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JP5261139B2 - Inverter-integrated electric compressor - Google Patents

Inverter-integrated electric compressor Download PDF

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Publication number
JP5261139B2
JP5261139B2 JP2008285823A JP2008285823A JP5261139B2 JP 5261139 B2 JP5261139 B2 JP 5261139B2 JP 2008285823 A JP2008285823 A JP 2008285823A JP 2008285823 A JP2008285823 A JP 2008285823A JP 5261139 B2 JP5261139 B2 JP 5261139B2
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Japan
Prior art keywords
inverter
integrated electric
motor drive
electric compressor
drive circuit
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Expired - Fee Related
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JP2008285823A
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JP2010112266A (en
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淳 齋藤
誠 渋谷
一三 大里
正 栗原
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Sanden Corp
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Sanden Corp
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Priority to JP2008285823A priority Critical patent/JP5261139B2/en
Priority to US13/128,140 priority patent/US20110211981A1/en
Priority to PCT/JP2009/005924 priority patent/WO2010052924A1/en
Priority to DE112009002666T priority patent/DE112009002666T5/en
Priority to CN2009801438114A priority patent/CN102203419A/en
Publication of JP2010112266A publication Critical patent/JP2010112266A/en
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Publication of JP5261139B2 publication Critical patent/JP5261139B2/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C29/00Component parts, details or accessories of pumps or pumping installations, not provided for in groups F04C18/00 - F04C28/00
    • F04C29/0042Driving elements, brakes, couplings, transmissions specially adapted for pumps
    • F04C29/0085Prime movers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B39/00Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
    • F04B39/12Casings; Cylinders; Cylinder heads; Fluid connections
    • F04B39/121Casings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C23/00Combinations of two or more pumps, each being of rotary-piston or oscillating-piston type, specially adapted for elastic fluids; Pumping installations specially adapted for elastic fluids; Multi-stage pumps specially adapted for elastic fluids
    • F04C23/008Hermetic pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C23/00Combinations of two or more pumps, each being of rotary-piston or oscillating-piston type, specially adapted for elastic fluids; Pumping installations specially adapted for elastic fluids; Multi-stage pumps specially adapted for elastic fluids
    • F04C23/02Pumps characterised by combination with, or adaptation to, specific driving engines or motors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C18/00Rotary-piston pumps specially adapted for elastic fluids
    • F04C18/02Rotary-piston pumps specially adapted for elastic fluids of arcuate-engagement type, i.e. with circular translatory movement of co-operating members, each member having the same number of teeth or tooth-equivalents
    • F04C18/0207Rotary-piston pumps specially adapted for elastic fluids of arcuate-engagement type, i.e. with circular translatory movement of co-operating members, each member having the same number of teeth or tooth-equivalents both members having co-operating elements in spiral form
    • F04C18/0215Rotary-piston pumps specially adapted for elastic fluids of arcuate-engagement type, i.e. with circular translatory movement of co-operating members, each member having the same number of teeth or tooth-equivalents both members having co-operating elements in spiral form where only one member is moving
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C2240/00Components
    • F04C2240/30Casings or housings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C2240/00Components
    • F04C2240/40Electric motor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C2240/00Components
    • F04C2240/40Electric motor
    • F04C2240/403Electric motor with inverter for speed control
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C2240/00Components
    • F04C2240/80Other components
    • F04C2240/803Electric connectors or cables; Fittings therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C2240/00Components
    • F04C2240/80Other components
    • F04C2240/808Electronic circuits (e.g. inverters) installed inside the machine
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C2270/00Control; Monitoring or safety arrangements
    • F04C2270/07Electric current
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C2270/00Control; Monitoring or safety arrangements
    • F04C2270/10Voltage

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Compressor (AREA)
  • Applications Or Details Of Rotary Compressors (AREA)
  • Connections Effected By Soldering, Adhesion, Or Permanent Deformation (AREA)

Description

本発明は、インバータを含むモータ駆動回路が圧縮機内に組み付けられたインバータ一体型電動圧縮機に関し、とくに、IPMのような熱ストレスに弱い電子部品がモータ駆動回路に組み付けられる際の作業性の向上を図ったインバータ一体型電動圧縮機に関する。   The present invention relates to an inverter-integrated electric compressor in which a motor drive circuit including an inverter is assembled in a compressor, and in particular, improvement in workability when an electronic component that is vulnerable to thermal stress such as IPM is assembled in a motor drive circuit. The present invention relates to an inverter-integrated electric compressor.

