EP2289130A1 - Electric pressfit plug connector having a laterally angled power pin - Google Patents

Electric pressfit plug connector having a laterally angled power pin

Info

Publication number
EP2289130A1
EP2289130A1 EP09745610A EP09745610A EP2289130A1 EP 2289130 A1 EP2289130 A1 EP 2289130A1 EP 09745610 A EP09745610 A EP 09745610A EP 09745610 A EP09745610 A EP 09745610A EP 2289130 A1 EP2289130 A1 EP 2289130A1
Authority
EP
European Patent Office
Prior art keywords
contact
pressfit
connector
pin
pins
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.)
Granted
Application number
EP09745610A
Other languages
German (de)
French (fr)
Other versions
EP2289130B1 (en
Inventor
Christoph Emde
Ruediger Schoen-Hermenau
Mitja Buhmann
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.)
Robert Bosch GmbH
Original Assignee
Robert Bosch GmbH
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 by Robert Bosch GmbH filed Critical Robert Bosch GmbH
Publication of EP2289130A1 publication Critical patent/EP2289130A1/en
Application granted granted Critical
Publication of EP2289130B1 publication Critical patent/EP2289130B1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/50Fixed connections
    • H01R12/51Fixed connections for rigid printed circuits or like structures
    • H01R12/55Fixed connections for rigid printed circuits or like structures characterised by the terminals
    • H01R12/58Fixed connections for rigid printed circuits or like structures characterised by the terminals terminals for insertion into holes
    • H01R12/585Terminals having a press fit or a compliant portion and a shank passing through a hole in the printed circuit board
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R43/00Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
    • H01R43/16Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for manufacturing contact members, e.g. by punching and by bending

Definitions

  • the invention is based on an electrical Pressfit connector according to the preamble of claim 1.
  • Such an electrical pressfit connector has become known, for example, from EP 0 901 188 A2.
  • the electrical connection from the customer plug to the circuit board is made by pressfit connectors, the contacts one end as contact pins of a front male connector for contacting the customer's plug and the other end as deformable
  • Press-fit pins of a rear male connector are formed for insertion into sleeves or metallized holes in the printed circuit board. Pressing creates a gas-tight and electrically conductive connection between the Pressfit pins and the PCB holes.
  • the pressfit and contact pins of the individual contacts are each symmetrical to the center line or center plane of their contacts. As a result, not only the position of the contact pins within the press fit connector are specified by the customer plug, but also the positions of the metallized holes in the circuit board.
  • different customer plugs must be represented with differences in pin number, pin position, and so on. The number of pins also increases the width of the Pressfit connector.
  • the customer plug can determine the size, ie the width of the pressfit connector can be smaller than the width of the customer plug.
  • the printed circuit board of such control units in the plug area must be made wider for pressing a correspondingly wide Pressfit connector. This broadening of the printed circuit board in the connector area leads to an unusable area of the printed circuit board, which is milled away during the production of the printed circuit board.
  • the associated non-optimal utilization of the large substrate leads to an increase in the cost per single use.
  • an adapter is provided by the Pressfit- connector according to the invention, for example, can map a wide printed circuit board on a narrow customer plug or a narrow circuit board on a wide customer plug, resulting in additional degrees of freedom in the
  • the control unit's internal interface to the printed circuit board can be standardized.
  • ECUs can be constructed with different customer plug variants with a printed circuit board type. This reduces the variance in the PCB layouts (reduced logistics and sharing overhead) and decouples the development of new ECU housings from layout design.
  • FIG. 2 shows the pressfit according to the invention mounted on a printed circuit board.
  • the electrical press-fit connector 1 shown in FIG. 1 is fastened on a printed circuit board 2 by means of press-fit technology (Pressfit technique).
  • the press fit connector 1 comprises electrical contacts 3, which are fastened in bores of a contact carrier plate 4 made of electrically insulating material and protrude on both sides of the contact carrier plate 4.
  • the contacts 3 are formed as parallel contact pins (contact pins) 6 for contacting a customer or mating connector and arranged as a male connector 7 (grid A).
  • the contacts 3 are formed as a parallel deformable Pressfit pins (press-fit) 9 with a resilient core 10 for pressing into metallized holes 11 in the circuit board 2 and also arranged as a male connector 12 (grid A).
  • the two male connectors 7, 12 with the same pitch A are aligned parallel to each other and can be made single or multi-row.
  • the outermost left and right contacts 3 a, 3 b of the connector 1 serve as contact pins for high currents due to their larger cross-section with respect to the other contacts 3 and are referred to as "power pins"
  • Diameter of the power pins 3a, 3b may in particular be equal to or greater than the pitch A of the other contacts 3 and in the case of multi-row male connectors in particular also be equal to or greater than the row spacing of the contact rows.
  • the pressfit pin 9a of the left power pin 3a is arranged laterally offset relative to its associated contact pin 6a in the longitudinal direction of the male connectors 7, 12 in the direction away from the right power pin 3b, ie to the left. More precisely, the left power pin 3a between its pressfit pin 9a and its contact pin 6a has a center contact portion 13 extending inside the contact support plate 4 in the longitudinal direction of the blade strips 7, 12, with respect to which the contact pin 6a and the pressfit pin 9a are each 90 ° are angled.
  • the contact-free distance B between the laterally offset press fit pin 9a of the left power pin 3a and the non-offset pressfit pin 9 of the next adjacent contact 3 preferably corresponds to an integer multiple of the grid dimension A of the rear male connector 12th
  • the power pin 3 a laterally inwardly offset in FIG. 1 has the advantage that even narrower customer plugs with fewer plug pins can be realized without having to change the printed circuit board 2.
  • the press fit connector 1 shown in FIG. 2 differs from the pressfit connector of FIG. 1 only in that, conversely, the contact pin 6a of the left power pin 3a is arranged laterally offset to the left from the pressfit pin 9a.
  • the contact-free distance B between the laterally offset contact pin 6a of the left power pin 3a and the non-offset contact pin 6a of the next adjacent contact 3 preferably corresponds to an integer multiple of the grid dimension A of the front male connector. 7
  • the contact pin 6a and the pressfit pin 9a are offset laterally only in the case of the left power pin 3a. In other embodiments, not shown, the contact pin 6a and the Pressfit- pin 9a are additionally offset laterally offset even in the right power pin 3b, whereby the connector 1 is symmetrical to its center plane and can be arranged symmetrically to the circuit board 2.
  • the two male connectors 7, 12 can be angled at an angle of preferably 90 ° to each other.

