TS117STR. Multifunction Telecom Switch INTEGRATED CIRCUITS DIVISION

Similar documents
LBB126STR. Dual Single-Pole, Normally Closed OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description. Features 3750V rms. Approvals.

LAA127PLTR. Dual Single-Pole, Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION

PAA150STR. Dual Single-Pole, Normally Open OptoMOS Relays INTEGRATED CIRCUITS DIVISION

XAA170STR. Dual Single-Pole, Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description. Features. Approvals.

LBA126PTR. Dual Single-Pole OptoMOS Relay INTEGRATED CIRCUITS DIVISION

IAD110PTR. Integrated Telecom Circuits INTEGRATED CIRCUITS DIVISION

IAA110P. Integrated Telecom Circuits INTEGRATED CIRCUITS DIVISION

LCB120STR. Single-Pole, Normally Closed OptoMOS Relay INTEGRATED CIRCUITS DIVISION

PBA150STR. Dual Single-Pole OptoMOS Relay INTEGRATED CIRCUITS DIVISION

LBA110P. Dual Pole OptoMOS Relay INTEGRATED CIRCUITS DIVISION

IAB110PTR. Integrated Telecom Circuits INTEGRATED CIRCUITS DIVISION

LCA712STR. Single-Pole, Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION

LAA127PLTR. Dual Single-Pole, Normally Open OptoMOS Relay

LCC110STR. 1-Form-C OptoMOS Relay INTEGRATED CIRCUITS DIVISION

PAA110LSTR. Dual Single-Pole OptoMOS Relays INTEGRATED CIRCUITS DIVISION. Description. Features Current Limiting 3750V rms

LAA108PTR. Dual Single-Pole, Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1130NTR. Single-Pole, Normally Closed 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1030NTR. Single-Pole, Normally Open 4-Lead SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

LCB710STR. Single-Pole, Normally Closed OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description

LCA717STR. Single-Pole, Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION

LBA716STR. Dual Single-Pole OptoMOS Relays Normally Open & Normally Closed INTEGRATED CIRCUITS DIVISION

CPC1125NTR. Single-Pole, Normally Closed 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

LDA100STR. Optocoupler, Bidirectional Input Single-Transistor Output INTEGRATED CIRCUITS DIVISION. Description. Approvals.

LBA710STR. Dual Single-Pole OptoMOS Relay Normally Open & Normally Closed INTEGRATED CIRCUITS DIVISION. Description

PLA160STR. Single Pole, Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION

PLA171PTR. Single-Pole, Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1016NTR. Single-Pole, Normally Open 4-Lead SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description. Features. Approvals.

CPC1317PTR. Single-Pole OptoMOS Relay with Bidirectional Transient Protection INTEGRATED CIRCUITS DIVISION

CPC1020N. Single-Pole, Normally Open 4-Lead SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

PLA192STR. Single Pole, Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1030NTR. 350V Normally-Open Single-Pole 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1335PTR. Single Pole OptoMOS Relay with Bi-directional Transient Protection INTEGRATED CIRCUITS DIVISION

CPC1002NTR. Single-Pole, Normally Open 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description. Features. Approvals.

CPC1393GRTR. Single-Pole, Normally Open 4-Pin OptoMOS Relay INTEGRATED CIRCUITS DIVISION

LCB710STR. Single-Pole, Normally Closed OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description

CPC1302GSTR. Dual Optocoupler High-Voltage Darlington Output INTEGRATED CIRCUITS DIVISION. Description. Features 350V P. Applications.

CPC1130NTR. 350V Normally-Closed Single-Pole 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1020N 30V Normally-Open Single-Pole 4-Pin SOP OptoMOS Relay

CPC1017N. Single-Pole, Normally Open 4-Lead SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description

CPC1008NTR. Single-Pole, Normally Open 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1303GRTR. Optocoupler with Single-Transistor Output INTEGRATED CIRCUITS DIVISION. Description. Features. Approvals.