インバータを含むモータ駆動回路が圧縮機内に組み付けられたインバータ一体型電動圧縮機の構造として、モータ駆動回路が絶縁用樹脂コーティング材によって被覆されるようにし、さらに、モータ駆動回路とリード線と接続端子とが金属壁で囲まれた閉鎖空間内に配設された構造が知られている(例えば、特許文献1)。この圧縮機のモータ駆動回路内には、インバータ機能を有するIPM(Intelligent Power Module)のように熱に弱い電子部品が用いられている。   As a structure of an inverter-integrated electric compressor in which a motor drive circuit including an inverter is assembled in a compressor, the motor drive circuit is covered with an insulating resin coating material, and further, the motor drive circuit, lead wires, and connection terminals There is known a structure in which the two are disposed in a closed space surrounded by metal walls (for example, Patent Document 1). In the motor drive circuit of this compressor, electronic components that are vulnerable to heat, such as an IPM (Intelligent Power Module) having an inverter function, are used.

また、電気回路を構成する部材同士が接合された接合構造体で、接合部が複数の接合箇所を有するものが知られている(例えば、特許文献2)。このような接合構造体においては、接合部に複数の接合箇所が設けられることによって、接合部の接合強度の確保が図られている。
特開2008−202564号公報 特開2004−185953号公報
In addition, there is known a bonded structure in which members constituting an electric circuit are bonded to each other, and a bonded portion having a plurality of bonded portions (for example, Patent Document 2). In such a bonded structure, the bonding strength of the bonded portion is ensured by providing a plurality of bonded portions in the bonded portion.
JP 2008-202564 A JP 2004-185953 A

特許文献1に記載されるようなインバータ一体型電動圧縮機においては、電気的接続箇所にバスバー等の端子を用いることができる。このような場合、端子同士を接続する方法として、ボルトやビス接続による方法や、溶接による方法が考えられるが、部品が実装されるスペースに制約がある場合には、溶接によらざるを得ない場合がある。   In the inverter-integrated electric compressor described in Patent Document 1, a terminal such as a bus bar can be used at an electrical connection location. In such a case, as a method for connecting the terminals, a method using bolt or screw connection or a method using welding is conceivable. However, if there is a restriction on a space where components are mounted, welding must be performed. There is a case.

しかし、インバータ一体型電動圧縮機は一般的な圧縮機に比べて通電される電流が大きいので、圧縮機運転時に、接合部の接触抵抗が比較的高いと、接合部からの発熱が各種機器に悪影響を与えるおそれがある。また、圧縮機が車両空調装置に用いられ、車両用エンジンに取り付けられるような場合には、接合部に、振動や、エンジンルームという厳しい高温環境に耐え得る接合強度や接合信頼性を確保することが必要となる。   However, since the inverter-integrated electric compressor has a larger current flow than a general compressor, if the contact resistance of the joint is relatively high during compressor operation, the heat generated from the joint is transferred to various devices. May cause adverse effects. In addition, when a compressor is used in a vehicle air conditioner and is mounted on a vehicle engine, it is necessary to ensure a bonding strength and a bonding reliability that can withstand a severe high temperature environment such as vibration and an engine room. Is required.

そこで本発明の課題は、上記のような問題点に着目し、電気的接続部の接合強度や接合信頼性に優れたインバータ一体型電動圧縮機を提供することにある。   Accordingly, an object of the present invention is to provide an inverter-integrated electric compressor that is excellent in the bonding strength and bonding reliability of an electrical connection portion, paying attention to the above problems.