Abstract

The invention relates to an electric pressfit plug connector (1) for fastening to a printed circuit board (2), comprising contacts (3, 3a, 3b) that are disposed on the front and rear (5, 8) of the plug connector (1) as a single or multi-row male multipoint connector (7, 12) and that are configured on the front (5) of the plug connector (1) as contact pins (6, 6a) for contacting a mating connector, and on the rear (8) as pressfit pins (9, 9a) for pressing into metal bores (11) in the printed circuit board (2), wherein according to the invention either the contact pin (6a) or the pressfit pin (9a) of at least one contact (3a) of the male multipoint connectors (7, 12) is laterally offset in the longitudinal direction of the male multipoint connectors (12) in relation to the associated pressfit pin (9a) or contact pin (6a).

Description

Elektrischer Pressfit-Steckverbinder mit seitlich abgewinkeltem Powerpin Electric pressfit connector with laterally angled power pin
Stand der TechnikState of the art
Die Erfindung geht aus von einem elektrischen Pressfit-Steckverbinder nach der Gattung des Patentanspruchs 1.The invention is based on an electrical Pressfit connector according to the preamble of claim 1.
Ein derartiger elektrischer Pressfit-Steckverbinder ist beispielsweise durch die EP 0 901 188 A2 bekannt geworden.Such an electrical pressfit connector has become known, for example, from EP 0 901 188 A2.
In heutigen Steuergeräten in Leiterplattentechnik wird die elektrische Verbindung vom Kundenstecker zu der Leiterplatte mittels Pressfit-Steckverbindern hergestellt, deren Kontakte einenends als Kontaktstifte einer vorderseitigen Messerleiste zum Kontaktieren des Kundensteckers und anderenends als verformbareIn today's control units in printed circuit board technology, the electrical connection from the customer plug to the circuit board is made by pressfit connectors, the contacts one end as contact pins of a front male connector for contacting the customer's plug and the other end as deformable
Einpress(Pressfit)-Stifte einer rückseitigen Messerleiste zum Einpressen in Hülsen oder metallisierte Bohrungen in der Leiterplatte ausgebildet sind. Durch das Einpressen entsteht eine gasdichte und elektrisch leitende Verbindung zwischen den Pressfit-Stiften und den Leiterplattenbohrungen. Bei den bekannten Pressfit- Steckverbindern sind die Pressfit- und Kontaktstifte der einzelnen Kontakte jeweils symmetrisch zur Mittellinie bzw. Mittelebene ihrer Kontakte. Dies hat zur Folge, dass durch den Kundenstecker nicht nur die Position der Kontaktstifte innerhalb des Pressfit-Steckverbinders vorgegeben werden, sondern auch die Positionen der metallisierten Bohrungen in der Leiterplatte. Innerhalb einer Steuergerätefamilie müssen verschiedene Kundenstecker mit Unterschieden in Pinanzahl, Pinposition usw. dargestellt werden. Mit der Pinanzahl wächst auch die Breite des Pressfit-Steckverbinders. Bei Steuergeräten mit kompakten Gehäuseabmessungen kann der Kundenstecker größenbestimmend sein, d.h., die Breite des Pressfit-Steckverbinders kann kleiner sein als die Breite des Kundensteckers. Um alle Steckerkontakte des Kundensteckers zu kontaktieren, muss die Leiterplatte solcher Steuergeräte im Steckerbereich zum Einpressen eines entsprechend breiten Pressfit-Steckverbinders breiter ausgeführt werden. Diese Verbreiterung der Leiterplatte im Steckerbereich führt zu einem nicht nutzbaren Bereich der Leiterplatte, der bei der Leiterplattenherstellung weggefräst wird. Die damit verbundene nicht optimale Ausnutzung des Großsubstrats führt zu einer Erhöhung der Kosten pro Einzelnutzen.Press-fit pins of a rear male connector are formed for insertion into sleeves or metallized holes in the printed circuit board. Pressing creates a gas-tight and electrically conductive connection between the Pressfit pins and the