Connector systems for electrosurgical generator

Information

  • Patent Grant
  • 7416437
  • Patent Number
    7,416,437
  • Date Filed
    Wednesday, August 23, 2006
    18 years ago
  • Date Issued
    Tuesday, August 26, 2008
    16 years ago
Abstract
A connector system for coupling electrosurgical instruments to electrosurgical generators is provided. The connector system includes a plug portion connectable to an electrosurgical instrument, the plug portion of the electrosurgical instrument having a shape specific to a particular manufacturer; and a plug receptacle portion supported on the electrosurgical generator; the plug receptacle portion being shaped to receive the plug portion of the electrosurgical instrument of the particular manufacturer and the plug portion of the electrosurgical instrument of any other manufacturer.
Description
BACKGROUND

1. Technical Field


The present disclosure relates to electrosurgical instrument systems and, more particularly, to connector systems for selectively connecting electrosurgical instruments and electrosurgical generators to one another.


2. Background


Electrosurgical instrument systems have become widely used by surgeons in recent years. Accordingly, a need has developed for equipment that is easy to handle and operate, is reliable and is safe. By and large, most electrosurgical instrument systems typically include a hand-held electrosurgical instrument or pencil electrically connected to a source of electrosurgical energy (e.g., an electrosurgical generator). The electrosurgical instrument transfers radio-frequency (RF) electrical energy to a tissue site. The electrosurgical energy is returned to the electrosurgical generator via a return electrode pad positioned under a patient (i.e., a monopolar system configuration) or a smaller return electrode positionable in bodily contact with or immediately adjacent to the surgical site (i.e., a bipolar system configuration). The waveforms produced by the electrosurgical generator yield a predetermined electrosurgical effect known generally as electrosurgical figuration.


Recently, electrosurgical instrument systems have been increasingly provided with coupling and/or connecting systems (e.g., a plug) for removably connecting the electrosurgical instrument to the electrosurgical generator. Typically, the electrosurgical instrument is provided with a so called “male” connector while the electrosurgical generator is provided with the corresponding “female” connector.


Since electrosurgery requires controlled application of radio frequency energy to an operative tissue site, it is important that the appropriate electrosurgical generator be correctly and/or properly mated with the electrosurgical instrument for the specific electrosurgical procedure. Due to the variety of operative, electrosurgical procedures, requiring various levels of radio frequency energy delivery from an attached instrument, issues arise with the mismatching of electrosurgical instruments and electrosurgical generators.


Accordingly, a need exists for a connecting system, for electrosurgical generators which allow various surgical instruments to be selectively connected to corresponding electrosurgical generators.


SUMMARY

The present disclosure relates to connector systems for connecting an electrosurgical instrument to an electrosurgical generator. According to one particularly advantageous embodiment of the present disclosure, the connector system includes a plug portion connected to the electrosurgical instrument and including a profile or shape which is selectively mateable with a plug receptacle portion. Advantageously, the plug receptacle portion is retained in the electrosurgical generator and is backward compatible, i.e., able to receive both old flying lead electrosurgical instruments or 2-pin, 3-pin or 4-pin electrical instruments and able to selectively receive enhanced surgical devices with multiple electrical connections.


In one embodiment, the plug portion includes a plug housing having a power pin extending therefrom. The power pin is advantageously positioned closer to a first side edge of the plug housing than a second side edge thereof, wherein the second side edge is opposite the first side edge.


Advantageously, the plug portion includes at least one position pin extending from the plug housing. Preferably, a first position pin extends from a center of the plug housing in substantially the same direction as the power pin. A second position pin may be included which extends from the plug housing at a location off-set from the center thereof and in the same direction as the power pin.


The connector system may also advantageously include a prong extending from the plug housing and substantially in the same direction as the power pin. The prong is desirably positioned closer to a first side edge of the plug housing than a second side edge thereof, wherein the second side edge is opposite the first side edge thereof.


The prong preferably includes a plurality of electrical contacts which provide electrical continuity to the electrosurgical generator. In one embodiment, the prong has a generally L-shaped cross-sectional profile for use with a six (6) contact electrosurgical system. In another embodiment, the prong has a generally rectilinear cross section or profile for use with a four (4) contact system. Advantageously, the L-shaped cross-sectional profile blocks insertion of a plug portion into the plug receptacle portion which is upside down. Other shapes are also envisioned, e.g., generally rectangular, for lesser contact systems, e.g., a four (4) contact system.