上記課題を解決するために、本発明に係るインバータ一体型電動圧縮機は、モータが内蔵され、インバータを含むモータ駆動回路が圧縮機ハウジングで囲まれた収容空間内に設けられた車両空調装置用圧縮機からなるインバータ一体型電動圧縮機において、前記モータ駆動回路内に、バスバー同士を接合することにより電気的に接続されたバスバー接合部が設けられ、該バスバー接合部におけるバスバーの少なくとも一方の先端部が、複数の接合用小片部に分割され、前記バスバーの少なくとも一方がIPM上に設けられ、前記バスバーの少なくとも一方がモータ駆動回路の基板に接続されていることを特徴とするものからなる。 In order to solve the above problems, an inverter-integrated electric compressor according to the present invention is for a vehicle air conditioner in which a motor is incorporated and a motor drive circuit including the inverter is provided in a housing space surrounded by a compressor housing . In the inverter-integrated electric compressor composed of a compressor, a bus bar joint portion electrically connected by joining the bus bars is provided in the motor drive circuit, and at least one end of the bus bar at the bus bar joint portion The portion is divided into a plurality of small pieces for joining , at least one of the bus bars is provided on the IPM, and at least one of the bus bars is connected to the substrate of the motor drive circuit .

本発明のインバータ一体型電動圧縮機においては、バスバー同士が電気的に接続されたバスバー接合部におけるバスバーの少なくとも一方の先端部が、複数の接合用小片部に分割されていることにより、複数個所においてバスバー同士を接合することが可能になるので、接合強度と接合信頼性が確保される。また、接触面積を大きく取ることができるので、接合部における接触抵抗の低減が図られる。さらに、溶接等のように加熱を要する接合方法を採用した場合には、本発明のように溶接箇所を複数箇所に分散させる方が、それら溶接箇所の総溶接面積を1箇所に集中させるよりも、溶接時に印加するエネルギー(電圧×電流×溶接時間など)を小さく抑えることができ、電子部品への熱ストレスを低減することが可能になる。さらに、溶接箇所が分散されて、各溶接面積が細分化することにより、溶接機や溶接時に用いられるクランプ用治具の小型化も可能となるので、圧縮機の生産性の向上も図られる。   In the inverter-integrated electric compressor according to the present invention, at least one end of the bus bar in the bus bar joint portion where the bus bars are electrically connected is divided into a plurality of joining small pieces, thereby providing a plurality of locations. In this case, the bus bars can be joined to each other, so that joining strength and joining reliability are ensured. In addition, since the contact area can be increased, the contact resistance at the joint can be reduced. Furthermore, when a joining method that requires heating, such as welding, is employed, the method of dispersing the welding locations in a plurality of locations as in the present invention is more concentrated than concentrating the total welding area of those welding locations in one location. The energy applied during welding (voltage × current × welding time, etc.) can be kept small, and thermal stress on the electronic component can be reduced. Furthermore, since the welding locations are dispersed and each welding area is subdivided, it is possible to reduce the size of the welding machine and the clamping jig used during welding, so that the productivity of the compressor can be improved.

また、本発明において、前記バスバーの双方の先端部に、複数の接合用小片部を設けることもできる。このように、双方のバスバーの先端部に同様の接合用小片部を設けることにより、バスバー同士の相対的な位置決めが容易となる。また、本発明のインバータ一体型電動圧縮機において、バスバー同士の接合をTIG溶接により行うことができるが、このような場合に、双方のバスバーの先端部に複数の接合用小片部が設けられていれば、TIG溶接の際のアークを各接合用小片部に正確に飛ばすことが容易となり、溶接箇所の接続信頼性が確保される。   In the present invention, a plurality of small pieces for joining may be provided at both ends of the bus bar. Thus, by providing the same small piece for joining at the front-end | tip part of both bus bars, relative positioning of bus bars becomes easy. In addition, in the inverter-integrated electric compressor of the present invention, the bus bars can be joined to each other by TIG welding. In such a case, a plurality of small pieces for joining are provided at the front ends of both bus bars. Then, it becomes easy to accurately fly the arc at the time of TIG welding to each joining piece, and the connection reliability of the welding location is ensured.

