TWM432129U - Permanent magnet type energy-saving contactor - Google Patents

Permanent magnet type energy-saving contactor Download PDF

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Publication number
TWM432129U
TWM432129U TW101203677U TW101203677U TWM432129U TW M432129 U TWM432129 U TW M432129U TW 101203677 U TW101203677 U TW 101203677U TW 101203677 U TW101203677 U TW 101203677U TW M432129 U TWM432129 U TW M432129U
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TW
Taiwan
Prior art keywords
coil
contact
permanent magnet
assembly
core
Prior art date
Application number
TW101203677U
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Chinese (zh)
Inventor
Hong-You Shen
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Shihlin Electric & Amp Engineering 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.)
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Publication date
Application filed by Shihlin Electric & Amp Engineering Corp filed Critical Shihlin Electric & Amp Engineering Corp
Priority to TW101203677U priority Critical patent/TWM432129U/en
Publication of TWM432129U publication Critical patent/TWM432129U/en

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Description

M432129 五、新型說明: 【新型所屬之技術領域】 本創作係-種永磁式節能接觸器,尤指一種涉及電磁 ^之接觸器,使接觸器體積減小,重量減輕,也降低消 耗功率。 【先前技術】 接前許多工薇設備電源都是以接觸器(—〇 斷控制膽,接觸器是指卫業電中利用線圈流 !=:場’使接點閉合,以達到控制負載的電器。 線圈又)觸器由電磁系'统(鐵心,靜鐵心,電磁 (常開接點和常閉接點)所組成。其原理 的電磁線圈通電後’會產生报強的磁場,使靜 斷η.〜磁吸力吸引銜鐵’並帶動接點動作:常閉接點 ::’丄:開捿點閉合’兩者是聯動的。當線圈斷開時,電 m失’銜鐵在跳脫彈簧的仙下釋放,使接點復原: *閉接點閉合;常開接點斷開。 5|描二而,依現有的接觸器結構,大安培數直流控制接觸 大都為圓柱型或雙鐵心,不但體積大、重量重而且 :的:ί的消耗功率才能驅動鐵心。另有利用電子迴路控 你:控制接觸器,其體積雖較小,但電子零件的可靠 度喊驗較耗時,成本也較高。 【新型内容】 本創作主要是提供一種永磁式節能接觸器結構,使相 ^文培數的接觸器體積減小,重量減輕,在使用上也降低 3 M432129 消耗I:率’達到節能的目的。 為達上述之目的,本創作一種永磁式節能接觸器, =、、:鐵心部級件及一接點組件所組成,其特徵在於:該 =#組件的線圈㈣—電阻,且該電阻再與該接點組件 亚聯。 其中’該接點组件係常閉接點組件。 其中’自該鐵心部組件的線圈通電激磁瞬間,該線圈 僅與該接’件串聯,產生較大的起磁力並帶動鐵心部組 ,上的跳脫連桿;當該鐵心部組件上的跳脫連桿將該接點 ,、且件切換至斷開開狀態,此時線圈與電阻串聯,降低接觸 器常時吸合時的消耗功率。 — 本創作之優點就是將永磁式節能鐵心線圈串聯一個電 阻,電阻再與常閉接點組件並聯,當線圈通電激磁瞬間線 圈僅與常閉接點組件串聯,產生較大的起磁力並帶動跳脫 連桿,將常閉接點組件切換至斷開開狀態,此時線圈與電 阻串聯’降低常時消耗功率,達到節能的目的。結構上只 需要單一鐵心’應用在在大安培數直流控制接觸器結構 上,使相同安培數的接觸器體積減小,重量減輕。 【實施方式】 兹有關本新型之詳細内容及技術說明,現以實施例來 作進一步說明,但應瞭解的是,該等實施例僅為例示說明 之用,而不應被解釋為本新型實施之限制。 請參閱圖-與圖二,係為本創作永磁式節能接觸器之 立體圖及立體分解圖。本創作一種永磁式節能接觸器,主要 包括一鐵心部組件20及一接點組件3〇所組成,實施上該 M432129 鐵心部組件20包含一鐵心23,及位於鐵心23兩端的鐵心 固定板21及22,其中位於上方的鐵心固定板21之上方設 有一跳脫連桿10,該跳脫連桿.10可以控制到其下方的該 接點組件30,而位於下方的鐵心固定板22表面設有一隔 磁板221。 該鐵心23穿設於一繞線座24,該繞線座24上繞有線 圈241,且該繞線座24兩側各設有對應的二磁鐵25及26, 該二磁鐵25及26係透過固定於該繞線座24上的磁鐵固定 板251及261相對應固定,且二軛鐵252及262包覆前述 元件’用以支撐與保護内部構件,避免受到外力衝擊而受 損,同時也是磁路的一部份’以使磁通獲得一完全閉合的 迴路。本創作的特徵在於該鐵心部組件20之燒線座24上 的線圈241串聯一電阻31 ’且該電阻31再與該接點組件 30並聯(其電路接法及電路圖如圖三及圖四所示),實施上 該接點組件30係常閉(NC,Normal Close)接點組件,正常 狀態時接點兩端閉合互通’當按鈕壓下時接點兩端分開不 通,按鈕放開時又回復原來正常狀態。 依圖二及圖四的電路接法,直流電由接點A1到接點 A2,當該鐵心部組件20的線圈241通電激磁瞬間,該線 圈241僅與該接點組件3〇串聯,產生較大的起磁力並帶動 鐵心部組件20上的跳脫連桿10(如圖四的迴路一 ι〇〇);當 該鐵心部組件20上的跳脫連桿1〇將該接點組件3〇切換^ 斷開狀態,此時線圈241與電阻31串聯(如圖四的路二 200),降低接觸器常時吸合時的消耗功率。 一 該跳脫連桿10的動作如圖五至圖七所示。圖五為 241未通電時該跳脫連桿1〇的初始位置;圖六係線圈\“ 5 M432129 通電(迴路一 100),該跳脫連桿10被該鐵心部組件20的鐵 心23帶動往下移動,一直到碰觸到該接點組件(NC接點組 件)30的瞬間,此階段係利用低電阻大電流,高起磁力將該 跳脫連桿10往下帶動。圖七係該跳脫連桿10被該鐵心部 組件20的鐵心23帶動往下移動,一直到整個吸合為止, 此時該接點組件(NC接點組件)30瞬間打開變為斷開(NO) 狀態,此時線圈241通電走迴路二200,整個迴路為大電 阻低電流,可降低消耗功率,達到節能的目的。 本創作之優點就是將永磁式節能鐵心線圈串聯一個電 阻31,電阻31再與常閉的接點組件30並聯,當線圈241 通電激磁瞬間線圈241僅與常閉的接點組件30串聯,產生 較大的起磁力並帶動跳脫連桿10,將常閉的接點組件30 切換至斷開狀態,此時線圈241與電阻31串聯,降低常時 消耗功率,達到節能的目的。結構上只需要單一鐵心23, 應用在大安培數直流控制接觸器結構上,使相同安培數的 接觸器體積減小,重量減輕。 惟以上所述者,僅為本新型之較佳實施例而已,當不 能以此限定本新型實施之範圍,即大凡依本新型申請專利 範圍及新型說明内容所作之簡單的等效變化與修飾,皆仍 屬本新型專利涵蓋之範圍内。 【圖式簡單說明】 圖一為本創作永磁式節能接觸器之立體圖。 圖二為本創作永磁式節能接觸器之立體分解圖。 圖三為本創作永磁式節能接觸器之電路示意圖。 圖四為本創作永磁式節能接觸器之電路圖。 M432129 圖五為本創作永磁式節能接觸器之作動示意圖一。 圖六為本創作永磁式節能接觸器之作動示意圖二。 圖七為本創作永磁式節能接觸器之作動示意圖三。 【主要元件符號說明】 迴路一 100 迴路二200 隔磁板221 繞線座24 磁鐵25、26 軛鐵 252、262 電阻31 跳脫連桿10 鐵心部組件20 鐵心固定板21、22 鐵心23 線圈241 磁鐵固定板251、261 接點組件30M432129 V. New description: [New technical field] This series is a type of permanent magnet energy-saving contactor, especially a contactor involving electromagnetic, which reduces the volume of the contactor, reduces the weight, and reduces the power consumption. [Prior Art] Before the pick-up, many Weiwei equipment power supplies are all contactors (---------------------------------------------------------------------------------------------------------------------------------------- The coil and the contactor are composed of the electromagnetic system (iron core, static iron core, electromagnetic (normally open contact and normally closed contact). The electromagnetic coil of the principle is energized and will generate a strong magnetic field to make the static η.