LBA127STR. DUAL POLE OptoMOS Relay
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1 DUAL POLE OptoMOS Relay Units Load Voltage 2 V Load Current 2 ma Max R ON 1 Ω Features Small 8 Pin DIP Package Low Drive Power Requirements (TTL/CMOS Compatible) No Moving Parts High Reliability Arc-Free With No Snubbing Circuits 37V RMS Input/Output Isolation FCC Compatible VDE Compatible No EMI/RFI Generation Machine Insertable, Wave Solderable Surface Mount and Tape & Reel Version Available Applications Telecommunications Telecom Switching Tip/Ring Circuits Modem Switching (Laptop, Notebook, Pocket Size) Hookswitch Dial Pulsing Ground Start Ringer 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 is 2V, 2mA, 1Ω independent 1-Form-A and 1-Form-B relays. It features a superior combination of low on-resistance and enhanced peak load current handling capabilities. Current limiting version is available ("L" suffix, see specification for variations in performance). Approvals UL Recognized: File Number E7627 CSA Certified: File Number LR BSI Certified to: BS EN 69:1992 (BS72:1992) Certificate #: 7344 BS EN 413:1993 Certificate #: 7344 Ordering Information Part # P PTR S STR Pin Configuration Pinout AC/DC Configuration Switching Characteristics of Normally Open (Form A) Devices 1ms 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) 1 + Control - Normally Closed 2 Control - Normally Closed 3 + Control - Normally Open 4 Control - Normally Open 8 Normally Closed Pole 7 6 Normally Open Pole Switching Characteristics of Normally Closed (Form B) Devices 1ms CONTROL CONTROL LOAD 1% + + 9% 1% + + 9% + 1% + 9% T ON T OFF TOFF T ON DS--R8 1
2 Absolute Maximum Ratings 2 C) Parameter Min Typ Max Units Input Power Dissipation mw Input Control Current - - ma Peak (1ms) A Reverse Input Voltage - - V Total Power Dissipation mw Isolation Voltage Input to Output V RMS Operational Temperature C Storage Temperature C Soldering Temperature DIP Package C Flatpack/Surface Mount Package C (1 Seconds Max.) 1 Derate Linearly 1.33 mw/ C 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 these or any other conditions beyond those indicated in the operational sections of this data sheet is not implied. Exposure of the device to the absolute maximum ratings for an extended period may degrade the device and effect its reliability. 2 Derate Linearly 6.67 mw/ C Electrical Characteristics Parameter Conditions Symbol Min Typ Max Units Output 2 C Load Voltage (Peak) - V L V Load Current (Continuous) AC/DC Configuration - I L ma Peak Load Current 1ms I LPK ma On-Resistance AC/DC Configuration I L =Load Current R ON Ω Off-State Leakage Current V L =2V I LEAK µa Switching Speeds Turn-On I F =ma, V L =1V T ON - - ms Turn-Off I F =ma, V L =1V T OFF - - ms Output Capacitance V; f=1mhz C OUT pf Input 2 C Input Control Current I L =Load Current I F - ma Input Dropout Current - I F ma Input Voltage Drop I F =ma V F V Reverse Input Voltage - V R - - V Reverse Input Current V R =V I R µa Input to Output Capacitance - C I/O pf Input to Output Isolation - V I/O V RMS *NOTE: If both poles operate simultaneously load current must be derated so as not to exceed the package power dissipation value. 2
