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  panasonic corporation automation controls business division industrial.panasonic.com/ac/e/ ayf32 acctb8e 201303-t ordering information for fpc y3f series fpc connectors (0.3mm pitch) front lock without fpc tabs features 1. low-pro?e, space-saving design (pitch: 0.3mm) the 0.9mm height, 3.0mm depth contributes overall miniaturization of product design. * the total depth including the lever is 3.2mm. 2. compatible with fpc without tabs, allowing smooth fpc insertion compatible with/without fpc tabs, allowing smooth fpc insertion (y3ft is compatible with fpc with tabs.) 3. soldering terminals for higher mounting strength 4. easy-to-handle front lock structure 5. wiring patterns can be placed underneath the connector. 6. ni barrier with high resistance to solder creep applications mobile devices, such as cellular phones, smartphones, digital still cameras and digital video cameras. rohs compliant 3.0 0.9 unit: mm compatible with fpc without tabs, allowing smooth fpc insertion soldering terminals resistant to twisting 32: fpc connector 0.3 mm pitch (front lock, zif type without fpc tabs) ayf 3 2 51 number of pins (2 digits) contact direction 1: bottom contact surface treatment (contact portion / terminal portion) 5: au plating/au plating (ni barrier)
panasonic corporation automation controls business division industrial.panasonic.com/ac/e/ ayf32 acctb8e 201303-t product types notes: 1. order unit; for volume production: 1-inner carton (1-reel) units samples for mounting check: 50-connector units. please contact our sales of?e. samples: small lot orders are possible. please contact our sales of?e. 2. please contact our sales of?e for connectors having a number of pins other than those listed above. specifications 1. characteristics 2. material and surface treatment height number of pins pa rt number pac king inner carton outer carton 0.9 mm 13 ayf321315 5,000 pieces 10,000 pieces 15 ayf321515 17 AYF321715 23 ayf322315 25 ayf322515 27 ayf322715 29 ayf322915 31 ayf323115 33 ayf323315 35 ayf323515 39 ayf323915 41 ayf324115 45 ayf324515 51 ayf325115 item speci?ations conditions electrical characteristics rated current 0.2a/pin contact rated voltage 50v ac/dc insulation resistance min. 1,000m ? (initial) using 250v dc megger (applied for 1 min.) breakdown voltage 150v ac for 1 min. no short-circuiting or damage at a detection current of 1 ma when the speci?d voltage is applied for one minute. contact resistance max. 80m ? based on the contact resistance measurement method speci?d by jis c 5402. mechanical characteristics fpc holding force min. 0.13n/pin contacts pin contacts (initial) measurement of the maximum force applied until the inserted compatible fpc is pulled out in the insertion axis direction while the connector lever is closed environmental characteristics ambient temperature ?5 c to +85 c no freezing at low temperatures. no dew condensation. storage temperature ?5c to +85 c (product only) ?0c to +50 c (emboss packing) thermal shock resistance (with fpc mated) 5 cycles, insulation resistance min. 100m ?, contact resistance max. 80m ? conformed to mil-std-202f, method 107g humidity resistance (with fpc mated) 120 hours, insulation resistance min. 100m ?, contact resistance max. 80m ? bath temperature 40 2c, humidity 90 to 95% r.h. saltwater spray resistance (with fpc mated) 24 hours, insulation resistance min. 100m ?, contact resistance max. 80m ? bath temperature 35 2c, saltwater concentration 5 1% h 2 s resistance (with fpc mated) 48 hours, contact resistance max. 80m ? bath temperature 40 2c, gas concentration 3 1 ppm, humidity 75 to 80% r.h. soldering heat resistance peak temperature: 260 c or less re?w soldering 300 c within 5 sec. 350 c within 3 sec. soldering iron lifetime characteristics insertion and removal life 30 times repeated insertion and removal: min. 10 sec./time unit weight 51 pin contact type: 0.09 g pa rt name material surface treatment molded portion housing: lcp resin (ul94v-0) lever: lcp resin (ul94v-0) contact copper alloy contact portion; base: ni plating, surface: au plating te r minal portion; base: ni plating, surface: au plating soldering terminals portion copper alloy base: ni plating, surface: au plating order temperature ( c) time (minutes) 1 2 3 4 ?5 85 ?5 0 ?3 30 max. 5 30 max. 5 +3 0 0 ?3