LBA716STR. Dual Single-Pole OptoMOS Relays Normally Open & Normally Closed. Description. Features 3750V rms

CPC1114NTR. 60V Normally-Closed Single-Pole 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1014NTR. Single-Pole, Normally Open 4-Lead SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1006NTR. Single-Pole, Normally Open 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description

CPC1973Y. Power SIP Relay INTEGRATED CIRCUITS DIVISION

CPC1017NTR. 60V Normally-Open Single-Pole 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description

CPC1981Y. Single-Pole, Normally Open OptoMOS Power SIP Relay INTEGRATED CIRCUITS DIVISION. Description. Features

CPC1333. Single-Pole Normally Closed OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1706Y. Single-Pole, Normally Open 4-Pin OptoMOS DC Power SIP Relay INTEGRATED CIRCUITS DIVISION. Description. Features. Applications.

CPC1906Y. Single-Pole, Normally Open Power SIP OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description

CPC2317NTR. Dual Single-Pole 8-Pin SOIC OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC2017NTR. Dual Normally Open 8-Pin SOIC OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC2030NTR. Dual Single-Pole, Normally Open 8-Pin SOIC OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1106NTR. Single-Pole, Normally Closed 4-Lead SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1301GRTR. Optocoupler with High-Voltage Darlington Output INTEGRATED CIRCUITS DIVISION. Description. Features. Applications.

CPC1004NTR. 100V Normally-Open Single-Pole 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1018N. Single-Pole, Normally Open 4-Lead SOP OptoMOS Relay

CPC1006NTR. 60V Normally-Open Single-Pole 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description

CPC2017NTR. 60V Dual Normally-Open Single-Pole 8-Pin SOIC OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1117NTR. 60V Normally-Closed Single-Pole 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION

ITC117PTR. Integrated Telecom Circuits INTEGRATED CIRCUITS DIVISION

CPC1540GSTR INTEGRATED CIRCUITS DIVISION

PLA172PTR. 800V Normally-Open Single-Pole 6-Pin OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description. Features. Approvals. Ordering Information

CPC1303GRTR. Optocoupler with Single-Transistor Output INTEGRATED CIRCUITS DIVISION. Description. Features. Approvals.

CPC2030NTR. 350V Dual Normally-Open Single-Pole 8-Pin SOIC OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC1019NTR. 60V Normally-Open Single-Pole 4-Pin SOP OptoMOS Relay INTEGRATED CIRCUITS DIVISION. Description. Features

CPC1706Y. Single-Pole, Normally Open 4-Pin OptoMOS DC Power SIP Relay INTEGRATED CIRCUITS DIVISION. Description. Features. Applications.

CPC1030NTR. 4-Pin SOP OptoMOS Relay

ITC135PTR. Integrated Telecom Circuits INTEGRATED CIRCUITS DIVISION

TS118STR. Multifunction Telecom Switch

TS112N Multifunction Telecom Switch

LOC110STR. Single Linear Optocoupler INTEGRATED CIRCUITS DIVISION

CPC1215G. Voltage-Controlled, Single-Pole, Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION

CPC2907B. Dual 60V Single-Pole Normally Open OptoMOS Relay INTEGRATED CIRCUITS DIVISION

LOC110STR. Single Linear Optocoupler INTEGRATED CIRCUITS DIVISION

CPC1004NTR. 4 Pin SOP OptoMOS Relay

TS112 Multifunction Telecom Switch

CPC1008NTR. 4-Pin SOP OptoMOS Relay

CPC1705Y Single-Pole, Normally Closed 60V, 3.25A DC

CPC1963GSTR. AC Power Switch INTEGRATED CIRCUITS DIVISION. Description. Features. Approvals. Applications. Ordering Information.

CPC1593GSTR INTEGRATED CIRCUITS DIVISION. Description. Features Integrated Active Current-Limit with Over-Voltage Protection Thermal Regulation 600V P

CPC1008NTR. 4-Pin SOP OptoMOS Relay

CPC1727. Single-Pole, Normally Open ISOPLUS -264 DC Power Relay INTEGRATED CIRCUITS DIVISION. Description. Characteristics. Features.

CPC1002NTR. 4-Pin SOP OptoMOS Relay. Description. Features. Approvals. Ordering Information. Applications. Pin Configuration

CPC1117NTR. 4-Pin SOP OptoMOS Relay

CPC1393GRTR. Single Pole OptoMOS Relay

CPC1979J. ISOPLUS -264 Power Relay INTEGRATED CIRCUITS DIVISION. Description. Characteristics. Features. Applications. Ordering Information.

