HR25-9TP-20PC HIROSE | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 18

Technical content

  • a a, a . eries a 1 . World’s Smallest Round Type Multiple Contact Connectors Mi GENERAL The HR25 Series is the world’s smallest high-density round type connector. It was developed using Hirose Electric's long experience with miniaturization technology in answer to the continuing need for the ever greater miniaturization and high-density construction of a wide variety of electronic equipment. Se a : rt poof pf ey | ~ a ie ee ii ti ci i A UO ’ al | j | | yy offen — To 2 Sim = ee en Ml FEATURES (1) The HR25 is the world’s smallest high-density con- (3) These connectors prevent water from entering the nector. interior of the set. These connectors fit a maximum of 20 contacts into Installing a rubber gasket to the panel mounting part a maximum outside diameter of 12.5 mm. of the receptacle prevents water from entering the The lock mechanism is available in a screw lock type interior of the set. and a push-pull lock type. (4) Contacts are gold plated as a standard to maintain (2) The structure is such that the pins will not become contact stability. misshapen even if the male pins are inserted incor- (5) The number of contacts is available in 4, 6, 8, 12, 16, rectly. or 20 contacts allowing these connectors to be used The contacts of the plug and the male contacts of the over a wide range of applications. receptacle are designed in such a way that even if (6) Available in a variety of types. the two pieces are engaged, the safe positioning of In addition to the soldered wiring type, these con- the male contacts will not result in a collision nectors are available in the crimp-style wiring type between contacts. and board direct mounting type allowing the con- nector to be matched to the job.

APPLICATIONS

CCD cameras, measuring instruments, wide variety of sensors, mobile radio, medical equipment, etc. 217

[nsuoon [PS ein [toe Wi STRUCTURE OF THE PRODUCT NUMBER HR25 — 9 T P — 20 PC (1) Model , : (2) Shell size (3) ‘Classification of lock mechanism (4) Classification of shell : (5) Number of contacts (6) Form of contacts (7) Type of contacts (1) Model: indicates the HR25 Series. (2) Shell size: Indicates the outer diameter of the engaging portion of the plug. (3) Classification of lock mechanism: Indicated as described below. T: Screw lock system No symbol: Push-pull lock system (4) Classification, of shell: As described below. P: Plug R: Receptacle J: Jack (5) Number of contacts (6) Form of contacts: As described below: P: Male contacts S: Female contacts (7) Type of contacts: The wiring system used or the type of contacts are classified in alphabetical order: Example. C: Crimp-style contacts 218

i Diagrams of Connectors in Combination : © Screw Lock Type i = S>— i === it ==> Solder type plug (HR25-3«TP-2 3x) Solder type receptacle (HR25-3TR-3 2) Crimp type plug (HR25-9TP-%C) Crimp type receptacle (HR25-9TR- C) ih ik a8) Dip type receptacle (HR25->TR-3 3A) m= tm : Hee . Solder type jack (HR25-><TJ->< 3) Crimp type jack (HR25-9TJ-% C) © Push-Pull Lock Type inn nM 3 a ie wn 0 Ce Solder type plug (HR25-% P-3 %) ‘ Solder type receptacle (HR25-3R-3 3x) Crimp type plug (HR25-9P->%* %C) Crimp type receptacle (HR25-9R-3< XC) Dip type receptacle (HR25->R- XA) ta | i if iM Solder type jack (HR25-3<J-< 3x) Crimp type jack (HR25-9J-% C) When the plug is a male contact (i.e., pin insert side) product, a female contact (i.e., socket insert side) product should be used for receptacles and jacks. Conversely, when the plug is a female contact (i.e., socket insert side) product, a male contact (i.e., pin insert side) product should be used for receptacles and jacks. 219