PCB holes. In the known Pressfit connectors, the pressfit and contact pins of the individual contacts are each symmetrical to the center line or center plane of their contacts. As a result, not only the position of the contact pins within the press fit connector are specified by the customer plug, but also the positions of the metallized holes in the circuit board. Within a family of ECUs, different customer plugs must be represented with differences in pin number, pin position, and so on. The number of pins also increases the width of the Pressfit connector. For control units with compact housing dimensions, the customer plug can determine the size, ie the width of the pressfit connector can be smaller than the width of the customer plug. In order to contact all the plug contacts of the customer plug, the printed circuit board of such control units in the plug area must be made wider for pressing a correspondingly wide Pressfit connector. This broadening of the printed circuit board in the connector area leads to an unusable area of the printed circuit board, which is milled away during the production of the printed circuit board. The associated non-optimal utilization of the large substrate leads to an increase in the cost per single use.
Offenbarung der ErfindungDisclosure of the invention
Erfindungsgemäß wird vorgeschlagen, die Kontakt- und Pressfit-Stifte eines oder mehrerer außenliegender Kontakte des Pressfit-Steckverbinders zueinander seitlich versetzt anzuordnen, um so die gleiche nutzenoptimierte LeiterplattenkonturAccording to the invention it is proposed to arrange the contact and Pressfit pins of one or more external contacts of the Pressfit connector to each other laterally offset, so as to the same benefit optimized PCB contour
(schmale Leiterplatte ohne weggefrästen Teil) für schmale und breite Kundenstecker einsetzen zu können. Mit anderen Worten ist durch den erfindungsgemäßen Pressfit- Steckverbinder ein Adapter bereitgestellt, der beispielsweise eine breite Leiterplatte auf einen schmalen Kundenstecker oder eine schmale Leiterplatte auf einen breiten Kundenstecker abbilden kann, wodurch sich zusätzliche Freiheitsgrade bei der(narrow PCB without milled part) for narrow and wide customer plug to use. In other words, an adapter is provided by the Pressfit- connector according to the invention, for example, can map a wide printed circuit board on a narrow customer plug or a narrow circuit board on a wide customer plug, resulting in additional degrees of freedom in the
Leiterplattengeometrie ergeben. Somit lassen sich kleine und damit kostengünstige Leiterplatten auch in Steuergeräten mit breiten Kundensteckern einsetzen.PCB geometry result. Thus, small and therefore inexpensive circuit boards can also be used in control units with broad customer plugs.
Unterscheiden sich die Kundenstecker beispielsweise nur in der Anzahl der Kontakte (identisches Rastermaß der Pins) und damit in der Breite, kann die steuergeräteinterne Schnittstelle zur Leiterplatte vereinheitlicht werden. Dadurch können Steuergeräte mit unterschiedlichen Kundensteckervarianten mit einem Leiterplattentyp aufgebaut werden. Dies verringert die Varianz in den Leiterplattenlayouts (geringerer Logistik- und Freigabeaufwand) und entkoppelt die Entwicklung neuer Steuergeräte-Gehäuse von der Layoutentwicklung.For example, if the customer plugs differ only in the number of contacts (identical pitch of the pins) and thus in width, the control unit's internal interface to the printed circuit board can be standardized. As a result, ECUs can be constructed with different customer plug variants with a printed circuit board type. This reduces the variance in the PCB layouts (reduced logistics and sharing overhead) and decouples the development of new ECU housings from layout design.