~Magnetic attraction attracts the armature' and drives the contact action: normally closed contact:: '丄: opening point closed' is a linkage. When the coil is disconnected, the electric m loses 'the armature is in the spring Release under the celestial, restore the contact: * Closed contact closed; normally open contact broken. 5 | According to the existing contactor structure, the large amperage DC control contact is mostly cylindrical or double core, not only Large size, heavy weight and: ί power consumption can drive the core. Another use of electronic loop control you: control contactor, its volume is small, but the reliability of electronic parts is more time-consuming and cost-effective High. [New content] This creation mainly provides a kind of eternal The structure of the energy-saving contactor makes the volume of the contactor of the phase-receiving number smaller, the weight is reduced, and the use is also reduced. 3 M432129 consumption I: rate 'to achieve energy saving purpose. To achieve the above purpose, the present invention creates a permanent magnet Energy-saving contactor, =,,: core part and a contact component, characterized in that: the coil of the = # component (four) - the resistor, and the resistor is sub-joined with the contact component. The contact component is a normally closed contact assembly. Wherein the moment from the energization of the coil of the core assembly, the coil is only connected in series with the connection, generating a large magnetism and driving the core group, and jumping on the core a rod; when the tripping link on the core assembly switches the contact, and the member is switched to the open state, the coil is connected in series with the resistor to reduce the power consumption of the contactor when it is constantly pulled in. The advantage is that the permanent magnet type energy-saving iron core coil is connected in series with a resistor, and the resistance is connected in parallel with the normally closed contact assembly. When the coil is energized, the coil is only connected in series with the normally closed contact assembly, which generates a large magnetism and drives the jump-off link. , The normally closed contact assembly is switched to the open state. At this time, the coil and the resistor are connected in series to reduce the power consumption in the normal time to achieve the purpose of energy saving. The structure only needs a single core 'applied to the large amperage DC control contactor structure, so that The contactor of the same amperage is reduced in volume and weight is reduced. [Embodiment] The detailed description and technical description of the present invention will be further described by way of examples, but it should be understood that the embodiments are merely illustrative. The description should not be construed as a limitation of the new implementation. Please refer to Fig. 2 and Fig. 2 for the perspective view and perspective exploded view of the permanent magnet energy-saving contactor. The main assembly includes a core assembly 20 and a contact assembly 3, and the M432129 core assembly 20 includes a core 23 and core fixing plates 21 and 22 at both ends of the core 23, wherein the upper core is fixed. Above the board 21 is provided a tripping link 10, which can control the contact assembly 30 below it, and the lower core fixing plate 22 is located below. Spacer 221 is provided with a magnetic plate. The core 23 is disposed on a winding seat 24, and the winding seat 24 is wound with a coil 241, and the two windings 24 are respectively provided with corresponding two magnets 25 and 26, and the two magnets 25 and 26 are transmitted through The magnet fixing plates 251 and 261 fixed to the winding seat 24 are correspondingly fixed, and the yoke irons 252 and 262 are coated with the aforementioned components to support and protect the internal components from being damaged by an external force, and are also magnetic. Part of the road 'to make the flux