JP4521915B2 - Motor fixing structure - Google Patents

Motor fixing structure Download PDF

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Publication number
JP4521915B2
JP4521915B2 JP2000031563A JP2000031563A JP4521915B2 JP 4521915 B2 JP4521915 B2 JP 4521915B2 JP 2000031563 A JP2000031563 A JP 2000031563A JP 2000031563 A JP2000031563 A JP 2000031563A JP 4521915 B2 JP4521915 B2 JP 4521915B2
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JP
Japan
Prior art keywords
motor
cover
fixing structure
fitting member
housing portion
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
JP2000031563A
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Japanese (ja)
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JP2001224145A (en
Inventor
健 小原
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sato Corp
Sato Holdings Corp
Original Assignee
Sato Corp
Sato Holdings Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Priority to JP2000031563A priority Critical patent/JP4521915B2/en
Publication of JP2001224145A publication Critical patent/JP2001224145A/en
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Publication of JP4521915B2 publication Critical patent/JP4521915B2/en
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Description

【0001】
【発明の属する技術分野】
本発明はモータの固定構造に係り、特に携帯用プリンタのモータを固定する携帯用プリンタのモータの固定構造に関する。
【0002】
【従来の技術】
従来、携帯用プリンタの組み立て作業において、ケースに設けられたモータ収納部にモータを固定する場合には、モータに設けられたモータ取付け用ネジ孔を介してモータをモータ収納部にネジ止めしていた。
【0003】
【発明が解決しようとする課題】
しかしながら、携帯用プリンタのように、モータが小さいためにネジ自体が極めて小さい場合には、ネジ止め作業がしにくいという欠点があり、特にモータ収納部近傍に他の部品等が密集しており、ドライバーが入りにくい場合には、ネジ止め作業が一層困難になる。
【0004】
本発明はこのような事情に鑑みて成されたもので、ネジ止めが不要となり作業の簡略化を図ることができると共に、部品点数を削減できる携帯用プリンタのモータの固定構造を提供することを目的とする。
【0005】
【課題を解決するための手段】
本発明は前記目的を達成するために、装置本体と、プラテンローラを設けた開閉カバーとを備えた携帯用プリンタのモータの固定構造において、前記プラテンローラを回転駆動させるモータと、前記モータを収納するモータ収納部を前記開閉カバーに設け、前記モータに備えられている取付け用ネジ孔に嵌入する突起部を有するモータカバーと、前記モータカバーの両端部に設けられ、係合爪を有する第1の嵌合部材と、前記モータ収納部に設けられ、前記第1の嵌合部材を嵌合させた状態で前記モータカバーと前記モータ収納部とが接近・離間するようにスライド可能なガイド溝を有すると共に前記係合爪に係合する係合部を有する第2の嵌合部材と、を備え、前記モータカバーの前記突起部を前記モータの取付け用ネジ孔に嵌入し、この状態で、前記モータ収納部の開閉カバー側面板に沿うように、前記第1の嵌合部材を前記第2の嵌合部材のガイド溝に差し込んで前記接近する方向にスライドさせることにより前記モータ収納部と前記モータカバーで前記モータを挟み込むと共に、前記係合爪を前記係合部に係合させることを特徴とする。
【0006】
本発明によれば、先ず、モータカバーの突起部をモータの取付け用ネジ孔に嵌入する。そして、モータがモータカバーに支持された状態で、第1の嵌合部材を、モータ収納部のガイド溝に差し込んで第2の嵌合部材に嵌合させる。嵌合させた後、更に第1の嵌合部材をガイド溝に沿ってスライドさせてモータ収納部とモータカバーとによりモータを挟み込み、この状態で係合爪と係合部とを係合させる。これにより、モータをモータ収納部に簡単に且つ迅速に固定することができる。
【0007】
【発明の実施の形態】
以下添付図面に従って、本発明に係るモータの固定構造の好ましい実施の形態について詳説する。尚、本実施の形態では、携帯用のプリンタに使用されるモータの固定構造の例で説明する。
【0008】
まず、図1に基づいて本発明のモータの固定構造が適用されるプリンタ10の概略構造について説明する。
【0009】
図1に示すように、プリンタ装置本体12の下部には、円弧状に膨らんだ部分を有する開閉カバー14が装置本体12に回動自在に支持されている。開閉カバー14は、開閉レバー16を上方に押し上げることによって、開閉カバー14と装置本体12との係合が解除され、側方に開くようになっている。開閉カバー14を開くと、その内部に、図示しないラベル用紙の装填部が露出され、巻回されたロール状のラベル用紙を装填することができる。
