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  tq specifications low profile 2 form c relay tq relays testing 9 .354 26.7 1.051 5 .197 +0.4 ?.2 +.016 ?008 9 .354 14 .551 5 .197 +0.4 ?.2 +.016 ?008 mm inch rohs directive compatibility information http://www.nais-e.com/ features high sensitivity: 2 form c: 140 mw power consumption (single side stable type) 4 form c: 280 mw power consumption (single side stable type) surge voltage withstand: 1500 v fcc part 68 sealed construction allows automatic washing self-clinching terminal also available m.b.b. contact types available contact note: #1 this value can change due to the switching frequency, environmental conditions, and desired reliability level, therefore it is recommended to check this with the actual load. (sx relays are available for low level load switching [10v dc, 10ma max. level]) characteristics standard (b.b.m) type m.b.b.type arrangement 2 form c 4 form c 2 form d initial contact resistance, max. (by voltage drop 6 v dc 1a) 50 m ? contact material gold-clad silver rating nominal switching capacity (resistive load) 1 a 30 v dc 0.5 a 125 v ac 1 a 30 v dc max. switching power (resistive load) 30 w, 62.5 v a 30 w max. switching voltage 110 v dc, 125 v ac 110 v dc max. switching current 1 a min. switching capacity (reference value) #1 10 a 10 mv dc nominal operating power single side stable 140 mw (3 to 12 v dc) 200 mw (24 v dc) 300 mw (48 v dc) 280 mw (3 to 24 v dc) 400 mw (48 v dc) 200 mw 1 coil latching 100 mw (3 to 12 v dc) 150 mw (24 v dc) 200 mw 2 coil latching 200 mw (3 to 12 v dc) 300 mw (24 v dc) 400 mw expected life (min. opera- tions) mechanical (at 180 cpm) 10 8 10 7 electrical (at 20 cpm) (1 a 30 v dc resistive) 1 a 30 v dc resistive 2 10 5 10 5 0.5 a 125 v ac resistive 10 5 standard (b.b.m) type m.b.b.type initial insulation resistance* 1 min. 1,000 m ? (at 500 v dc) initial breakdown voltage between open contacts 750 vrms for 1 min. (detection current: 10 ma) 300 vrms for 1 min. (detection current: 10 ma) between contact and coil 1,000 vrms for 1 min. (detection current: 10 ma) between contact sets 1,000 vrms for 1 min. (detection current: 10 ma) fcc surge voltage between open contacts 1,500 v operate time [set time]* 3 (at 20 c) max. 3 ms [max. 3 ms] release time [reset time]* 4 (at 20 c) max. 3 ms [max. 3 ms] m.b.b. time* 8 min. 10 s. t emperature rise* 2 (at 20 c) max. 50 c shock resistance functional* 5 min. 490 m/s 2 {50g} destructive* 6 min. 980 m/s 2 {100g} vibration resistance functional* 7 176.4 m/s 2 {18g}, 10 to 55 hz at double amplitude of 3 mm destructive 294 m/s 2 {30g}, 10 to 55 hz at double amplitude of 5 mm conditions for operation, trans- port and storage* 9 (not freezing and condensing at low temperature) ambient temperature ?0 c to +70 c ?0 f to +158 f ?0 c to +50 c ?0 f to +122 f humidity 5 to 85% r.h. unit weight 2 form c: approx. 1.5 g .053 oz 4 form c: approx. 3 g .106 oz. remarks * speci?ations will vary with foreign standards certi?ation ratings. * 1 measurement at same location as ?nitial breakdown voltage section. * 2 by resistive method, nominal voltage applied to the coil; contact carrying current: 1 a. * 3 nominal voltage applied to the coil, excluding contact bounce time. * 4 nominal voltage applied to the coil, excluding contact bounce time without diode. * 5 half-wave pulse of sine wave: 11 ms; detection time: 10 s. * 6 half-wave pulse of sine wave: 6 ms. * 7 detection time: 10 s. * 8 m.b.b. time: * 9 refer to 6. conditions for operation, transport and storage mentioned in ambient envi r onment. measuring condition min. 10 s 500 ? 5 v dc all rights rese r v ed c o p y r i gh t matsushita elect r ic w o r k s , ltd.