Weitere Vorteile und vorteilhafte Ausgestaltungen des Gegenstands der Erfindung sind der Beschreibung, der Zeichnung und den Ansprüchen entnehmbar.Further advantages and advantageous embodiments of the subject invention are the description, the drawings and claims removed.
Kurze Beschreibung der ZeichnungShort description of the drawing
Zwei Ausführungsbeispiele des erfindungsgemäßen Pressfit-Steckverbinders sind in der Zeichnung dargestellt und in der nachfolgenden Beschreibung näher erläutert. Die in den Figuren gezeigten Merkmale sind rein schematisch und nicht maßstäblich zu verstehen. Es zeigt:Two embodiments of the pressfit connector according to the invention are shown in the drawing and explained in more detail in the following description. The features shown in the figures are purely schematic and not to scale. It shows:
Fig. 1 den auf einer Leiterplatte befestigten erfindungsgemäßen Pressfit-1 shows the pressfit mounted on a printed circuit board according to the invention
Steckverbinder mit einem seitlich nach außen abgewinkelten Pressfit- Stift eines Powerpins; und Fig. 2 den auf einer Leiterplatte befestigten erfindungsgemäßen Pressfit-Connector with a laterally outwardly angled pressfit pin of a power pin; and FIG. 2 shows the pressfit according to the invention mounted on a printed circuit board.
Steckverbinder mit einem seitlich nach innen abgewinkelten Pressfit-Stift eines Powerpins.Connector with a laterally inwardly angled pressfit pin of a power pin.
Ausführungsformen der ErfindungEmbodiments of the invention
Der in Fig. 1 gezeigte elektrische Pressfit-Steckverbinder 1 wird mittels Einpresstechnik (Pressfit-Technik) auf einer Leiterplatte 2 befestigt.The electrical press-fit connector 1 shown in FIG. 1 is fastened on a printed circuit board 2 by means of press-fit technology (Pressfit technique).
Der Pressfit-Steckverbinder 1 umfasst elektrische Kontakte 3, die in Bohrungen einer Kontaktträgerplatte 4 aus elektrisch isolierendem Material befestigt sind und zu beiden Seiten der Kontaktträgerplatte 4 vorstehen. Auf der einen Seite derThe press fit connector 1 comprises electrical contacts 3, which are fastened in bores of a contact carrier plate 4 made of electrically insulating material and protrude on both sides of the contact carrier plate 4. On the one hand the
Kontaktträgerplatte 4, nämlich auf der leiterplattenabgewandten Vorderseite 5 des Steckverbinders 1 , sind die Kontakte 3 als parallele Kontaktstifte (Kontaktpins) 6 zum Kontaktieren eines Kunden- oder Gegensteckers ausgebildet und als Messerleiste 7 (Rastermaß A) angeordnet. Auf der anderen Seite der Kontaktträgerplatte 4, nämlich auf der leiterplattenzugewandten Rückseite 8 des Steckverbinders 1 , sind die Kontakte 3 als parallele verformbare Pressfit-Stifte (Einpressstifte) 9 mit einem federnden Kern 10 zum Einpressen in metallisierte Bohrungen 11 in der Leiterplatte 2 ausgebildet und ebenfalls als Messerleiste 12 (Rastermaß A) angeordnet. Die beiden Messerleisten 7, 12 mit dem gleichen Rastermaß A sind parallel zueinander ausgerichtet und können ein- oder mehrreihig ausgeführt sein.Contact carrier plate 4, namely on the front side facing away from the printed circuit board 5 of the connector 1, the contacts 3 as parallel contact pins (contact pins) 6 for contacting a customer or mating connector and arranged as a male connector 7 (grid A). On the other side of the contact carrier plate 4, namely on the printed circuit board facing back 8 of the connector 1, the contacts 3 are formed as a parallel deformable Pressfit pins (press-fit) 9 with a resilient core 10 for pressing into metallized holes 11 in the circuit board 2 and also arranged as a male connector 12 (grid A). The two male connectors 7, 12 with the same pitch A are aligned parallel to each other and can be made single or multi-row.
