Nova Patents
EP0717469A2

Surge voltage preventing D-sub connector

Abstract

An electrical coupling configured to prevent voltage surges during coupling and uncoupling. A plurality of ground terminals (18-25) and a plurality of signal terminals (1-17) are arrayed to open onto an exterior mating surface (30) of an electrical coupling such as a D-sub type electrical connector, with the distal ends of the ground terminals protruding outwardly farther from their corresponding pinholes towards the exterior mating surface than the distal ends of the signal terminals. These configurations prevent the input and output controlling circuit stages from being disabled by the occurrence of noise superimposed upon the power lines or momentary surges of voltage generated while the system is temporarily ungrounded during coupling, with an assurance that during coupling, the ground terminals establish electrically conducting paths before the signal terminals. These configurations are suitable for printer cables, repeater cables and connector cables of other devices.

EP0717469A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 13 December 2015, 10.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

9 claims: 4 independent, 5 dependent

  1. 1
    A surge voltage preventing D-sub connector, comprising:a plurality of female signal terminals disposed to open to an exterior mating surface of said connector;and a plurality of female ground terminals positioned spaced apart to open to said exterior mating surface in an array with said signal terminals, with a distal end of one of said ground terminals constructed to protrude for a constant length greater than any distal end of said signal terminals towards said exterior mating surface to establish an electrical connection with a conformal electrical conductor earlier than any of said signal terminals.
  2. 2
    A connector as claimed in Claim 1, wherein said distal end of said ground terminal protrudes outwardly from a corresponding pinhole formed in said mating surface.
  3. 3
    A surge voltage preventing D-sub connector, comprising a plurality of signal terminals disposed within corresponding different ones of a first plurality of pinholes opening onto a mating surface;and a plurality of ground terminals disposed within corresponding different ones of a second plurality of pinholes opening onto said mating surface, wherein a certain point internal to said first plurality and said second plurality of pinholes and spaced apart from said exterior mating surface is set as a basis-point and distal terminal ends of said ground terminals are positioned nearer than said basis-point by a substantially constant distance to the exterior mating surface and distal terminal ends of said signal terminals are positioned farther than said basis-point by a substantially constant distance from the exterior mating surface, with said distal terminal ends of said ground terminals being positioned nearer than said distal terminal ends of said signal terminal to the exterior mating surface of the connector.
  4. 4
    A connector as claimed in Claim 3, comprising:a protrusion formed in each of said first plurality of pinholes and said second plurality of pinholes;said distal terminal ends of said ground terminals being hung on and extending partially coextensively with said protrusion within said second plurality of pinholes;and said distal terminal ends of said signal terminal being hung on and extending partially coextensively with said protrusions of said first plurality of pinholes.
  5. 5
    A connector as claimed in Claim 3, comprising:a protrusion spaced apart from said mating surface, formed within each of said first plurality of pinholes and said second plurality of pinholes;said distal terminal ends of said ground terminals and said distal terminal ends of said signal terminals being held within different corresponding ones of said first and said second pluralities of said pinholes with said distal terminal ends of said ground terminals not protruded upward and beyond said protrusion within corresponding ones of said second plurality of pinholes and with said distal terminal ends of said signal terminals not protruded upward and beyond said protrusion within corresponding ones of said first plurality of pinholes.
  6. 6
    A connector, comprising:a body of an electrically insulating material having a planar face defining an external border perforated by a plurality of ground pinholes and a plurality of signal pinholes extending into said electrically insulative material through said planar face, each of said ground pinholes and said signal pinholes having internal sidewalls;a plurality of first electrically conducting fingers, each extending along different corresponding internal sidewalls of said ground pinholes;and a plurality of second electrically conducting fingers, each extending along different corresponding internal sidewalls of said signal pinholes, said first conducting fingers extending nearer than said second conducting fingers to said external border.
  7. 7
    A connector as claimed in Claim 6, wherein said internal sidewalls of said ground pinholes and said signal pinholes each comprise:a bevelled portion adjacent to said external border;and a concentric cylindrical portion extending inwardly from said bevelled portion and away from said external border;each of said first conducting fingers extending from said cylindrical portion of a corresponding one of said ground pinholes, across said bevelled portion of said corresponding one of said ground pinholes and onto said external border adjacent to said corresponding one of said ground pinholes;and each of said second conducting fingers lying entirely within said cylindrical portion of a corresponding one of said signal pinholes.
  8. 8
    A connector as claimed in Claim 6 or Claim 7, wherein said internal sidewalls of said ground pinholes and said signal pinholes each comprise:a first cylindrical portion having a first diameter adjacent to said external border;and a second concentric cylindrical portion having a second and smaller diameter extending inwardly from said first diameter cylindrical portion and away from said external border, a shoulder being formed where said first cylindrical portion joins said second cylindrical portion, said first and second conducting fingers extending along said sidewalls within said smaller diameter cylindrical portion and across said shoulder to said sidewall of said first diameter portion, said shoulders of said ground pinholes being closer to said external border than said shoulders of said signal pinholes.
  9. 9
    A connector as claimed in any one of Claims 6 to 8, wherein said internal sidewalls of said ground and said signal pinholes each comprise:a bevelled portion adjacent to said external border;and a concentric cylindrical portion having a first diameter extending inwardly from said bevelled portion and away from said external border, said bevelled portion tapering to a second and smaller diameter, a lip being formed where said bevelled portion joins said cylindrical portion, said first and second conducting fingers extending along said sidewalls within said cylindrical portion to said lips, said lips of said ground pinholes being closer to said external border than said lips of said signal pinholes.