tq ordering information types and coil data (at 20 c 68 f ) 1. standard (b.b.m.) type 2 form c type 1. single side stable 2. 1 coil latching 3. 2 coil latching notes: 1. speci?d value of the pick-up, drop-out, set and reset voltage is with the condition of square wave coil pulse. 2. standard packing: tube: 50 pcs.; case: 1,000 pcs. 3. in case of 5 v transistor drive circuit, it is recommend to use 4.5 v type relay. 4. agpd stationary contact types available for high resistance against contact sticking. when ordering, please add suf? 3 li ke tq2-12v-3. part no. nominal voltage, v dc pick-up voltage, v dc (max.) drop-out voltage, v dc (min.) nominal operating current, ma ( 10%) coil resistance, ? ( 10%) nominal operating power, mw max. allowable voltage, v dc standard pc board terminal self-clinching terminal tq2-3 v tq2h-3 v 3 2.25 0.3 46.7 64.3 140 4.5 tq2-4.5 v tq2h-4.5 v 4.5 3.38 0.45 31.1 144.6 140 6.7 tq2-5 v tq2h-5 v 5 3.75 0.5 28.1 178 140 7.5 tq2-6 v tq2h-6 v 6 4.5 0.6 23.3 257 140 9 tq2-9 v tq2h-9 v 9 6.75 0.9 15.5 579 140 13.5 tq2-12 v tq2h-12 v 1 2 9 1.2 11.7 1,028 140 18 tq2-24 v tq2h-24 v 2 4 1 8 2.4 8.3 2,880 200 36 tq2-48 v tq2h-48 v 4 8 3 6 4.8 6.25 7,680 300 57.6 part no. nominal voltage, v dc set voltage, v dc (max.) reset voltage, v dc (min.) nominal operating current, ma ( 10%) coil resistance, ? ( 10%) nominal operating power, mw max. allowable voltage, v dc standard pc board terminal self-clinching terminal tq2-l-3 v tq2h-l-3 v 3 2.25 2.25 33.3 90 100 4.5 tq2-l-4.5 v tq2h-l-4.5 v 4.5 3.38 3.38 22.2 202.5 100 6.7 tq2-l-5 v tq2h-l-5 v 5 3.75 3.75 20 250 100 7.5 tq2-l-6 v tq2h-l-6 v 6 4.5 4.5 16.7 360 100 9 tq2-l-9 v tq2h-l-9 v 9 6.75 6.75 11.1 810 100 13.5 tq2-l-12 v tq2h-l-12 v 1 2 9 9 8.3 1,440 100 18 tq2-l-24 v tq2h-l-24 v 2 4 1 8 1 8 6.3 3,840 150 36 part no. nominal voltage, v dc set voltage, v dc (max.) reset voltage, v dc (min.) nominal operating current, ma ( 10%) coil resistance, ? ( 10%) nominal operating power, mw max. allowable voltage, v dc standard pc board terminal self-clinching terminal tq2-l2-3 v tq2h-l2-3 v 3 2.25 2.25 66.7 45 200 4.5 tq2-l2-4.5 v tq2h-l2-4.5 v 4.5 3.38 3.38 44.4 101.2 200 6.7 tq2-l2-5 v tq2h-l2-5 v 5 3.75 3.75 40 125 200 7.5 tq2-l2-6 v tq2h-l2-6 v 6 4.5 4.5 33.3 180 200 9 tq2-l2-9 v tq2h-l2-9 v 9 6.75 6.75 22.2 405 200 13.5 tq2-l2-12 v tq2h-l2-12 v 1 2 9 9 16.7 720 200 18 tq2-l2-24 v tq2h-l2-24 v 2 4 1 8 1 8 12.5 1,920 300 28.8 ex. tq contact arrangement terminal shape 2: 2 form c 4: 4 form c nil: standard pc board terminal h: self-clinching terminal nil: single side stable nil: standard (b.b.m.) type 3, 4.5, 5, 6, 9, 12, 24, 48* v 2m: 2m.b.b. type l: 1 coil latching l2: 2 coil latching operating function mbb function coil voltage (dc) 2l22m3v h *48 v coil type: single side stable only notes: 1. agpd stationary contact types available for high resistance against contact sticking. when ordering, please add suffix 3?like tq2-12v-3. 2. m.b.b. contact types are available only for tq2 type. all rights rese r v ed c o p y r i gh t matsushita elect r ic w o r k s , ltd.