Die äußersten linken und rechten Kontakte 3a, 3b des Steckverbinders 1 dienen aufgrund ihres gegenüber den übrigen Kontakten 3 größeren Querschnitts als Kontaktpins für hohe Ströme und werden als „Powerpin" bezeichnet. DerThe outermost left and right contacts 3 a, 3 b of the connector 1 serve as contact pins for high currents due to their larger cross-section with respect to the other contacts 3 and are referred to as "power pins"
Durchmesser der Powerpins 3a, 3b kann insbesondere auch gleich oder größer dem Rastermaß A der übrigen Kontakte 3 sein und im Falle von mehrreihigen Messerleisten insbesondere auch gleich oder größer dem Reihenabstand der Kontaktreihen sein.Diameter of the power pins 3a, 3b may in particular be equal to or greater than the pitch A of the other contacts 3 and in the case of multi-row male connectors in particular also be equal to or greater than the row spacing of the contact rows.
Der Pressfit-Stift 9a des linken Powerpins 3a ist in Längsrichtung der Messerleisten 7, 12 in Richtung fort von dem rechten Powerpin 3b, also nach links, seitlich versetzt gegenüber seinem zugehörigen Kontaktstift 6a angeordnet. Genauer gesagt weist der linke Powerpin 3a zwischen seinem Pressfit-Stift 9a und seinem Kontaktstift 6a einen innerhalb der Kontaktträgeplatte 4 in Längsrichtung der Messerleisten 7, 12 verlaufenden mittleren Kontaktabschnitt 13 auf, gegenüber dem der Kontaktstift 6a und der Pressfit-Stift 9a jeweils um 90° abgewinkelt sind. Der kontaktfreie Abstand B zwischen dem seitlich versetzten Pressfit-Stifts 9a des linken Powerpins 3a und dem nicht-versetzten Pressfit-Stift 9 des nächstbenachbarten Kontakts 3 entspricht vorzugsweise einem ganzzahligen Vielfachen des Rastermaßes A der rückseitigen Messerleiste 12.The pressfit pin 9a of the left power pin 3a is arranged laterally offset relative to its associated contact pin 6a in the longitudinal direction of the male connectors 7, 12 in the direction away from the right power pin 3b, ie to the left. More precisely, the left power pin 3a between its pressfit pin 9a and its contact pin 6a has a center contact portion 13 extending inside the contact support plate 4 in the longitudinal direction of the blade strips 7, 12, with respect to which the contact pin 6a and the pressfit pin 9a are each 90 ° are angled. The contact-free distance B between the laterally offset press fit pin 9a of the left power pin 3a and the non-offset pressfit pin 9 of the next adjacent contact 3 preferably corresponds to an integer multiple of the grid dimension A of the rear male connector 12th
Mit dem in Fig. 1 gezeigten Design der Leiterplatte 2 können durch unterschiedlich lange Kontaktabschnitte 13 des Powerpins 3a sowie durch eine seitlich versetzte Anordnung des Kontaktstiftes 6a des Powerpins 3a entweder nach rechts, wie in Fig. 1 gezeigt, oder nach links unterschiedlich breite Kundenstecker, also Kundenstecker mit einer unterschiedlichen Anzahl an Steckerkontakten, dargestellt werden. Die Anzahl der Signale ist in diesem Fall auf die Schnittmenge der Kontakte von Pressfit- Steckverbinder 1 und Kundenstecker begrenzt, d.h. dass für die Kombination eines breiten Steckverbinders mit einer schmalen Leiterplatte (Fig. 2) nicht alle Kontakte des Kundensteckers kontaktiert werden können, da im Bereich des kontaktfreien Abstands B keine Kontaktstifte vorhanden sind. Bei breiteren Leiterplatten 2 hat der in Fig. 1 seitlich nach innen versetzte Powerpin 3a den Vorteil, daß auch schmalere Kundenstecker mit weniger Steckerpins realisiert werden können, ohne die Leiterplatte 2 ändern zu müssen.With the design of the printed circuit board 2 shown in FIG. 1, by differently long contact portions 13 of the power pin 3a and by a laterally offset arrangement of the contact pin 6a of the power pin 3a either to the right, as shown in Fig. 1, or to the left different width customer plug, So customer plug with a different