3 PERFORMANCE DATA* Typical LED Forward Voltage Drop (N= Ambient Temperature = 2 C; I F = madc) LED Forward Voltage Drop (V) Typical Blocking Voltage Distribution (N= Ambient Temperature = 2 C) Blocking Voltage (V) Typical On-Resistance Distribution (N= Ambient Temperature = 2 C) (Load Current = 17mADC, I F =madc) On-Resistance (Ω) Typical Blocking Voltage Distribution (N= Ambient Temperature = 2 C) Blocking Voltage (V) Typical On-Resistance Distribution (N= Ambient Temperature = 2 C) (Load Current = 17mADC, I F =madc) On-Resistance (Ω) Typical I F for Switch Operation (N= Ambient Temperature = 2 C) (Load Current = 17mADC) Typical I F for Switch Operation (N= Ambient Temperature = 2 C) (Load Current = 17mADC) Typical I F for Switch Dropout (N= Ambient Temperature = 2 C) (Load Current = 17mADC) Typical I F for Switch Dropout (N= Ambient Temperature = 2 C) (Load Current = 17mADC) Typical Turn-On Time (N= Ambient Temperature = 2 C) (Load Current = 17mADC; I F = madc) 2 Typical Turn-On Time (N= Ambient Temperature = 2 C) (Load Current = 17mADC; I F = madc) 3 Typical Turn-Off Time (N= Ambient Temperature = 2 C) (Load Current = 17mADC; I F = madc) 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. 3
4 PERFORMANCE DATA* Typical Turn-Off Time (N= Ambient Temperature = 2 C) (Load Current = 17mADC; I F = madc) 3 - Form A Typical Load Current vs. Temperature 3 - Form B Typical Load Current vs. Temperature Load Current (ma) mA 1mA ma Load Current (ma) ma Typical Leakage vs. Temperature (Measured across Pins & 6 or 7 & 8) Typical Blocking Voltage vs. Temperature 28 Typical Blocking Voltage vs. Temperature 33 Leakage (µa) Blocking Voltage (V RMS ) Blocking Voltage (V RMS ) Typical Turn-On vs. Temperature (Load Current = 17mADC) ma 1mA 2mA Typical Turn-On vs. Temperature (Load Current = 17mADC) ma Typical Turn-Off vs. Temperature (Load Current = 17mADC) ma Typical Turn-Off vs. Temperature (Load Current = 17mADC) ma 1mA 2mA LED Forward Voltage Drop (V) Typical LED Forward Voltage Drop vs. Temperature ma 3mA 2mA 1mA ma Typical Turn-On vs. LED Forward Current (Load Current = 17mADC) 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. 4
5 PERFORMANCE DATA* Typical Turn-On vs. LED Forward Current (Load Current = 17mADC).78 Typical Turn-Off vs. LED Forward Current (Load Current = 17mADC).3 Typical Turn-Off vs. LED Forward Current (Load Current = 17mADC) LED Forward Current (ma) LED Forward Current (ma) LED Forward Current (ma) On-Resistance (Ω) Typical On-Resistance vs. Temperature (Load Current = 17mADC; I F = madc) On-Resistance (Ω) - FormB Typical On-Resistance vs. Temperature (Load Current = 17mADC; I F = madc) Typical I F for Switch Operation vs. Temperature (Load Current = 17mADC) Typical I F for Switch Operation vs. Temperature (Load Current = 17mADC) 3. Typical I F for Switch Dropout vs. Temperature (Load Current = 17mADC) 3. Typical I F for Switch Dropout vs. Temperature (Load Current = 17mADC) Load Current (ma) Typical Load Current vs. Load Voltage (Ambient Temperature = 2 C; I F = madc Load Voltage (V) Load Current (ma) Typical Load Current vs. Load Voltage (Ambient Temperature = 2 C; I F = madc) Load Voltage (V) Load Current (A) Energy Rating Curve 1µs 1µs 1ms 1ms 1ms 1s 1s 1s Time *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.
