ULTRA LOW-PROFILE SURFACE-MOUNT RELAY. Max. 6.5 mm.256 inch (Tape height) Initial breakdown voltage* 2. Initial surge voltage

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1 ULTR LOW-PROFILE SURFE-MOUNT RELY RELYS SPEIFITIS ontact rrangement Initial contact resistance max. (y voltage drop 6 V D ) UL File No.: E43 S File No.: LR6 ontact material switching capacity (resistive load) Rating operating power UL/S rating Expected life (min. operations) switching power (resistive load) switching voltage switching current switching capacity Single side stable coil latching coil latching Mechanical (at 8 cpm) Electrical (at cpm).34 3 V D resistive 3 V D resistive. V resistive.6. ORDERING INFORMTI Form 7 mω Gold-clad silver alloy 3 V D. V 6 W 6. V V D V µ mv D mw (. to V D) mw (4 V D) 3 mw (48 V D) 7 mw (. to V D) mw (4 V D) mw (. to V D) mw (4 V D) 3 V D.3 V D. V Ex. TQ 8 Ultra low-profile: 6 mm.36 inch in height comforming to EI standards (Tape height: max. 6. mm.6 inch) 6. mm.6 inch (Tape height) Tape and reel package is available as standard packing style Surge withstand between contacts and coil: V reakdown voltage between contacts and coil: V mp. high capacity High sensitivity: Form ; mw power consumption (Single side stable type) Surge voltage withstand: V F Part 68 haracteristics Initial insulation resistance* Initial breakdown voltage* Initial surge voltage etween open contacts etween contact sets etween contact and coil etween open contacts ( 6 µs) etween contacts and coil ( µs) Operate time [Set time]* 3 (at ) Release time (without diode) [Reset time]* 3 (at ) 6mm.36 inch (Relay height) MΩ (at V D) Vrms for min. (Detection current : m) Vrms for min. (Detection current : m) Vrms for min. (Detection current : m) V (F Part 68) V (ellcore) 4 ms (pprox. ms) [ 4 ms (pprox. ms)] 4 ms (pprox. ms) [ 4 ms (pprox. ms)] Temperature rise* 4 (at ) Shock resistance Functional* 7 m/s {7 G} Destructive* 6 Functional* 7 m/s { G} m/s { G} to Hz at double amplitude of 3.3 mm Vibration resistance 4 m/s {3 G} to Hz Destructive at double amplitude of mm onditions for operation mbient 4 to 8 transport and storage* 8 temperature 4 F to 8 F (Not freezing and condensing at low temperature) Humidity to 8% R.H. Unit weight pprox. g.7 oz Remarks: * Measurement at same location as Initial breakdown voltage section. * Detection current: m * 3 voltage applied to the coil excluding contact bounce time. * 4 y resistive method nominal voltage applied to the coil; contact carrying current:. * Half-wave pulse of sine wave: 6 ms; detection time: µs. * 6 Half-wave pulse of sine wave: 6 ms. * 7 Detection time: µs. * 8 Refer to 4. onditions for operation transport and storage mentioned in * 8 autions for use (Page 8) S L 3V Z ontact arrangement Surface-mount availability Operating function oil voltage (D) Packing style : Form S: Standard surface-mount Nil: Single side stable Nil: Tube packing S: terminal type L: coil latching 4 48* V Z: Tape and reel packing (picked from the 6/7/8//-pin side) SL: High connection reliability L: coil latching S: surface-mount terminal type SS: Space saving surface- S: mount terminal type *48 V coil type: Single side stable only Notes:. Tape and reel (picked from //3/4/-pin side) is also available by request. Part No. suffix -X is needed when ordering. (ex.) TQS-3V-X. Tape and reel packing symbol -Z or -X are not marked on the relay.

