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  high-frequency relay g6w 327 high-frequency relay g6w surface-mountable 5 ghz band miniature spdt high-frequency relay ? superior high-frequency characteristics, such as an isolation of 35 db min., insertion loss of 0.5 db max., and v.s.w.r. of 1.7 max. at 5 ghz (50 ). ? high-frequency characteristics obtained by adopting tri-plate micro strip line design. ? small size at 20 x 9.4 x 8.9 mm (l x w x h). ? y-shape terminal structure and reverse contact option simplifies wiring to pcbs. ? rohs compliant. ordering information typical applications ? mobile phone base station (w-cdma, umts, cdma-2000, pcs) ? wireless lan and tv transmitters ? test and measurement devices ? signal generators classification non latching single-coil latching dual-coil latching spdt fully sealed through-hole terminal y-shape terminal g6w-1p g6wu-1p g6wk-1p surface-mount terminal y-shape terminal g6w-1f g6wu-1f G6WK-1F note: w hen ordering, add the rated coil v oltage to the model n u m b er. example: g6 w -1p dc12 model number le g end: rated coil v oltage g6w - - 1. relay function n one: n on-latching u: single-coil latching k: d u al-coil latching 2. contact form 1: spdt 3. terminal shape f: s u rface-mo u nt terminals p: pcb thro u gh-hole terminals 4. terminal structure n one: y-shape terminal (standard) 5. contact arran g ement n one: standard contact arrangement r: re v erse contact arrangement (a v aila b le only for n on-latching v ersions) 1 2 3 4 5
328 high-frequency relay g6w specifications contact ratings high-frequency characteristics note: 1. the above values are initial values. 2. these values are for a load with v.s.w.r. 1.2 at an impedance of 50 . coil ratings non-latching relays (g6w-1f, g6w-1p) single-coil latching re lays (g6wu-1f, g6wu-1p) dual-coil latching rela ys (G6WK-1F, g6wk-1p) note: 1. the rated current and coil resistance ar e measured at a coil temperature of 23 c with a tolerance of 10%. 2. the operating characteristics are m easured at a coil temperature of 23 c. 3. the maximum voltage is the highest voltage that can be imposed on the relay coil. 4. the voltage measurements for operate/release and set/reset ar e the values obtained for instantaneous changes in the voltage. (rectangular wave). load type resistive load contact material au clad cu alloy rated load 10 ma at 30 vac; 10 ma at 30 vdc 2.5 ghz, 50 , 10 w (see note 2) rated carry current 0.5 a max. switching voltage 30 vdc, 30 vac max. switching current 0.5 a frequency 2.0 ghz 2.5 ghz 5.0 ghz isolation 65 db min. 60 db min. 35 db min. insertion loss 0.2 db max. 0.5 db max. v. s . w. r . 1.2 max. 1.7 max. max. carry power 20 w (see note 2) max. switching power 10 w (see note 2) rated voltage 3 vdc 4.5 vdc 9 vdc 12 vdc 24 vdc rated current 66.7 ma 44.4 ma 22.2 ma 16.7 ma 8.3 ma coil resistance 45 101 405 720 2,880 must operate voltage 80% of max. of rated voltage must release voltage 10% min. of rated voltage maximum voltage 150% of rated voltage power consumption approx. 200 mw rated voltage 9 vdc 12 vdc rated current 22.2 ma 16.7 ma coil resistance 405 720 must set voltage 80% max. of rated voltage must reset voltage 80% max of rated voltage maximum voltage 150% of rated voltage power consumption approx. 200 mw rated voltage 3 vdc 4.5 vdc 9 vdc 12 vdc 24 vdc rated current 120 ma 80 ma 40 ma 30 ma 15 ma coil resistance 25 56 225 400 1,600 must set voltage 80% max. of rated voltage must reset voltage 80% max. of rated voltage maximum voltage 150% of rated voltage power consumption approx. 360 mw
