JPH0231699Y2 - - Google Patents

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Publication number
JPH0231699Y2
JPH0231699Y2 JP1982096651U JP9665182U JPH0231699Y2 JP H0231699 Y2 JPH0231699 Y2 JP H0231699Y2 JP 1982096651 U JP1982096651 U JP 1982096651U JP 9665182 U JP9665182 U JP 9665182U JP H0231699 Y2 JPH0231699 Y2 JP H0231699Y2
Authority
JP
Japan
Prior art keywords
reinforcing plate
mounting member
contacts
contact
switch mounting
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
Application number
JP1982096651U
Other languages
Japanese (ja)
Other versions
JPS592034U (en
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
Application filed filed Critical
Priority to JP9665182U priority Critical patent/JPS592034U/en
Publication of JPS592034U publication Critical patent/JPS592034U/en
Application granted granted Critical
Publication of JPH0231699Y2 publication Critical patent/JPH0231699Y2/ja
Granted legal-status Critical Current

Links

Description

【考案の詳細な説明】 [産業上の利用分野] 本考案は防塵性、防水性に優れた密封型スイツ
チに関する。
[Detailed Description of the Invention] [Industrial Application Field] The present invention relates to a sealed switch with excellent dustproof and waterproof properties.

[従来の技術] 従来、車両のドア開閉時に車内燈や警告燈を点
滅するドアスイツチには、埃や雨水を被る場所に
取り付けられるものであることから、スプリング
式のリミツトスイツチをゴム製カバーで覆つた構
造のものが多く使われている。例えば、第4図に
示すように、ドアその他の物体によつて矢符A方
向に動かされ、可動接点43を押圧して可動接点
43と固定接点44との開閉を行なう接触子41
がゴム製カバー42に設けられた孔から突出した
ものがある。
[Prior art] Conventionally, door switches that flash interior lights and warning lights when a vehicle door is opened and closed have a spring-type limit switch covered with a rubber cover because it is installed in a location that is exposed to dust and rainwater. Structures are often used. For example, as shown in FIG. 4, a contact 41 is moved in the direction of arrow A by a door or other object and presses the movable contact 43 to open and close the movable contact 43 and the fixed contact 44.
There is one that protrudes from a hole provided in the rubber cover 42.

また、第5図に示すように、端子53,53′
それぞれに連結された二つの円錐状の固定接触子
52,52′を備えた円形の絶縁基板51が、内
部上面に切頭円錘状の可動接触子54が設けら
れ、かつ、プツシユボタンヘツド部55aを備え
た中空の弾性部材55で覆われており、前記プツ
シユボタンヘツド部55aを押圧することにより
中空部内の可動接触子54が押下されて固定接触
子52,52′と可動接触子54との接触部分を
払拭して固定接触子52,52′間の接続を行な
うプツシユボタンスイツチがある(米国特許第
3054879号明細書参照)。
Further, as shown in FIG. 5, terminals 53, 53'
A circular insulating substrate 51 is provided with two fixed conical contacts 52 and 52' connected to each other, and a movable contact 54 in the shape of a truncated cone is provided on the inner upper surface, and a push button head is provided. It is covered with a hollow elastic member 55 having a portion 55a, and by pressing the push button head portion 55a, the movable contact 54 in the hollow portion is pressed down, and the fixed contacts 52, 52' and the movable contact are pressed. There is a push button switch that connects fixed contacts 52 and 52' by wiping the contact portion with 54 (US Patent No.
3054879).

[考案が解決しようとする課題] しかしながら、上述した従来の技術には次に示
すような欠点がある。
[Problems to be Solved by the Invention] However, the above-mentioned conventional technology has the following drawbacks.

まず、スプリング式のリミツトスイツチをゴム
製カバーで覆つた構造のものの場合、固定接点と
可動接点との開閉を行なう接触子がゴム製カバー
に設けられた孔から突出しているので、その孔か
ら埃や雨水等の異物が侵入してそれらが各接点に
付着し接点の劣化の原因となる。
First, in the case of a spring-type limit switch that is covered with a rubber cover, the contact that opens and closes the fixed and movable contacts protrudes from a hole in the rubber cover. Foreign matter such as rainwater enters and adheres to each contact, causing deterioration of the contacts.

