FTR-B4 Series ULTRA MINIATURE RELAY SLIM SIGNAL RELAY. RoHS Compliant FEATURES ORDERING INFORMATION
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1 ULTRA MINIATURE RELAY SLIM SIGNAL RELAY Series FEATURES Ultra miniature slim type relay for surface mounting Height: 9. mm maximum (THT) mm maximum (SMT) Weight: Approximately. g UL/CSA recognized Conforms to Bellcore & FCC part 68, and Telcordia & F C C part 68 Conforms to UL9 / CSA 9, IEC 9 / EN69 spacing and high breakdown Clearance:.mm Creepage:.6mm Basic insulation, V working, pollution degree HIGH RELIABILITY Bifurcated contacts Low power consumption mv (standard), mw (latching) RoHS compliant since date code: 4B8 Please see page 8 for more information ORDERING INFORMATION [Example] ( a) Series Name ( b) Terminal type ( c) Operation function ( d) Coil Number ( e) material C A 4. Z - B (a) (b) (c) (d) (e) (f ) (g) ( f) Relay enclosing direction* Series C: Through hole type G: surface mount type S: surface mount type - reduced mounting area A: standard type B: latching type Nominal Z: gold plated silver alloy B: standard enclosing direction ( g) N umber of relays per reel* : (standard) Remarks: Actual marking on relay would not carry code FTR and be as below: Ordering code Actual marking CA4.Z B4CA4.Z Notes: * - Only surface mount types (G and S) are applicable - All relays are packaged in tubes unles P/N ends with -B RoHS Compliant
2 COIL DATA CHART Standard type MODEL Rated coil Coil resistance (±%) Operating * Rated power consumption ( ( ( ( ( ( ( )A.Z )AZ )A4.Z )A6Z )A9Z )AZ )A4Z.VDC 6. Ω +.V +.V mw VDC 64. Ω +.V +.V mw 4.VDC 4 Ω +.8V +.4V mw 6VDC 7 Ω + 4.V +.6V mw 9VDC 79 Ω + 6.7V +.9V mw VDC,8 Ω + 9.V +.V mw 4VDC,4 Ω + 8.V +.4V mw * Pulse driven Note: All values in the table are measured at C. Latching type ( coil) MODEL ( )B.Z ( )BZ ( )B4.Z ( )B6Z ( )B9Z ( )BZ ( )B4Z Rated coil Coil resistance (±%) Set Rated power consumption.vdc. Ω +.V -.V mw VDC 9 Ω +.V -.V mw 4.VDC Ω +.8V -.8V mw 6VDC 6 Ω + 4.V -4.V mw 9VDC 8 Ω + 6.7V -6.7V mw VDC,4 Ω + 9.V -9.V mw 4VDC 4,8 Ω + 8.V -8.V mw * Pulse driven Note: All values in the table are measured at C.
3 SPECIFICATIONS Standard Type Latching Type Arrangement material CA ( ) Z GA ( ) Z SA ( ) Z Form C Gold overlay silver alloy C ontact resistance ( initialvalue) m maximum at6vdca Maximum switching Maximum switching Maximum switching current power C oil Operating temperature (no frost) Time Value Insulation A 6. VA / W VAC, VDC - C to +8 C O perate ( atnominal,withoutbounce) ms maximum R elease ( atnominal,withoutbounce) ms maximum Resistance Dielectric Strength Surge Strength (at VDC) between between between open contacts adjacent contacts coil and contacts Minimum, M, VAC minute, VAC minute, VAC minute b etween open contacts,v (at x 6µs) [FCC Part 68] b etween adjacent contacts,v (at x 6µs) [FCC Part 68] between coil and contacts,v (at x 6µs) [FCC Part 68],V (at x µs) [Bellcore] CB ( ) Z GB ( ) Z SB ( ) Z Life Mechanical 6 x operations (at Hz) Electrical (resistive load) x ops. min. at A, VDC (at. Hz) x ops. min. at. A, VAC (at. Hz) Vibration Resistance Shock Resistance Weight UL/CSA Misoperation Endurance Misoperation Endurance Rating to Hz at double amplitude of mm to Hz at double amplitude of mm Min. 7 m/ s Min. m/ s Approximately. g. A, VAC; A, VDC;. A, VDC * Minimum switching loads mentioned above are reference values. Please perform the confirmation test with the actual load before production since reference values may vary according to switching frequencies, envir onmental conditions adn expected reliability levels.