tq 4 form c type 1. single side stable 2. 1 coil latching 3. 2 coil latching notes: 1. speci?d value of the pick-up, drop-out, voltage is with the condition of square wave coil pulse. 2. standard packing: tube: 25 pcs.; case: 500 pcs. 3. in case of 5 v transistor drive circuit, it is recommend to use 4.5 v type relay. 4. 1 coil latching and 2 coil latching types are also available by request. please consult us for details. 5. agpd stationary contact types available for high resistance against contact sticking. when ordering, please add suf? 3 li ke tq2-12v-3. 2. m.b.b. type single side stable notes: 1. speci?d value of the pick-up, drop-out, set and reset voltage is with the condition of square wave coil pulse. 2. standard packing: tube: 50 pcs.; case: 1,000 pcs. 3. in case of 5 v transistor drive circuit, it is recommend to use 4.5 v type relay. 4. agpd stationary contact types available for high resistance against contact sticking. when ordering, please add suf? 3 li ke tq2-12v-3. part no. nominal voltage, v dc pick-up voltage, v dc (max.) drop-out voltage, v dc (min.) nominal operating current, ma ( 10%) coil resistance, ? ( 10%) nominal operating power, mw max. allowable voltage, v dc standard pc board terminal self-clinching terminal tq4-3 v tq4h-3 v 3 2.25 0.3 93.8 32 280 4.5 tq4-4.5 v tq4h-4.5 v 4.5 3.38 0.45 62.2 72.3 280 6.7 tq4-5 v tq4h-5 v 5 3.75 0.5 56.2 89 280 7.5 tq4-6 v tq4h-6 v 6 4.5 0.6 46.5 129 280 9 tq4-9 v tq4h-9 v 9 6.75 0.9 31.1 289 280 13.5 tq4-12 v tq4h-12 v 1 2 9 1.2 23.3 514 280 18 tq4-24 v tq4h-24 v 2 4 1 8 2.4 11.7 2,056 280 36 tq4-48 v tq4h-48 v 4 8 3 6 4.8 8.3 5,760 400 57.6 part no. nominal voltage, v dc set voltage, v dc (max.) reset voltage, v dc (min.) nominal operating current, ma ( 10%) coil resistance, ? ( 10%) nominal operating power, mw max. allowable voltage, v dc standard pc board terminal self-clinching terminal tq4-l-3 v tq4h-l-3 v 3 2.25 2.25 66.6 45 200 4.5 tq4-l-4.5 v tq4h-l-4.5 v 4.5 3.38 3.38 44.4 101.2 200 6.7 tq4-l-5 v tq4h-l-5 v 5 3.75 3.75 40 125 200 7.5 tq4-l-6 v tq4h-l-6 v 6 4.5 4.5 33.3 180 200 9 tq4-l-9 v tq4h-l-9 v 9 6.75 6.75 22.2 405 200 13.5 tq4-l-12 v tq4h-l-12 v 1 2 9 9 16.7 720 200 18 tq4-l-24 v tq4h-l-24 v 2 4 1 8 1 8 8.3 2,880 200 36 part no. nominal voltage, v dc set voltage, v dc (max.) reset voltage, v dc (min.) nominal operating current, ma ( 10%) coil resistance, ? ( 10%) nominal operating power, mw max. allowable voltage, v dc standard pc board terminal self-clinching terminal tq4-l2-3 v tq4h-l2-3 v 3 2.25 2.25 133 22.5 400 4.5 tq4-l2-4.5 v tq4h-l2-4.5 v 4.5 3.38 3.38 88.9 50.6 400 6.7 tq4-l2-5 v tq4h-l2-5 v 5 3.75 3.75 80 62.5 400 7.5 tq4-l2-6 v tq4h-l2-6 v 6 4.5 4.5 66.6 90 400 9 tq4-l2-9 v tq4h-l2-9 v 9 6.75 6.75 44.4 202.5 400 13.5 tq4-l2-12 v tq4h-l2-12 v 1 2 9 9 33.3 360 400 18 tq4-l2-24 v tq4h-l2-24 v 2 4 1 8 1 8 16.7 1,440 400 36 part no. nominal voltage, v