ...

Page 7

Fig.7 Holding Current vs. Ambient Temperature 10 1 0.1 −40 − Ambient temperature T Fig.9 Turn-on Time vs. Forward Current 1 000 100 Forward current I F Remarks : Please be aware that all ...

Page 8

Design Considerations ● Design guide In order for the Phototriac to turn off, the triggering current (I Please refrain from using these devices in a direct drive configuration. These Phototriac Coupler are intended to be used as triggering device ...

Page 9

Standard Circuit (Medium/High Power Triac Drive Circuit) PC2SD11NTZ Note) Please add the snubber circuit according to a condition. Any snubber or varistor used for the above mentioned scenarios should be located as close to the main ...

Page 10

Manufacturing Guidelines ● Soldering Method Reflow Soldering: Reflow soldering should follow the temperature profile shown below. Soldering should not exceed the curve of temperature profile and time. Please don't solder more than twice. (˚C) 300 Terminal : 260˚C peak ...

Page 11

Cleaning instructions Solvent cleaning : Solvent temperature should be 45˚C or below. Immersion time should be 3minutes or less. Ultrasonic cleaning : The impact on the device varies depending on the size of the cleaning bath, ultrasonic output, cleaning ...

Page 12

Package specification ● Sleeve package 1. Through-Hole or SMT Gullwing Package materials Sleeve : HIPS (with anti-static material) Stopper : Styrene-Elastomer Package method MAX. 50pcs of products shall be packaged in a sleeve. Both ends shall be closed by ...

Page 13

Tape and Reel package 1. SMT Gullwing Package materials Carrier tape : A-PET (with anti-static material) Cover tape : PET (three layer system) Reel : PS Carrier tape structure and Dimensions F Dimensions List A ±0.3 16.0 7.5 H ...

Page 14

Wide SMT Gullwing Package materials Carrier tape : A-PET (with anti-static material) Cover tape : PET (three layer system) Reel : PS Carrier tape structure and Dimensions Dimensions List A ±0.3 24.0 11.5 H ±0.1 12.2 0.4 Reel structure ...

Page 15

Important Notices · The circuit application examples in this publication are provided to explain representative applications of SHARP devices and are not intended to guarantee any circuit design or license any intellectual property rights. SHARP takes no responsibility for ...

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