number of plug contacts are shown. The number of signals in this case is limited to the intersection of the contacts of Pressfit connector 1 and customer plug, ie that for the combination of a Wide connector with a narrow circuit board (Fig. 2) not all contacts of the customer plug can be contacted, as in the area of the contact-free distance B no pins are present. In the case of wider printed circuit boards 2, the power pin 3 a laterally inwardly offset in FIG. 1 has the advantage that even narrower customer plugs with fewer plug pins can be realized without having to change the printed circuit board 2.
Vom Pressfit-Steckverbinder der Fig. 1 unterscheidet sich der in Fig. 2 gezeigte Pressfit-Steckverbinder 1 lediglich dadurch, dass hier umgekehrt der Kontaktstift 6a des linken Powerpins 3a seitlich nach links versetzt zum Pressfit-Stift 9a angeordnet ist. Der kontaktfreie Abstand B zwischen dem seitlich versetzten Kontaktstift 6a des linken Powerpins 3a und dem nicht-versetzten Kontaktstift 6a des nächstbenachbarten Kontakts 3 entspricht vorzugsweise einem ganzzahligen Vielfachen des Rastermaßes A der vorderseitigen Messerleiste 7.The press fit connector 1 shown in FIG. 2 differs from the pressfit connector of FIG. 1 only in that, conversely, the contact pin 6a of the left power pin 3a is arranged laterally offset to the left from the pressfit pin 9a. The contact-free distance B between the laterally offset contact pin 6a of the left power pin 3a and the non-offset contact pin 6a of the next adjacent contact 3 preferably corresponds to an integer multiple of the grid dimension A of the front male connector. 7
Da bei den in Fign. 1 und 2 gezeigten Pressfit-Steckverbindern 1 die zu überbrückenden Abstände B bei den KombinationenSince, in the cases shown in Figs. 1 and 2 shown Pressfit connectors 1 to be bridged distances B in the combinations
- breite Leiterplatte 2 und schmale vorderseitige Messerleiste 7 (Fig. 1 )wide printed circuit board 2 and narrow front male connector 7 (FIG. 1)
- schmale Leiterplatte 2 und breite vorderseitige Messerleiste 7 (Fig. 2) jeweils gleich sind, können für die abgewinkelten Powerpins 3a Gleichteile eingesetzt werden, was wiederum die Varianz an Mechanikteilen verringert.- Narrow circuit board 2 and wide front-side male connector 7 (Fig. 2) are the same, can be used for the angled power pins 3a equal parts, which in turn reduces the variance of mechanical parts.
Bei den in den Fign. 1 und 2 gezeigten Pressfit-Steckverbindern 1 sind nur bei dem linken Powerpin 3a der Kontaktstift 6a und der Pressfit-Stift 9a gegeneinander seitlich versetzt angeordnet. Bei anderen nicht gezeigten Ausführungsformen sind zusätzlich auch bei dem rechten Powerpin 3b der Kontaktstift 6a und der Pressfit- Stift 9a gegeneinander seitlich versetzt angeordnet, wodurch der Steckverbinder 1 symmetrisch zu seiner Mittelebene ist und symmetrisch zur Leiterplatte 2 angeordnet werden kann.In the in Figs. 1 and 2 Pressfit connectors 1 shown, the contact pin 6a and the pressfit pin 9a are offset laterally only in the case of the left power pin 3a. In other embodiments, not shown, the contact pin 6a and the Pressfit- pin 9a are additionally offset laterally offset even in the right power pin 3b, whereby the connector 1 is symmetrical to its center plane and can be arranged symmetrically to the circuit board 2.
Anders als bei den in den Fign. 1 und 2 gezeigten Pressfit-Steckverbindern 1 , bei denen die beiden Messerleisten 7, 12 parallel zueinander ausgerichtet sind, können die beiden Messerleisten 7, 12 auch unter einem Winkel von bevorzugt 90° gegeneinander abgewinkelt sein. Unlike the in Figs. 1 and 2 Pressfit connectors 1 shown, in which the two male connectors 7, 12 are aligned parallel to each other, the two male connectors 7, 12 can be angled at an angle of preferably 90 ° to each other.