panasonic corporation automation controls business division industrial.panasonic.com/ac/e/ ayf32 acctb8e 201303-t dimensions (unit: mm) recommended fpc dimensions embossed tape dimensions (unit: mm) (common for respective contact type) dimension table (unit: mm) number of pins type of taping a b c quantity per reel max. 17 tape i 16.00 7.50 17.40 5,000 23 to 45 tape i 24.00 11.50 25.40 5,000 51 tape ii 32.00 14.20 33.40 5,000 the cad data of the products with a cad data mark can be downloaded from: http://industrial.panasonic.com/ac/e/ b0.20 c0.20 (0.12) (0.12) (0.30) (0.53) (0.15) d0.20 0.300.10 (contact pitch) 0.60 0.10 (terminal pitch) 0.60 0.10 (terminal pitch) a 1.12 (suction area) (1.50) (140) when the lever is opened (fpc insertion depth) 3.20 (0.30) 0.20 0.900.10 3.00 (2.07) (contact and soldering terminals) te r minal coplanarity 0.1 number of pins/ dimension a b c d 13 5.95 3.00 3.60 5.00 15 6.55 3.60 4.20 5.60 17 7.15 4.20 4.80 6.20 23 8.95 6.00 6.60 8.00 25 9.55 6.60 7.20 8.60 27 10.15 7.20 7.80 9.20 29 10.75 7.80 8.40 9.80 31 11.35 8.40 9.00 10.40 33 11.95 9.00 9.60 11.00 35 12.55 9.60 10.20 11.60 39 13.75 10.80 11.40 12.80 41 14.35 11.40 12.00 13.40 45 15.55 12.60 13.20 14.60 51 17.35 14.40 15.00 16.40 cad data general tolerance: 0.3 3.50 min. (reinforcing plate) 0.200.03 (contact width) +0.04 ?.03 0.30 (contact width) +0.04 ?.03 0.30 2.200.30 (exposed part of the conductor) 0.20 max. 0.850.15 0.200.02 (0.10) a0.05 0.200.02 0.10 max. 1.700.15 1.600.15 1.500.15 1.050.15 0.300.07 0.600.07 c0.03 0.600.02 0.600.07 b0.03 0.300.02 0.300.07 0.600.02 r0.20 cutting direction cut fpc from the copper foil side to the reinforcing plate side. (finished thickness: t = 0.2 0.03) the conductive parts should be based by ni plating and then au plating. number of pins/ dimension a b c 13 4.20 3.60 3.00 15 4.80 4.20 3.60 17 5.40 4.80 4.20 23 7.20 6.60 6.00 25 7.80 7.20 6.60 27 8.40 7.80 7.20 29 9.00 8.40 7.80 31 9.60 9.00 8.40 33 10.20 9.60 9.00 35 10.80 10.20 9.60 39 12.00 11.40 10.80 41 12.60 12.00 11.40 45 13.80 13.20 12.60 51 15.60 15.00 14.40 speci?ations for taping speci?ations for the plastic reel (in accordance with eiaj et -7200b.) (a0.30) tape i tape ii (a0.30) (2.0) (8.0) (8.0) (4.0) (2.0) (4.0) (1.75) (1.75) (b) (b) (28.40) leading direction after packaging 1.50 dia. +0.1 0.0 1.50 dia. +0.1 0.0 embossed mounting-hole taping reel top cover tape embossed carrier tape label 380 dia. (c1)
panasonic corporation automation controls business division industrial.panasonic.com/ac/e/ ayf32 acctb8e 201303-t connector orientation with respect to embossed tape feeding direction notes type direction of tape progress y3f 1. recommended pc board and metal mask patterns connectors are mounted with high pitch density, intervals of 0.3 mm or 0.5 mm. in order to reduce solder and ?x rise, solder bridges and other issues make sure the proper levels of solder is used. the ?ures to the right are recommended metal mask patterns. please use them as a reference. recommended pc board pattern (mounting layout) (top view) recommended metal mask pattern metal mask thickness: when 120 m (front terminal portion opening area ratio: 50%) (back terminal portion opening area ratio: 51%) (soldering terminal portion opening area ratio: 100%) 0.700.03 0.600.03 0.40 0.100.03 0.500.03 3.200.03 0.300.03 0.600.03 0.300.03 0.600.03 0.450.03 0.700.03 area of exposed soldering terminal area of exposed soldering terminal 2.940.01 2.260.01 0.0550.01 0.600.01 (0.29) (0.39) 0.270.01 0.600.01 0.270.01 0.600.01 0.450.01 0.700.01 please refer to the latest product speci?ations when designing your product.