CPC1972 AC Power Switch

CPC V Single-Pole, Normally Open DC-Only Power Relay

CPC1927 INTEGRATED CIRCUITS DIVISION. 250V Single-Pole, Normally Open Power Relay. Characteristics. Description. Features.

CPC1709J INTEGRATED CIRCUITS DIVISION. 60V Single-Pole, Normally Open DC-Only Power Relay. Description. Characteristics. Features.

CPC1967 INTEGRATED CIRCUITS DIVISION. 400V Single-Pole, Normally Open Power Relay. Description. Characteristics. Features.

CPC1709J. Single-Pole, Normally Open INTEGRATED CIRCUITS DIVISION. Description. Characteristics. Features. Applications. Ordering Information

CPC1788 INTEGRATED CIRCUITS DIVISION. 1000V Single-Pole, Normally Open DC-Only Power Relay. Characteristics. Description. Features.

LCA100STR. Single Pole OptoMOS Relay

CPC1927. Single-Pole, Normally Open ISOPLUS -264 Power Relay INTEGRATED CIRCUITS DIVISION. Description. Characteristics. Features.

CPC1968 INTEGRATED CIRCUITS DIVISION. 500V Single-Pole, Normally Open Power Relay. Description. Characteristics. Features.

CPC1727 INTEGRATED CIRCUITS DIVISION. 250V Single-Pole, Normally Open DC-Only Power Relay. Characteristics. Description. Features.

LOC211PTR. Dual Linear Optocouplers INTEGRATED CIRCUITS DIVISION

Transcription:

Multifunction Telecom Switch Parameter Rating Units Blocking Voltage 3 V P Load Current 12 ma rms / ma DC On-Resistance (max 3 Features 37V rms Input/Output Isolation Low Drive Power Requirements (TTL/CMOS Compatible FCC Compatible VDE Compatible No EMI/RFI Generation No Moving Parts High Reliability Arc-Free With No Snubbing Circuits Small 8-Pin Package Machine Insertable, Wave Solderable Surface Mount and Tape & Reel Versions Available Applications Telecounications Telecom Switching Tip/Ring Circuits Modem Switching (Laptop, Notebook, Pocket Size Hook Switch Dial Pulsing Ground Start Ringing Injection Instrumentation Multiplexers Data Acquisition Electronic Switching I/O Subsystems Meters (Watt-Hour, Water, Gas Medical Equipment-Patient/Equipment Isolation Security Aerospace Industrial Controls Description The integrated circuit device combines a 3V normally open (1-Form-A relay with an optocoupler in a single package. The relay uses optically coupled MOSFET technology to provide 37V rms of input to output isolation. Its optically coupled relay outputs, which use the patented OptoMOS architecture, are controlled by a highly efficient GaAIAs infrared LED. The enables telecom circuit designers to combine two discrete functions in a single component that uses less space than traditional discrete component solutions. Approvals UL Recognized Component: File E7627 CSA Certified Component: Certificate 117739 EN/IEC 69 Certified Component: TUV Certificate: B 1 4941 6 Ordering Information Part # P PTR S STR Pin Configuration 1 + LED - Relay 2 LED - Relay 3 Collector - Phototransistor 4 Emitter - Phototransistor Description 8-Pin DIP (/Tube 8-Pin Flatpack (/Tube 8-Pin Flatpack (1/Reel 8-Pin Surface Mount (/Tube 8-Pin Surface Mount (1/Reel Switching Characteristics of Normally Open Devices 8 Load - Relay (MOSFET Output 7 Load - Relay (MOSFET Output 6 LED - Phototransistor /+ LED - Phototransistor +/ Form-A 9% I LOAD 1% t on t off Pb e3 DS--R1 www.ixysic.com 1