2 Surface-mount terminal variation Variation S type (Standard surface-mount terminal type) Terminal style ±..43±... mbient environment Normal environments(indoor) Drastic temperature fluctuations(outdoor) SL type (Highly connection reliability surfacemount terminal type) ±..43±... SS type (Space saving surface-mount terminal type) TYPES Operating function Single side stable Operating function Part No. voltage V D ±. ±. Pick-up voltage V D (max.).. Drop-out voltage V D (min.) operating current m (±%) oil resistance Ω (±%) operating power mw allowable voltage V D TQS -. V TQS -3 V TQS -4. V TQS - V TQS -6 V TQS - V TQS - V TQS -4 V TQS -48V Part No. voltage V D Set voltage V D (max.) Reset voltage V D (max.) operating current m (±%) oil resistance Ω (±%) operating power mw allowable voltage V D TQS -L-. V TQS -L-3 V TQS -L-4. V coil TQS -L- V latching TQS -L-6 V TQS -L- V TQS -L- V TQS -L-4 V TQS -L-. V TQS -L-3 V TQS -L-4. V coil TQS -L- V latching TQS -L-6 V TQS -L- V TQS -L- V TQS -L-4 V : For each surface-mounted terminal variation input the follwing letter. : S type: SL type: L SS type: S Notes:. Specified value of pick-up drop-out set and reset voltage is with the condition of square wave coil pulse.. Standard packing: Tube: pcs.; ase: pcs.; Tape and reel: pcs./reel 3. In case of V transistor drive circuit it is recommended to use 4. V type relay.

3 DIMENSIS S type SL type ±..43± ±..43±..... Recommendable mounting pad (Top view) For glue-pad SS type ±. ± General tolerance: ±.3 ±. Schematic (Top view) Single side stable (Deenergized condition) -coil latching (Reset condition) Tolerance: ±. ±.4 -coil latching (Reset condition) Direction indication* Direction indication* Direction indication* * Orientation stripe located on top of relay REFERENE DT. Maximum switching capacity. Life curve 3. Mechanical life (mounting by IRS methad) Tested sample: TQS-V pcs. Switching current resistive load D resistive load No. of operations 4 3 V resistive load 3V D resistive load Ratio against the rated voltage %V ontact voltage V.. Switching current IRS No. of operations 4 4-.() Electrical life ( 3 V D resistive load) Tested sample: TQS-V 6 pcs. Operating frequency: cpm hange of pick-up and drop-out voltage (mounting by IRS method) hange of contact resistance (mounting by IRS method) 4.-() Electrical life (. V resistive load) Tested sample: TQS-V 6 pcs. Operating frequency: cpm hange of pick-up and drop-out voltage (mounting by IRS method) Ratio against the rated voltage %V ontact resistance mω Ratio against the rated voltage %V IRS No. of operations 4 IRS No. of operations 4 IRS No. of operations 4 3

4 hange of contact resistance (mounting by IRS method) ontact resistance mω IRS No. of operations 4 7. Distribution of pick-up and drop-out voltage Tested sample: TQS-V pcs.. oil temperature rise Tested sample: TQS-V 6 pcs. Point measured: Inside the coil mbient temperature: 77 F Temperature rise oil voltage D V type D 48V type 3 oil applied voltage %V 8. Distribution of set and reset voltage Tested sample: TQS-L-V 3 pcs. 6. Operate/release time Tested sample: TQS-V 6 pcs. Operate and release time ms oil applied voltage %V. mbient temperature characteristics Tested sample: TQS-V pcs. Operate time Release À Quantity @@@ ÀÀ ÀÀÀ Ratio against the rated voltage %V. Distribution of contact resistance Tested sample: TQS-V 3 pcs. (3 4 contacts) Quantity 3 Set voltage Reset voltage Ratio against the rated voltage %V.-() High frequency characteritics Isolation characteristics 4 Rate of change % mbient temperature 4 x.-() High frequency characteristics Insertion loss characteristics Quantity 4 3 Terminal Nos ontact resistance mω (TOP VIEW) Terminal Nos Isolation d Frequency MHz Insertion loass d Frequency MHz.-() Malfunctional shock (single side stable) Tested sample: TQS-V 6 pcs..-() Malfunctional shock (latching) Tested sample: TQS-L-V 6 pcs. Y X m/s Z X X' Y m/s Deenergized condition Energized condition m/s Y X m/s Z X X' Y m/s Reset condition Set condition m/s m/s Z m/s X' m/s Z m/s X' m/s m/s 4