次に、前記米国特許第3054879号明細書に記載
された発明は、固定接触子に可動接触子が接触し
た際、各接触子が円錐状であるため接触状態が点
接触あるいは線接触となり、接触面積が非常に小
さいものとなる。そのため、単位面積当りを流れ
る電流が増大すると、接触部分で放電が起つて接
触子の表面がはだ荒れ状態となり、固定接触子お
よび可動接触子の導電性を損なう原因となる。ま
た、プツシユボタンヘツド部に対して可動接触子
が傾くような方向から押圧力が加えられた場合、
可動接触子が一方の固定接触子には接触するが他
方の固定接触子には接触しないという状態が起こ
り、常に良好なスイツチ動作を行なえない。
Next, in the invention described in the specification of U.S. Pat. No. 3,054,879, when a movable contact contacts a fixed contact, the contact state becomes point contact or line contact because each contact is conical. The area will be very small. Therefore, when the current flowing per unit area increases, discharge occurs at the contact portion, and the surface of the contact becomes rough, which causes loss of conductivity of the fixed contact and the movable contact. Also, if a pressing force is applied from a direction that causes the movable contact to tilt with respect to the push button head,
A situation occurs in which the movable contact contacts one fixed contact but does not contact the other fixed contact, and a good switching operation cannot always be performed.

本考案は上述した従来の技術の有する欠点に鑑
みてなされたもので、スイツチ接触部の密封性を
確保し、さらに、スイツチ接触部の接触箇所を多
くして接触面積を大きくし、常に確実なスイツチ
動作を可能とする密封型リミツトスイツチを提供
することを目的とする。
The present invention was developed in view of the above-mentioned drawbacks of the conventional technology, and it ensures the sealing of the switch contact area, and also increases the contact area by increasing the number of contact points of the switch contact area, thereby ensuring constant reliability. An object of the present invention is to provide a sealed limit switch that enables switch operation.

[課題を解決するため手段] 本考案の密封型リミツトスイツチは、一側面
に、それぞれ櫛状の導電路で形成された二つの接
点が互いに対向して入り込んだ状態で配置された
絶縁基板が、絶縁補強板上に導電路を上面にして
固着され、該絶縁補強板を貫通して前記接点それ
ぞれにリード線が接続されており、 さらに、胴部が薄肉に形成されて頂部が閉塞さ
れた中空部の頂部内面に円板状の導電性弾性片が
取付けられ、前記胴部の開口部外周壁に、スイツ
チ取付け部材に穿設された開口部の周縁が嵌合す
るスイツチ取付け部材用凹溝が周設されており、
また、前記胴部の内周壁には、スイツチ取付け部
材用凹溝よりも頂部側に、前記絶縁補強板の周縁
が嵌合する補強板用凹溝が周設された弾性筒状体
を備え、 前記絶縁補強板が、前記絶縁基板を頂部側にし
て、前記補強板用凹溝に嵌合されたものである。
[Means for Solving the Problems] The sealed limit switch of the present invention has an insulating substrate disposed on one side with two contacts each formed of a comb-shaped conductive path facing each other. The conductive path is fixed on the reinforcing plate with the conductive path facing upward, and a lead wire is connected to each of the contacts through the insulating reinforcing plate, and further, a hollow portion having a thin body and a closed top. A disc-shaped conductive elastic piece is attached to the inner surface of the top of the body, and a concave groove for the switch mounting member is provided on the outer peripheral wall of the opening of the body, into which the periphery of the opening bored in the switch mounting member fits. has been established,
Further, the inner circumferential wall of the body portion includes an elastic cylindrical body having a reinforcing plate groove disposed around the top side of the switch mounting member groove into which the peripheral edge of the insulation reinforcing plate fits, The insulating reinforcing plate is fitted into the reinforcing plate groove with the insulating substrate facing the top side.

