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FBR46ND006-P-15

FBR46ND006-P-15

  • 厂商:

    FUJITSU(富士通)

  • 封装:

  • 描述:

    FBR46ND006-P-15 - MINIATURE RELAY 2 POLES-1 to 2 A (FOR SIGNAL SWITCHING) - Fujitsu Component Limite...

  • 数据手册
  • 价格&库存
FBR46ND006-P-15 数据手册
MINIATURE RELAY 2 POLES—1 to 2 A (FOR SIGNAL SWITCHING) FBR46 SERIES n FEATURES l RoHS compliant Miniature size About 50% smaller in volume compared with the FBR240 series used mainly in communication equipment. l High surge voltage 2,500 V minimum of surge strength (Bellcore standard), and 1,500 VAC minimum of dielectric strength between coil and contact (-15, -16 type). l Low power consumption 85 mW of operate power (150 mW of nominal power consumption) by built-in permanent magnet. l Shipping tube package l RoHS compliant since date code: 0433A Please see page 7 for more information To be N (b) n ORDERING INFORMATION [Example] (a) (b) (*) (c) Di 012 (c) FBR46 (a) D (*) -P (d) sc -15 (e) N D G -CSA (f ) Series Name Enclosure Coil Type Nominal Voltage FBR46 : FBR46 Series : Plastic sealed on : Standard, -15, -16 (DC coil) : 65% Operate type Ti (Example) Standard, -15, -16 type (Example) Latching type 005: 5 VDC 05: 5 VDC 012: 12 VDC 12: 12 VDC (refer to the COIL DATA CHART) –P Nil -15 -16 : Gold-overlay silver-palladium : Between coil and contacts 1,000 VAC, between contacts 750 VAC : Between coil and contacts 1,500 VAC, between contacts 750 VAC : Between coil and contacts 1,500 VAC, between contacts 1,000 VAC nu eD (d) (e) Contact Material Dielectric Strength (f) Safety Specification Nil : Standard (UL114 recognized) -CSA : UL114 + CSA recognized Note: The designation name is stamped on the top of the relay case as follows: (Example) Designation ordered: FBR46ND012-P Stamp: 46ND012-P 1 FBR46 SERIES n COIL DATA CHART 1. STANDARD (D type) Nominal current (at nominal voltage) approx. 50 mA 30 mA 25 mA 17 mA 13 mA 8 mA 200 mW 112 mW 30 deg 75% max. of nominal voltage 5% min. of nominal voltage Approx. 150 mW (at nominal voltage Approx. 85 mW max. Approx. 25 deg (at nominal voltage) MODEL Nominal voltage 3 VDC 5 VDC 6 VDC 9 VDC 12 VDC 24 VDC Coil resistance (±10%) 60 Ω 167 Ω 240 Ω 540 Ω 960 Ω 2,880 Ω Must operate voltage*1 Must release voltage*1 Nominal power Operate power Coil temperature rise FBR46ND003-P FBR46ND005-P FBR46ND006-P FBR46ND009-P FBR46ND012-P FBR46ND024-P *1: Specified values are subject to pulse wave voltage. Note: All values in the table are measured at 20°C To 2. 65% OPERATE TYPE (G type) Nominal voltage 3 VDC 6 VDC 9 VDC 12 VDC 24 VDC be MODEL Coil resistance (±10%) 36 Ω 81 Ω 144 Ω 324 Ω 576 Ω 2,304 Ω Di Nominal current (at nominal voltage) approx. 83 mA 56 mA 41 mA 27 mA 20 mA 10 mA FBR46NG003-P FBR46NG006-P FBR46NG009-P FBR46NG012-P FBR46NG024-P FBR46NG005-P 4.5 VDC sc Must operate voltage*1 65% max. of nominal voltage on Must release voltage*1 Nominal power Operate power Coil temperature rise 10% min. of nominal voltage *1: Specified values are subject to pulse wave voltage. Note: All values in the table are measured at 20°C Ti Approx. 250 mW (at nominal voltage nu Nominal power Approx. 106 mW max. Approx. 35 deg (at nominal voltage) 3. HIGH DIELECTRIC STRENGTH TYPE (-15, -16 type) MODEL -15 type -16 type Nominal voltage Nominal Coil current Must resistance (at nominal operate 1 (±10%) voltage) voltage* approx. 45 Ω 125 Ω 180 Ω 405 Ω 720 Ω 2,304 Ω 67 mA 40 mA 33 mA 22 mA 17 mA 10 mA 75% max. of nominal voltage 5% min. of nominal voltage Must release 1 voltage* eD Operate power Coil temperature rise FBR46ND003-P-15 FBR46ND003-P-16 3 VDC FBR46ND005-P-15 FBR46ND005-P-16 5 VDC FBR46ND006-P-15 FBR46ND006-P-16 6 VDC FBR46ND009-P-15 FBR46ND009-P-16 9 VDC FBR46ND012-P-15 FBR46ND012-P-16 12 VDC FBR46ND024-P-15 FBR46ND024-P-16 24 VDC Approx. Approx. Approx. 