FRL-274_09 FUJITSU | Alldatasheet
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Technical content
1 POLE—12, 30, 40 A
(FOR AUTOMOTIVE APPLICATIONS) n FEATURES l High current switching and carry by using new conductive materi- als. l Suitable for automotive applications such as ABS, power assisted steering,etc. l High heat resistance (40A type) Designed for use in high ambient temperature, such as engine com- partment, and able to carry continuous current of 20 A in+125°C. l New contact material New contact material formulation which is resistant to welding. l Three types of contact gaps (0.4mm, 1.0mm, 1.4mm) l RoHS compliant since date code: 0631 Please see page 8 for more information 1. 40A Type n ORDERING INFORMATION FRL-274 N D012 / 81 C Y - 01A -001 [Example] (a) (b) (c) (d) (e) (f) (g) (h) (a) Series Name FRL-274: FRL-274 Series (b) Enclosure N : Plastic sealed type (c) Nominal Voltage D012 : 12 VDC (d) Carrying Current 81 : 40 A type (e) Contact Arrangement A : 1 form A C : 1 form C (f) Contact Material Y : Silver-tin oxide (g) Cover Terminal 01A : w/cover, wide terminal width (h) Custom Designation To be assigned custom specification RoHS compliant To be DisconTinueD
- Standard Type (a) Series Name FRL-274: FRL-274 Series (b) Enclosure N : Plastic sealed type (c) Coil Type D : Standard (nominal power 1.7 to 2.1 W) H : Low power (nominal power 0.6 W) (d) Nominal Voltage 009 : 9 VDC 012 : 12 VDC 024 : 24 VDC 01 : Standard gap (0.4 mm gap) (e) Contact Gap 51 : 1.0 mm gap 61 : 1.4 mm gap (f) Contact Arrangement A : 1 form A (SPST-NO) C : 1 form C (SPDT) (g) Contact Material Y : Silver-tin oxide (h) Cover Terminal A : standard terminal width 01A : wide terminal width (i) Custom Designation To be assigned custom specification (j) Package Nil : Standard tray -S : Carrier tube FRL-274 N D 012 / 01 C S - 01A - *** (-S) [Example] (a) (b) (c) (d) (e) (f) (g) (h) (i) (j)
tnemegnarrA )TDPS(Cmrof1,)ON-TDPS(Amrof1 lairetaM edixonit-revliS )ecnatsiser(porDegatloV A, 12VDC)1ta(laitiniVm001.xaM gnitaR rotom(A03CDV41 )kcol rotom(A04CDV41 )kcol rotom(A21CDV82 )kcol paG pagmm4.0:10 pagmm4.0:10 pagmm0.1:15 pagmm4.1:16 tnerruCgniyrraC.xaM :C˚02 suounitnocA03 setunim01A04 C˚02 suounitnocA04 ruoh1A05 :C˚521 suounitnocA02 setunim01A04 :C˚02 suounitnocA03 ycneuqerFgnihctiwS.xaM ruoh/snoitarepo000,1:lacinahceM ruoh/snoitarepo008,1:lacirtcelE daoLgnihctiwS.niM )1*( )ecnerefer( muminimW600m )muminimAm05( lioC erutarepmeTgnitarepO )atadcitsretcarahCotrefer()tsorfon(C˚58+otC˚04- erutarepmeTegarotS )tsorfon(C˚001+otC˚04- noitalusnI ecnatsiseR )CDV005ta(M001muminiM htgnertScirtceleiD muminim1CAV005 emiT eulav )eulavlanimonta(etarepO sm01.xam:pagmm4.0 sm01.xam:pagmm0.1 sm51.xam:pagmm4.1 lanimonta(esaeleR )eulav sm5.xam:pagmm4.0 sm8.xam:pagmm0.1 sm01.xam:pagmm4.1 efiL lacinahceM 01x01 6 muminimsnoitarepo lacirtcelE 01x001 3 muminimsnoitarepo rehtO ecnatsiseRnoitarbiV )mm5.1foedutilpmaelbuod(zH55ot01 kcohS ecnatsiseR noitareposiM s/m001 2 ±11( 1 )sm ecnarudnE s/m0001 2 ±11( 1 )sm thgieW g02yletamixorppA n SPECIFICATIONS *1 Values when switching a resistive load at normal room temperature and humidity and in a clean environment. The minimum applicable load varies with the switching frequency and operating environment. Ω
- MAXIMUM BREAK CAPACITY epyT tcatnoC paG lanimoN rewoP lioC egatloV rebmuNtraP ecnatsiseRlioC C˚02ta)%01±( etarepOtsuM egatloV lioC -arepmeT esiRerutC˚02 C˚08 V21 yrettaB mm4.0 rewol rewop W6.0 CDV9 10/900HN472-LRF .xorppA C˚53CDV01 10/010HN472-LRF CDV21 10/210HN472-LRF -Y A 042 V4.8 V4.01 dradnatS W7.1 CDV21 10/900DN472-LRF -Y A 58 V5.6 V0.8 .xorppA C˚57 epytA04 W78.0 CDV21 18/900DN472-LRF 10-Y 561 V3.6 V0.8 .xorppA C˚56 V42 yrettaB mm0.1 W7.1 CDV42 15/420DN472-LRF -Y A 043 V8.61 V0.12 .xorppA C˚57 mm4.1 W1.2 CDV42 16/420DN472-LRF -Y A 572 V8.61 V0.12 .xorppA C˚58 Contact switching current(A) Voltage between contacts (VDC) 10 15 20 25 35 4030 50 3540 : Locked motor load 1 0.4 mm gap 2 1.0 mm gap 3 1.4 mm gap : Load (1) 0.4 mm gap (2) 1.0 mm gap (3) 1.4 mm gap (4) 1.0 mm gap (3) (4) (1) (2) 1 2 3 A A B Ω Ω Ω Ω Ω Ω Ω Test circuit A Load Locked motor or resistive load Relay Test circuit B Load Resistive load Relay