© Screw Lock Type Solder type ‘ A itf2 ) 4} a \\ jjp > | [== SS S| . SS = (An example of the form is illustrated.) SOR [ase van [REREE] « [oe rl [12600066 Turas7rees | 6 [as [ios| 67 | 5 | &0 | [12500059 —[unas:rrpap |e] & [ws] er] 6] 65 | [1265-00061 [unzs7reas |e [35 fis a7 | s | 80 | [125-0102 [wnzsateize [iz [aa [izs[ a7 | 7 | 130 | t [ras-orozs [Hrzsorpr2s [12 | aa fiz! a7 | 7 | 130 | : [12601038 [unaseteiee | 16 [as [izs[ er [7 | 139 | [12501080 [wnzsareres | 16 [a3 [izs| a7 {7 | 139 | [125-0103 [HnzsaTe-20p [20 [as fizs[ a7 | 7 [139 | [125-0106.6 [wazsaTe20s [20 | a3 fizs| a7 | 7 | 19 | 13.5 11,5 5.8 HY // ms WE jj s i Fe | ( tig c Ns (An example of the form is illustrated.) B D(HEX) [mse [reams [aT o |e [> [wo] [125-0007 [wnzs7taas [4 [ios] masxos [wexos | 10] 29 | [125-0007 | Haas-7re-ap | 4 ios | masxos |wexos | 10 | 35 | | 125-0008.0 [HAzé7ra-6s [6 | ws [mesxos |wexos | 10 | 39 | [12500109 [wras7tR6P [6 106 |masxos |mexos [10 | 30 _| [ias-co1s[wras7rres |e ios | masxos |waxos | 10 | 3g | [12500124 |HAas7reaP |e _ [ios|Mesxos |waxos | 10 | a9 | [12s-o107.9 [Hras-err-tas [12 [26 [miosxos| wioxo7 | 12 | ag | [22601081 [wraseratae [12 f26 | miosxos| wioxo.75 | 12 | 4g | [12601084 [unasere-tes [16 | 126 [ mn0sx05| wiox075 | 12 | 4g _| [12501103 [Hrzsotaroe [16 | 12.6| mi0.sxos| mt0x075 | 12 | 49 | [rasonte [wnaserRzos [20 [ize [wnosxos| mioxo7s [12 | ag | [126-0129 [uraseTR20p | 20 [iz6[Mi0sx05| moxo7s | 12 | ag _| 220

B 4 ai ( ae — =| ° WET | Ces - SS SSS 4 . 7 - D z Gad <:°) (An example of the form is illustrated.) a [12500137 [unas7rves [« ros| a5 | 5 [masxos | ea | [12500100 [unas-rruee [a aos a5 | 5 |masxos | | [ras001s2 unsrtces |e ros as | 5 [wasxos | 69 | [iascowss [wras-rrsee | 6 | 198] a5 | s [wasxos | 09 | [ras-cov78 [wrasrrses | eros 35 | s [masxos | 0 | [12600180 [WRas-7rsep [a fis! 36 | 5 [mesxos [eg | [ras.onis1 Hnas-erures [12 fize| a3 | 7 [mtosxos| 129 | [rzsoraa [upzsatirze [a2 [ras [aa | 7 [mtosxos| 126 | : [rasons7 [unasetsaes | te faze | aa [7 [wiosxos| 29 _| : [iasone0 _[wnasstsnee | 16 [26] «3 | 7 [wrosxos| ra | 3 [ras-o1r72 [wnas-ers-20s | 20 aze| 4a | 7 [nosxos| 125 | [ra5-01185 [Hnas-oTs-20p [20 izs| a3 [7 [mnosxos] 129 | Board direct mounting type 14.1 5.8 | 2 (Dip length) YW / Ci a, “Up oN < Ce =|) TM . | iw. B D(HEX) (An example of the form is ilustate.) [sie [ rennet [os] = [= [o [wom | [12600193 [HAas7TRasa | [ro6| masxos |mexos | 10 | 39 _| [128-00202 [unzs7taapa [a [06] Masxos |mexos [10 | 39 | [126-0025 [wnas7tR-6sA | 6 | 106| Masxos |wexos | 10 | 39 _| [125-00228 [unas7reea | 6 [ra6| masxos [mexos | 10 | 39 | [125-00230 [HAas7TR-esa | 8 [ros |mesxos |mexos | 10 | 39 | [1265-00263 [wnasaTeepA | 8 | ros |masxos [maxos | 10 | 33 | [ras-or108 [wnesora-rasa [12 [26 | miosxos| mioxo75 | 12 [43 __| [12501207 [Haas-eTa-raa [12 [26 [miosxos| wiox075 | 12 | ag __| [i2sorzr0 |Hnasere-tesa |“ 16 [26 | miosxos| wiox075 | 12 | 49 _| [ras-ora22 [wraserRt6ra [16 [12.6 | wiosxos| mioxo7s [12 | 4g | [ras-oress | Hnaserr2osa [20 | 126[ wiosxos| mioxo7s | 12 | 4g | [ias-012¢8 [Hnesetezora | 20 [126 [miosxos[mioxo75| 12 | 40 _| 221