Preferably, the plug receptacle portion is operatively retained in the electrosurgical generator and defines a recess for receipt of the plug portion therein. The plug receptacle portion advantageously includes a prong receptacle formed therein, the prong receptacle being shaped and dimensioned to receive the prong therein. It is envisioned that the plug receptacle portion can include a plurality of apertures formed therein for receiving the power pin and the position pins. Preferably, each aperture includes a contact terminal operatively associated therewith. The plug receptacle portion advantageously includes at least one contact pin extending therethrough which is positioned to contact a respective one of the electrical contacts of the prong.


The prong desirably has an overall width which is less than about 0.43 inches and an overall height which is less than about 0.38 inches for the L-shaped six (6) contact prong. For prongs with less than six (6) contacts, e.g., four (4) contacts, the overall height may be less. The prong receptacle desirably has an overall width which is greater than about 0.39 inches and an overall height which is greater than about 0.324 inches.


In one embodiment of the connector system, the connector system includes a tactile feedback mechanism which provides positive tactile feedback to the user that the plug portion has been properly inserted into the plug receptacle portion. Advantageously, the tactile feedback mechanism includes a first post extending through and pivotally supported on the plug receptacle portion and a second post extending through and supported on the plug receptacle portion. Preferably, the first post is spring biased. The tactile feedback mechanism also includes a linkage member which extends between the first post and the second post. The linkage member includes a first arm which extends radially from the first post and a second arm which is supported on and extends from the second post.


A camming pin extends through a distal end of the first arm. The camming pin preferably includes a first portion slidably receivable in an elongate slot formed in the second arm. A second portion is slidably received in an arcuate slot formed in the prong receptacle. The second portion is extendable to engage a groove formed in a lower surface of the prong. A spring is positioned to bias the first portion to a distal-most position in the elongate slot.


In one embodiment, the plug portion includes symbology provided on a surface thereof which includes information regarding the operative parameters of the electrosurgical instrument.


The present disclosure also relates to a connector system for connecting an electrosurgical instrument to an electrosurgical generator which includes a plug portion and a plug receptacle portion disposed on the generator. The plug portion includes a plurality of mechanical interfaces which selectively mate with a corresponding plurality of mechanical interfaces in the plug receptacle portion. A tactile feedback mechanism is included for providing positive feedback to the user that the mechanical interfaces of the plug portion have been properly mated with the corresponding mechanical interfaces of the plug receptacle portion.


The tactile feedback mechanism includes a pair of first and second posts extending through and pivotally supported on the plug receptacle portion and a linkage member extending between the first post and the second post. The linkage member has a first arm extending radially from the first post and a second arm supported on and extending from the second post. A camming pin is included which extends through a distal end of the first arm. Upon insertion of the plug portion into the receptacle portion, the camming pin rides along a slot disposed in the second arm to initially compress a spring. After a predetermined point of the camming pin riding along the slot, the spring subsequently expands to drive the camming pin through the slot thus towing the prong portion into prong receptacle portion.


Other objects and features of the present disclosure will become apparent from consideration of the following description taken in conjunction with the accompanying drawings.





BRIEF DESCRIPTION OF THE DRAWINGS

Other objects and features of the present invention will become apparent from the following detailed description considered in connection with the accompanied drawings. It should be understood, however, that the drawings are designed for the purpose of illustration only and not as a definition of the limits of the invention.



FIG. 1 is a schematic illustration of an electrosurgical instrument system in accordance with the present disclosure;



FIG. 2 is an enlarged perspective view of a connector system, in accordance with an embodiment of the present disclosure, as seen from above;



FIG. 3 is an enlarged perspective view of the connector system of FIG. 2, as seen from below;



FIG. 4 is an enlarged exploded perspective view of the plug portion of the connector system of FIGS. 2-3;



FIG. 5 is a front elevational view of the receptacle portion of the connector system of FIGS. 2-3;



FIG. 6 is a front perspective view of the receptacle portion of the connector system of FIGS. 2-3;