Absolute Maximum Ratings @ 2ºC Parameter Ratings Units Blocking Voltage 3 V P Input Power Dissipation 1 1 mw Input Control Current, Relay ma Peak (1ms 1 A Input Control Current, Detector 1 ma Reverse Input Voltage V Total Power Dissipation 2 8 mw Isolation Voltage, Input to Output 37 V rms Operational Temperature -4 to +8 C Storage Temperature -4 to +12 C 1 Derate linearly 1.33 mw / ºC 2 Derate linearly 6.67 mw / ºC Absolute Maximum Ratings are stress ratings. Stresses in excess of these ratings can cause permanent damage to the device. Functional operation of the device at conditions beyond those indicated in the operational sections of this data sheet is not implied. Electrical Characteristics @2ºC: Relay Section Parameter Conditions Symbol Min Typ Max Units Output Characteristics Load Current Continuous - I L - - 12 ma rms / ma DC Peak t=1ms I LPK - - ±3 ma P On-Resistance I L =12mA R ON - 23 3 Off-State Leakage Current V L =3V I LEAK - - 1 A Switching Speeds Turn-On t =ma, V L =1V on - - 3 ms Turn-Off t off - - 3 ms Output Capacitance V L =V, f=1mhz C OUT - 2 - pf Input Characteristics Input Control Current to Activate I L =12mA - - 2 ma Input Control Current to Deactivate -.4.7 - ma Input Voltage Drop =ma V F.9 1.2 1.4 V Reverse Input Current V R =V I R - - 1 A Coon Characteristics Input to Output Capacitance - C I/O - 3 - pf Electrical Characteristics @2ºC: Detector Section Parameter Conditions Symbol Min Typ Max Units Output Characteristics Phototransistor Blocking Voltage I C =1 A BV CEO 2 - V Phototransistor Dark Current V CE =V, =ma I CEO - na Saturation Voltage I C =2mA, =16mA V SAT -.3. V Current Transfer Ratio =6mA, V CE =.V CTR 33 1 - % Input Characteristics Input Control Current I C =2mA, V CE =.V - 2 6 ma Input Voltage Drop =ma V F.9 1.2 1.4 V Input Current (Detector Must be Off I C =1 A, V CE =V 2 - A Isolation, Input to Output - V I/O 37 - - V rms R1 2 www.ixysic.com

RELAY PERFORMANCE DATA @2ºC (Unless Otherwise Noted* 3 Typical LED Forward Voltage Drop (N=, =ma 2 Typical Turn-On Time (N=, =2mA, I L =12mA DC 2 Typical Turn-Off Time (N=, =2mA, I L =12mA DC Device Count (N 3 2 2 1 1 Device Count (N 2 1 1 Device Count (N 2 1 1 1.17 1.19 1.21 1.23 1.2 LED Forward Voltage Drop (V.1.4.7 1. 1.3 1.6 1.9 Turn-On Time (ms.3.1.17.24.31.38.4 Turn-Off Time (ms 2 Typical for Switch Operation (N=, I L =12mA DC 2 Typical for Switch Dropout (N=, I L =12mA DC Typical On-Resistance Distribution (N=, =2mA, I L =12mA DC, V L =3V DC 3 Device Count (N 2 1 1 Device Count (N 2 1 1 Device Count (N 3 2 2 1 1.39.6.91 1.17 1.43 1.69 1.9.39.6.91 1.17 1.43 1.69 1.9 18.7 19.8 2.9 22. 23.1 24.2 2.3 LED Current (ma LED Current (ma On-Resistance ( 3 3 Typical Blocking Voltage Distribution (N= Device Count (N 2 2 1 1 377. 388. 399. 41. 421. 432. 443. Blocking Voltage (V P LED Forward Voltage Drop (V 1.8 1.6 1.4 1.2 1. Typical LED Forward Voltage Drop =ma =3mA =2mA =1mA =ma.8-4 -2 2 4 6 8 1 12 Temperature (ºC Turn-On Time (ms Typical Turn-On Time vs. LED Forward Current =12mA DC 2. 1.8 1.6 1.4 1.2 1..8.6.4.2 1 1 2 2 3 3 4 4 LED Forward Current (ma Turn-Off Time (ms.7.6..4.3.2.1 Typical Turn-Off Time vs. LED Forward Current =12mA DC 1 1 2 2 3 3 4 4 LED Forward Current (ma * The Performance data shown in the graphs above is typical of device performance. For guaranteed parameters not indicated in the written specifications, please contact our application department. R1 www.ixysic.com 3