5 3.-() Influence of adjacent mounting Tested sample: TQS-V pcs. 3.-() Influence of adjacent mounting Tested sample: TQS-V 6 pcs. 3.-(3) Influence of adjacent mounting Tested sample: TQS-V 6 pcs. Rate of change % Rate of change % Inter-relay distance R Rate of change % Rate of change % Inter-relay distance R Rate of change % Rate of change % Inter-relay distance R. Pulse dialing test Tested sample: TQS-V 6 pcs. (3 m 48 V D wire spring relay load) ircuit 48 Ω.8.8 µf µf 48 V D 48 Ω Wire spring relay 3 relay hange of pick-up and drop-out voltage (mounting by IRS method) Ratio against the rated voltage %V IRS 3 4 No. of operations 4 hange of contact resistance (mounting by IRS method) ontact resistance mω IRS 3 4 No. of operations 4

6 NOTES. oil operating power Pure D current should be applied to the coil. The wave form should be rectangular. lf it includes ripple the ripple factor should be less than %. However check it with the actual circuit since the characteristics may be slightly different. The nominal operating voltage should be applied to the coil for more than ms to set/reset the latching type relay.. oil connection When connecting coils refer to the wiring diagram to prevent mis-operation or malfunction. 3. External magnetic field Since T-Series relays are highly sensitive polarized relays their characteristics will be affected by a strong external magnetic field. void using the relay under that conditions. 4. onditions for operation transport and storage ) mbient temperature humidity and atmospheric pressure during usage transport and storage of the relay: TX(-SMD) / TX-D(-SMD) / () Temperature: 4 to 8 4 to 8 F. The temperature range is 4 to 7 4 to 8 F for the packaged relay. TX-S(-SMD) () Temperature: 4 to 7 4 to 8 F. for the package/non-package relay. TQ/TF/TN/TK () Temperature: 4 to 7 4 to 8 F The temperature range is 4 to 6 4 to F for the packaged relay. () Humidity: to 8% R.H. (void freezing and condensation.) The humidity range varies with the temperature. Use within the range indicated in the graph below. (3) tmospheric pressure: 86 to 6 kpa Temperature and humidity range for usage transport and storage: TX(-SMD) / TX-D(-SMD) / 8 Tolerance range Humidity %R.H. (void freezing when (void used at temperatures condensation when lower than 3 F) used at temperatures higher than 3 F) Temperature F 8 8 TQ / TF / TN / TK / TX-S (-SMD) ) ondensation ondensation forms when there is a sudden change in temperature under high temperature high humidity conditions. ondensation will cause deterioration of the relay insulation. 3) Freezing ondensation or other moisture may freeze on the relay when the temperature is lower than 3 F. This causes problems such as sticking of movable parts or operational time lags. 4) Low temperature low humidity environments The plastic becomes brittle if the relay is exposed to a low temperature low humidity environment for long periods of time.. M... contact relays small time may be generated by the contact bounce during contact switching. heck the actual circuit carefully. If the relay is dropped accidentally check the appearance and characteristics including M... time before use. 6. Packing style ) Tube orientation for both standard through hole terminal type (including self-clinching type) and surface-mount terminal type. The relay is packed in a tube with the relay orientation mark on the left side as shown in the figure below. Take note of the relay orientation when mounting relays on the printed circuit board. Standard through hole terminal type (including self-clinching type) ex) TX Relays Stopper (gray) 8 Tolerance range Humidity %R.H. (void freezing when used at temperatures lower than 3 F) (void condensation when used at temperatures higher than 3 F) Temperature F Orientation (indicates PIN No.)stripe Stopper (green) Surface-mount terminal type ex) TX-SMD Relays Stopper (gray).±..±.4.dia.dia.4±..37±.8 TX/TX-D/TX-S -SMD relays.4±..6± ±..63±.4.dia.dia.8±..4±.8 TX/TX-D/TX-S -SMD relays.4±..6±.4 6.3±..48±.4 TQ -SMD relays.4±..6±.4 7.8±..37±.8 TQ -SMD relays Orientation (indicates PIN No.)stripe..4..dia.4.87dia 6.±..63±.4.dia.dia..4..dia.4.7dia 6.±..63±.4.dia.dia..4..dia.4.7dia 6.±..63±.4 Stopper (green) () Tape and reel packing (surfacemount terminal type) () Tape dimensions TX / TX-D / TX-S -SMD Relays (i) S type (ii) SL SS type TQ -SMD Relays (i) S type (ii) SLSS type.±..7±. T-Series Relays ±.6 dia..87±.4 dia. 3±. dia..±. dia ±..7±.4.±..7±.4.±..6±.4.±..34±.4.7±..6±.4.±..43±.4 4.±..4±.4 4.±..7±.4.7±..±..6±.4.7±.4.±..6±.4.±..34±.4.3±..484±.4.±..43±.4 4.±..4±.4 4.±..7±.4.7±..±..6±.4.7±.4.±..43±.4.6±..7±.4 4.±..4±.4 4.±..7±.4.7±..±..6±.4.7±.4.±..43±.4.6±..7±.4 4.±..4±.4.3±..484±.4 () Dimensions of plastic reel (i) TX / TX-D / TX-S -SMD Relays ± dia. 3.37±.3 dia. 37± dia..67±.7 dia..±..7±.8 6