- OPERATING COIL VOLTAGE (EXAMPLE) 3. LIFE TEST (EXAMPLE) [Low power (H type)] Operating temperature range (ºC) % of the rated coil voltage Pick-up voltage Contact carry 15A 100 110 120 130 140 10 0 10 20 30 40 50 60 70 150 160 Continuous carrying range Intermittantoperation isrequired at 15 A [Standard (D type)] Operating temperature range(ºC) Ratio of operating voltage to rated coil voltage(%) 8010 0 10 20 30 40 50 60 70 Pick-up voltage Pick-up voltage of 51,56 type Contact carry 15 A Pick-up voltage of 01 type (0.4 mm gap) Continuous carry range 100 110 120
130 Intermittant operation is
Operating temperature range (°C) Ratio of operating voltage to rated coil voltage(%) Pick-up voltage Contact carry 15A 100 110 120 –10 0 10 20 30 40 50 60 70 130 Continuous carrying range [40A type]
- Shift of pick-up and drop-out voltage
- Shift of contact resistance (measured at 6 V-1 A) 100 Pick-up Drop-out Ratio of pick-up and drop-out values to rated coil voltages (%) Initial 20 50 100 500 1,000 Initial 20 50 100 500 1,000 No. of operations (x104) No. of operations (x104) Contact resistance (m) 1,000 100
- Test item
16 VDC, 40 A
- Test circuit
- Circuit wave form 40 A 0 A [40A type]
[Standard type] LIFE TEST (EXAMPLE) n REFERENCE DATA [40A type] Distribution of Operate & Release Voltage Distribution of Operate & Release Time Distribution of Contact Resistance FRL-274(40A TYPE) n = 100 Operate Release Operate Release Distribution Nominal Voltage Multiplying Factor (%) Times (ms) Contact Resistance (mΩ) FRL-274(40A TYPE) n = 100 FRL-274(40A TYPE) n = 100 Test Item Test circuit N.O DC 14 V-65 W × 2 N.C. DC 14 V-60 W × 2 Halogen lamp load 500,000 operations minimum (contact material: special silver alloy) DC 14 V-30 A Motor lock 100,000 operations minimum (contact material: silver copper) DC 30 V-1.6 A Motor free 200,000 operations minimum (contact material: silver copper) N.C. N.O. 14 V
65 W ´ 2 60 W ´ 2
N.O. N.C. N.O. N.C. RL-1 RL-2 14 V M N.C. N.O. Motor 30 V
Unit: mm Nominal Voltage Multiplying Factor (%) Times (ms) Contact Resistance (mΩ) Distribution of Operate & Release Voltage Distribution of Operate & Release Time Distribution of Contact Resistance FRL-274 n = 100 FRL-274 n = 100 FRL-274 n = 100 Operate Release Operate Release Distribution [Standard type] 23.7+0.5 19.2+0.5 (19.7+0.5)3.5 (3.0) ( ): N type 21.3+0.5 1 form C Dimensions 1 form A Schematics (BOTTOM VIEW) Standard terminal width PC board mounting hole layout (BOTTOM VIEW) Wide terminal width Tube carrier 1 1 123 4 1 1 123 23.3 Max. 28 Max. 541Max. Note : Tolerance ± 0.1 mm 1form A type doesn't have #5 pin. 4-Ø 1.4 +0.1 Ñ0.05 3-¿1.8 +0.1 Ñ0.05 9.35 14.7(3.85) 5 1 234 5.6 10.8 11.8 14.2 2.6 15.55 (3.2) 2-¿1.4 +0.1 Ñ0.05 9.35 14.7(3.85) 5 1 234 5.6 10.8 11.8 14.2 2.6 15.55 (3.2) 1.5+0.1 Ñ0.05 2.2+0.1 Ñ0.05 20pcs/tube
- General Information l 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) 2. Recommended Lead Free Solder Profile l Recommended solder paste Sn-3.0Ag-0.5Cu. RoHS Compliance and Lead Free Relay Information Reflow Solder condition 3. Moisture Sensitivity l Moisture Sensitivity Level standard is not applicable to electromechanical realys. 4. Tin Whisker l Dipped SnAgCu solder is known as low risk tin whisker. No considerable length whisker was found by our in house test. We highly recommend that you confirm your actual solder conditions Flow Solder condition: Pre-heating: maximum 120˚C Soldering: dip within 5 sec. at 260˚C soler bath Solder by Soldering Iron: Soldering Iron Temperature: maximum 360˚C Duration: maximum 3 sec.
3-5, Higashigotanda 2-chome, Shinagawa-ku Tokyo 141 8630, Japan Tel: (81-3) 5449-7010 Fax: (81-3) 5449-2626 Email: promothq@fcl.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
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/ Fujitsu Components International Headquarter Offices ©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.