[作用] 弾性筒状体の胴部の開口部外周壁に形成された
スイツチ取付け部材用凹溝に、スイツチ取付け部
材に穿設された開口部の周縁が嵌合されるので、
前記弾性筒状体はスイツチ取付け部材の外側で開
口を有さないものとなり、さらに、前記胴部の内
周壁の、前記スイツチ取付け部材用凹溝よりも弾
性筒状体の頂部側に形成された補強板用凹溝に、
絶縁補強板が、櫛状の二つの接点が互いに対向し
て入り込んだ状態で配置された絶縁基板を、前記
弾性筒状体の頂部側にして嵌合されるので、弾性
筒状体の中空部の開口部が閉鎖されて該中空部が
密封状態となる。また、弾性筒状体の中空部の上
面には円板状の導電性弾性片が取付けられている
ので、密封状態となつた弾性筒状体の中空部内
に、櫛状の二つの接点とそれらの接続の接、断を
行なう導電性弾性片とが収容されることになる。
さらに、二つの接点が櫛状で入り込んだ状態で配
置され、それらの接触子となる導電性弾性片が円
板状であるため、接点と導電性弾性片との接触箇
所が多くなりスイツチが接続状態にあるとき、導
電性弾性片と各接点との接触面積が大きなものと
なる。
[Function] The peripheral edge of the opening formed in the switch mounting member is fitted into the groove for the switch mounting member formed on the outer peripheral wall of the opening in the body of the elastic cylindrical body.
The elastic cylindrical body has no opening on the outside of the switch mounting member, and furthermore, the elastic cylindrical body has no opening on the outside of the switch mounting member, and is further formed on the inner circumferential wall of the body portion closer to the top of the elastic cylindrical body than the groove for the switch mounting member. In the groove for the reinforcing plate,
The insulating reinforcing plate is fitted into the elastic cylindrical body with the insulating substrate, which is disposed with two comb-shaped contacts facing each other and inserted therein, on the top side of the elastic cylindrical body, so that the insulating reinforcing plate is fitted into the hollow part of the elastic cylindrical body. The opening is closed and the hollow is in a sealed state. In addition, since a disc-shaped conductive elastic piece is attached to the upper surface of the hollow part of the elastic cylindrical body, two comb-shaped contacts and their A conductive elastic piece for connecting and disconnecting is housed therein.
Furthermore, since the two contacts are arranged in a comb-like manner and the conductive elastic pieces that serve as the contacts are disk-shaped, there are many contact points between the contacts and the conductive elastic pieces, and the switch is connected. In this state, the contact area between the conductive elastic piece and each contact becomes large.

[実施例] 以下に、本考案の一実施例を図面に基づいて説
明する。
[Example] An example of the present invention will be described below based on the drawings.

第1図は本実施例に係るリミツトスイツチの縦
断面図で、プラスチツクその他の絶縁性材料から
なる円盤状の補強板8の上面には絶縁性材料から
なる基板1が接着されている。
FIG. 1 is a longitudinal sectional view of the limit switch according to this embodiment, in which a substrate 1 made of an insulating material is adhered to the upper surface of a disk-shaped reinforcing plate 8 made of plastic or other insulating material.

この基板1の表面には、第2図に示すように、
櫛状の二つの接点4,5がそれぞれエツチング処
理によつて互いに対向して入り込んだ状態に形成
されており、さらに、接点4,5それぞれには金
属片からなる電極2,3が挿入固定されている。
また、電極2,3にはそれぞれ補強板8に穿設さ
れている孔9,9′を通してリード線6,7が接
続されている。
On the surface of this substrate 1, as shown in FIG.
Two comb-shaped contacts 4 and 5 are formed by etching so as to face each other, and electrodes 2 and 3 made of metal pieces are inserted and fixed into the contacts 4 and 5, respectively. ing.
Further, lead wires 6 and 7 are connected to the electrodes 2 and 3 through holes 9 and 9' formed in the reinforcing plate 8, respectively.

上記のように構成された基板1が固着されてい
る補強板8は、ゴム等の可撓性弾性部材から形成
されて一端側が開口した中空部を有するキヤツプ
状態をしたカバー11に収納されている。
The reinforcing plate 8 to which the substrate 1 configured as described above is fixed is housed in a cap-like cover 11 made of a flexible elastic member such as rubber and having a hollow portion with one end open. .