7 (ii)tq -SMD Relays 7. utomatic insertion To maintain the internal function of the relay the chucking pressure should not exceed the values below. ) TX(-SMD) / TX-D(-SMD) / TQ / TF hucking pressure in the direction : N { g} or less hucking pressure in the direction : hucking pressure in the direction : TX(-SMD)/TX-D(-SMD) / TX-S(-SMD) Through hole terminal type TQ.±..7±. Surface-mount terminal type TF void chucking the center of the relay. ) hucking pressure in the direction : hucking pressure in the direction : Mountimg pressure in the direction : ±. dia..87±.8 dia. 3±. dia..±.8 dia. 4.4 void chucking the center of the relay. 3) TN hucking pressure in the direction : hucking pressure in the direction : hucking pressure in the direction : N { g} or less.6.7 ± dia. 3.37±.3 dia. 33± dia..±.7 dia..±..7±.8 void chucking the center of the relay. 4) TK hucking pressure* in the direction : hucking pressure* in the direction :.4 N {3 kg} or less hucking pressure* in the direction : (4) Direction Direction Direction () (6) void chucking the center of the relay. *Value of chucking pressure is shown by the value of weight pressed on the portion(4 mm dia.) 8. Soldering ) Preheat according to the following conditions. Temperature Time When soldering standard P board terminals or self-clinching terminals soldering should be done at 48 F within sec. ) When soldering surface-mount terminals the following conditions are recommended. () IR (Infrared reflow) soldering method T3 T T T = to 6 3 F to 3 F T = 8 to 36 F to 3 F T3 = F or less F or less Within approx. minute t = sec. or less t = 3 sec. or less () Vapor phase soldering method T3 T T T = to 4 F to F T =8 to 36 F to 3 F T3 = 4 F or less t t t t t = sec. to sec. t = 6 sec. or less T-Series Relays (3) Soldering iron method Tip temperature: 8 to 3 36 F to 7 Wattage: 3 to 6 W Soldering time: within sec. (4) Other soldering methods heck mounting conditions before using other soldering methods (hot-air hot plate pulse heater etc.). Remarks The temperature profile indicates the temperature of the soldered terminal on the surface of the P board. The ambient temperature may increase excessively. heck the temperature under mounting conditions. The conditions for the infrared reflow soldering apply when preheating using the VPS method.. leaning In automatic cleaning cleaning with the boiling method is recommended. void ultrasonic cleaning which subject the relay to high frequency vibrations. It may cause the contacts to stick. lt is recommended that a fluorinated hydrocarbon or other alcoholic solvents be used.. Others ) If in error the relay has been dropped the appearance and characteristics should be checked before use without fail. ) The cycle lifetime is defined under the standard test condition specified in the JIS* standard (temperature to 3 to F humidity to 8%). heck this with the real device as it is affected by coil driving circuit load type activation frequency activation phaseambient conditions and other factors. 3) For secure operations the voltage applied to the coil should be nominal voltage. In addition please note that pick-up and drop-out voltage will vary according to the ambient temperature and operation conditions. 4) Latching relays are shipped from the factory in the reset state. shock to the relay during shipping or installation may cause it to change to the set state. Therefore it is recommended that the relay be used in a circuit which initializes the relay to the required state (set or reset) whenever the power is turned on. ) heck the ambient conditions when storing or transporting the relays and devices containing the relays. Freezing or condensation may occur in the relay causing functional damage. void subjecting the relays to heavy loads or strong vibration and shocks. *Japanese Industrial Standards Matsushita Electric Works (Europe) G PDF-File generated December 7 Data published may change due to technical improvements Matsushita Electric Works Group Europe For autions for Use see Relay Technical Information. 7

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