また、上記モータ駆動回路の基板には、熱ストレスに弱い電子部品が数多く接続されていることが多いので、バスバーの少なくとも一方がモータ駆動回路の基板に接続されていることによって、熱負荷を軽減することを効果的に達成できる。また、熱ストレスに弱いIPMについても同様であり、バスバーの少なくとも一方がIPM上に設けられていることによって、熱負荷を軽減することを効果的に達成できる。さらに、前記バスバーの少なくとも一方は、前記モータ駆動回路の基板から立設されていることが好ましい。このように、バスバーが基板から立設されていることにより、モータ駆動回路が収容されるケース部材等に設けられたバスバーとの相対的な位置決めが容易となる。 Further, the substrate of the motor drive circuit, so often sensitive electronic components to the heat stress is a number connected by at least one bus bar is connected to the substrate of the motor drive circuit, reduce the thermal load Can be achieved effectively. Further, the same applies to the sensitive IPM heat stress, at least one of the busbars by being provided on IPM, it can be effectively achieved to reduce the thermal load. Furthermore, it is preferable that at least one of the bus bars is erected from a substrate of the motor drive circuit. As described above, since the bus bar is erected from the substrate, relative positioning with respect to the bus bar provided on the case member or the like in which the motor drive circuit is accommodated is facilitated.

本発明に係るインバータ一体型電動圧縮機は狭いスペースに搭載されることが多く、電子部品等が熱ストレスを受けやすい車両空調装置用圧縮機とし用いるさらに、圧縮機が車両用エンジンに取り付けられている場合には、エンジンから伝達される振動や、エンジンルームという厳しい高温環境に耐え得る接合強度や接合信頼性を、接合部に持たせることが可能である。
The inverter-integrated electric compressor according to the present invention, be mounted in a narrow space many electronic components is used as a sensitive vehicle air-conditioner compressor heat stress. In addition, when the compressor is mounted on a vehicle engine, the joint can have joint strength and joint reliability that can withstand vibrations transmitted from the engine and the severe high temperature environment of the engine room. It is.

本発明に係るインバータ一体型電動圧縮機によれば、バスバー同士の接合部において、少なくとも一方の先端部が、複数の接合用小片部に分割されているので、接合強度や接合信頼性を向上させることができる。また、接合部の接触面積を稼ぐことができるので、接触抵抗が低減されることにより、圧縮機運転時に接合部に大電流が流れた場合の発熱が抑制される。さらに、バスバーの双方の先端部が複数の接合用小片部に分割されていることにより、バスバー同士の相対的な位置決めが容易となり、圧縮機の生産性の向上が図られる。   According to the inverter-integrated electric compressor according to the present invention, at least one tip portion is divided into a plurality of joining small pieces at the joining portion between the bus bars, thereby improving the joining strength and joining reliability. be able to. Moreover, since the contact area of a junction part can be earned, the heat_generation | fever when a large current flows into a junction part at the time of a compressor driving | operation is suppressed by reducing contact resistance. Furthermore, since both the front ends of the bus bar are divided into a plurality of joining pieces, the relative positioning of the bus bars is facilitated, and the productivity of the compressor is improved.