【0010】
プリンタ10の上部には、データ受信部18が設けられ、カバー20の内部に受信装置(図示せず)が配設されている。この受信装置は、送信手段(例えばハンディターミナル)から赤外線等によって印字データの信号が送信されると、この信号を受信して印字部にデータを送信する。また、プリンタ10の一方側面には、電源スイッチ13、バッテリー収納部の蓋15、コネクター17等が設けられる。
【0011】
プリンタ10の上面には、操作部22が設けられ、この操作部22にフィードボタン24、プリントボタン26等が並設されており、プリントボタン24を押し操作することによって、ラベル用紙が印字部に供給され、印字部でラベルに印字が行われると共に、フィードボタン24を押し操作することによって、ラベル用紙が印字されずに送り出される。
【0012】
プリンタ10の正面には、ラベル用紙取出口28が設けられ、ラベル用紙取出口28の内側に印字部が設けられ、印字されたラベル用紙は、ラベル用紙取出口28から排出される。ラベル用紙取出口28の上部には、台紙剥離装置30が設けられており、台紙剥離装置30は、一対の挟持ツマミ32、32の間隔を狭めることによって上下方向にスライドするようになっている。また、台紙剥離装置30には、ラベル取出口34が形成されており、台紙剥離装置30を下方にスライドさせてラベル取出口34と前記ラベル用紙取出口28との位置を合わせると、ラベル用紙取出口28から送り出されたラベル用紙は、ラベルが台紙から剥離されてラベル取出口34から突出し、剥離した台紙が台紙剥離装置30の下部と装置本体12の隙間から排出される。
【0013】
印字部は、例えば、サーマルプリンタ(図示せず)とプラテンローラ36とで構成され、プラテンローラ36、及びプラテンローラ36を回転駆動するモータ38等の駆動部は開閉カバー14側に設けられる(図2、図3参照)。
【0014】
次に、本発明のモータの固定構造について説明する。
【0015】
図2は、モータ38を固定する前の状態であり、モータ38を固定する部材等を見やすくするために、モータ38の回転駆動力をプラテンローラ36に伝達するギア群42、42、42(図3参照)については省略してある。図3は、モータ38を固定した後の状態で、図4は、モータを固定した後の状態をプリンタの側方を切り欠いて示した側面図である。
【0016】
これらの図に示すように、モータの固定構造は、主として、モータ38を収納するモータ収納部40と、モータカバー44と、モータカバー44の両端部に設けられた一対のスナップ板46、46と、モータ収納部40に設けられた一対の溝板48、48とで構成される。
【0017】
モータ収納部40は、開閉カバー14の円弧状に膨らんだ部分の一方端側(図1の右側)に設けられ、モータ収納部40に固定されたモータ38の動力は、開閉カバー14の上端部に回転自在に支持されたプラテンローラ36にギア群42、42、42を介して伝達される。このモータ収納部40には、モータ周面38Aの円弧形状に合わせた面を有する収納部本体50が縦向きに設けられ、収納部本体50の上下端部から水平方向に一対の溝板48、48が配設される。この溝板48には、その長手方向にガイド溝48Aが形成されると共に、係合孔48Bが形成される。
【0018】
また、モータ収納部40には、開閉カバー14の側面板14Aと平行なリブ付き板54が設けられ、モータ38の両側面38B、38Bを側面板14Aとの間で挟み込むことにより、モータ38の軸方向を固定する。
【0019】
モータカバー44は、図5に示すように、モータ周面38Aに合わせて円弧状に形成され、モータ収納部40の収納部本体50と合わさることによりモータ周面38A全体を把持する。また、モータカバー44には、モータ38に備えられている2個の取付け用ネジ孔38C、38Cに嵌入する突起部44A、44Aが形成されると共に、モータカバー44の両端部上面には、一対のスナップ板46、46が支持される。このスナップ板46は、前記溝板48のガイド溝48Aに嵌合するように形成され、ガイド溝48Aに沿ってスナップ板46をスライドさせることにより、モータカバー44と収納部本体50とが接近・離間する。更に、スナップ板46の先端部には、溝板48に形成された係合孔48Bに係合する係合爪46Aが形成される。尚、スナップ板46に係合爪46Aを形成し、溝板48に係合孔48Bを形成した例で示したが、スナップ板46に係合孔を形成して、溝板48に係合爪を形成してもよい。
【0020】
次に、モータ38をモータ収納部40に固定する手順について説明する。
【0021】
先ず、モータカバー44の突起部44Aをモータ38の取付け用ネジ孔38Cに嵌入してモータ38にモータカバー44を取り付ける。次に、モータカバー44の一対のスナップ板46、46を、モータ収納部40における一対の溝板48、48のガイド溝48A、48Aにそれぞれ差し込んでスナップ板46を溝板48に嵌合させると共に、スナップ板46の係合爪46Aが溝板48の係合孔48Bに係合するまで、スナップ板46をガイド溝48Aにスライドさせていく。これにより、収納部本体50とモータカバー44とでモータ周面38Aを挟み込むと共に、リブ付き板54と開閉カバー14の側面板14Aとによりモータ38の両側面38B、38Bを挟み込んだ状態で、モータ38がモータ収納部40に固定される。また、モータカバー44の突起部44Aをモータ38の取付け用ネジ孔38Cに嵌入しているので、モータ38を駆動してモータ38の回転軸用ギア38Dが回転してもモータ本体が動くことがない。
【0022】
このように、本発明のモータの固定構造は、モータ38を支持したモータカバー44のスナップ板46を、モータ収納部40に設けられた溝板48のガイド溝48Aに差し込むだけでよいので、ネジ止めが不要となりモータ38の固定作業を簡略化できるので、プリンタ10の組立て作業工数の低減及び組立時間の短縮を図ることができる。また、部品点数を削減できる。
【0023】
また、上述したモータの固定構造は、携帯用のプリンタ10のモータを固定する場合で説明したが、本発明のモータの固定構造は、モータ38を備えた他の電気機器にも適用することができる。
【0024】
【発明の効果】
以上説明したように、本発明に係るモータの固定構造によれば、ネジ止めが不要となり作業の簡略化を図ることができる。また、部品点数を削減できるので、コスト低減に寄与する。