panasonic corporation automation controls business division industrial.panasonic.com/ac/e/ acctb13e 201303-t notes on using fpc connectors pc board design design the recommended foot pattern in order to secure the mechanical strength in the soldered areas of the terminal. fpc and equipment design design the fpc based with recommended dimensions to ensure the required connector performance. when using back lock type, secure enough space for closing the lever and for open-close operation of the lever. make sure that connector positioning and fpc length are appropriate to prevent diagonal insertion of the fpc. due to the fpc size, weight, or the reaction force of the routed fpc, fpc may be removed. carefully check the equipment design. ta ke required measures to prevent the fpc from being removed due to a fall, vibration, or other impact. (y3bw/y5bw) the holding contacts cannot be used as conductors. the holding contacts are located on both ends of the contacts, and the shape of the soldered portions is the same as that of the other contacts. use caution to ensure connect identi?ation. (y3bl) soldering terminal structure since soldering terminals touch fpc, note that the short circuit may occur when the metal parts exposed on side of fpc. connector mounting excessive mounter chucking force may deform the molded or metal part of the connector. consult us in advance if chucking is to be applied. soldering 1) manual soldering due to the connectors compact size, if an excessive amount of solder is applied during manual soldering, the solder may creep up and ?x wicking near the contact points, or solder interference may cause contact failure. make sure that the soldering iron tip is heated within the temperature and time limits indicated in the speci?ations. flux from the solder wire may adhere to the contact surfaces during soldering operations. after soldering, carefully check the contact surfaces and cleans off any ?x solder use. be aware that a load applied to the connector terminals while soldering may displace the contact. thoroughly clean the iron tip. 2) re?w soldering screen-printing is recommended for printing paste solder. to achieve the appropriate soldering state, make sure that the re?w temperature, pc board foot pattern, window size and thickness of metal mask are recommended condition. note that excess solder on the terminals prevents complete insertion of the fpc, and causes ?x climbing up. a screen thickness of 120 m is recommended during cream solder printing. consult us when using a screen-printing thickness other than that recommended. depending on the size of the connector being used, self alignment may not be possible. accordingly, carefully position the terminal with the pc board pattern. the recommended re?w temperature pro?e is given in the ?ure below. the temperature is measured on the surface of the pc board near the connector terminals. depending on re?w condition, poor contact may occur by solder and ?x wicking. please set the re?w conditions that considering the characteristics of solder and ?x. also please make consideration in setting the re?w times and o 2 concentration to prevent poor contact by solder and ?x wicking. when performing re?w soldering on the back of the pc board after re?w soldering the connector, secure the connector using, for example, an adhesive. (double re?w soldering on the same side is possible.) do not touch the lever or apply any load to the lever until the second re?w soldering. otherwise, contact de?ction occurs and the terminals may be deformed by re?w heating. 3) reworking on a soldered portion finish reworking in one operation. for reworking of the solder bridge, use a soldering iron with a ?t tip. do not add ?x, otherwise the ?x may creep to the contact parts. when adding the solder for reworking, do not add an excessive solder. otherwise, solder and ?x may creep up and solder bridges may occur. use a soldering iron whose tip temperature is within the temperature range speci?d in the speci?ations. do not drop or handle the connector carelessly. otherwise, the terminals may become deformed due to excessive force or applied solderability may be during re?w degrade. do not open/close the lever or insert/remove an fpc until the connector is soldered. forcibly applied external pressure on the terminals can weaken the adherence of the terminals to the molded part or cause the terminals to lose their evenness. in addition, do not insert an fpc into the connector before soldering the connector. when cutting or bending the pc board after mounting the connector, be careful that the soldered sections are subjected to excessive force. 150c 180c 230c 220c 200c 260c te mperature upper limit (soldering heat resistance) lower limit (solder wettability) preheating peak temperature time 25 sec. 70 sec. 60 to 120 sec. the soldered areas should not be subjected to force.