以下に、本発明の望ましい実施の形態を、図面を参照して説明する。
図1は、本発明の一実施態様に係るインバータ一体型電動圧縮機1の基本構成として、車両空調装置用のスクロール型電動圧縮機の例を示している。図1において、2は、固定スクロール3と可動スクロール4からなる圧縮機構を示している。可動スクロール4は、ボールカップリング5を介して自転が阻止された状態で、固定スクロール3に対して旋回されるようになっている。圧縮機ハウジング(センターハウジング)6内には、モータ7が組み込まれており、この内蔵モータ7によって主軸8(回転軸)が回転駆動される。主軸8の一端側に配設された偏心ピン9、それに対して回転自在に係合された偏心ブッシュ10を介して、主軸8の回転運動が可動スクロール4の旋回運動に変換されるようになっている。本実施態様では、被圧縮流体としての冷媒を吸入する吸入ポート11が圧縮機ハウジング(フロントハウジング)12に設けられており、吸入された冷媒は、モータ7配置部を通して圧縮機構2へと導かれ、圧縮機構2で圧縮された冷媒は、吐出孔13、吐出室14、圧縮機ハウジング(リアハウジング)15に設けられた吐出ポート16を通して外部回路に送られる。
Hereinafter, preferred embodiments of the present invention will be described with reference to the drawings.
FIG. 1 shows an example of a scroll-type electric compressor for a vehicle air conditioner as a basic configuration of an inverter-integrated electric compressor 1 according to an embodiment of the present invention. In FIG. 1, reference numeral 2 denotes a compression mechanism composed of a fixed scroll 3 and a movable scroll 4. The movable scroll 4 is turned with respect to the fixed scroll 3 in a state in which the rotation is prevented via the ball coupling 5. A motor 7 is incorporated in the compressor housing (center housing) 6, and the main shaft 8 (rotary shaft) is rotationally driven by the built-in motor 7. The rotational motion of the main shaft 8 is converted into the turning motion of the movable scroll 4 via the eccentric pin 9 disposed on one end side of the main shaft 8 and the eccentric bush 10 rotatably engaged with the eccentric pin 9. ing. In this embodiment, a suction port 11 for sucking refrigerant as a fluid to be compressed is provided in the compressor housing (front housing) 12, and the sucked refrigerant is guided to the compression mechanism 2 through the motor 7 arrangement portion. The refrigerant compressed by the compression mechanism 2 is sent to the external circuit through the discharge port 13, the discharge chamber 14, and the discharge port 16 provided in the compressor housing (rear housing) 15.

上記モータ7の駆動用回路21は、圧縮機ハウジング12(フロントハウジング)内に設けられており、より詳しくは、圧縮機ハウジング12に形成された冷媒吸入経路側との仕切壁22の外面側にモータ駆動回路21が設けられている。モータ駆動回路21は、仕切壁22を貫通させて取り付けられた密封端子23(モータ駆動回路21の出力端子)、リード線24を介してモータ7に給電し、密封端子23設置部では、冷媒吸入経路側とモータ駆動回路21設置側とがシールされている。モータ駆動回路21を仕切壁22の外面側に設けることによって、仕切壁22を介して、モータ駆動回路21を含む電気部品の少なくとも一部が、吸入冷媒と熱交換可能となっており、吸入冷媒によって冷却可能となっている。   The driving circuit 21 for the motor 7 is provided in the compressor housing 12 (front housing), and more specifically, on the outer surface side of the partition wall 22 with the refrigerant suction path side formed in the compressor housing 12. A motor drive circuit 21 is provided. The motor drive circuit 21 supplies power to the motor 7 via a sealed terminal 23 (an output terminal of the motor drive circuit 21) attached through the partition wall 22 and a lead wire 24. The path side and the motor drive circuit 21 installation side are sealed. By providing the motor drive circuit 21 on the outer surface side of the partition wall 22, at least a part of the electrical components including the motor drive circuit 21 can exchange heat with the suction refrigerant via the partition wall 22. The cooling is possible.

モータ駆動回路21は、インバータ機能を有するIPM(Intelligent Power Module)25と制御回路26とを含んでおり、それとは別体にあるいは一体にコンデンサ27等の電気部品が設けられている。このモータ駆動回路21は、入力端子としてのコネクタ28を介して外部電源(図示略)と接続される。これらモータ駆動回路21を含む電気部品を実装した圧縮機ハウジング12の外部への開口側は、蓋部材29でシールされた状態で覆われており、これら電気部品が蓋部材29により保護されている。   The motor drive circuit 21 includes an IPM (Intelligent Power Module) 25 having an inverter function and a control circuit 26, and an electrical component such as a capacitor 27 is provided separately or integrally therewith. The motor drive circuit 21 is connected to an external power source (not shown) via a connector 28 as an input terminal. The opening side to the outside of the compressor housing 12 on which the electric parts including the motor drive circuit 21 are mounted is covered in a state of being sealed with a lid member 29, and these electric parts are protected by the lid member 29. .