RELAY PERFORMANCE DATA @2ºC (Unless Otherwise Noted* Turn-On Time (ms. 4. 4. 3. 3. 2. 2. 1. 1.. -4 Typical Turn-On Time =12mA DC =2mA =ma =1mA =2mA -2 2 4 6 8 1 Temperature (ºC Turn-Off Time (ms 1..9.8.7.6..4.3.2.1-4 Typical Turn-Off Time =12mA DC =2mA =ma -2 2 4 6 8 1 Temperature (ºC On-Resistance ( 6 4 3 2 1-4 Typical On-Resistance ( =2mA, I L =12mA DC -2 2 4 6 8 1 Temperature (ºC LED Current (ma 3. 2. 2. 1. 1.. -4 Typical for Switch Operation =12mA DC -2 2 4 6 8 1 Temperature (ºC LED Current (ma 3. 2. 2. 1. 1.. -4 Typical for Switch Dropout =12mA DC -2 2 4 6 8 1 Temperature (ºC Load Current (ma Maximum Load Current 18 16 14 12 1 8 6 4 2-4 -2 2 4 6 8 1 12 Temperature (ºC =2mA =1mA =ma Load Current (ma 1 1 - -1 Typical Load Current vs. Load Voltage ( =2mA -1-3 -2-1 1 2 3 Load Voltage (V Blocking Voltage (V P 43 42 42 41 41 4 4 39-4 Typical Blocking Voltage -2 2 4 6 8 1 Temperature (ºC Leakage ( A.16.14.12.1.8.6.4.2-4 Typical Leakage Measured across Pins 7&8-2 2 4 6 8 1 Temperature (ºC Load Current (A Energy Rating Curve 1..9.8.7.6..4.3.2.1 1 s 1 s 1ms 1ms 1ms 1s 1s 1s * The Performance data shown in the graphs above is typical of device performance. For guaranteed parameters not indicated in the written specifications, please contact our application department. Time R1 4 www.ixysic.com

DETECTOR PERFORMANCE DATA @2ºC (Unless Otherwise Noted* Normalized CTR (% Typical Normalized CTR vs Forward Current (V CE =.V 4. 4. 3. 3. 2. 2. 1. 1.. 2 4 6 8 1 12 14 16 18 Forward Current (ma 2 Normalized CTR (% Typical Normalized CTR (V CE =.V 8 7 6 4 3 2 1-4 -2 2 4 6 8 1 12 Temperature (ºC =1mA =2mA =ma =1mA =1mA =2mA Collector Current (ma 12 1 8 6 4 2 Typical Collector Current vs. Forward Current (V CE =.V 2 4 6 8 1 12 14 16 18 2 Forward Current (ma * The Performance data shown in the graphs above is typical of device performance. For guaranteed parameters not indicated in the written specifications, please contact our application department. R1 www.ixysic.com

Manufacturing Information Moisture Sensitivity All plastic encapsulated semiconductor packages are susceptible to moisture ingression. IXYS Integrated Circuits Division classified all of its plastic encapsulated devices for moisture sensitivity according to the latest version of the joint industry standard, IPC/JEDEC J-STD-2, in force at the time of product evaluation. We test all of our products to the maximum conditions set forth in the standard, and guarantee proper operation of our devices when handled according to the limitations and information in that standard as well as to any limitations set forth in the information or standards referenced below. Failure to adhere to the warnings or limitations as established by the listed specifications could result in reduced product performance, reduction of operable life, and/or reduction of overall reliability. This product carries a Moisture Sensitivity Level (MSL rating as shown below, and should be handled according to the requirements of the latest version of the joint industry standard IPC/JEDEC J-STD-33. Device Moisture Sensitivity Level (MSL Rating / P / S MSL 1 ESD Sensitivity This product is ESD Sensitive, and should be handled according to the industry standard JESD-62. Reflow Profile This product has a maximum body temperature and time rating as shown below. All other guidelines of J-STD-2 must be observed. Device / S P Maximum Temperature x Time 2ºC for 3 seconds 26ºC for 3 seconds Board Wash IXYS Integrated Circuits Division recoends the use of no-clean flux formulations. However, board washing to remove flux residue is acceptable. Since IXYS Integrated Circuits Division employs the use of silicone coating as an optical waveguide in many of its optically isolated products, the use of a short drying bake could be necessary if a wash is used after solder reflow processes. Chlorine- or Fluorine-based solvents or fluxes should not be used. Cleaning methods that employ ultrasonic energy should not be used. Pb e3 R1 6 www.ixysic.com