6 Mechanical Dimensions 8 Pin DIP Through Hole (Standard) TYP. (.28) 3.32 (.13) 7.62 ±.24 (.3 ±.1) TYP. (.36) 6.3 ±.127 (.2 ±.) 9.62 ±.381 (.38 ±.1) 2.4 ±.127 (.1 ±.).47 ±.76 (.18 ±.3) 8.77 ±.127 (.318 ±. ) ±.8 (.36 ±.2) PC Board Pattern (Top View) 8-.8 DIA. (8-.31 DIA.) 6.3 ±.127 (.2 ±.) 2.4 ±.127 (.1 ±.) 7.62 ±.127 (.3 ±.) 7.62 ±.127 (.3 ±.) 8 Pin DIP Surface Mount ( S Suffix) 9.62 ±.381 (.38 ±.1) 7.62 ±.24 (.3 ±.1) 2.4 ±.127 (.1 ±.) PC Board Pattern (Top View) 2.4 ±.127 (.1 ±.) 4.44 ±.127 (.17 ±.) 3.32 (.13).63 TYP. (.2).24 TYP. (.1) 6.3 ±.127 (.2 ±.).47 ±.76 (.18 ±.3) 8.77 ±.127 (.318 ±.) 9.2 ±.24 (.37 ±.1) 1.9 ±.127 (.7 ±.) ±.127 (.9 ±.) 8.3 ±.127 (.327 ±.) 8 Pin Flatpack ( P Suffix) 2.19 TYP. (.8) MAX. (.9).63 ±.127 (.2) 7.62 ±.24 (.3 ±.1).23 (.8) 6.3 ±.127 (.2 ±.) 9.62 ±.381 (.38 ±.1) 2.4 ±.127 (.1 ±.).47 ±.76 (.18 ±.3) 8.77 ±.127 (.318 ±.) ±.127 (.37 ±.) PC Board Pattern (Top View) (.47) 2.4 ±.127 (.1 ±.).787 (.31) ±.127 (.34 ±.) Dimensions mm (inches) 6
7 Mechanical Dimensions Tape and Reel Packaging for 8 Pin Flatpack Package 33.2 DIA. (13.) Top Cover Tape Thickness.12 MAX. (.4) 12.9 (.476) MAX ±.12 (.26) (.69 ±.4).46 MAX. (.16) (.192) ±.12 (.29 ±.4) 2.7 ± ±.12 (.79 ±.4) (.9 ±.4) ±.12 (.17 ±.4) ±.3 (.63 ±.12) (.4) Embossed Carrier Top Cover Tape.R TYP ±.12 (.472 ±.4) ±.12 (.4 ±.4) 1.49 ±.12 (.61 ±.4) Embossment User Direction of Feed Tape and Reel Packaging for 8 Pin Surface Mount Package 33.2 DIA. (13.) Top Cover Tape Thickness.12 MAX. (.4) 12.9 (.476) MAX ±.12 (.26) (.69 ±.4).46 MAX. (.16) (.192) ±.12 (.29 ±.4) 2.7 ± ±.12 (.79 ±.4) (.9 ±.4) ±.12 (.17 ±.4) ±.3 (.63 ± (.4) Embossed Carrier Top Cover Tape.R TYP ±.12 (.472 ±.4) 1.3 ±.12 (.4 ±.4) 1.49 ±.12 (.61 ±.4) Embossment User Direction of Feed Dimensions mm (inches) 7
8 Worldwide Sales Offices CLARE LOCATIONS Clare Headquarters 78 Cherry Hill Drive Beverly, MA 191 Tel: Fax: Toll Free: CLARE Clare Micronix Division 14 Columbia Aliso Viejo, CA Tel: Fax: SALES OFFICES AMERICAS Americas Headquarters Clare 78 Cherry Hill Drive Beverly, MA 191 Tel: Fax: Toll Free: CLARE Eastern Region Clare P.O. Box 86 Mahwah, NJ 743 Tel: Fax: Toll Free: CLARE Central Region Clare Canada Ltd. 342 Harvester Road, Suite 22 Burlington, Ontario L7N 3N1 Tel: Fax: Western Region Clare 182 West 11th Street, #348 Tracy, CA 9376 Tel: Fax: Toll Free: CLARE Canada Clare Canada Ltd. 342 Harvester Road, Suite 22 Burlington, Ontario L7N 3N1 Tel: Fax: EUROPE European Headquarters CP Clare nv Bampslaan 17 B-3 Hasselt (Belgium) Tel: Fax: France Clare France Sales Lead Rep 99 route de Versailles 9116 Champlan France Tel: Fax: Germany Clare Germany Sales ActiveComp Electronic GmbH Mitterstrasse Manching Germany Tel: Fax: Italy C.L.A.R.E.s.a.s. Via C. Colombo 1/A I-266 Melzo (Milano) Tel: Fax: Sweden Clare Sales Comptronic AB Box 167 S Spånga Tel: Fax: United Kingdom Clare UK Sales Marco Polo House Cook Way Bindon Road Taunton UK-Somerset TA2 6BG Tel: Fax: ASIA/PACIFIC Asian Headquarters Clare Room N116, Chia-Hsin, Bldg II, 1F, No. 96, Sec. 2 Chung Shan North Road Taipei, Taiwan R.O.C. Tel: Fax: Clare cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in this Clare product. No circuit patent licenses nor indemnity are expressed or implied. Clare reserves the right to change the specification and circuitry, without notice at any time. The products described in this document are not intended for use in medical implantation or other direct life support applications where malfunction may result in direct physical harm, injury or death to a person. Specification: DS--R8 Copyright 2, Clare, Inc. OptoMOS is a registered trademark of Clare, Inc. All rights reserved. Printed in USA. 2/1/1
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