上記のような構成を電気回路的に示すと、例えば図2のようになる。図2において、電動圧縮機1にはモータ駆動回路21が設けられており、モータ駆動回路21からの出力が密封端子23、リード線24を介して内蔵モータ7の各モータ巻線41に給電されることによりモータ7が回転駆動され、圧縮機構2による圧縮が行われる。モータ駆動回路21は、モータ駆動用高電圧回路30と、モータ駆動用高電圧回路30内のインバータ42の各パワー素子43(スイッチング素子)を制御するためのモータ制御回路44を備えた制御用低電圧回路45を有しており、この制御用低電圧回路45が制御回路26内に構成されている。外部電源46(例えば、バッテリー)からの電力が、高電圧用コネクタ47を通してモータ駆動用高電圧回路30へ給電され、ノイズフィルタ37、平滑用のコンデンサ27を介してインバータ42に供給され、インバータ42で電源46からの直流が疑似三相交流に変換された後、モータ7へと供給される。モータ制御回路44へは、例えば、車両の空調制御装置48から、低電圧の電力が制御信号用コネクタ49を介して供給される。図2では、この制御信号用コネクタ49と、高電圧用コネクタ47とは、離れた位置に図示してあるが、実際には、図1に示した同一のコネクタ28内に装備されている。制御回路26に、シールドプレート31が固定され、このシールドプレート31が、図2に示すように、モータ駆動用高電圧回路30と制御用低電圧回路45を備えた制御回路26との間に介在され、モータ駆動用高電圧回路30を極力広い範囲にわたって覆い、モータ駆動用高電圧回路30から制御用低電圧回路45側へのノイズの影響を抑制している。   An example of the configuration as described above is shown in FIG. In FIG. 2, the electric compressor 1 is provided with a motor drive circuit 21, and an output from the motor drive circuit 21 is fed to each motor winding 41 of the built-in motor 7 via a sealing terminal 23 and a lead wire 24. As a result, the motor 7 is rotationally driven, and the compression mechanism 2 performs compression. The motor drive circuit 21 includes a motor drive high voltage circuit 30 and a control low circuit provided with a motor control circuit 44 for controlling each power element 43 (switching element) of the inverter 42 in the motor drive high voltage circuit 30. A voltage circuit 45 is included, and the control low voltage circuit 45 is configured in the control circuit 26. Electric power from an external power supply 46 (for example, a battery) is supplied to the motor driving high voltage circuit 30 through the high voltage connector 47 and supplied to the inverter 42 via the noise filter 37 and the smoothing capacitor 27. Then, the direct current from the power source 46 is converted into a pseudo three-phase alternating current and then supplied to the motor 7. For example, low voltage power is supplied to the motor control circuit 44 via a control signal connector 49 from an air conditioning control device 48 of the vehicle. In FIG. 2, the control signal connector 49 and the high voltage connector 47 are illustrated at positions apart from each other, but actually they are provided in the same connector 28 shown in FIG. 1. A shield plate 31 is fixed to the control circuit 26, and the shield plate 31 is interposed between the motor driving high voltage circuit 30 and the control circuit 26 having the control low voltage circuit 45 as shown in FIG. Thus, the motor driving high voltage circuit 30 is covered as much as possible to suppress the influence of noise from the motor driving high voltage circuit 30 to the control low voltage circuit 45 side.

図3は、図1の圧縮機のモータ駆動回路21を収容するケース部材58に、IPM25等の電子部品等が接続された状態を示す斜視図である。ケース部材58の端面に設けられた電気的接続端子としてのバスバー60は、IPM25に設けられたバスバー70と、TIG溶接により電気的に接続されている。また、ケース部材58の一部が、バスバー80に沿って穿孔されることにより、部品取付け孔59が形成されている。部品取付け孔59には、モータ駆動回路21のノイズ除去のためのコイル部品(図示略)が挿入されており、該コイル部品に設けられたバスバー90とTIG溶接により電気的に接続されている。バスバー80、90は、各先端部が3分割されてなる接合用小片部81、91において溶接されている。なお、部品取付け孔59に挿入される各種電子部品の他の例としては、コンデンサ27やモータ駆動回路21の基板などが挙げられる。   FIG. 3 is a perspective view showing a state in which electronic parts such as the IPM 25 are connected to the case member 58 that houses the motor drive circuit 21 of the compressor of FIG. The bus bar 60 as an electrical connection terminal provided on the end surface of the case member 58 is electrically connected to the bus bar 70 provided in the IPM 25 by TIG welding. Further, a part attachment hole 59 is formed by partly drilling the case member 58 along the bus bar 80. A coil component (not shown) for noise removal of the motor drive circuit 21 is inserted into the component mounting hole 59, and is electrically connected to the bus bar 90 provided in the coil component by TIG welding. The bus bars 80 and 90 are welded at joining small pieces 81 and 91 each having a tip portion divided into three parts. Other examples of various electronic components inserted into the component mounting holes 59 include the capacitor 27 and the substrate of the motor drive circuit 21.