dc pick-up voltage, v dc (max.) drop-out voltage, v dc (min.) nominal operating current, ma ( 10%) coil resistance, ? ( 10%) nominal operating power, mw max. allowable voltage, v dc standard pc board terminal self-clinching terminal tq2-2m-3 v tq2h-2m-3 v 3 2.4 0.3 66.7 45 200 4.5 tq2-2m-4.5 v tq2h-2m-4.5 v 4.5 3.6 0.45 44.4 101 200 6.7 tq2-2m-5 v tq2h-2m-5 v 5 4 0.5 40 125 200 7.5 tq2-2m-6 v tq2h-2m-6 v 6 4.8 0.6 33.3 180 200 9 tq2-2m-9 v tq2h-2m-9 v 9 7.2 0.9 22.2 405 200 13.5 tq2-2m-12 v tq2h-2m-12 v 1 2 9.6 1.2 16.7 720 200 18 tq2-2m-24 v tq2h-2m-24 v 2 4 19.2 2.4 8.3 2,880 200 36 all rights rese r v ed c o p y r i gh t matsushita elect r ic w o r k s , ltd.
tq dimensions mm inch reference data 1) 2 form c, 2 form d standard pc board terminal self-clinching terminal general tolerance: 0.3 .012 4.75 14 9 3.5 0.25 2.54 7.62 0.5 0.25 5 + 0.4 ? 0.2 .551 .354 .187 .138 .010 .100 .300 .020 .010 + .016 ? .008 .197 4.75 14 9 3.5 0.25 2.54 7.62 0.5 0.25 5 + 0.4 ? 0.2 + .016 ? .008 .197 .551 .354 .187 .138 .010 .100 .300 .020 .010 pc board pattern (copper-side view) tolerance: 0.1 .004 10.16 .400 2.54 7.62 10-1.0 dia. 10-.039 dia 2.54 .100 .100 .300 schematic (bottom view) ?single side stable (deenergized condition) ?1-coil latching (reset condition) ?2-coil latching (reset condition) *orientation stripe typical-located on top of relay 1 direction indication* ? + 2 345 10 9 876 1 direction indication* + ? 2 345 10 9 876 + +? ? 1 direction indication* 2 345 10 9 876 2) 4 form c standard pc board terminal self-clinching terminal general tolerance: 0.3 .012 4.75 26.7 9 3.5 0.25 2.545.08 7.62 0.5 0.25 5 + 0.4 ? 0.2 1.051 .354 .187 .138 .010 .100.200 .300 .020 .010 + .016 ? .008 .197 4.75 26.7 9 3.5 0.25 2.545.08 7.62 0.5 0.25 5 + 0.4 ? 0.2 1.051 .354 .187 .138 .010 .100.200 .300 .020 .010 + .016 ? .008 .197 pc board pattern (copper-side view) tolerance: 0.1 .004 22.86 2.54 2.54 7.62 16-1.0 dia. 16-.039 dia 5.08 .200 .900 .100 .100 .300 schematic (bottom view) ?single side stable (deenergized condition) ?1-coil latching (reset condition) ?2-coil latching (reset condition) *orientation stripe typical-located on top of relay +? 1 direction indication* 345 20 181716 678 151413 10 11 ?+ 1 direction indication* 345 20 181716 678 151413 10 11 + + ? ? 1 direction indication* 345 20 181716 678 151413 10 11 1. maximum switching capacity 2. life curve 3. mechanical life tested sample: tq2-12v, 10 pcs. 30 100 200 1.0 0.5 0.4 0.3 0.2 switching voltage,v switching current, a dc load (cos ? =1) ac load (cos ? =1) no. of operations, 10 4 switching current, a 100 10 0 0.5 1.0 30 v dc resistive load 125 v ac resistive load ratio against the rated voltage, %v no. of operations, 10 4 100 90 80 70 60 50 40 30 20 10 10 max. min. max. min. 100 1,000 10,000 0 pick-up voltage drop-out voltage all rights rese r v ed c o p y r i gh t matsushita elect r ic w o r k s , ltd.