FIG. 7 is an enlarged top perspective view of connector system of FIGS. 2-3, with portions of the receptacle portion cut away, illustrating the mating and/or joining of the plug portion with the receptacle portion;



FIG. 8 is an enlarged top perspective view of the connector system of FIGS. 2-3, with portions of the receptacle portion cut away, illustrating the plug portion mated with the receptacle portion;



FIG. 9 is an enlarged bottom perspective view of the connector system of FIGS. 2-3, with portions of the receptacle portion broken away, illustrating the plug portion mated with the receptacle portion;



FIG. 10 is a perspective view of a plug portion in accordance with an alternate embodiment of the present disclosure, as seen from above;



FIG. 11 is a perspective view of the plug portion of FIG. 10 as seen from below;



FIG. 12 is a front elevational view of a receptacle portion according to an alternate embodiment of the present disclosure;



FIG. 13 is a rear perspective view of the receptacle portion of FIG. 12; and



FIG. 14 is a perspective view of a plug portion in accordance with yet another embodiment of the present disclosure.





DETAILED DESCRIPTION

Embodiments of the presently disclosed connector system for electrosurgical generators are described in detail herein with reference to the drawing figures wherein like reference numerals identify similar or identical elements. In the drawings and in the description which follows, the term “proximal”, as is traditional, will refer to the end of the apparatus and/or device which is closest to the operator, while the term “distal” will refer to the end of the apparatus and/or device which is furthest from the operator.


Referring initially to FIG. 1, there is seen a perspective view of an electrosurgical instrument system in accordance with an exemplary embodiment of the present disclosure, generally indicated as reference numeral 10. Electrosurgical instrument system 10 includes an electrosurgical instrument 12 (e.g., an electrosurgical pencil) which is electrically connectable to a source of electrosurgical energy 14 (e.g., an electrosurgical generator).


Electrosurgical pencil 12 includes a housing 16 configured and adapted to support a blade receptacle 18 at a distal end thereof which, in turn, receives a replaceable electrocautery blade 20 therein. Electrosurgical pencil 12 further includes at least one activation button 22 supported on an outer surface of housing 16. Activation button(s) 22 are operable to control the supply of RF electrical energy to blade 20 from electrosurgical generator 14.


By way of example only, electrosurgical generator 14 may be any one of the following, or equivalents thereof: the “FORCE FX”, “FORCE 2” or “FORCE 4” generators manufactured by Valleylab, Inc. of Boulder, Colo. It is contemplated that electrosurgical generator 14 can be preset to selectively provide an appropriate first predetermined RF signal (e.g., about 1 to 300 watts) for tissue cutting and an appropriate second predetermined RF signal (e.g., about 1 to 120 watts) for tissue coagulation. However, as will be described in greater detail below, electrosurgical generator 14 preferably is adapted to automatically configure itself to transmit particular RF signals depending on the particular electrosurgical instrument connected thereto.


As seen in FIGS. 1-9, electrosurgical instrument system 10 is provided with a connector system 100, as best seen in FIG. 2, which is configured and adapted to selectively connect particular electrosurgical instruments (e.g., electrosurgical pencils 12) to particular sources of electrosurgical energy (e.g., electrosurgical generators 14). Connector system 100 includes a plug or male portion 102 operatively associated with electrosurgical instrument 12 via a connecting wire 24 and a receptacle, socket or female portion 104 which is operatively associated with electrosurgical generator 14. Preferably, receptacle portion 104 is “backward compatible”, i.e., able to receive or connect to plug portions 102 of the various electrosurgical instruments disclosed herein as well as able to receive or connect other prior electrosurgical instruments which include less pins or prongs.


With reference to FIG. 4, plug portion 102 includes a housing portion 106 having a first-half section 106a and a second half-section 106b operatively engagable with one another, preferably, via a snap-fit engagement. Half-sections 106a, 106b are configured and adapted to retain a common power pin 108 and a plurality of electrical contacts 110 therebetween, as will be described in greater detail below.