このカバー11の頂部12は厚肉に、胴部13
は幾分薄肉に形成されており、中空部の上面には
導電性ゴムから成る円板状の導電性弾性片20が
埋設されている。また、カバー11の開口部近傍
の外周壁には、スイツチ取付け部材23に穿設さ
れた開口部の周縁が嵌合するスイツチ取付け部材
用凹溝15が周設されており、さらに、カバー1
1の内周壁には、前記スイツチ取付け部材用凹溝
15よりも頂部側に、前記補強板8の周縁が嵌合
する補強板用凹溝14が周設されている。
The top 12 of this cover 11 is thick, and the body 13 is thick.
is formed to be somewhat thin, and a disk-shaped conductive elastic piece 20 made of conductive rubber is embedded in the upper surface of the hollow portion. Further, the outer peripheral wall near the opening of the cover 11 is provided with a groove 15 for the switch mounting member into which the periphery of the opening formed in the switch mounting member 23 fits.
A reinforcing plate groove 14 into which the peripheral edge of the reinforcing plate 8 fits is provided around the inner circumferential wall of the reinforcing plate 1 on the top side of the switch mounting member groove 15.

次に、本実施例の取付け方法と動作について説
明する。
Next, the mounting method and operation of this embodiment will be explained.

まず、カバー11の中空部内に、リード線6,
7側を外側にして補強板8を挿入し、該補強板8
をカバー11の補強板用凹溝14に嵌合する。
First, the lead wire 6,
Insert the reinforcing plate 8 with the side 7 facing outward, and insert the reinforcing plate 8
is fitted into the reinforcing plate groove 14 of the cover 11.

次いで、スイツチ取付け部材23の開口部にリ
ード線6,7を通した後、カバー11の外周に設
けられているスイツチ取付け部材用凹溝15とス
イツチ取付け部材23の開口部周縁とを嵌合す
る。この場合、スイツチ取付け部材23とカバー
11との接触面を接着剤で接着しておくとよい。
Next, after passing the lead wires 6 and 7 through the opening of the switch mounting member 23, the groove 15 for the switch mounting member provided on the outer periphery of the cover 11 is fitted to the periphery of the opening of the switch mounting member 23. . In this case, it is preferable to bond the contact surfaces of the switch mounting member 23 and the cover 11 with adhesive.

このように、スイツチ取付け部材23をカバー
11のスイツチ取付け部材用凹溝15に嵌合する
ことにより、カバー11の中空部は開口部を有さ
ない密封状態となり、接点4,5を備えた基板1
はその中空部内に収納されたことになる。
In this way, by fitting the switch mounting member 23 into the switch mounting member groove 15 of the cover 11, the hollow part of the cover 11 becomes a sealed state with no opening, and the board with the contacts 4 and 5 is closed. 1
is housed within the hollow part.

このようにしてスイツチ取付け部材23に取付
けられた密封型リミツトスイツチが、第3図にお
いて矢印方向から押圧力を受けると、カバー11
の薄肉に形成されている胴部13が歪み、カバー
11内に埋設されている導電性弾性片20が基板
1の上面と面接触し、その結果、二つの接点4,
5が導電性弾性片20を介して接続される。この
接点4,5は櫛状で入り込んだ状態で配置されて
いるため、導電性弾性片20との接触箇所が多く
なつてそれらの接触面積が大きくなる。また、導
電性弾性片20は弾性変形可能であるので、導電
性弾性片20が傾くような方向から押圧力が加え
られた場合でも、接点4,5は支障なく接続され
る。そして、外方からの押圧力が除去されると、
カバー11は弾発力によつて元の形状に復帰し、
接点4,5の接続は断たれることになる。
When the sealed limit switch mounted on the switch mounting member 23 in this manner receives a pressing force from the direction of the arrow in FIG.
The thin body portion 13 is distorted, and the conductive elastic piece 20 buried in the cover 11 comes into surface contact with the upper surface of the substrate 1, and as a result, the two contacts 4,
5 are connected via a conductive elastic piece 20. Since the contacts 4 and 5 are disposed in a comb-like manner, the number of contact points with the conductive elastic piece 20 increases, and the contact area thereof increases. Moreover, since the conductive elastic piece 20 is elastically deformable, even if a pressing force is applied from a direction that causes the conductive elastic piece 20 to tilt, the contacts 4 and 5 can be connected without any problem. Then, when the pressing force from the outside is removed,
The cover 11 returns to its original shape due to the elastic force,
The connection between contacts 4 and 5 will be broken.