tq 4.-(1) electrical life (dc load) tested sample: tq2-12v, 6 pcs. condition: 1 a 30 v dc resistive load, 20 cpm change of pick-up and drop-out voltage change of contact resistance 4.-(2) electrical life (ac load) tested sample: tq2-12v, 6 pcs. condition: 0.5 a 125 v ac resistive load, 20 cpm change of pick-up and drop-out voltage 100 90 80 70 60 50 40 30 20 10 010 520 15 no. of operations, 10 4 max. min. max. min. pick-up voltage drop-out voltage ratio against the rated voltage, %v 0510 15 20 no. of operations, 10 4 100 90 80 70 60 50 40 30 20 10 contact resistance, m ? max. min. no. of operations, 10 4 100 90 80 70 60 50 40 30 20 10 0510 max. min. max. min. pick-up voltage drop-out voltage ratio against the rated voltage, %v change of contact resistance 5.-(1) coil temperature rise (2c) tested sample: tq2-12v measured portion: inside the coil ambient temperature: 30 c 86 f 5.-(2) coil temperature rise (4c) tested sample: tq4-12v measured portion: inside the coil ambient temperature: 30 c 86 f no. of operations, 10 4 0510 100 90 80 70 60 50 40 30 20 10 contact resistance, m ? max. min. 1 a 1 a coil applied voltage, %v 100 110 120 130 140 150 70 60 50 40 30 20 10 0 temperature rise, c 0 a 3 to 12 v dc type 24 v dc type nominal coil voltage 1 a coil applied voltage, %v 100 110 120 130 140 150 70 60 50 40 30 20 10 0 temperature rise, c 0 a 6.-(1) operate/release time characteristics tested sample: tq2-12v, 10 pcs. 6.-(2) operate/release time characteristics tested sample: tq4-12v, 10 pcs. 7. distribution of pick-up and drop-out voltages tested sample: tq2-12v, 50 pcs. coil applied voltage, %v operate/release time, ms 80 90 100 110 120 6 5 4 3 2 1 0 max. min. max. min. operate time release time coil applied voltage, %v 80 90 100 110 120 6 5 4 3 2 1 0 operate/release time, ms max. min. max. min. operate time release time ratio against the rated voltage, %v 0102 030405060708090100 10 20 30 quantity drop-out voltage pick-up voltage 8. distribution of set and reset voltage tested sample: tq2-l2-12v, 35 pcs. 9. ambient temperature characteristics tested sample: tq2-12v, 5 pcs. 10. distribution of contact resistance tested sample: tq2-12v, 30 pcs. (30 4 contacts) yy yyyy yyyyy yyy y yy yyyy yyyyy yyy y yy y y y c drop-out voltage variation ratio,% pick-up voltage x ? x ? quantity 10 20 30 40 030 4 050 contact resistance, m ? all rights rese r v ed c o p y r i gh t matsushita elect r ic w o r k s , ltd.
tq 11.-(1) high-frequency characteristics isolation characteristics 11.-(2) high-frequency characteristics insertion loss characteristics 11.-(3) high-frequency characteristics v. s . w .r. 10 100 1,000 50 100 frequency,mhz isolation, db frequency,mhz insertion loss, db 0.2 0.4 0.6 0.8 1.0 010 100 1,000 frequency,ghz 1.0 1.2 1.4 1.6 1.8 2.0 2.2 2.4 2.6 2.8 3.0 0 0.5 1 v.s.w.r. 12.-(1) malfunctional shock (single side stable) tested sample: tq2-12v, 6 pcs. 12.-(2) malfunctional shock (latching) tested sample: tq2-l-12v, 6 pcs. 13.