. 43 SS SS === SS WS "/ (An example of the form is iustrated.) [125-0401 [HAzsorptzeo | 12 || [r2s-caos1[unasoTpaepc | 1s | 120 | i [26-040 —[unzsoTps6sc [16 | 20 | : [126-04057 | unzs-orpzopc | 20 [ze | [12604060 [uras-orpzosc [20 | 120 | A : 5.8 j if fea \\ Tf, ° ral ANA i SS R

4 VAs | 6

le 4 M10x0.75 M10.5x0.5 12(HEX) (An example ofthe form is iustrated.) [r2soa0e-s | Rsotarzrc [12 [as [ay | [2604107 [unas-otateec | 16 | 13 [39 [i25041r-0 | Hnzs-oTa-20sc [20 [115 [39 | [2508122 [wrasorn-2orc [20 [13 | 30 | 222

3 ===) SS [=== S =< mei M10.5x0.5 (An example ofthe form is iustrated.) Pam roe [| [rasoaies [Hrasersizse [| a26 | [ras-oaree [wnasarsazec [iz | 129 | [rasosie0—[wmos--18¢[ 16 [9 : was0ui7e | wazeats20s¢ | 20 | ta | [12508 [uneserszoec | 20 [120 | 223

© Push-Pull Lock Type Solder type W@ PLUGS g A (A | a AS = ia (An example of the form is illustrated.) Pa [ase resem [sta [oa] [v0 y [12502007 | nnas-re-ap [a [aaa |ios|7a5[ 5 [ea | y | 12s-0202-0 "| unas-7e-as [4 [aaa ios [745] 5 [80 | [r2s.020¢5[nasz-0s [6 | saa vos] 745] 5 [00 | [126.0205-6 [Hnas7e-ep |e [aaalios|7as| s | e9 | [126.0206.0 | HRas-7e-0s |e faae[ios|745| 6 | eo | . [12s-os01-1 [unzsop-rze [iz [aze|izs[oas| 7 | 130 | 4 [12sosoz4 | unasepras [iz [aza|i2s [eas] 7 [139 | 3 [12-0303-7 | unas-se-rer 16 faze] iz6 [945] 7 | 139 | [2.03040 | Hres-ep-tes [16 | aze| zs [eas] 7 [ 139 | [125-0305.2 [HRzsor.z0p [20 [azelizsloas| 7 | 130 | [125-03065 [HAzs.or-20s [20 azafizs|aasl 7 | 130 | Ml RECEPTACLES 4.3 11.8 é 3 / yo I J if (JN ill | — (An example of the form is illustrated.) C(HEX) oe [126-0207-3 | unasraas [a | i [ mioxo7s [12 | 4a | [rasozces —[uRasaae [4 | 11 | woxo7e | 12 eg | [2602009 [masmees | 6 | 11 [mnoxo7s | 2 [ag | Lrzsoz108 [uaasmer [6 | 1 [mioxo7s | 2 [ag | [125-0210 [unesmes [8 [1 | mioxo7s | v2 [ag | [125-0123 [wnas7a-ee [8 | i Pmioxo75 | 12 | ag ‘| | 12s-0307-6 [unason-tas [a2 | 1a [miaxors | 1a | 59 | [r26.0308-0 | wResenaap [12 | 13 [miaxo7s [14 [6g | [hass0o:s —[urasonies | 16 | 1a [wraxae [14 | oy] [s2s0st0-2 | unasenree [16 | 1a [miaxo7s| 1a | 50 | [ras-osti-s [wnzsenzes [20 | 13 [wraxo75| 14 | 9 | [ias-oarz-8 [wResenzoe | 20 [13 [wraxo7s | 1a [50 | 224