200 mW 112 mW 30 deg (at nominal max. (at nominal voltage) voltage) 250 mW 140 mW 35 deg *1: Specified values are subject to pulse wave voltage. Note: All values in the table are measured at 20°C. 2 FBR46 SERIES n SPECIFICATIONS Item Contact Arrangement and Style Material Resistance (initial) Ratings (resistive) Maximum Carrying Current Standard -65% operate -15 type -16 type 2 form C (DPDT), bifurcated Gold-overlay silver-palladium M aximum 100 mΩ (at 0.1 A 6 VDC) 0.5 A 120 VAC or 1 A 30 VDC 1.25 A 60 AV or 30 W 125 V 1A 0.01 mA 10 mVDC (reference) Approximately 2 pF (between coil and contacts) Approximately 1 pF (between open contacts) 2 To Coil Time Value Life Maximum Switching Power Max. Switching Voltage* 1 Maximum Switching Current Minimum Switching load* Electrostatic Capacity (reference) Nominal power (at 20°C) Operate power (at 20°C) Operating Temperature Operating Humidity be Operate (at nominal voltage) Mechanical Electrical (refer to the REFERENCE DATA) DC AC Release (at nominal voltage) Di 150 to 200 mW 85 to 112 mW 205 mW 106 mW 200 to 250 mW 112 to 114 mW –30°C to +70°C (no frost) (refer to the CHARACTERISTIC DATA) 45 to 85%RH Maximum 5 ms Maximum 5 ms 50 × 106 operations minimum sc 2 × 105 operations minimum (at contact rating) 1 × 105 operations minimum (at contact rating) 10 to 55 Hz (double amplitude of 1.5 mm) 500 m/s2 (11 ±1 ms) 1,000 m/s2 (11 ±1 ms) Approximately 2.5g Other Vibration Resistance Shock Resistance Weight Misoperation Endurance on Ti nu *1 If the switching voltage exceeds the rated contact voltage, reduce the current. The current values vary according to the type of load. *2 Values when switching a resistive load at normal room temperature and humidity and in a clean environment. The minimum switching load varies with the switching frequency and operation environment. eD 3 FBR46 SERIES n INSULATION Item Resistance (initial) (500 VDC) Dielectric Strength Standard 65% operate -15 type -16 type Minimum 1,000 MΩ 1 min. open contacts 720VAC - 1 min. coil and contact adjacent contact 1,000 VAC -1min. non-conducted terminals 1,500V 10 x 700µs standard wave open contacts 750VAC coil and contact adjacent contact 1,500 VAC -1min. open contacts 1,000VAC -1min. coil and contact adjacent contact 1,500 VAC -1min. Surge Voltage To open contact 1,500V 10 x 700µs standard wave 1,500 V 750 V be 1,500 V 750 V 10 s 700 s 10 s 700 s Di n SAFETY STANDARDS Type UL Compliance UL 114 E63615 CSA C22.2 No. 14 LR 40304, LR 64026 sc coil and contact adjacent contact 2,500V 2 x 10µs standard wave Contact rating Flammability: UL 94-V0 (plastics) 0.3A, 250VAC (resistive) 1A, 30VDC on 2,500 V 1,250 V 2s 10 s Ti nu eD 4 FBR46 SERIES n CHARACTERISTIC DATA Range of operation temperature and voltage [D type] 160 Nominal voltage multiplying factor (%) Range of operation temperature and voltage [G type] 160 Nominal voltage multiplying factor (%) Range of operation temperature and voltage [–15,–16 type] 160 Nominal voltage multiplying factor (%) 150 140 130 120 110 100 90 80 70 Operating voltage range (Data) assumes that the maximum allowable temperature of E type insulation coil is 115°C 150 140 130 120 110 100 90 80 70 Mus t op (Data) assumes that the maximum allowable temperature of E type insulation coil is 115°C 150 140 130 120 110 100 90 80 70 Must (Data) assumes that the maximum allowable temperature of E type insulation coil is 115°C Max Max im Max imum imum a um ge volta coil able allow able allow able llow coil volta coil volta Operating voltage range Operating voltage range ge ge To to Mus pera ltag te vo e erate g volta e te vo opera ltage –10 0 10 20 30 40 50 60 70 80 Operating temperature (°C) Maximum switching capacity ÀAC resistive load ( AC contact rating) ÁDC resistive load ( DC contact rating) Contact load current (A) Service life (operations) 1.0 0.5 0.3 be À Á –10 0 10 20 30 40 50 60 70 80 –10 0 10 20 30 40 50 60 70 80 Operating temperature (°C) Operating temperature (°C) Di 500 100 50 10 5 1 (´104) Life curve 0.1 sc 0.5 30 V DC resistive load 120 V AC resistive load 10 20 30 50 120 200 Contact load voltage (V) Contact load current (A) on 1.0 1.5 Operate Release 2.0 n REFERENCE DATA Distribution of operate and release voltage 80 Operate Release 100 Ti 80 Distribution of operate and release time Distribution of contact resistance nu eD 50 60 70 Distribution (%) Distribution (%) 60 40 Distribution (%) 0 1 2 3 4 5 6 7 8 60 80 60 40 40 20 20 20 0 0 10 20 30 40 50 60 