[考案の効果] 以上説明したように本考案は、接触子である導
電性弾性片を弾性筒状体内に設けて、スイツチ接
点を備えた絶縁基板が固着された絶縁補強板を弾
性筒状体の開口部に嵌合し、さらに、該開口部に
おいてスイツチ取付け部材の周縁を嵌合するとい
う簡単な構造で、スイツチ取付け部材の外側でス
イツチ本体に開口部を有しない完全な密封性を得
ることができるとともに、前記絶縁補強板は補強
用凹溝に嵌合しているので、前記開口部との気密
性も保たれ、その内部にスイツチ接点を収納する
ことができ、埃や雨水等の異物の侵入を完全に防
止できるため、異物によるスイツチ接触部の劣化
あるいは接触不良を防止できる。また、櫛状の導
電路で形成され、互いに対向して入り込んだ状態
で配置された二つの接点を、導電性弾性片で接続
するので、接点と導電性弾性片との接触箇所が多
くなつて接触面積が大きくなり、接点間を大電流
が流れた場合であつても放電が起らず、接点のは
だ荒れを防止できる。さらに、導電性弾性片が傾
くような押圧力を受けた場合でも支障なく二つの
接点を確実に接続でき、常に、精度の高いスイツ
チ動作を行なうことができるという効果がある。
[Effects of the invention] As explained above, the present invention provides a conductive elastic piece serving as a contact inside an elastic cylindrical body, and an insulating reinforcing plate to which an insulating substrate with a switch contact is fixed is attached to the elastic cylindrical body. To obtain complete sealing without having an opening in the switch body outside the switch mounting member with a simple structure of fitting into an opening of the switch mounting member and further fitting the periphery of the switch mounting member in the opening. In addition, since the insulation reinforcing plate is fitted into the reinforcing groove, airtightness with the opening is maintained, and the switch contact can be stored inside, preventing foreign matter such as dust and rainwater. Since the intrusion of foreign matter can be completely prevented, it is possible to prevent deterioration of the switch contact part or poor contact due to foreign matter. In addition, since the two contacts, which are formed by comb-shaped conductive paths and are placed in a state where they face each other, are connected by a conductive elastic piece, there are many contact points between the contacts and the conductive elastic piece. The contact area is increased, and even if a large current flows between the contacts, no discharge occurs, and the contacts can be prevented from becoming rough. Furthermore, even if the conductive elastic piece is subjected to a pressing force that causes it to tilt, the two contacts can be reliably connected without any problem, and the switching operation can always be performed with high precision.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本考案の密封型リミツトスイツチの一
実施例を示す断面図、第2図は基板上の接点の一
例を示す平面図、第3図はは第1図の密封型リミ
ツトスイツチの接続状態を示す断面図、第4図お
よび第5図はそれぞれ従来例を示す断面図であ
る。 1……基板、2,3……電極、4,5……接
点、6,7……リード線、8……補強板、9,
9′……孔、11……カバー、12……頂部、1
3……胴部、14……補強板用凹溝、15……ス
イツチ取付け部材用凹溝、20……導電性弾性
片、23……スイツチ取付け部材。
Fig. 1 is a sectional view showing an embodiment of the sealed limit switch of the present invention, Fig. 2 is a plan view showing an example of the contacts on the board, and Fig. 3 shows the connection state of the sealed limit switch of Fig. 1. The sectional views shown in FIGS. 4 and 5 are sectional views showing conventional examples, respectively. 1... Board, 2, 3... Electrode, 4, 5... Contact, 6, 7... Lead wire, 8... Reinforcement plate, 9,
9'...hole, 11...cover, 12...top, 1
3... Body part, 14... Concave groove for reinforcing plate, 15... Concave groove for switch attachment member, 20... Conductive elastic piece, 23... Switch attachment member.

