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COMPACT POWER RELAY 1 POLE--20 A (FOR AUTOMOTIVE FLASHER LAMP LOAD APPLICATIONS ) FBR51(-WF) SERIES s FEATURES Relay for flasher lamp load (automotive application) newly added to our compact power relay, FBR51 Series. q Long life Special contact allows more than 250k operations at flasher lamp load of 14 V DC, 11 A inrush, rated 80 W. q s ORDERING INFORMATION [Example] (a) (b) (c) FBR51 (a) N D12 (b) (c) - WF -** (d) (e) FBR51 : FBR51 Series (contact gap 0.3 mm) N D09 D10 D12 WF : Plastic sealed type : 9 VDC : 10 VDC : 12 VDC : Special contact * Series Name Structure Nominal Voltage (d) (e) Contact Material Custom Designation To be assigned custom specification * The contact materials of the movable and stationary contacts are different. Therefore, the specified load polarity must be observed to achieve rated life. Refer to life test examples and schematic. 1 FBR51 (-WF) SERIES s SPECIFICATIONS Item Contact Arrangement Material Voltage Drop (resistance) Ratings Maximum Carrying Current Max. Inrush Current (reference) Max. Switching Current (reference) Min. Switching Coil Load*1 (reference) 1 form A Special contact Maximum 100 mV (at 2 A 12 VDC) 14 VDC-80 W (load: tungsten lamp) 30 A/ 1 hour (25C, 100% rated coil voltage) 80 A 35 A 16 VDC 6 VDC, 1 A -40C to + 85C (no frost) -40C to +100C (no frost) Maximum 10 ms Maximum 5 ms 1 x 107 operations minimum 2.5 x 106 ops. 14 VDC inrush 11 A (0.35s ON, 0.35s OFF), 80 W (load: tungsten lamp) 10 to 55 Hz (double amplitude of 1.5 mm) 100 m/s2 1,000 m/s2 Approximately 6 g N.O. COM. Terminal: (+)side Terminal: (-)side FBR51 Series Operating Temperature Storage Temperature Time Value Operate (at nominal voltage) Release (at nominal voltage) Life Mechanical Electrical Other Vibration Resistance Shock Resistance Weight Polarity Misoperation Endurance *1 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 operating environment. s COIL DATA CHART MODEL FBR51 Series FBR51ND09-WF FBR51ND10-WF FBR51ND12-WF Nominal voltage 9 VDC 10 VDC 12 VDC Coil resistance (10%) (at 20C) 135 180 240 Must operate voltage 5.4 VDC (at 20C) 6.8 VDC (at 85C) 6.3 VDC (at 20C) 7.9 VDC (at 85C) 7.3 VDC (at 20C) 9.2 VDC (at 85C) 73C/W Thermal resistance 2 FBR51 (-WF) SERIES s CHARACTERISTIC DATA 1. LIFE TEST (EXAMPLES) Ratio of pick-up and drop-out values to rated coil values (%) 100 80 60 40 20 0 0.1 Test Item DC 14V-11A (80W) Flasher Hazard lamp load 2,500,000 operations minimum (FBR-51 WF type) Test circuit N.O. 14 V Initial No. of operations (x105) 1 10 25 100 measured at 6V, 1A wet 100 Circuit wave form Contact resistance (m) 60 (initial) 0A 10 11 A 7A 1 0.1 Initial 1 10 100 No. of operations (x105) 2. COIL TEMPERATURE RISE (C) 120 100 3. OPERATING COIL VOLATGE RANGE (EXAMPLE) [FBR51ND09-WF] NOTE : Intermittent coil operation is required in this region at 20 A or more carrying current. Ambient Temperature 20C 0.8 W 0.6 W (3) carrying current : 20 A applied coil power [ FBR51ND12-WF ] NOTE : Intermittent coil operation is required in this region at 20 A or more carrying current. Coil temperature rise (V) Applied voltage to the coil 80 60 40 20 0 0 Applied voltage to the coil (2) carrying current : 10 A applied coil power 0.8 W 0.6 W 0.8 W 0.6 W (1)carrying current : 0 A applied coil power 15 (V) 15 10 CONTINUOUSLY APPLICABLE COIL VOLTAGE RANGE 10 CONTINUOUSLY APPLICABLE COIL VOLTAGE RANGE 5 5 10 20 30 Applied time (minutes) -30 0 50 100 Operating temperature (C) -30 0 50 100 Operating temperature (C) 3 FBR51 (-WF) SERIES 4. VIBRATION RESISTANCE CHARACTERISTICS Dual amplitude (mm) (m/s ) 100 50 2 5 Automotive electronic standard 1 0.5 0.1 0.01 Acceleration 44 m/s2 Frequency: 10 to 2000 Hz Acceleration: 100 m/s2 max Vibration direction: see diagram Detection Level: chatter 100s Range where chattering occurs N.O. contact coil not energized on X-direction 10 50 100 Frequency (Hz) 500 1000 2000 10 Z FBR51 X Y 5. SHOCK RESISTANCE CHARACTERISTICS (m/s2) 1,000 Shock level 800 600 400 Shock application time : 11 ms, half-sine wave Test material : coil, energized and de-energized Shock direction: see diagram Detection Level : chatter > 100 s Y2 200 0 Z2 X1 X2 Y1 Y2 Z1 Z2 : N.C. contact (coil de-energized) : N.C. contact (coil energized) Z1 FBR51 Y1 X1 Shock direction X2 s REFERENCE DATA Distribution of operate and release voltage 80 FBR51 n = 100 60 Operate Release 100 80 Distribution of operate and release time FBR51 n = 100 Operate Release Distribution of contact resistance 100 80 FBR51 n = 100 Distribution (%) Distribution (%) 60 40 20 0 Distribution (%) 60 40 20 0 40 20 0 0 10 20 30 40 50 60 70 80 Nominal voltage multiplying factor (%) 0 1 2 345 Time (ms) 6 7 8 0 10 20 30 40 50 60 70 80 Contact resistance (m) 4 FBR51 (-WF) SERIES s DIMENSIONS G Dimensions 15.5+0.2 G PC board mounting hole layout BOTTOM VIEW 4-o1.3 G Schematics BOTTOM VIEW FBR50-WF N.O. (+) 2 51ND12-WF 12.1+0.2 5 10 F 3 R0.4 R0.4 o1.4 2.5 13.7+0.3 COM 1 (-) 10.2 5 4 N.C. 0.3 2.5 1 t=0.3 10.2 (1.6) 1 t =0.4 3.5 1.2 5 (1.05) 10 G Tube carrier 19.0 Max. 601 Maximum 20.3 Max. 45 pieces/tube Unit : mm 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: marcom@fcai.fujitsu.com Web: www.fcai.fujitsu.com 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: www.fceu.fujitsu.com Asia Pacific Fujitsu Components Asia Ltd. 102E Pasir Panjang Road #04-01 Citilink Warehouse Complex Singapore 118529 Tel: (65) 6375-8560 Fax: (65) 6273-3021 Email: fcal@fcal.fujitsu.com www.fcal.fujitsu.com (c) 2003 Fujitsu Components America, Inc. All company and product names are trademarks or registered trademarks of their respective owners. Rev. 12/16/2003 5 |
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