図4は、図3のバスバー60、70の接合部を拡大した部分拡大斜視図である。図を見やすくするために、図3のケース部材58やIPM25は図示されていない。バスバー60、70は、バスバー60とバスバー70の先端部がそれぞれ2分割されてなる接合用小片部61、71において溶接されている。このようにバスバーの先端部が複数の接合用小片部に分割されていることにより、TIG溶接の際にアークを確実に溶接箇所に飛ばすことができることに加え、高い接合強度と接合信頼性、および低い接触抵抗が実現される。   FIG. 4 is a partially enlarged perspective view in which the joint portion of the bus bars 60 and 70 in FIG. 3 is enlarged. In order to make the drawing easier to see, the case member 58 and the IPM 25 of FIG. 3 are not shown. The bus bars 60 and 70 are welded at joining small pieces 61 and 71 in which the front ends of the bus bar 60 and the bus bar 70 are respectively divided into two. In this way, the front end of the bus bar is divided into a plurality of small pieces for joining, so that the arc can be surely blown to the welding location during TIG welding, and high joining strength and joining reliability, and Low contact resistance is realized.

本発明に係るインバータ一体型電動圧縮機は、実質的にあらゆるタイプの圧縮機に適用可能であるが、とくに、狭いスペースに搭載され、熱ストレスを受けやすい車両空調装置用圧縮機として好適に用いることができる。   The inverter-integrated electric compressor according to the present invention can be applied to virtually any type of compressor, but is particularly suitable for use as a compressor for a vehicle air conditioner that is mounted in a narrow space and is susceptible to thermal stress. be able to.

本発明の一実施態様に係るインバータ一体型電動圧縮機の基本構成を示す概略縦断面図である。It is a schematic longitudinal cross-sectional view which shows the basic composition of the inverter integrated electric compressor which concerns on one embodiment of this invention. 図1の圧縮機を含む空調制御機構を電気回路的に示した構成図である。It is the block diagram which showed the air-conditioning control mechanism containing the compressor of FIG. 図1のモータ駆動回路21を収容するケース部材と図1のIPM25等との接続状態を示す斜視図である。It is a perspective view which shows the connection state of the case member which accommodates the motor drive circuit 21 of FIG. 1, and IPM25 grade | etc., Of FIG. 図3のバスバー60、70の接合部を拡大した部分拡大斜視図である。It is the elements on larger scale which expanded the junction part of busbars 60 and 70 of FIG.