70 80 0 0 0 10 Rated coil voltage multiplying factor (%) Time (ms) Contact resistance (mΩ) 20 30 40 80 5 FBR46 SERIES n DIMENSIONS ■ Dimensions 15.9+0.1 7.9+0.1 9.8+0.1 ■ Schematics (BOTTOM VIEW) 1 12 Polarity 3 10 56 87 ■ PC board mounting hole layout (BOTTOM VIEW) 3.5 To (1.0) 12.8 max. 15.8 maximum 5.08 5.08 .54 (1.09) 7.62 5.08 5.08 2.54 8–ø0.8 ■Tube carrier be 15.9+0.1 501 maximum Di sc ■ Dimensions (Latching type) 9.8+0.1 on () () polarity ■ Schematics (BOTTOM VIEW) Ti 3.5 ] 2.54 5.08 (1.0) 10 12 11 5.08 2.54 (1.09) 7.62 87 5.08 5.08 2.54 10–ø0.8 ■ Tube carrier 501 maximum Note: ·No 2, 11 terminals are for double winding latching type only. ·( )( ) are reset polarity for single winding latching type. ·The terminal number is not shown on the relay. 12.8 max. 15.8 maximum Unit: mm 7.62 123 56 nu ■ PC board mounting hole layout (BOTTOM VIEW) 2.54 eD 7.9+0.1 7.62 6 FBR46 SERIES RoHS Compliance and Lead Free Relay Information 1. General Information Relays produced after the specific date code that is indicated on each data sheet are lead-free now. Most of our signal and power relays are lead-free. Please refer to Lead-Free Status Info. (http://www.fujitsu.com/us/downloads/MICRO/fcai/relays/lead-free-letter.pdf) l Lead free solder paste currently used in relays is Sn-3.0Ag-0.5Cu. l All signal and most power relays also comply with RoHS. Please refer to individual data sheets. Relays that are RoHS compliant do not contain the 5 hazardous materials that are restricted by RoHS directive (lead, mercury, chromium IV, PBB, PBDE). l It has been verified that using lead-free relays in leaded assembly process will not cause any problems (compatible). l “LF” is marked on each outer and inner carton. (No marking on individual relays). l To avoid leaded relays (for lead-free sample, etc.) please consult with area sales office. l We will ship leaded relays as long as the leaded relay inventory exists. Note: Cadmium was exempted from RoHS on October 21, 2005. (Amendment to Directive 2002/95/EC) l To 2. Recommended Lead Free Solder Profile l Recommended solder paste Sn-3.0Ag-0.5Cu. be Reflow Solder condition Flow Solder condition: Pre-heating: Soldering: Di maximum 120˚C dip within 5 sec. at 260˚C soler bath sc on Solder by Soldering Iron: Soldering Iron Temperature: maximum 360˚C Duration: maximum 3 sec. Ti nu We highly recommend that you confirm your actual solder conditions eD 3. Moisture Sensitivity l Moisture Sensitivity Level standard is not applicable to electromechanical realys. Dipped SnAgCu solder is known as low risk tin whisker. No considerable length whisker was found by our in house test. 4. Tin Whisker l 7 FBR46 SERIES Fujitsu Components International Headquarter Offices Japan Fujitsu Component Limited Gotanda-Chuo Building 3-5, Higashigotanda 2-chome, Shinagawa-ku Tokyo 141, Japan Tel: (81-3) 5449-7010 Fax: (81-3) 5449-2626 Email: promothq@ft.ed.fujitsu.com Web: www.fcl.fujitsu.com North and South America Fujitsu Components America, Inc. 250 E. Caribbean Drive Sunnyvale, CA 94089 U.S.A. Tel: (1-408) 745-4900 Fax: (1-408) 745-4970 Email: components@us.fujitsu.com Web: http://www.fujitsu.com/us/services/edevices/components/ Europe Fujitsu Components Europe B.V. Diamantlaan 25 2132 WV Hoofddorp Netherlands Tel: (31-23) 5560910 Fax: (31-23) 5560950 Email: info@fceu.fujitsu.com Web: emea.fujitsu.com/components/ Asia Pacific Fujitsu Components Asia Ltd. 102E Pasir Panjang Road #01-01 Citilink Warehouse Complex Singapore 118529 Tel: (65) 6375-8560 Fax: (65) 6273-3021 Email: fcal@fcal.fujitsu.com Web: http://www.fujitsu.com/sg/services/micro/components/ ©2009 Fujitsu Components America, Inc. All rights reserved. All trademarks or registered trademarks are the property of their respective owners. Fujitsu Components America or its affiliates do not warrant that the content of datasheet is error free. In a continuing effort to improve our products Fujitsu Components America, Inc. or its affiliates reserve the right to change specifications/datasheets without prior notice. Rev. June 30, 2009. To be Di sc on Ti nu eD 8
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