obtain a completely closed loop. The present invention is characterized in that the coil 241 on the wire holder 24 of the core assembly 20 is connected in series with a resistor 31' and the resistor 31 is connected in parallel with the contact assembly 30 (the circuit connection and circuit diagram are shown in FIG. 3 and FIG. In the implementation, the contact assembly 30 is a normally closed (NC, Normal Close) contact assembly. When the contact is closed, the two ends of the contact are closed. When the button is pressed, the two ends of the contact are separated, and when the button is released, the button is released. Revert to the original normal state. According to the circuit connection of FIG. 2 and FIG. 4, the direct current is from the contact point A1 to the contact point A2. When the coil 241 of the core assembly 20 is energized, the coil 241 is only connected in series with the contact assembly 3〇, resulting in a larger The magnetic force acts to drive the tripping link 10 on the core assembly 20 (as shown in FIG. 4); when the tripping link 1 on the core assembly 20 switches the contact assembly 3〇 ^ Disconnected state, at this time, the coil 241 is connected in series with the resistor 31 (see the second circuit 200 of FIG. 4), which reduces the power consumption when the contactor is constantly sucked. The action of the trip link 10 is shown in Figures 5-7. Figure 5 is the initial position of the tripping link 1 241 when the 241 is not energized; Figure 6 is the coil \" 5 M432129 is energized (loop one 100), the tripping link 10 is driven by the core 23 of the core assembly 20 Move down until the moment when the contact component (NC contact component) 30 is touched. At this stage, the tripping link 10 is driven downward by using a low resistance and a large current, and a high magnetic force. The disconnecting link 10 is driven downward by the iron core 23 of the core assembly 20 until the entire suction is completed. At this time, the contact assembly (NC contact assembly) 30 is momentarily turned into a disconnected (NO) state. When the coil 241 is energized to take the circuit 2, the whole circuit is a large resistance and low current, which can reduce the power consumption and achieve the purpose of energy saving. The advantage of the creation is that the permanent magnet type energy-saving iron core coil is connected in series with a resistor 31, and the resistor 31 is normally closed. The contact assemblies 30 are connected in parallel. When the coil 241 is energized, the coil 241 is only connected in series with the normally closed contact assembly 30, which generates a large magnetism and drives the tripping link 10 to switch the normally closed contact assembly 30 to In the off state, the coil 241 is connected in series with the resistor 31. The power consumption is low and the energy is saved. The structure only needs a single core 23, which is applied to the large amperage DC control contactor structure, so that the contactor of the same amperage is reduced in volume and weight is reduced. It is only the preferred embodiment of the present invention, and the scope of the present invention cannot be limited thereto, that is, the simple equivalent change and modification made by the novel patent application scope and the novel description content are still the novel patents. The scope of the coverage. [Simple diagram of the diagram] Figure 1 is a perspective view of the permanent magnet energy-saving contactor. Figure 2 is an exploded perspective view of the permanent magnet energy-saving contactor. Schematic diagram of the circuit of the contactor. Figure 4 is a circuit diagram of the permanent magnet energy-saving contactor. M432129 Figure 5 is a schematic diagram of the operation of the permanent magnet energy-saving contactor. Figure 6 is the action of the permanent magnet energy-saving contactor. Figure 2. Figure 7 is a schematic diagram of the operation of the permanent magnet energy-saving contactor. [Main component symbol description] Circuit-100 circuit two 200 Magnetic isolation plate 221 Winding seat 24 Magnet 25, 26 Yoke 252, 262 Resistance 31 Tripping link 10 Core assembly 20 Core fixing plate 21, 22 Core 23 Coil 241 Magnet fixing plate 251, 261 Contact assembly 30