Claims

Patentansprüche claims
1. Elektrischer Pressfit-Steckverbinder (1 ) zur Befestigung auf einer Leiterplatte (2), mit Kontakten (3, 3a, 3b), die auf der Vorder- und Rückseite (5, 8) des Steckverbinders (1 ) jeweils als ein- oder mehrreihige Messerleiste (7, 12) angeordnet sind und die auf der Vorderseite (5) des Steckverbinders (1 ) als Kontaktstifte (6, 6a) zum Kontaktieren eines Gegensteckers und auf der Rückseite (8) als Pressfit-Stifte (9, 9a) zum Einpressen in metallisierte Bohrungen (11 ) in der Leiterplatte (2) ausgebildet sind, dadurch gekennzeichnet, dass entweder der Kontaktstift (6a) oder der Pressfit-Stift (9a) mindestens eines Kontakts (3a) der Messerleisten (7, 12) in Längsrichtung der Messerleisten (12) gegenüber seinem zugehörigen Pressfit-Stift (9a) bzw. Kontaktstift (6a) seitlich versetzt angeordnet ist.1. An electrical pressfit connector (1) for mounting on a printed circuit board (2), with contacts (3, 3a, 3b), on the front and back (5, 8) of the connector (1) as a single or multi-row male connector (7, 12) are arranged and on the front side (5) of the connector (1) as contact pins (6, 6a) for contacting a mating connector and on the back (8) as Pressfit pins (9, 9a) for Pressing into metallized holes (11) in the printed circuit board (2) are formed, characterized in that either the contact pin (6a) or the pressfit pin (9a) at least one contact (3a) of the male connectors (7, 12) in the longitudinal direction Male connectors (12) relative to its associated pressfit pin (9a) or contact pin (6a) is arranged offset laterally.
2. Pressfit-Steckverbinder nach Anspruch 1 , dadurch gekennzeichnet, dass an einem oder an beiden Enden der Messerleisten (7, 12) jeweils ein Kontakt (3a) mit gegeneinander seitlich versetzt angeordneten Kontakt- und Pressfit- Stiften (6a, 9a) vorgesehen ist.2. press fit connector according to claim 1, characterized in that at one or both ends of the male connectors (7, 12) each have a contact (3a) with mutually laterally staggered contact and Pressfit- pins (6a, 9a) is provided ,
3. Pressfit-Steckverbinder nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass der Kontakt (3a) mit den gegeneinander seitlich versetzt angeordneten Kontakt- und Pressfit-Stiften (6a, 9a) zwischen seinen Kontakt- und Pressfit- Stiften (6a, 9a) einen in Längsrichtung der Messerleisten (7, 12) verlaufenden mittleren Kontaktabschnitt (13) aufweist, gegenüber dem die Kontakt- und3. Pressfit connector according to claim 1 or 2, characterized in that the contact (3a) with the mutually laterally staggered contact and Pressfit pins (6a, 9a) between its contact and Pressfit- pins (6a, 9a) a in the longitudinal direction of the male connectors (7, 12) extending central contact portion (13), opposite to the contact and
Pressfit-Stiften (6a, 9a) jeweils abgewinkelt sind, insbesondere jeweils um 90° abgewinkelt sind. Pressfit pins (6a, 9a) are each angled, in particular each angled at 90 °.
4. Pressfit-Steckverbinder nach Anspruch 3, dadurch gekennzeichnet, dass die Kontakte (3, 3a, 3b) in einer zwischen den beiden Messerleisten (7, 12) vorgesehenen Kontaktträgerplatte (4) befestigt sind und dass der mittlere Kontaktabschnitt (13) innerhalb der Kontaktträgerplatte (4) angeordnet ist.4. Pressfit connector according to claim 3, characterized in that the contacts (3, 3a, 3b) in a between the two male connectors (7, 12) provided contact carrier plate (4) are fixed and that the central contact portion (13) within the Contact carrier plate (4) is arranged.
