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部品型式

1-480262-0

製品説明
仕様・特性

Catalog 1308242 Issued 3-03 P&B JWD/JWS series Dual In-Line Package & Single In-Line Package Dry Reed Relays Features • • • • • File E29244 JWD has dual in-line package (DIP) configuration. (14-pin DIP) JWS has single in-line package (SIP) configuration. Low cost, dry reed reliability with various contact arrangements. Wave solderable and immersion cleanable. Optional coil suppression diode. Contact Data @ 25°C Arrangements: 1 Form A (SPST - NO) on JWD & JWS. 1 Form B (SPST - NC), 1 Form C (SPDT) and 2 Form A (DPST-NO) on JWD only. Material: Ruthenium. Expected Mechanical Life: 100 million operations. Expected Electrical Life: Forms A & B Form C File LR81479 Ordering Information – Boldface items are more likely to be stocked. Resistive Load End of Life Criteria No. of Operations 20VDC, 500mA 500mV Loss 1 x 106 20VDC, 250mA 500mV Loss 20 x 106 Low Level (5VDC, 1mA) 50 Ohms 100 x 106 12VDC, 500mA 500mV Loss 1 x 106 10VDC, 10mA 50 Ohms 25 x 106 Low Level (5VDC, 1mA) 50 Ohms 100 x 106 Contact Ratings: Maximum Switched Voltage: 100VDC for Forms A & B; 28VDC for Form C. Maximum Switched Current: 500mA for all models. Maximum Switched Power:10W for Forms A & B; 3W for Form C. Initial Contact Resistance: 200 milliohms, max. at 10mA, 6VDC. Initial Dielectric Strength Between Open Contacts: 250VDC for Forms A & B; 175VDC for Form C. Between Contacts and Coil: 500VDC. Initial Insulation resistance Between Mutually Insulated Conductors: 1010 ohms at 100VDC. Coil Data @ 25°C See Ordering Information table. Operate Data @ 25°C Operate Time (Including Bounce)†: 1.5 ms, max. Release Time (Including Bounce)†: 0.5 ms, max., for Forms A & B; 3.0 ms, max., for Form C. Nom. ResisMust Must Max. Nom. Relay Volttance Operate Release Volt- Coil ±10% Voltage Voltage age Power Part Diode age No. (VDC) (Ohms) (VDC) (VDC) (VDC) (mW) JWD (DIP units) with 1 Form A (SPST-NO) contacts rated 10W max. JWD-107-1 No 5/6 500 3.8 0.5 19 50/72 JWD-107-5 Yes 5/6 500 3.8 0.5 19 50/72 JWD-107-3 No 12 1,200 9.6 1.0 19 120 JWD-107-7 Yes 12 1,200 9.6 1.0 19 120 JWD-171-5 No 24 2,150 19.2 2.0 40 268 JWD-171-10 Yes 24 2,150 19.2 2.0 40 268 JWD (DIP units) with 2 Form A (DPST-NO) contacts rated 10W max. JWD-171-21 No 5/6 200 3.8 0.5 14 125/180 JWD-171-25 Yes 5/6 200 3.8 0.5 14 125/180 JWD-171-23 No 12 500 9.6 1.0 19 288 JWD-171-27 Yes 12 500 9.6 1.0 19 288 JWD-171-24 No 24 2,200 19.2 2.0 40 262 JWD-171-28 Yes 24 2,200 19.2 2.0 40 262 JWD (DIP units) with 1 Form B (SPST-NC) contacts rated 10W max. JWD-171-12 No 5/6 500 3.8 0.5 7 50/72 JWD-171-17 Yes 5/6 500 3.8 0.5 7 50/72 JWD-171-14 No 12 1,200 9.6 1.0 16 120 JWD-171-19 Yes 12 1,200 9.6 1.0 16 120 JWD-171-15 No 24 2,200 19.2 2.0 40 262 JWD-171-20 Yes 24 2,200 19.2 2.0 40 262 JWD (DIP units) with 1 Form C (SPDT) contacts rated 3W max. JWD-172-1 No 5/6 200 3.8 0.5 12 125/180 JWD-172-5 Yes 5/6 200 3.8 0.5 12 125/180 JWD-172-3 No 12 500 9.6 1.0 19 288 JWD-172-7 Yes 12 500 9.6 1.0 19 288 JWD-172-4 No 24 2,200 19.2 2.0 38 262 JWD-172-8 Yes 24 2,200 19.2 2.0 38 262 JWD-172-155 No 5/6 200 3.8 0.5 12 125/180 JWD-172-159 Yes 5/6 200 3.8 0.5 12 125/180 JWD-172-157 No 12 1,000 9.6 1.0 19 144 JWD-172-161 Yes 12 1,000 9.6 1.0 19 144 JWD-172-158 No 24 2,150 19.2 2.0 38 268 JWD-172-162 Yes 24 2,150 19.2 2.0 38 268 JWS (SIP units) with 1 Form A (SPST-NO) contacts rated 10W