Claims (1)

M432129 六、申請專利範圍: 1. 一種永磁式節能接觸器,係包括一鐵心部組件及一接點 組件所組成,其特徵在於: 該鐵心部組件的線圈串聯一電阻,且該電阻再與該接點 組件並聯。 2. 如申請專利範圍第1項所述之永磁式節能接觸器,其中, 該接點組件係常閉接點組件。 3. 如申請專利範圍第1項所述之永磁式節能接觸器,其中, 當該鐵心部組件的線圈通電激磁瞬間,該線圈僅與該接 點組件串聯,產生較大的起磁力並帶動鐵心部組件上的 跳脫連桿。 4. 如申請專利範圍第3項所述之永磁式節能接觸器,其中, 當該鐵心部組件上的跳脫連桿將該接點組件切換至斷開 狀態,此時線圈與電阻串聯,降低接觸器常時吸合時的 消耗功率。M432129 VI. Patent Application Range: 1. A permanent magnet energy-saving contactor comprising a core assembly and a contact assembly, characterized in that: the coil of the core assembly is connected in series with a resistor, and the resistor is further The contact assemblies are connected in parallel. 2. The permanent magnet type energy-saving contactor according to claim 1, wherein the contact component is a normally closed contact assembly. 3. The permanent magnet type energy-saving contactor according to claim 1, wherein when the coil of the core assembly is energized, the coil is only connected in series with the contact assembly, generating a large magnetism and driving The tripping link on the core assembly. 4. The permanent magnet type energy-saving contactor according to claim 3, wherein when the tripping link on the core assembly switches the contact assembly to an open state, the coil is connected in series with the resistor. Reduce the power consumption of the contactor when it is always pulled.
TW101203677U 2012-03-02 2012-03-02 Permanent magnet type energy-saving contactor TWM432129U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108132410A (en) * 2017-12-27 2018-06-08 国网浙江省电力公司湖州供电公司 A kind of current leakage detection system and its method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108132410A (en) * 2017-12-27 2018-06-08 国网浙江省电力公司湖州供电公司 A kind of current leakage detection system and its method
CN108132410B (en) * 2017-12-27 2020-05-22 国网浙江省电力公司湖州供电公司 Electric leakage detection system and method thereof

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