high-frequency relay g6w 329 characteristics note: 1. the above values are initial values. 2. the contact resistance was measured with 10 ma at 1 vdc with a fall-of-potential method. 3. values in parentheses are typical values. 4. the insulation resistance was measured with a 500-vdc megger tester applied to the same parts as those used for checking the di electric strength. engineering data item non-latching single-coil latching dual-coil latching g6w-1f, g6w-1p g6wu-1f, g6wu-1p G6WK-1F, g6wk-1p contact resistance (see note 2) 100 m max. operate (set) time (see note 3) 10 ms max. (approx. 3.5 ms) 10 ms max. (approx. 2.5 ms) release (reset) time (see note 3) 10 ms max. (approx. 2.5 ms) minimum set/reset signal width ----- 12 ms insulation resistance (see note 4) 1,000 m min. (at 500 vdc) dielectric strength coil and contacts 1,000 vac, 50/60 hz for 1 min coil and ground, contacts and ground 500 vac, 50/60 hz for 1 min contact of same polarity 500 vac, 50/60 hz for 1 min vibration resistance destruction 10 to 55 hz, 1.5-mm double amplitude malfunction 10 to 55 hz, 2-mm double amplitude shock resistance destruction 1,000 m/s 2 malfunction 500 m/s 2 endurance mechanical 1,000,000 operations min. (at 36,000 operations/hour) electrical 300,000 operations min. (with a rated load at 1,800 operations/hour) 100,000 operations min. (2.5ghz, 50 , 10 w) ambient temperature operating: -40 c to 70 c (with no icing or condensation) ambient humidity operating: 5% to 85% weight approx. 3 g ? 40 ? 20 250 200 150 100 50 0 0 20 40 60 80 100 maximum voltage (%) ambient temperature ( c) max. estimated value ? 60 ? 40 100 90 80 70 60 50 40 30 20 10 0 0 ? 20 20 40 60 80 100 max. avg. max. min. min. min. avg. ambient temperature ( c) on the basis of rated voltage (%) must set voltage must reset voltage z z' y y' x x' 200 400 600 800 1,000 1,000 1,000 1,000 1,000 800 600 400 200 1,000 shock direction xx' energized z z' y y' unit: m/s 2 sample: g6wk-1p 4.5 vdc number of relays: 10 not energized ambient temperature vs. maximum voltage ambient temperature vs. must set or must reset voltage shock malfunction note: ?maximum voltage? is the maximum voltage that can be applied to the relay coil. conditions: shock is applied in x, y, a n d z directions three times each with and without energizing the relays to check the number of contact malfunctions.
330 high-frequency relay g6w note: 1. the tests were conducted at an ambient temperature of 23 c 2. the contact resistance data are periodically measured referenc e values and are not values from monitoring each operation. contact resistance values will vary according to the switchi ng frequency and operating environment. therefore, be sure to check the operation under the actual operating conditions before use. 100 80 60 40 20 0 0.001 0.01 0.1 1 10 100 1,000 must set voltage sample: g6wu-1p 9 vdc number of relays: 5 test conditions: 10-ma resistive load at 30-vdc with an operation rate of 50%. switching frequency: 1,800 operations/h must reset voltage max. max. min. min. operating frequency ( 10 3 operations) on the basis of rated voltage (%) 100 80 60 40 20 0 0.001 0.01 0.1 1 10 100 1,000 max. max. min. min. sample: g6wu-1p 9 vdc number of relays: 5 test conditions: 10-ma resistive load at 30-vac with an operation rate of 50%. switching frequency: 1,800 operations/h operating frequency ( 10 3 operations) on the basis of rated voltage (%) must set voltage must reset voltage electrical endurance, dc load: must set and must reset voltage (see notes 1 and 2) electrical endurance, ac load: must set and must resetvoltage (see notes 1 and 2) sample: g6wu-1p 9 vdc number of relays: 5 test conditions: 10-ma resistive load at 30-vdc switching frequency: 1,800 operations/h 0.001 0.01 0.1 1 10 100 1,000 contact resistance max. max. min. min. 1,000 500 300 100 50 30 10 no contact nc contact operating frequency ( 10 3 operations) contact resistance (m ) 0.001 0.01 0.1 1 10 100 1,000 max. max. min. min. 1,000 500 300 100 50 30 10 sample: g6wu-1p 9 vdc number of relays: 5 test conditions: 10-ma resistive load at 30-vac switching frequency: 1,800 operations/h no contact nc contact operating frequency ( 10 3 operations) contact resistance (m ) contact resistance electrical endurance, dc load: contact resistance (see notes 1 and 2) electrical endu rance, ac load: contact resistance (see notes 1 and 2) ? 1,200 ? 800 ? 400 0 400 800 1,200 +30 +20 +10 0 ? 10 ? 20 ? 