【図面の簡単な説明】
【図1】図1は、本発明のモータの固定構造を適用する携帯用プリンタの斜視図
【図2】図2は、モータをモータ収納部に固定する前の斜視図
【図3】図3は、モータをモータ収納部に固定した後の斜視図
【図4】図4は、モータを固定した後の状態をプリンタの側方を切り欠いて示した側面図
【図5】モータカバーとスナップ板を説明する斜視図
【符号の説明】
10…プリンタ、12…プリンタ装置本体、14…開閉カバー、36…プラテンローラ、38…モータ、38A…モータ周面、38B…モータ側面、38C…取付け用ネジ孔、40…モータ収納部、42…ギア、44…モータカバー、44A…突起部、46…スナップ板(第1の嵌合部材)、46A…係合爪、48…溝板(第2の嵌合部材)、48A…ガイド溝、48B…係合孔、50…収納部本体、54…リブ付き板
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a motor fixing structure, and more particularly to a portable printer motor fixing structure for fixing a motor of a portable printer .
[0002]
[Prior art]
Conventionally, when assembling a portable printer, when fixing a motor to a motor housing provided in a case, the motor is screwed to the motor housing through a motor mounting screw hole provided in the motor. It was.
[0003]
[Problems to be solved by the invention]
However, if the screw itself is very small because the motor is small like a portable printer, there is a drawback that screwing work is difficult, especially other parts etc. are concentrated near the motor housing part, If it is difficult for the driver to enter, the screwing operation becomes more difficult.
[0004]
The present invention has been made in view of the above circumstances, and provides a motor fixing structure for a portable printer that can simplify the work because screwing is not required and can reduce the number of parts. Objective.
[0005]
[Means for Solving the Problems]
In order to achieve the above object, the present invention provides a motor fixing structure for a portable printer comprising an apparatus main body and an opening / closing cover provided with a platen roller, and a motor for driving the platen roller to rotate, and housing the motor. a motor housing portion provided on the cover, and motor cover which has a projection that fits into the mounting screw hole that is provided to the motor, provided at both ends of the motor cover, first with engaging claws And a guide groove that is provided in the motor housing portion and is slidable so that the motor cover and the motor housing portion approach and separate from each other in a state in which the first fitting member is fitted. the engaging second engagement member having an engagement portion engaged with engagement claws comprises, fitted with the protrusion of the motor cover to the screw holes for mounting of the motor and having, this In state, along the cover side plate of the motor housing portion, the motor housing by sliding in a direction the approaching insert the first fitting member to the guide groove of the second engagement member The motor is sandwiched between a portion and the motor cover, and the engaging claw is engaged with the engaging portion.