(Ee < 2 se) g [rasoarse [unasnias | « [rrelase[s | a9 _| [260219 | uaas7sap |e [talase| s | 99 | [rasoars.1 [wnasnves [6 [nelass[s | a0 | [iz6o2iea | wnas7sep | 6 [nalase| s [99 | [rasoan7 [nnasnves |e [nelass[s | a9 | [raso2r80 [nnes7ver | 8 _[nelsse[s | 29 | [rasono0 [wmasass2s | 12 [9a] aa] 7 | vao_| [rasosies | wRasesize | 12 [rsafass[ 7 [14g | [iasasise [wrzsavies | 16 [138 |aa8] 7 | v49 | m [rascarea [wrasouier [16 [rae [aaa] 7 [149 | : [rasosr7 _[nnessv20s | 20 [138] 436] 7 | 140_| [rasoste4 [nnzssvzor | 20 [wselase] 7 | 140 | Board direct mounting type , 14.9 2 (Dip tent "| ha @) ; \\ AZ C(HEX) (An example of the form is illustrated.) [_mes no [rowan | agnias’ [ea] e |e | wisn | [asoate2 [umesmasa | ¢ | 11 |mioxo7s | v2 | 4a | [r2s-0020-1 [nmesrnara | 4 | 11 | wnoxo7s [v2 | aa | [rasoere [Hnesrmesa [6 [11 | toxo75 [v2 | aa _ | [2502227 [waas7a-cpa | 6 | t1 | woxo75 | 12 | 4g | [260220 [uazs7aesa [8 | 1 | mtoxo75 | 12 [4g | [2602202 [Haesreera [8 | m | woxo7s | 12 | 4g | [25-0ere-7 [Hmason-rasA [v2 [13 |wraxo75 [v4 | 0 | [ras.onze.8 | rasenzpa | 12 | 13 |wi2wo75 | 14 | 60 | [ras.cazr.s | wrasonesa | 16 | 13 | wi2x075 14 [59 | [12503221 | uaasont6pA | 16 | 13 [mi2x075 | 14 [sa | [12500084 [nrasan2osa [20 | 13 [mizx078 [14 | 60 | [asos2e7 [nnasonzora | 20 | v3 [wiaxo75 | 14 | 69 | 225

‘ 42.8 de 7 Se .. f y sie hd & yp | NSF * SN eZ. SF A ! ars (] (An example of the form is iustated [125-0603-6 __[wrzsap-rerc [16 | 129 | [12505009 [Hnzser-tesc [16 | 120 | : [ras.05061 [wReser-zorc [20 [120 | [125.0506-4 [unzs-ep2osc [20 [20 | M@ RECEPTACLES 7 A % 1H pees 3 A M12x0,75 Ni 14(HEX) (An example of the form is illustrated.) [sie [roan SSR] * Tw [125-05077_[unesenrasc [iz [ne | 4 | [12505080 [uaas-ensarc | 12 | ae [ao | [12505002 [Hrasernesc [te [ive [ag | [rasosio1 [wras-ennepc [te [isa [| [iaso6ia “[wResenzosc [20 [a | ao | [ias.06127 _[wresenzopc [20 [138 | 4a | 226

(An example of the form is illustrated.) [rasose2 —[wnassi-varc | 2 | 109 _| : [ras0siss —[masaivesc | 16 | 109 | : [i2s-06168 [Hrasesrerc [ie | 30 | [125-0617-0 [wrasev20sc [20 | 130 Lrasosies [wrs-sseorc [20 | 139 | 227