30 sample: g6wk-1p 4.5 vdc number of relays: 5 must set voltage must reset voltage external magnetic field (a/m) change rate on the basis of initial value (%) (average value) s n ? 1,200 ? 800 ? 400 0 400 800 1,200 +30 +20 +10 0 ? 10 ? 20 ? 30 sample: g6wk-1p 4.5 vdc number of relays: 5 must set voltage must reset voltage external magnetic field (a/m) change rate on the basis of initial value (%) (average value) s n ? 1,200 ? 800 ? 400 0 400 800 1,200 +30 +20 +10 0 ? 10 ? 20 ? 30 sample: g6wk-1p 4.5 vdc number of relays: 5 must set voltage must reset voltage external magnetic field (a/m) change rate on the basis of initial value (%) (average value) s n external magneti c interference
high-frequency relay g6w 331 note: 1. the tests were conducted at an ambient temperature of 23 c. 2. high-frequency characteristic s depend upon the pcb to which the relay is mounted. always check these char acteristics, including en- durance (life expectancy) in t he actual applicat ion before use. dimensions note: all units are in millimeter s unless otherwise indicated. frequency (mhz) isolation (db) [average (initial value)] 0 20 40 60 80 100 120 0 1,000 2,000 3,000 4,000 5,000 6,000 n.o. n.c. frequency (mhz) insertion loss (db) [average (initial value)] 0 0.2 0.4 0.6 0.8 1.0 0 1,000 2,000 3,000 4,000 5,000 6,000 n.o. n.c. fre qu ency (mhz) ret u rn loss (db) [a v erage (initial v al u e)] v .s. w .r. 0 10 20 30 40 50 60 70 0 1,000 2,000 3,000 4,000 5,000 6,000 2.4 2.2 2.0 1. 8 1.6 1.4 1.2 1.0 n .o. n .c. v .s. w .r. ret u rn loss isolation (see notes 1 and 2) insertion loss (see notes 1 and 2) v.s.w.r. / return loss (see notes 1 and 2) must set time must reset time sample: g6wk-1p 4.5 vdc number of relays: 20 20 15 10 5 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 time (ms) number of contacts time (ms) number of contacts must set bounce time must reset bounce time sample: g6wk-1p 4.5 vdc number of relays: 20 30 25 20 15 10 5 0 0.5 1.0 1.5 2.0 2.5 3.0 must set and must reset time distribution (see note 1). must set and must reset bounce time distribution (see note 1). mountin g pads (top view) tolerance: 0.1 mm terminal arran g ement/ internal connections (top view) g6w-1f g6wu-1f + ? 17 1 8 10 8 20 15 14 13 11 123 56 7 ? + + r s ? 17 1 8 10 8 20 15 14 13 11 123 56 7 g6wu-1f 20 9.4 0.2 0.2 5.0 8 11.6 9.2 t w el v e, 0.6 15.24 22.2 three, 0.4 2.7 1.1 thro u gh-hole 5.9 2. 8 5.0 8 9.4 3.2 1.1 8 .6 20.4 2.54 2.54 2.54 2.54 5.0 8 orientation mark g6w-1f orientation mark 1. 8 3 note: 1. tolerance: 0.3 mm u nless specified. 2. the coplanarity of the terminals is 0.1 mm max.
332 high-frequency relay g6w mountin g holes (bottom view) tolerance: 0.1 mm terminal arran g ement/ internal connections (bottom view) g6w-1p g6wu-1p 1 20 8 10 1 8 3 257 17 15 14 13 11 6 + ? 1 20 8 10 1 8 3 257 17 15 14 13 11 6 ? + + r s ? g6w-1p g6wu-1p 5.0 8 5.0 8 7.6 t w el v e, 0.6 8 .9 20 9.4 three, 0.4 10.16 15.24 19 8 .6 19 3 5.9 2.54 2.54 2.54 2.54 2.54 2.54 7.62 5.0 8 1. 8 t w el v e, 1. 8 -dia. 0. 8 -dia. 1.6-dia. t w el v e, 1-dia. 0. 8 -dia. 1.6-dia. 1.6-dia. 0. 8 -dia. orientation mark orientation mark 2.7 thro u gh-hole note: tolerance: 0.3 mm u nless specified. note: 1. tolerance: 0.3 mm u nless specified. 2. the coplanarity of the terminals is 0.1 mm max. mountin g pads (top view) tolerance: 0.1 mm terminal arran g ement/ internal connections (top view) G6WK-1F + ? r 17 1 8 10 8 20 16 15 13 14 11 123 56 7 s + ? G6WK-1F 20 9.4 0.2 0.2 5.0 8 11.6 9.2 15.24 22.2 thirteen, 0.6 three, 0.4 orientation mark thro u gh- hole 1.1 5.9 2. 8 5.0 8 9.4 3.2 1.1 8 .6 20.4 2.54 2.54 2.54 2.54 5.0 8 2.7 1. 8 3 note: tolerance: 0.3 mm u nless specified. g6wk-1p mountin g holes (bottom view) tolerance: 0.1 mm terminal arran g ement/ internal connections (bottom view) 1 20 8 10 1 8 3 257 17 16 15 14 13 11 6 + ? r s + ? g6wk-1p 5.0 8 5.0 8 7.6 8 .9 20 9.4 three, 0.4 10.16 15.24 19 8 .6 5.9 2.54 2.54 2.54 2.54 2.54 2.54 7.62 5.0 8 orientation mark thirteen, 0.6 3 1. 8 2.7 19 thirteen, 1. 8 -dia. thirteen, 1-dia. 0. 8 -dia. 1.6-dia. 1.6-dia. 0. 8 -dia. thro u gh-hole 0. 8 -dia. 1.6-dia.