[0006]
According to the present invention, first, the protrusion of the motor cover is inserted into the screw hole for mounting the motor. Then, in a state where the motor is supported by the motor cover, the first fitting member is inserted into the guide groove of the motor housing portion and is fitted to the second fitting member. After the fitting, the first fitting member is further slid along the guide groove so that the motor is sandwiched between the motor housing portion and the motor cover, and the engaging claw and the engaging portion are engaged in this state. Thereby, a motor can be fixed to a motor storage part easily and rapidly.
[0007]
DETAILED DESCRIPTION OF THE INVENTION
The preferred embodiments of the motor fixing structure according to the present invention will be described below in detail with reference to the accompanying drawings. In this embodiment, an example of a motor fixing structure used in a portable printer will be described.
[0008]
First, a schematic structure of a printer 10 to which the motor fixing structure of the present invention is applied will be described with reference to FIG.
[0009]
As shown in FIG. 1, an opening / closing cover 14 having a bulging portion in an arc shape is rotatably supported by the apparatus main body 12 at the bottom of the printer apparatus main body 12. The open / close cover 14 is opened to the side by releasing the engagement between the open / close cover 14 and the apparatus main body 12 by pushing the open / close lever 16 upward. When the opening / closing cover 14 is opened, a label paper loading section (not shown) is exposed in the interior of the opening / closing cover 14, and a rolled roll of label paper can be loaded.
[0010]
A data receiving unit 18 is provided in the upper part of the printer 10, and a receiving device (not shown) is provided inside the cover 20. When a print data signal is transmitted by infrared rays or the like from a transmission means (for example, a handy terminal), the reception device receives this signal and transmits data to the print unit. A power switch 13, a battery housing cover 15, a connector 17, and the like are provided on one side of the printer 10.
[0011]
An operation unit 22 is provided on the upper surface of the printer 10, and a feed button 24, a print button 26, and the like are arranged in parallel with the operation unit 22. Then, the label is printed on the printing unit, and the feed button 24 is pressed to feed the label paper without printing.
[0012]
A label paper outlet 28 is provided on the front side of the printer 10, and a printing unit is provided inside the label paper outlet 28. The printed label paper is discharged from the label paper outlet 28. A mount stripping device 30 is provided above the label sheet take-out port 28, and the mount stripping device 30 slides in the vertical direction by narrowing the distance between the pair of sandwiching knobs 32 and 32. In addition, a label take-out port 34 is formed in the mount sheet peeling device 30. When the mount sheet peeling device 30 is slid downward to align the label take-out port 34 and the label sheet take-out port 28, the label sheet take-out device 30 is removed. The label sheet fed from the outlet 28 is peeled off from the mount and protrudes from the label take-out port 34, and the peeled mount is discharged from the lower portion of the mount stripping device 30 and the apparatus main body 12.
[0013]
The printing unit is composed of, for example, a thermal printer (not shown) and a platen roller 36, and a driving unit such as a platen roller 36 and a motor 38 that rotationally drives the platen roller 36 is provided on the opening / closing cover 14 side (see FIG. 2, see FIG.
[0014]
Next, the motor fixing structure of the present invention will be described.
[0015]
FIG. 2 shows a state before the motor 38 is fixed, and gear groups 42, 42, 42 (see FIG. 2) that transmit the rotational driving force of the motor 38 to the platen roller 36 in order to make it easy to see the member that fixes the motor 38. 3) is omitted. 3 is a side view showing the state after the motor 38 is fixed, and FIG. 4 is a side view showing the state after the motor is fixed, with the side of the printer cut away.
[0016]
As shown in these drawings, the motor fixing structure mainly includes a motor housing portion 40 that houses the motor 38, a motor cover 44, and a pair of snap plates 46 and 46 provided at both ends of the motor cover 44. And a pair of groove plates 48, 48 provided in the motor housing 40.
[0017]
The motor storage unit 40 is provided on one end side (right side in FIG. 1) of the arcuate portion of the opening / closing cover 14, and the power of the motor 38 fixed to the motor storage unit 40 is the upper end of the opening / closing cover 14. Is transmitted to the platen roller 36 rotatably supported by the gear group 42, 42, 42. The motor storage section 40 is provided with a storage section main body 50 having a surface that matches the arc shape of the motor circumferential surface 38A in a vertical direction, and a pair of groove plates 48 in the horizontal direction from the upper and lower ends of the storage section main body 50, 48 is arranged. The groove plate 48 is formed with a guide groove 48A in the longitudinal direction and an engagement hole 48B.