Plug portion 102 includes a power pin 108 extending distally from housing 106 at a location preferably between first half-section 106a and second half-section 106b. Preferably, power pin 108 is positioned to be off center, i.e., closer to one side edge of housing 106 than the other. Plug portion 102 further includes at least one, preferably, a pair of position pins 112 also extending from housing 106. Position pins 112 are preferably positioned between half-sections 106a and 106b and are oriented in the same direction as power pin 108. Desirably, a first position pin 112a is positioned in close proximity to a center of housing 106 and a second position pin 112b is positioned to be off center and in close proximity to an opposite side edge of housing 106 as compared to power pin 108. Pins 112a, 112b and 108 are preferably located on plug portion 102 at positions which correspond to the pin positions of earlier connections which are compatible to earlier known generators.


Plug portion 102 further includes a prong 114 extending from housing 106. In particular, prong 114 includes a body portion 116 (see FIG. 4) extending from second half-section 106b of housing 106 and a cover portion 118 extending from first half-section 106a of housing 106. In this manner, when half-sections 106a, 106b are joined to one another, cover portion 118 of prong 114 encloses body portion 116. Preferably, prong 114 is positioned between power pin 108 and first position pin 112a. Prong 114 is configured and adapted to retain electrical contacts 110 therein such that a portion of each contact 110 is exposed along a front or distal edge thereof. While four contacts 110 are shown, it is envisioned that any number of contacts 110 can be provided, including and not limited to two, six and eight. Prong 114 is dimensioned to have an overall width which is less than about 0.43 inches and an overall height which is less than about 0.38 inches.


With continued reference to FIG. 4, connecting wire 24 includes a power supplying wire 120 electrically connected to power pin 108 and a plurality of control wires 122 electrically connected to contacts 110.


With reference to FIGS. 2 and 5-6, receptacle portion 104 of connector system 100 includes a housing 130 having a recess 132 formed therein. Recess 132 is configured and dimensioned to receive plug portion 102 therein. Recess 132 includes a plurality of apertures 134 formed in a rear wall 136 thereof. Preferably, three apertures 134a-134c are provided. Apertures 134a-134c are preferably positioned and sized to respectively receive power pin 108 and position pins 112 therein when plug portion 102 is inserted into receptacle portion 104. As mentioned above, preferably, apertures 134a-134c are positioned to receive connector pins from prior known connectors to enable the connector system to be backward compatible.


As seen in FIG. 2, and in greater detail in FIGS. 7-9, receptacle portion 104 further includes contact terminals 138a-138c disposed behind rear wall 136 and in registration with a respective aperture 134a-134c. Contact terminals 138a-138c are configured and dimensioned to receive power pin 108 and position pins 112 therein. While only contact terminal 138a needs to be configured and adapted to create an electrical interface with power pin 108, it is within the scope of the present disclosure to have each contact terminal 138a-138c configured and adapted to provide electrical interfaces. For example, contact terminals 138a-138c can be fabricated from an electrically conductive material such that when plug portion 102 is inserted into receptacle portion 104 and power pin 108 is inserted into corresponding contact terminal 138a through aperture 134a, contact terminal 138a electrically engages power pin 108 and, in turn, enables transmission of RF energy from electrosurgical generator 14 to electrosurgical instrument 12. One practicable example would be to utilize the positive engagement of pins 112a, 112b within the contact terminals 138a, 138b as a safety mechanism, i.e., pins 112a, 112b must be properly and fully seated within terminals 138a, 138b to allow the generator to supply energy to the instrument.


With continued reference to FIGS. 5 and 6, receptacle portion 104 further includes a prong receptacle 140 formed in rear wall 136. Prong receptacle 140 is preferably formed between apertures 134a and 134b. Prong receptacle 140 is sized and shaped to receive prong 114 therein when plug portion 102 is inserted into receptacle portion 104.


Since prong 114 extends from second half-section 106b of housing 106 of plug portion 102, plug portion 102 will not enter receptacle portion 104 unless plug portion 102 is in the proper orientation. In this manner, it is ensured that power pin 108 is in electrical contact with corresponding contact terminal 138a. As can be appreciated, connectors which do not include prongs 114 are still connectable to receptacle portion 104 (i.e., backward compatible). However, electrical contacts 110 associated with prong 114 are designed to further enhance the electrical connection between the instrument and the generator and give the surgeon more feedback at the operative site. For example, commonly-owned and concurrently-filed U.S. Patent Application No. [11697(203-3624)] entitled “ELECTROSURGICAL PENCIL WITH IMPROVED CONTROLS” and PCT Application Ser. No. PCT/US03/22900 entitled “ELECTROSURGICAL PENCIL WITH DRAG SENSING CAPABILITY” describe several features which would typically utilize the additional electrical contacts 110 in prong 114 to enhance feedback to the surgeon at the operative site, e.g., mode or power settings or sensors for movement, position, drag or temperature.