4 CHARACTERISTIC DATA Time (ms) 4 Operation (return time characteristics) Operation time... Coil Power (W) Time (ms) Set, reset time characteristics 4 Set time Reset time... Coil Power (W) Pulse characteristics At set/reset 6. Pulse width (ms) Coil Temperature Rise ( C) 8 6 Coil Temperature Rise current: A current:... Coil Power (W) Ambient Temperature (maximum applied, operating characteristics).4.. Standard type current: current: A Operating (hot coil) Operating (cool coil) Ambient Temperature ( C) Multiplying Factor Ambient Temperature (maximum applied, operating characteristics).4 Latching Type current: A (hot coil) current: A (cool coil) Ambient Temperature ( C) Maximum Switching Power AC Resistive 7 Life Curve Current (A)... DC Resistive Operation (x 4 ) VDC Resistive VDC Resistive. Voltage (V) Current (A) 4
5 REFERENCE DATA 8 6 Distribution of Operate and Voltage n= Operate 8 6 Distribution of Operate and Voltage GB4.Z n= Operate 8 6 Distribution of Operate and Time n= Operate Distribution of Bounce Time N= Operate Distribution of Resistance 8 6 n= Make Break Resistance (m ) Time (ms) Mechanical Life Test Voltage FBR-B4GA4.Z n=8 operations/min. Make Break Resistance (m ) Initial Time (ms) Electrical Life Test Voltage n=8 operations/min. 6 VAC. A (resistive load) Make Break Operation (x 4 ) Magnetic Interference n=4 Voltage Standard type When coil is ON When coil is OFF Distance between relays I (mm) Resistance (m ) Isolation (db) Initial Resistance (m ) Electrical Life Test Voltage n=8 operations/min. VAC A (resistive load) Make Break Operation (x 4 ) High Frequency Characteristics n= Frequency (MHz) Insertion Loss (db) Initial Operation (x 4 ) Magnetic Interference n=4 Voltage Standard type When coil is ON When coil is OFF Distance between relays I (mm) High Frequency Characteristics n= Frequency (MHz)
6 DIMENSIONS AND SCHEMATICS Through hole type Surface mount type (standard).7 ±..6 ±.. ±.. ±.. ±.. ±..4 ±. 9 ±..4 ±.. ± ø.8 (+) ] 4..7 ±..6 ±..±.. ±.. ±.. ±.. ±.. ±...4 ±. 9 ±.. ±.. ±. 7.4 ± ± (-) (-) (+) 4 Recommended mounting pad (Tolerance: ±.mm) Terminal designations (Bottom view deenergized position) Recommended mounting pad (Tolerance: ±.mm) Terminal designations (Top view de-energized position) 6
7 DIMENSIONS AND SCHEMATICS Reduced mounting area.6 ±.. 9 ±..7 ±.. ±.. ±.. ±.. ±..4 ±.. ± (-) ±.. ±..7 ±..8 Recommended mounting pad (Tolerance: ±.mm) (+) 4 Terminal designations (Top view de-energized position) RECOMMENDED SOLDERING CONDITIONS (TEMPERATURE PROFILE) Temperature ( C) T T T IRS (Infrared Reflow Soldering) preheating soldering cooling T = 4 C max. T = C max. T = 6 C max. Note:.Temperature profiles show the tempera ture of PC board surface.. Please perform soldering test with your actual PC board before mass produc tion, since the temperatures of PC board surfaces vary according to the size of PC board, status of parts mount ing and heating method. sec maximum sec Max. PRECAUTIONS - For details on general precautions, refer to the section on technical descriptions. - Since this is a polar relay, follow the instructions of the internal wiring diagram for the +- connections of the coil. - Note that the terminal array and internal wiring of the surface mount relay are a top view. 7
8 . General Information Series RoHS Compliance and Lead Free Relay 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. ( Lead free solder paste currently used in relays is Sn-.Ag-.Cu. From February forward Sn-.Cu-Ni will be used for FTRB and series relays. Most signal and some power relays also comply with RoHS. Please refer to individual data sheets. Relays that are RoHS compliant do not contain the 6 hazardous materials that are restricted by RoHS directive (lead, mercury, cadmium, chromium IV, PBB, PBDE). It has been verified that using lead-free relays in leaded assembly process will not cause any problems (compatible). LF is marked on each outer and inner carton. (No marking on individual relays). To avoid leaded relays (for lead-free sample, etc.) please consult with area sales office. We will ship leaded relays as long as the leaded relay inventory exists.. Recommended Lead Free Solder Profile Recommended solder paste Sn-.Ag-.Cu and Sn-. Cu-Ni (only FTR-B and from February ) Reflow Solder condtion Flow Solder condtion: Peak Temp.: max. C Pre-heating: maximum C Soldering: dip within sec. at Soldering 6 C soler bath temperature ( C) 7 Pre-heating Cooling Solder by Soldering Iron: Soldering Iron Temperature: maximum 6 C Duration: maximum sec. 9~ sec. ~ sec. max. sec. (duration) We highly recommend that you confirm your actual solder conditions. Moisture Sensitivity Moisture Sensitivity Level standard is not applicable to electromechanical realys. 4. Tin Whisker SnAgCu solder is known as low riskof tin whisker. No considerable length whisker was found by our in-house test.. Solid State Relays Each lead terminal will be changed from solder plating to Sn plating and Nickel plating. A layer of Nickel plating is between the terminal and the Sn plating to avoid whisker. 8
9 Fujitsu Components International Headquarter Offices Japan Fujitsu Component Limited Gotanda-Chuo Building -, Higashigotanda -chome, Shinagawa-ku Tokyo 4, Japan Tel: (8-) Fax: (8-) Web: North and South America Fujitsu Components America, Inc. E. Caribbean Drive Sunnyvale, CA 989 U.S.A. Tel: (-8) Fax: (-8) Web: Europe Fujitsu Components Europe B.V. Diamantlaan WV Hoofddorp Netherlands Tel: (-) 69 Fax: (-) 69 Web: Asia Pacific Fujitsu Components Asia Ltd. E Pasir Panjang Road #4- Citilink Warehouse Complex Singapore 89 Tel: (6) Fax: (6) fcal@fcal.fujitsu.com Fujitsu Components America, Inc. All company and product names are trademarks or registered trademarks of their respective owners. Rev. 7//. 9
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