[0018]
Further, the motor housing 40 is provided with a ribbed plate 54 parallel to the side plate 14A of the opening / closing cover 14, and sandwiching the both side surfaces 38B, 38B of the motor 38 with the side plate 14A, the motor 38 Fix the axial direction.
[0019]
As shown in FIG. 5, the motor cover 44 is formed in an arc shape in conformity with the motor circumferential surface 38 </ b> A, and grips the entire motor circumferential surface 38 </ b> A by being combined with the housing main body 50 of the motor housing 40. Further, the motor cover 44 is formed with projections 44A and 44A that are fitted into the two mounting screw holes 38C and 38C provided in the motor 38, and a pair of upper surfaces of both ends of the motor cover 44 are formed on the upper surface. The snap plates 46, 46 are supported. The snap plate 46 is formed so as to be fitted in the guide groove 48A of the groove plate 48, and the motor cover 44 and the housing main body 50 are moved closer together by sliding the snap plate 46 along the guide groove 48A. Separate. Furthermore, an engaging claw 46A that engages with an engaging hole 48B formed in the groove plate 48 is formed at the tip of the snap plate 46. Although the example in which the engaging claw 46A is formed in the snap plate 46 and the engaging hole 48B is formed in the groove plate 48 is shown, the engaging hole is formed in the snap plate 46 and the engaging claw is formed in the groove plate 48. May be formed.
[0020]
Next, a procedure for fixing the motor 38 to the motor housing 40 will be described.
[0021]
First, the protrusion 44 </ b> A of the motor cover 44 is fitted into the mounting screw hole 38 </ b> C of the motor 38 to attach the motor cover 44 to the motor 38. Next, the pair of snap plates 46, 46 of the motor cover 44 are inserted into the guide grooves 48 </ b> A, 48 </ b> A of the pair of groove plates 48, 48 in the motor storage unit 40, respectively, and the snap plate 46 is fitted to the groove plate 48. The snap plate 46 is slid into the guide groove 48A until the engagement claw 46A of the snap plate 46 is engaged with the engagement hole 48B of the groove plate 48. As a result, the motor peripheral surface 38A is sandwiched between the storage unit main body 50 and the motor cover 44, and the motor 38 is sandwiched between the both side surfaces 38B and 38B of the motor 38 by the ribbed plate 54 and the side plate 14A of the opening / closing cover 14. 38 is fixed to the motor housing 40. Further, since the projection 44A of the motor cover 44 is fitted into the mounting screw hole 38C of the motor 38, the motor body can be moved even if the motor 38 is driven to rotate the rotation shaft gear 38D. Absent.
[0022]
As described above, the motor fixing structure of the present invention only has to insert the snap plate 46 of the motor cover 44 supporting the motor 38 into the guide groove 48A of the groove plate 48 provided in the motor housing portion 40. Stopping is not required and the fixing work of the motor 38 can be simplified, so that the number of assembling work of the printer 10 can be reduced and the assembling time can be shortened. In addition, the number of parts can be reduced.
[0023]
Further, the motor fixing structure described above has been described in the case where the motor of the portable printer 10 is fixed. However, the motor fixing structure of the present invention can also be applied to other electric devices including the motor 38. it can.
[0024]
【The invention's effect】
As described above, according to the motor fixing structure of the present invention, screwing is not required, and the work can be simplified. Moreover, since the number of parts can be reduced, it contributes to cost reduction.