max. No Yes No Yes No Yes No Yes JWS-117-1 JWS-117-6 JWS-117-3 JWS-117-8 JWS-117-13 JWS-117-18 JWS-117-5 JWS-117-10 † At or from Nominal Coil Voltage. Environmental Data 5 5 12 12 12 12 24 24 Temperature Range: -35°C to +85°C. Shock: 100 g, max., in three planes for 8 ms, 1/2 wave pulse. Vibration: 20 g, max., between 10 and 2,000 Hz. JWD Termination: Printed circuit terminals on 0.100" (2.54mm) grid centers. Enclosure Type: Black molded epoxy package. Weight: 0.08 oz. (2.3g) approximately. .125 ± .010 (3.18 ± .254) 3.8 3.8 9.6 9.6 9.6 9.6 19.2 19.2 0.5 0.5 1.0 1.0 1.0 1.0 2.0 2.0 16 16 19 19 30 30 36 36 50 50 272 272 78 78 268 268 1 1 1 1 2 2 3 3 3 3 3 3 4 4 4 4 4 4 5 5 5 5 5 5 6 6 6 6 6 6 7 7 7 7 7 7 7 7 Outline Dimensions Mechanical Data 500 500 530 530 1,850 1,850 2,150 2,150 Wiring Dia. No. 1 2 6 7 Wiring Diagrams (Top Views) Dia. 2 Dia. 3 +2 1 +2 1 w w 13 14 8 9 +2 1 w w 7 6 w 8 9 .100 TYP . (2.54) 13 14 Dia. 6 8 9 13 14 8 9 13 14 7 6 w .260 MAX. (6.6) w .307 MAX. (7 .8) w w w 13 14 8 9 w 8 9 1314 1 +3 5 1 7 Note: Terminal numbers are for reference only and do not appear on relays. Users should thoroughly review the technical data before selecting a product part number. It is recommended that users also seek out the pertinent approvals files of the agencies/laboratories and review them to ensure the product meets the requirements for a given application. Dimensions are shown for reference purposes only. .012 TYP . (.3) +2 1 w +2 1 4° MAX. TYP . .800 MAX. (20.32) Dia. 7 w 7 6 .020 TYP . (.51) .600 (15.24) MAGNET JWS Dia. 5 .315 (8.0) MAX. WITH TERMINALS VERTICAL Dia. 4 7 6 w 7 6 w +2 1 w 7 6 w Dia. 1 .300 MAX. (7 .62) .770 MAX. (19.56) Dimensions are in inches over (millimeters) unless otherwise specified. .020 TYP . (.51) 3 5 7 .018 TYP . (.46) .200 TYP . (5.08) Note: .010 TYP . (.25) .125 ± .010 (3.18 ± .254) Magnetic shielding may be required between relays when they are placed in very close proximity to one another. Specifications and availability subject to change. www.tycoelectronics.com Technical support: 303 Refer to inside back cover.

ブランド

AMPHENOL

会社名

Amphenol Corporation

本社国名

U.S.A

事業概要

Founded in 1932, Amphenol has grown to be one of the world’s largest interconnect and cable manufacturers. The company designs, manufactures, and markets electrical, electronic, and fiber-optic connectors, interconnect systems, and coaxial and specialty cable. Today Amphenol has a diversified presence in high growth markets that it has cultivated over its 75 year history. Originally named The American Phenolic Corporation, Amphenol was founded by entrepreneur Arthur J. Schmitt in the Chicago area. Mr. Schmitt was focused on finding a better way to mass-produce vacuum tube sockets for the explosion of radio manufacturing at the time. He discovered that insulating plastic could effectively be used to produce tube sockets in a quicker and simpler method that using Bakelite or ceramic. With an initial order from RCA, Amphenol grew rapidly and has continued to profitably anticipate the needs of emerging markets ever since. Technology leadership has long been a corporate focus and Amphenol has been creating industry standards since its founding in 1932. We hope you enjoy the timeline below which gives a brief overview of how Amphenol has evolved into the global organization it is today.

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