panasonic corporation automation controls business division industrial.panasonic.com/ac/e/ notes on using fpc connectors acctb13e 201303-t precautions for insertion/removal of fpc ?to open the lever, hold its center and pull it up. an uneven load applied to the lever on one side may deform and break the lever. do not apply an excessive load to the lever in the opening direction, otherwise, the terminals may be deformed. don? further apply an excessive load to the fully opened lever; otherwise, the lever may be deformed. fully open the lever to insert an fpc. since this product connects at the bottom, please insert the fpc so that its electrode plane is facing the board to which it will be mounted. do not insert the fpc in the reverse direction of the contact section; otherwise, operation failures or malfunctions may be caused. (y3ft) this product has a structure to position an inserted fpc using the fpc tabs. therefore, insert an fpc at an angle to the board. if the fpc is inserted in the direction parallel to the board, the molded positioning parts block the fpc, leading to incomplete insertion. do not insert the fpc at an excessive angle to the board. otherwise, it may cause the deformation of metal parts, fpc insertion failures, and fpc circuit breakages. (y3f) completely insert the fpc horizontally. do not insert the fpc at an excessive angle to the board. otherwise, it may cause the deformation of metal parts, fpc insertion failures, and fpc circuit breakages. insert the fpc to the full depth of the connector without altering the angle. when closing the lever, carefully use the tip of your ?ger to push the entire lever or both sides of it. if pressure to the lever is applied unevenly, ie: only the edge, it may deform or break the fpc. make sure that the lever is closed completely. not doing so will cause a faulty connection. avoid applying an excessive load to the top of the lever during or after closing the lever. otherwise, the terminals may be deformed. remove the fpc at an angle with the lever fully opened. if the lever is closed, or if the fpc is forcedly pulled into a direction parallel to the board, the molded part may break. avoid touching the lever (applying any external force) until an fpc is inserted. do not open/close the lever without an fpc inserted. failure to follow this instruction will cause the contacts to warp, leading to the contact tips to interfere with the insertion of an fpc, deforming the terminals. failure to follow this instruction may cause the lever to be removed, terminals to be deformed, and/or the fpc insertion force to increase. the fpc insertion section is on the opposite side of the lever. be careful not to make a mistake in the fpc insertion position or the lever opening/closing position. otherwise, a contact failure or connector breakage may occur. do not insert an fpc upside down. inserting an fpc in a direction opposite to that you intended may cause an operation failure or malfunction. insert an fpc with the lever opened at right angle, that is, in the factory default position. completely insert the fpc horizontally. an fpc inserted at an excessive angle to the board may cause the deformation of metal parts, fpc insertion failures, and fpc circuit breakages. insert the fpc to the full depth of the connector without altering the angle. insert the fpc into the connector after checking the position of fpc insertion slot and fpc. do not insert the fpc without positioning the fpc and connector. otherwise, it may cause connector breakages. when it is hard to insert the fpc, do not insert the fpc on that condition. con?m the fpc and connector positioning. do not apply an excessive load to the lever in the opening direction beyond its open position; otherwise, the lever may be deformed or removed. do not apply an excessive load to the lever in a direction perpendicular to the lever rotation axis or in the lever opening direction; otherwise, the terminals may be deformed, and the lever may be removed. to close the lever, turn down the lever by pressing the entire lever or both sides of the lever with ?gers tips. and close the lever completely. be careful not to apply partial load to the lever that may cause its deformation or destruction. close the lever completely to prevent contact failure. if pressure to the lever is applied unevenly, it may deform or break the fpc. make sure that the lever is closed completely. not doing so will cause a faulty connection. avoid applying an excessive load to the top of the lever during or after closing the lever. otherwise, the terminals may be deformed. when opening the lever to remove the fpc, ensure that the lever will not go over the initial position; otherwise, the lever may be removed. (140) fpc fpc positioning part fpc without an fpc inserted
panasonic corporation automation controls business division industrial.panasonic.com/ac/e/ notes on using fpc connectors acctb13e 201303-t remove the fpc at parallel with the lever fully opened. if the le ver is closed, or if the fpc is forcedly pulled, the product or fpc may break. if a lever is accidentally detached during the handling of a connector, do not use the connector any longer. after an fpc is inserted, carefully handle it so as not to apply excessive stress to the base of the fpc. when using fpc with a bent condition, please pay attention to precautions below; otherwise, in some conditions it may cause conduction failure, connector breakage, unlocking lever or fpc disconnection. design so that a load is not applied to connector directly by fpc bending. avoid sharp fpc bending at the root of fpc insertion part. design so that a load is not applied to the part of fpc bending. fix the fpc if there might be a load on fpc when using the fpc with cutout, do not apply a bending load to the cutout part of fpc. otherwise, it may cause fpc disconnection and deformation since the cutout part of fpc is subjected to bending stress. other cautions when coating the pc board after soldering the connector (to prevent the deterioration of insulation), perform the coating in such a way so that the coating does not get on the connector. the connectors are not meant to be used for switching. there is no problem on the product quality though the swelling and the black spot, etc. might be generated in the molding parts. please refer to the latest product speci?ations when designing your product. fpc cutout part


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