13.4 irae a ‘ NOTES: 1.Please use wire with a covering outside diameter of 0.71 mm or less. Female Contacts Fa eee = 5 | 2 mass 4 . 13.4 Pe eg oN [continuous contacts [12500226 [anaesca1 _[awewa0~a2 come in reels of 10,000 pieces. 228

@ Applicable Tools Applicable Wire and | Manuat _| Manual crimping tool 180-0207-3 | HR25-TASOs2Ho | HIRES PO-11t AWG#30 Auto crimping cann ee. _ Auto 901-2040-6 | AP105-HR25-1 ieee att AWG#30 Hexagon bar wrench -onRe (HR10A-TC-02) (HR25-TA-3032HC) Cable crimping tool Manual crimping tool . SAPAW HEE \\ bean: (HR25-TP) Neen a Extraction tool moe / a € ; Automatic crimper Model CM-105, (PB205/1.27) Hexagonal wrench driver 229

@ Outline of Wiring Work (on the Plug Side) O The outline of wiring work for this diagram uses the soldered type as an example. The jack side is also based on the work outline of the plug; however, the receptacle side does not require a special work outline and has been omitted because of this. ©} Screw Lock Type e@ Work Procedure . P shell nit Clamp fitting Spanner positon Clamp body Cable Looseness prevention processing == i. Ti fH aH 2 Temi ees LH | Zor less === Solder type approx. 1.5 Crimp type 1.7 +0.02 ° A Boss by, Cable bushing . Set serew (Opposite sides 1.27) A ES 1. With regard to cables, the wire to be used should have a conductor with a nominal cross-sectional area of 0.08 mm? (AWG #28) or less in a finished form suited to each size. 2, First pass the cable bushing and the plug body in order over the cable, then cut the end at the dimensions indicated in the above diagram. , 3. Mount the P shell unit in the wiring jig and perform the solder wiring. 4. Use the cable crimping jig (HR10A-TC-02) to fix the clamp fitting to the cable. 5. After performing, the wiring, tighten the plug body to the screw portion of the P shell unit using the specified torque (in the above table). 6. Tighten the set screw so that the tip of the set screw falls into one of the two bosses of the clamp fitting. Note that the tightening torque of the set screw is from 0.3 to 0.4 Nm. 7. Put the cable bushing over the plug body and complete the work. Note that the use of a paint lock (e.g., Locktight 271 manufactured by Nihon Locktight K.K.) is recommended on the screw portion to prevent loosening of the P shell unit. The aforementioned work procedure is for the soldered type. In the case of the crimp-style type, Steps 1 and 3 are changed as follows: 1. With regard to cables, the wire to be used should have a conductor with a nominal cross-sectional area of 0.05 mm? (AWG #30) and 0.035 mm? (AWG #32) in a finished form suited to each size. 3. Crimp a suitable crimp terminal to the conductor portion of the cable, then fit into the housing of the P shell unit. 230

© Push-Pull Type @ Work Procedure Clamp ttiog Spanner position P shell unit Contact tock Looneness prevention processing cable ial Tl ae | ee ee a ill HA | Vil a 2 or less Solder type approx. 1.5 Spacer Crimp type 1.7 0.u2 wy, . A Boss ey) Cable bushing Cable tube Set serew (Opposite sides 1.22) a A 1. With regard to cables, the wire to be used should have a conductor with a nominal cross-sectional area of 0.08 mm? (AWG #28) or less in a finished form suited to each size. . 2. First pass the cable bushing, cable tube, and the spacer in order over the cable, then cut the end at the dimensions indicated. in the above diagram. 3. Mount the contact block in the wiring jig and perform the solder wiring. 4, Use the cable crimping jig (HR10A-TC-02) to fix the clamp fitting to the cable. 5. Insert the contact block and the spacer in order to the P shell unit. Be sure to align the guides at this time when making the insértion. 6. Using the tightening jig, tighten the P shell unit and the cable tube with the specified torque (in the above table). 7. Tighten the set screw so that the tip of the set screw falls into one of the two bosses of the clamp fitting. Note that the tightening torque of the set screw is from 0.3 to 0.4 Nm. 8. Put the cable bushing over the cable tube and complete the work. Note that the use of a paint lock (e.g., Locktight 271 manufactured by Nihon Locktight K.K.) is recommended on the screw portion to prevent loosening of the cable tube.. The aforementioned work procedure is for the soldered type. In the case of the crimp-style type, Steps 1 and 3 are changed as follows: 1. With regard to cables, the wire to be used should have a conductor with a nominal cross-sectional area of 0.05 mm? (AWG #30) and 0.035 mm? (AWG #32) in a finished form suited to each size. 3. Crimp a suitable crimp terminal to the conductor portion of the cable, then fit into the molded terminal hole. Should there be any points requiring clarification when using the connectors, please contact our Business or Technical Department. 231