-(1) in?ence of adjacent mounting y , y , y y z , z , z z x , x , x x 980m/s 2 980m/s 2 980m/s 2 980m/s 2 980m/s 2 980m/s 2 784m/s 2 588m/s 2 392m/s 2 196m/s 2 deenergized condition energized condition y , y , y y z , z , z z x , x , x x 980m/s 2 980m/s 2 980m/s 2 980m/s 2 980m/s 2 980m/s 2 784m/s 2 588m/s 2 392m/s 2 196m/s 2 reset state set state inter-relay distance , mm inch 05 .197 ?0 0 10 ?0 0 10 rate of change, % rate of change, % on on on off off off pick-up voltage drop-out voltage 13.-(2) in?ence of adjacent mounting 13.-(3) in?ence of adjacent mounting 14.-(1) contact reliability (1 ma 5 v dc resistive load) tested sample: tq2-12v condition: detection level 10 w inter-relay distance , mm inch 05 .197 ?0 0 10 ?0 0 10 rate of change, % rate of change, % on on on off off off pick-up voltage drop-out voltage inter-relay distance , mm inch 05 .197 ?0 0 10 ?0 0 10 rate of change, % rate of change, % off on pick-up voltage drop-out voltage off off off on on on no. of operations, 10 6 1.0 10 100 0.1 0.2 0.5 1.0 2.0 5.0 10.0 30.0 50.0 70.0 95.0 99.0 99.9 f(t), % m=2.15 =2.7 10 7 95% reliability limit = 7.6 10 6 (weibull probability paper) 14.-(2) contact reliability (100 a 5 v dc resistive load) tested sample: tq2-12v condition: detection level 100 ? 15. actual load test (35 ma 48 v dc wire spring relay load) circuit change of pick-up and drop-out voltage no. of operations, 10 7 1.0 10 100 0.1 0.2 0.5 1.0 2.0 5.0 10.0 30.0 50.0 70.0 95.0 99.0 99.9 f(t), % m=1.4 =16.4 10 7 95% reliability limit = 19.5 10 6 (weibull probability paper) 500 ? 500 ? 48 v dc wire spring relay circuit diagram 20hz 0 10 20 30 40 50 60 70 80 90 100 10 20 30 40 50 no. of operations, 10 4 ratio against the rated voltage, %v max. min. max. min. pick-up voltage drop-out voltage all rights rese r v ed c o p y r i gh t matsushita elect r ic w o r k s , ltd.
tq for cautions f or us e , see rel a y t e c hnical in f ormation. change of contact resistance 16. 0.1 a 53 v dc resistive load test change of pick-up and drop-out voltage change of contact resistance 0 10 20 30 40 50 60 70 80 90 100 10 20 30 40 50 no. of operations, 10 4 max. min. contact resistance, m ? no. of operations, 10 4 ratio against the rated voltage, %v max. min. max. min. 0 500 1,000 1,500 2,000 10 20 30 40 50 60 70 80 90 100 pick-up voltage drop-out voltage contact resistance, m ? no. of operations, 10 4 max. min. 0 500 1,000 1,500 2,000 10 20 30 40 50 60 70 80 90 100 17.-(1) distribution of m.b.b. time sample: tq2-2m-5v, 85 pcs. te r minal nos. 2-3-4: on terminal nos. 2-3-4: off 19 19 26 4 0 10 20 30 40 50 60 100 150 100 200 150 250 200 300 250 350 s max. 300 s min.50 50 10 ~ ~ ~ ~ ~ ~ ~ 17 x:105.6 s 3 n-1 : 163.8 s min.: 23 s max.:243 s ? 0 10 20 30 40 50 60 100 150 100 200 150 250 200 300 250 350 s max. 300 s min.50 50 10 ~ ~ ~ ~ ~ ~ ~ x:71.6 s 3 n-1 : 127.1 s min.: 17 s max.:187 s ? 41 27 10 7 17.-(2) distribution of m.b.b. time sample: tq2-2m-5v, 85 pcs. te r minal nos. 7-8-9: on terminal nos. 7-8-9: off 0 10 20 30 40 50 60 15 21 30 11 6 2 100 150 100 200 150 250 200 300 250 350 s max. 300 s min.50 50 10 ~ ~ ~ ~ ~ ~ ~ x:115.6 s 3 n-1 : 167.3 s min.:35 s max.:254 s ? 0 10 20 30 40 50 60 31 35 12 4 2 1 100 150 100 200 150 250 200 300 250 350 s max. 300 s min.50 50 10 ~ ~ ~ ~ ~ ~ ~ x:80.7 s 3 n-1 : 156.7 s min.: 29 s max.:298 s ? all rights rese r v ed c o p y r i gh t matsushita elect r ic w o r k s , ltd.


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