Claims (1)

【実用新案登録請求の範囲】 一側面に、それぞれ櫛状の導電路で形成された
二つの接点が互いに対向して入り込んだ状態で配
置された絶縁基板が、絶縁補強板上に導電路を上
面にして固着され、該絶縁補強板を貫通して前記
接点それぞれにリード線が接続されており、 さらに、胴部が薄肉に形成されて頂部が閉塞さ
れた中空部の頂部内面に円板状の導電性弾性片が
取付けられ、前記胴部の開口部外周壁に、スイツ
チ取付け部材に穿設された開口部の周縁が嵌合す
るスイツチ取付け部材用凹溝が周設されており、
また、前記胴部の内周壁には、スイツチ取付け部
材用凹溝よりも頂部側に、前記絶縁補強板の周縁
が嵌合する補強板用凹溝が周設された弾性筒状体
を備え、 前記絶縁補強板が、前記絶縁基板を頂部側にし
て、前記補強板用凹溝に嵌合されたことを特徴と
する密封型リミツトスイツチ。
[Claims for Utility Model Registration] An insulating substrate is arranged on one side with two contacts formed by comb-shaped conductive paths facing each other, and the conductive paths are placed on an insulating reinforcing plate on the upper surface. A lead wire is connected to each of the contacts by passing through the insulating reinforcing plate, and a disc-shaped inner surface of the hollow part whose body part is thin and the top part is closed. A conductive elastic piece is attached, and a concave groove for a switch mounting member is provided around the outer circumferential wall of the opening of the body, into which a peripheral edge of an opening bored in the switch mounting member fits;
Further, the inner circumferential wall of the body portion includes an elastic cylindrical body having a reinforcing plate groove disposed around the top side of the switch mounting member groove into which the peripheral edge of the insulation reinforcing plate fits, A sealed limit switch characterized in that the insulating reinforcing plate is fitted into the reinforcing plate groove with the insulating substrate facing the top side.
JP9665182U 1982-06-29 1982-06-29 Sealed limit switch Granted JPS592034U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP9665182U JPS592034U (en) 1982-06-29 1982-06-29 Sealed limit switch

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP9665182U JPS592034U (en) 1982-06-29 1982-06-29 Sealed limit switch

Publications (2)

Publication Number Publication Date
JPS592034U JPS592034U (en) 1984-01-07
JPH0231699Y2 true JPH0231699Y2 (en) 1990-08-28

Family

ID=30230247

Family Applications (1)

Application Number Title Priority Date Filing Date
JP9665182U Granted JPS592034U (en) 1982-06-29 1982-06-29 Sealed limit switch

Country Status (1)

Country Link
JP (1) JPS592034U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10706956B2 (en) 2010-05-25 2020-07-07 The Regents Of The University Of California Bambam: parallel comparative analysis of high-throughput sequencing data
US10726945B2 (en) 2010-05-25 2020-07-28 The Regents Of The University Of California BAMBAM: parallel comparative analysis of high-throughput sequencing data

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3054879A (en) * 1960-01-20 1962-09-18 Indak Mfg Corp Pushbutton switch

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3054879A (en) * 1960-01-20 1962-09-18 Indak Mfg Corp Pushbutton switch

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10706956B2 (en) 2010-05-25 2020-07-07 The Regents Of The University Of California Bambam: parallel comparative analysis of high-throughput sequencing data
US10726945B2 (en) 2010-05-25 2020-07-28 The Regents Of The University Of California BAMBAM: parallel comparative analysis of high-throughput sequencing data
US10825552B2 (en) 2010-05-25 2020-11-03 The Regents Of The University Of California BAMBAM: parallel comparative analysis of high-throughput sequencing data
US10825551B2 (en) 2010-05-25 2020-11-03 The Regents Of The University Of California Bambam: parallel comparative analysis of high-throughput sequencing data
US10878937B2 (en) 2010-05-25 2020-12-29 The Regents Of The University Of California BamBam: parallel comparative analysis of high-throughput sequencing data
US10971248B2 (en) 2010-05-25 2021-04-06 The Regents Of The University Of California BamBam: parallel comparative analysis of high-throughput sequencing data
US10991451B2 (en) 2010-05-25 2021-04-27 The Regents Of The University Of California BamBam: parallel comparative analysis of high-throughput sequencing data
US11133085B2 (en) 2010-05-25 2021-09-28 The Regents Of The University Of California BAMBAM: parallel comparative analysis of high-throughput sequencing data
US11152080B2 (en) 2010-05-25 2021-10-19 The Regents Of The University Of California BAMBAM: parallel comparative analysis of high-throughput sequencing data
US11158397B2 (en) 2010-05-25 2021-10-26 The Regents Of The University Of California Bambam: parallel comparative analysis of high-throughput sequencing data

Also Published As

Publication number Publication date
JPS592034U (en) 1984-01-07

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