Mechanical 2.4 ±.127 (.1 ±. 9.62 ±.381 (.38 ±.1 7.62 ±.24 (.3 ±.1 8-.8 DIA. (8-.31 DIA. PCB Hole Pattern 2.4 ±.127 (.1 ±. 6.3 ±.127 (.2 ±. Pin 1.47 ±.76 (.18 ±.3 4.64 TYP (.16 3.32 ±.1 (.13 ±.2 9.144 ±.8 (.36 ±.2 7.239 TYP. (.28.24 ±.127 (.1 ±. 6.3 ±.127 (.2 ±. 7.62 ±.127 (.3 ±. 7.62 ±.127 (.3 ±..813 ±.12 (.32 ±.4 (inches P 2.4 ±.127 (.1 ±. 6.3 ±.127 (.2 ±. Pin 1 9.398 ±.127 (.37 ±. 9.62 ±.381 (.38 ±.1 2.19 ±.2 (.8 ±.1 MIN /.12 MAX ( MIN /.4 MAX 7.62 ±.24 (.3 ±.1.23 ±.13 (.8 ±. 2.286 MAX. (.9 MAX..63 ±.127 (.2 ±. 1. (.61 PCB Land Pattern.6 (.2 2.4 (.1 8.7 (.342.47 ±.76 (.18 ±.3.864 ±.12 (.34 ±.4 (inches S 2.4 ±.127 (.1 ±. 9.62 ±.381 (.38 ±.1 3.32 ±.1 (.13 ±.2.63 ±.127 (.2 ±. PCB Land Pattern 2.4 (.1 6.3 ±.127 (.2 ±. Pin 1 9.2 ±.24 (.37 ±.1.47 ±.76 (.18 ±.3 7.62 ±.24 (.3 ±.1.24 ±.127 (.1 ±. 1.6 (.649.6 (.2 8.9 (.33 4.44 ±.127 (.17 ±..813 ±.12 (.32 ±.4 (inches R1 www.ixysic.com 7

STR Tape & Reel 33.2 DIA. (13. DIA. Top Cover Tape Thickness.12 MAX. (.4 MAX. Bo=1.3 (.46 W=16. (.63 Embossed Carrier Embossment K =4.9 (.193 K 1 =4.2 (.16 Ao=1.3 (.46 P=12. (.472 User Direction of Feed (inches NOTES: 1. carry tolerances of EIA Standard 481-2 2. Tape complies with all Notes for constant dimensions listed on page of EIA-481-2 PTR Tape & Reel 33.2 DIA. (13. DIA. 2. (.79 4. (.17 Top Cover Tape Thickness.12 MAX. (.4 MAX. 7. (.29 Bo = 1.3 (.46 W = 16. (.63 Embossed Carrier K = 2.7 (.16 K 1 = 2. (.79 P = 12. (.472 User Direction of Feed Ao = 1.3 (.46 (inches Embossment NOTES: 1. All dimensions carry tolerances of EIA Standard 481-2 2. The tape complies with all Notes for constant dimensions listed on page of EIA-481-2 For additional information please visit our website at: www.ixysic.com IXYS Integrated Circuits Division makes no representations or warranties with respect to the accuracy or completeness of the contents of this publication and reserves the right to make changes to specifications and product descriptions at any time without notice. Neither circuit patent licenses nor indemnity are expressed or implied. Except as set forth in IXYS Integrated Circuits Division s Standard Terms and Conditions of Sale, IXYS Integrated Circuits Division assumes no liability whatsoever, and disclaims any express or implied warranty, relating to its products including, but not limited to, the implied warranty of merchantability, fitness for a particular purpose, or infringement of any intellectual property right. The products described in this document are not designed, intended, authorized or warranted for use as components in systems intended for surgical implant into the body, or in other applications intended to support or sustain life, or where malfunction of IXYS Integrated Circuits Division s product may result in direct physical harm, injury, or death to a person or severe property or environmental damage. IXYS Integrated Circuits Division reserves the right to discontinue or make changes to its products at any time without notice. 8 Specification: DS--R1 Copyright 212, IXYS Integrated Circuits Division All rights reserved. Printed in USA. 12/22/212