high-frequency relay g6w 333 recommended soldering method temperature profile according to irs method when performing reflow-soldering, check the profile on an actual device after setting the temperature condition so that the temperatures at the relay terminals and the upper surface of the case do not exceed the limits specified in the following table. the thickness of cream solder to be applied should be within a range between 150 and 200 m on omron's recommended pcb pattern. visually check that the relay is properly soldered. bottom ground soldering conditions to solder the bottom ground, manual ly solder separately from the terminals according to the following conditions. ? soldering iron: 50 w ? iron temperature: 380 c to 400 c ? soldering time: 10 s max. note: the above conditions are for a pcb with omron?s recommended patterns and hole perforations. the conditions will depend on the pcb being used. therefore, it is recommended to double-check the suitability under ac tual pcb conditions. soldering soldering temperature: approx. 250 c (at 260 c if the dws method is used.) soldering time: approx. 5 s max. (approx. 2 s for the first time and approx. 3 s for the second time if the dws method is used.) be sure to adjust the level of the molten solder so that the solder will not overflow onto the pcb. precautions correct use handling use the relay as soon as possible after opening the moisture-proof package. if the relay is left for a long time after opening the moisture- proof package, the appearance may suffer and seal failure may occur after the solder mounting process. to store the relay after opening the moisture-proof package, place it into the original package and sealed the package with adhesive tape. when washing the product after soldering the relay to a pcb, use a water-based solvent or alcohol-based solvent, and keep the solvent tem- perature to less than 40 c. do not put the relay in a cold cleaning bath immediately after soldering. dropping the relay may cause damage to its functional capability. never use the relay if it is dropped. protect the relays from direct sunlight during operation, storage, and transportation and keep the relays under normal temperature, humidity, and pressure. coating do not use silicone coating to coat the relay when it is mounted to the pcb. do not wash the pcb after the relay is mounted using detergent containing silicone. other wise, the detergent may remain on the surface of the relay. claw securing force duri ng automatic insertion during automatic insertion of relays, make sure to set the securing force of the claws to the following values so that the relay characteristics will be maintained. latching relay mounting make sure that the vibration or shock that is generated from other devices, such as relays in operation, on the same panel and imposed on the latching relay does not exceed the rated value, otherwise the latch- ing relay that has been set may be reset or vice versa. the latching relay is reset before shipping. if excessive vibration or shock is imposed, however, the latching relay may be set accidentally. be sure to apply a reset signal before use. item measuring position preheating (t1 to t2, t 1 ) soldering (t3, t 2 ) peak value (t4) terminal 150 c to 180 c, 120 s max. 230 c min., 30 s max. 250 c max. upper surface of case --- --- 255 c max. t4 t3 t2 t1 preheating soldering time (s) t 1 t 2 temperature ( c) relay solder insufficient amount of solder excessive amount of solder terminal pcb land correct soldering incorrect soldering secure the claws to the area indicated by shading. do not attach them to the center area or to only part of the relay. a c b direction a: 4.90 n max. direction b: 9.80 n max. direction c: 9.80 n max.