符号の説明Explanation of symbols

1 インバータ一体型電動圧縮機
2 圧縮機構
3 固定スクロール
4 可動スクロール
5 ボールカップリング
6 圧縮機ハウジング(センターハウジング)
7 モータ
8 主軸
9 偏心ピン
10 偏心ブッシュ
11 吸入ポート
12 圧縮機ハウジング(フロントハウジング)
13 吐出孔
14 吐出室
15 圧縮機ハウジング(リアハウジング)
16 吐出ポート
21 モータ駆動回路
22 仕切壁
23 密封端子
24 リード線
25 IPM
26 制御回路
27 コンデンサ
28 コネクタ
29 蓋部材
30 モータ駆動用高電圧回路
31 シールドプレート
37 ノイズフィルタ
41 モータ巻線
42 インバータ
43 パワー素子
44 モータ制御回路
45 制御用低電圧回路
46 外部電源
47 高電圧用コネクタ
48 空調制御装置
49 制御信号用コネクタ
58 ケース部材
59 部品取付け孔
60、70、80、90 バスバー
61、71、81、91 接合用小片部
DESCRIPTION OF SYMBOLS 1 Inverter integrated electric compressor 2 Compression mechanism 3 Fixed scroll 4 Movable scroll 5 Ball coupling 6 Compressor housing (center housing)
7 Motor 8 Main shaft 9 Eccentric pin 10 Eccentric bush 11 Suction port 12 Compressor housing (front housing)
13 Discharge hole 14 Discharge chamber 15 Compressor housing (rear housing)
16 Discharge port 21 Motor drive circuit 22 Partition wall 23 Sealed terminal 24 Lead wire 25 IPM
26 Control circuit 27 Capacitor 28 Connector 29 Lid member 30 Motor drive high voltage circuit 31 Shield plate 37 Noise filter 41 Motor winding 42 Inverter 43 Power element 44 Motor control circuit 45 Control low voltage circuit 46 External power supply 47 High voltage connector 48 Air-conditioning control device 49 Control signal connector 58 Case member 59 Component mounting hole 60, 70, 80, 90 Bus bar 61, 71, 81, 91 Small piece for joining

Claims (5)

モータが内蔵され、インバータを含むモータ駆動回路が圧縮機ハウジングで囲まれた収容空間内に設けられた車両空調装置用圧縮機からなるインバータ一体型電動圧縮機において、前記モータ駆動回路内に、バスバー同士を接合することにより電気的に接続されたバスバー接合部が設けられ、該バスバー接合部におけるバスバーの少なくとも一方の先端部が、複数の接合用小片部に分割され、前記バスバーの少なくとも一方がIPM上に設けられ、前記バスバーの少なくとも一方がモータ駆動回路の基板に接続されていることを特徴とするインバータ一体型電動圧縮機。 In an inverter-integrated electric compressor comprising a compressor for a vehicle air conditioner provided in a housing space in which a motor is incorporated and a motor drive circuit including an inverter is surrounded by a compressor housing, a bus bar is provided in the motor drive circuit. A bus bar joint portion electrically connected by joining each other is provided, and at least one tip end portion of the bus bar in the bus bar joint portion is divided into a plurality of joining small pieces , and at least one of the bus bars is an IPM. An inverter-integrated electric compressor, wherein the inverter-integrated electric compressor is provided on at least one of the bus bars and connected to a substrate of a motor drive circuit . 前記バスバーの双方の先端部に、複数の接合用小片部が設けられている、請求項1に記載のインバータ一体型電動圧縮機。   The inverter-integrated electric compressor according to claim 1, wherein a plurality of small pieces for joining are provided at both ends of the bus bar. 前記バスバーの少なくとも一方が、前記モータ駆動回路の基板から立設されている、請求項1または2に記載のインバータ一体型電動圧縮機。   The inverter-integrated electric compressor according to claim 1 or 2, wherein at least one of the bus bars is erected from a substrate of the motor drive circuit. 前記接合がTIG溶接により行われている、請求項1〜のいずれかに記載のインバータ一体型電動圧縮機。 The inverter-integrated electric compressor according to any one of claims 1 to 3 , wherein the joining is performed by TIG welding. 車両用エンジンに取り付けられている、請求項1〜4のいずれかに記載のインバータ一体型電動圧縮機。 It is attached to the vehicle engine, an inverter-integrated electric compressor according to claim 1.
JP2008285823A 2008-11-06 2008-11-06 Inverter-integrated electric compressor Expired - Fee Related JP5261139B2 (en)

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JP2008285823A JP5261139B2 (en) 2008-11-06 2008-11-06 Inverter-integrated electric compressor
US13/128,140 US20110211981A1 (en) 2008-11-06 2009-11-06 Inverter-Integrated Electric Compressor
PCT/JP2009/005924 WO2010052924A1 (en) 2008-11-06 2009-11-06 Electric compressor integral with inverter
DE112009002666T DE112009002666T5 (en) 2008-11-06 2009-11-06 Electric compressor with integrated inverter
CN2009801438114A CN102203419A (en) 2008-11-06 2009-11-06 Electric compressor integral with inverter

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JP2010112266A (en) 2010-05-20

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