[Brief description of the drawings]
FIG. 1 is a perspective view of a portable printer to which a motor fixing structure of the present invention is applied. FIG. 2 is a perspective view before a motor is fixed to a motor housing. Fig. 4 is a perspective view after the motor is fixed to the motor housing. Fig. 4 is a side view of the state after fixing the motor with the side of the printer cut away. Fig. 5 is a motor cover and snap. Perspective view explaining the plate
DESCRIPTION OF SYMBOLS 10 ... Printer, 12 ... Printer apparatus main body, 14 ... Opening and closing cover, 36 ... Platen roller, 38 ... Motor, 38A ... Motor peripheral surface, 38B ... Motor side surface, 38C ... Mounting screw hole, 40 ... Motor storage part, 42 ... Gear 44, motor cover 44A, projection, 46 ... snap plate (first fitting member), 46A ... engagement claw, 48 ... groove plate (second fitting member), 48A ... guide groove, 48B ... engagement hole, 50 ... storage unit body, 54 ... ribbed plate

Claims (3)

装置本体と、プラテンローラを設けた開閉カバーとを備えた携帯用プリンタのモータの固定構造において、
前記プラテンローラを回転駆動させるモータと、前記モータを収納するモータ収納部を前記開閉カバーに設け、
前記モータに備えられている取付け用ネジ孔に嵌入する突起部を有するモータカバーと、
前記モータカバーの両端部に設けられ、係合爪を有する第1の嵌合部材と、
前記モータ収納部に設けられ、前記第1の嵌合部材を嵌合させた状態で前記モータカバーと前記モータ収納部とが接近・離間するようにスライド可能なガイド溝を有すると共に前記係合爪に係合する係合部を有する第2の嵌合部材と、を備え、
前記モータカバーの前記突起部を前記モータの取付け用ネジ孔に嵌入し、この状態で、
前記モータ収納部の開閉カバー側面板に沿うように、前記第1の嵌合部材を前記第2の嵌合部材のガイド溝に差し込んで前記接近する方向にスライドさせることにより前記モータ収納部と前記モータカバーで前記モータを挟み込むと共に、前記係合爪を前記係合部に係合させることを特徴とする携帯用プリンタのモータの固定構造。
In the fixing structure of the motor of the portable printer provided with the apparatus main body and the opening / closing cover provided with the platen roller,
A motor for rotating the platen roller and a motor storage for storing the motor are provided in the opening and closing cover,
A motor cover having a protrusion that fits into a mounting screw hole provided in the motor;
A first fitting member provided at both ends of the motor cover and having an engaging claw;
The engaging portion has a guide groove provided in the motor housing portion and slidable so that the motor cover and the motor housing portion approach and separate from each other with the first fitting member fitted. A second fitting member having an engaging portion that engages with
It said projecting portion of the motor cover fitted to the mounting screw hole of the motor, in this state,
By inserting the first fitting member into the guide groove of the second fitting member and sliding it in the approaching direction along the opening / closing cover side plate of the motor housing portion, the motor housing portion and the A motor fixing structure for a portable printer , wherein the motor is sandwiched by a motor cover and the engaging claw is engaged with the engaging portion.
前記モータカバー及び前記モータ収納部は、前記モータの周面形状に対応した形状を有していることを特徴とする請求項1の携帯用プリンタのモータの固定構造。2. The motor fixing structure for a portable printer according to claim 1, wherein the motor cover and the motor housing portion have a shape corresponding to a shape of a peripheral surface of the motor. 前記モータの側面を固定する側面固定部材を設けたことを特徴とする請求項1または2の携帯用プリンタのモータの固定構造。 3. A motor fixing structure for a portable printer according to claim 1, further comprising a side fixing member for fixing a side surface of the motor.
JP2000031563A 2000-02-09 2000-02-09 Motor fixing structure Expired - Lifetime JP4521915B2 (en)

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JP4734969B2 (en) 2005-03-04 2011-07-27 船井電機株式会社 Laser beam printer
JP2009011113A (en) * 2007-06-29 2009-01-15 Icom Inc Cylindrical part fixing structure
JP5424035B2 (en) * 2009-11-02 2014-02-26 富士ゼロックス株式会社 Fixing structure of rotational force generator and image forming apparatus
JP5823743B2 (en) * 2011-06-22 2015-11-25 富士通コンポーネント株式会社 Thermal printer
JP6685830B2 (en) * 2016-05-16 2020-04-22 セイコーインスツル株式会社 Thermal printer and portable terminal

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02135798A (en) * 1988-11-16 1990-05-24 Oki Electric Ind Co Ltd Method of attaching small component to apparatus
JPH0327746A (en) * 1989-06-23 1991-02-06 Hitachi Ltd Structure for motor mounting
JPH0527546U (en) * 1991-09-19 1993-04-09 三菱重工業株式会社 Air conditioner wind direction changing device

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02135798A (en) * 1988-11-16 1990-05-24 Oki Electric Ind Co Ltd Method of attaching small component to apparatus
JPH0327746A (en) * 1989-06-23 1991-02-06 Hitachi Ltd Structure for motor mounting
JPH0527546U (en) * 1991-09-19 1993-04-09 三菱重工業株式会社 Air conditioner wind direction changing device

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