334 high-frequency relay g6w high-frequency characteristics measurement method and substrate to be measured high-frequency characteristics for g6w are measured as shown below. through-hole substrate substrate: t-0.8 bt resin (dielectric constant at 2 ghz: 3.37) smd-type substrate substrate: t-0.8 bt resin (dielectric constant at 2 ghz: 3.37) note: to obtain high-frequency characteristics cl ose to those specified in this datasheet, solder the convex point on the undersurfac e of the relay to the ground pattern of the substrate. base plate for high-frequency characteristic compensation note: the above compensation plate is used to measure the loss by the relay. the relay loss is determined by subtracting the data measured for a compensation base plate from those for a high-frequency characteristics measuring substrate mounted with a relay. g6w-1 50- termination resistances vector network analyzer (manufacture: agilent technologies) hp8753d convex position undersurface of relay 30 20 1.5 0.5 4.5 1.5 0.5 0.5 0.4 1.8-dia. 8.6 3 twenty seven, 0.6-dia., through-hole 1.5 1.8 0.5 3 45 r2.1 r0.6 45 through-hole convex position 15.24 5.12 1.8 1.5 0.5 1.4 0.4 8.6 3 thirty one, 0.6-dia., through-hole 1.5 6 0.5 3 undersurface of relay through- hole 15 0.5 13.6 1.5 2 twenty four, 0.6-dia., through-hole
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however, no responsibility is assumed for clerical, typographical or proofreading errors or omissions. 6. export controls : buyer shall comply with all app licable laws, regulations and licenses regarding (a) export of the products or information provided by seller; (b) sale of products to forbidden or other proscribed perso ns or organizations; (c) disclosure to non- citizens of regulated te chnology or information. 1. waiver : no failure or delay by seller in exer cising any right and no course of dealing between buyer and seller shall operate as a waiver of rights by seller. 2. assignment : buyer may not assign its rights hereunder without seller's written consent. 3. law : these terms are governed by illinois law (without regard to conflict of laws). federal and state courts in co ok county, illinois have excl usive jurisdiction for any dispute hereunder. 4. amendment : these terms constitute the entire agreement between buyer and seller relating to the products, and no provision may be changed or waived unless in writing signed by the parties. 5. severability : if any provision hereof is rendered ineffective or invalid, such provision shall not invalidate any other provision. i. general ii. sales iii. precautions iv. warranty and limitation v. information; etc. vi. miscellaneous
high-frequency relay g6w certain precautions on specifications and use 1. suitability for use . seller shall not be responsible for conformity with any stan- dards, codes or regulations which apply to the combination of the product in buyer's application or use of the product. at buyer's request, seller will pro- vide applicable third party certification documents identifying ratings and limi- tations of use which apply to the produc t. this information by itself is not sufficient for a complete determination of the suitability of the product in com- bination with the end product, machine, sy stem, or other application or use. buyer shall be solely responsible for determining appropriateness of the par- ticular product with respect to buyer' s application, product or system. buyer shall take application responsibility in all cases but the following is a non- exhaustive list of applications for which particular attention must be given: (i) outdoor use, uses involving potential chemical contamination or electrical interference, or conditions or us es not described in this document. (ii) energy control systems, combustion systems, railroad systems, aviation systems, medical equipment, amusem ent machines, vehicles, safety equipment, and installations subject to separate industry or government regulations. (iii) use in consumer products or any use in significant quantities. (iv) systems, machines and equipment that could present a risk to life or property. please know and observe all proh ibitions of use applicable to this product. never use the product for an application involving serious risk to life or property without ensuring that the system as a whole has been designed to address the risks, and that the omron product is properly rated and installed for the intended use within the overall equipment or system. 2. programmable products . seller shall not be respons ible for the user's pro- gramming of a programmable pr oduct, or any c onsequence thereof. 3. performance data . performance data given in this publication is provided as a guide for the user in determining suitability and does not constitute a war- ranty. it may represent the result of se ller's test conditi ons, and the users must correlate it to actual application requi rements. actual performance is subject to seller's warranty and limitations of liability. 4. change in specifications . product specifications and accessories may be changed at any time based on improvements and other reasons. it is our prac- tice to change part numbers when publi shed ratings or features are changed, or when significant construction changes are made. however, some specifica- tions of the product may be changed without any notice. when in doubt, spe- cial part numbers may be assigned to fix or establish key specifications for your application. please consult with your seller representative at any time to confirm actual specificat ions of purchased product. 5. errors and omissions . the information in this publication has been carefully checked and is believed to be accurate; however, no responsibility is assumed for clerical, typographical or proofreading errors, or omissions. 6. rohs compliance . where indicated, our products currently comply, to the best of our knowledge as of the date of this publication, with the requirements of the european union's directive on the restriction of certain hazardous substances ("rohs"), although the requirements of rohs do not take effect until july 2006. these requirements ma y be subject to change. please consult our website for current information. omron on-line global - http://www.omron.com usa - http://www.components.omron.com cat. no. x302-e-1 printed in usa omron electronic components llc 55 e. commerce drive, suite b schaumburg, il 60173 847-882-2288 08/09 specificat ions subject to change without notice complete ?terms and conditions of sale? for product purchase and use are on omron?s website at http://www.components.omron.com ? under the ?about us? tab, in the legal matters section. all dimensions shown are in millimeters. to convert millimeters into inches, multiply by 0.0393 7. to convert grams into ounces, multiply by 0.03527.


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