5. Pressfit-Steckverbinder nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der seitliche Abstand (B) zwischen dem seitlich versetzt angeordneten Pressfit-Stift (9a) des Kontakts (3a) und dem Pressfit-Stift (9) seines benachbarten nicht-versetzten Kontakts (3) einem ganzzahligen Vielfachen des Rastermaßes (A) der rückseitigen Messerleiste (12) entspricht.5. Pressfit connector according to one of the preceding claims, characterized in that the lateral distance (B) between the laterally offset Pressfit pin (9a) of the contact (3a) and the pressfit pin (9) of its adjacent non-offset Contact (3) corresponds to an integer multiple of the grid dimension (A) of the rear male connector (12).
6. Pressfit-Steckverbinder nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der seitliche Abstand (B) zwischen dem seitlich versetzt angeordneten Kontaktstift (6a) des Kontakts (3a) und dem Kontaktstift (6) seines benachbarten nicht-versetzten Kontakts (3) einem ganzzahligen6. Pressfit connector according to one of the preceding claims, characterized in that the lateral distance (B) between the laterally offset contact pin (6a) of the contact (3a) and the contact pin (6) of its adjacent non-offset contact (3) an integer
Vielfachen des Rastermaßes (A) der vorderseitigen Messerleiste (12) entspricht.Multiples of the grid dimension (A) of the front male connector (12) corresponds.
7. Pressfit-Steckverbinder nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Kontakt (3a) mit den gegeneinander seitlich versetzt angeordneten Kontakt- und Pressfit-Stiften (6a, 9a) einen größeren Querschnitt als die übrigen seitlich nicht-versetzten Kontakte (3) aufweist. 7. Pressfit connector according to one of the preceding claims, characterized in that the contact (3a) with the mutually laterally staggered contact and Pressfit pins (6a, 9a) has a larger cross-section than the other laterally non-offset contacts (3 ) having.
EP09745610.7A 2008-05-15 2009-03-17 Electric pressfit plug connector having a laterally angled power pin Active EP2289130B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102008001787A DE102008001787A1 (en) 2008-05-15 2008-05-15 Electric pressfit connector with laterally angled power pin
PCT/EP2009/053117 WO2009138277A1 (en) 2008-05-15 2009-03-17 Electric pressfit plug connector having a laterally angled power pin

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EP2289130A1 true EP2289130A1 (en) 2011-03-02
EP2289130B1 EP2289130B1 (en) 2017-05-10

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US (1) US8187007B2 (en)
EP (1) EP2289130B1 (en)
CN (1) CN102027641A (en)
DE (1) DE102008001787A1 (en)
WO (1) WO2009138277A1 (en)

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Publication number Publication date
US20110130053A1 (en) 2011-06-02
WO2009138277A1 (en) 2009-11-19
CN102027641A (en) 2011-04-20
EP2289130B1 (en) 2017-05-10
DE102008001787A1 (en) 2009-11-19
US8187007B2 (en) 2012-05-29

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