| Assembly Jigs Use of the following assembly jigs will simplify the job of disassembling and assembling the connectors at the time of wiring. es (HR25-7TP-01) (HR25-7TJ-01) a Sy (HR25-7P-T01) (HR25-7P-T02) [HRS No. | Product No. | Suitable Connectors and Uses 150-0082-0 | HR26-7TP-T01_| For HR25-7TP wiring and P shell unit tightening For HR25-9TJ wiring and J shell unit tightening 150-0086-0 | HR25-9P-T01_| For HR25-9P wiring For HR25-7P P shell unit tightening For HR25-9P P shell unit tightening 232

HM Mounting Hole Dimensions Diagram ; Mounting hole dimensions are indicated as viewed from the engagement side. Y 4 alk ag Screw lock type Push-pull lock type aba | seer | sies [ sie? | sues | ee ec ° ° ° ° 4 NOTE: The 7 mark indicates the engagement guide key position. M_RECEPTACLE DIP POST CONFIGURATION DIMENSIONS e 15 Ls 1s 15 o| — lw 5

2 V 2 Y Py Y

  • eee zoe se = Pome Size 7, 4 conductors Size 7, 6 conductors Size 7, 8 conductors 21 21 2.8 2.8 21 24 | reali ays Tl * ‘ Stic VY af alé Mv - Agner . Loewe) meee) poise EGHis menor ool -g2 | re | fee

1 Came or ae A 2 [W/

< ales Nias - . 14 14 Size 9, 12 conductors Size 9, 16 conductors zs [|] es Size 9, 20 conductors NOTE: 1. The above diagrams are viewed from the engagement side of the socket insert (i.e., the wiring side of the pin insert). 2. The 4 mark of the above diagrams indicates the engagement guide key position. 3. A tolerance of £0.05 is recommended for dimensions without indication. 233

rrr _ a, | Contact Configuration and Major Ratings Shell size Size 7 YW Ze Y (0) Contact configuration O® DO® ®@@® Number of contacts a 8 Withstand voltage 300 V AC for 1 minute Current capacity 1A Insulation resistance 1000 MQ or greater Contact resistance 30 mQ . Solder pot inside diameter 0.5 mm dia. Shell size . Size 9 Vi YZ Y rs (0) 000® Cee 29 OS Contact configuration | ©©® OFOTOKO) ©OOOO @G6® GODB® Number of contacts a 20 Withstand voltage 300 V AC for 1 minute Current capacity . 1A Insulation resistance 1000 MQ or greater Contact resistance 30 mQ Solder pot inside diameter 0.5 mm dia. NOTE: 1. The above diagrams are viewed from the engagement side of the socket insert (i.e., the wiring side of the pin insert), 2. The & mark of the above diagrams indicates the engagement guide key position. 3. The withstand voltage indicates the test voltage value. For regular use the voltage used should be less than 30 V AC or 42 V DC. 4, The current capacity of the crimp terminals indicates the value when using wire of AWG #30. . 5. The insulation resistance indicates a value when measured at 100 V DC. 234