Preferably, as seen in FIGS. 5 and 6, prong receptacle 140 includes a lower portion 140a configured and dimensioned to receive prong 114, as described above. Prong receptacle 140 is dimensioned to have an overall width which is greater than about 0.39 inches and an overall height which is greater than about 0.324 inches. It is envisioned that, prong receptacle 140 can further include an upper portion 140b which is integral with lower portion 140a and defines a prong receptacle 140 having an “L-shaped” cross-sectional profile. In this manner, prong receptacle 140 can receive prongs having any number of cross-sectional profiles, including and not limited to, rectangular (e.g. prong 114), square and “L-shaped” (see FIGS. 10 and 11). Moreover, “L-shaped” prong receptacle 140 defines a corner 140c which is shaped and sized to block the insertion of a traditional three pin plug when the traditional plug is being inserted upside down.


With continued reference to FIGS. 5 and 6, prong receptacle 140 includes a plurality of openings 142 formed in a rear wall 144 thereof for permitting passage of contact pins 146, preferably spring-type contact pins, therethrough. In this manner, when plug portion 102 is inserted into receptacle portion 104, electrical contacts 110 of prong 114 will electrically engage pins 146.


As best seen in FIG. 5, prong receptacle 140 can include four openings 142 formed in lower portion 140a and two openings 142 formed in upper portion 140b. While such an arrangement is shown and described, it is within the scope of the present disclosure to include various other arrangements including various numbers of pins 146.


With reference to FIGS. 2-9, connector system 100 further includes a tactile feedback mechanism 150 (see FIG. 9) for securing plug portion 102 into receptacle portion 104, for providing positive feedback to the user that plug portion 102 has been fully inserted into receptacle portion 104, and for compensating for increasing resistance that exists as prong 114 enters into prong receptacle 140 and engages pins 146.


Tactile feedback mechanism 150 includes a first post 152 extending through and pivotally supported on receptacle portion 104. Preferably, first post 152 is spring biased by a spring member 154. Tactile feedback mechanism 150 further includes a second post 156 extending through and supported on receptacle portion 104. A linkage member 158 extends between first post 152 and second post 156. Linkage member 158 includes a first arm 158a extending radially from first post 152 and a second arm 158b supported on and extending from second post 156.


A camming pin 160 extends through a distal end of first arm 158a and includes a first portion 160a which is slidably receivable in an elongate slot 162 (see FIG. 2) formed in second arm 158b and a second portion 160b, extending in an opposite direction to first portion 160a, which is slidably receivable in an arcuate slot 164 formed in prong receptacle 140 (see FIGS. 3, 6 and 7). First portion 160a is biased to the distal-most position of elongate slot 162 by a spring 166 disposed within second arm 158b. Second portion 160b extends through arcuate slot 164 an amount sufficient to be engagable with an “L-shaped” groove and/or recess 148 formed in a lower surface of prong 114 (see FIGS. 3, 4 and 9) in order to define a bayonet-type engagement. Alternatively, second arm 158b may extend “opposite” first post 152 and be joined by a tension spring (not shown) to first post 152.


In use, with camming pin 160 initially positioned near the entrance of prong receptacle 140, as prong 114 enters prong receptacle 140, second portion 160b of camming pin 160 enters into and engages groove 148 of prong 114. As prong 114 is further advanced, camming pin 160 rides along arcuate slot 164 and elongate slot 162, thereby compressing spring 166. Once prong 114 is advanced beyond a point of criticality, spring 166 expands and thus drives camming pin 160 through the remainder of arcuate slot 164 thereby drawing prong 114 into prong receptacle 140.


It is envisioned that spring 154 may provide an additional safety feature as well. For example, spring 154 is provided in pin 152 to allow a mating chamfer 153 on pin 152 (FIG. 12) to ride up and over the chamfer 151 (FIG. 3) on plug 102. This is necessitated to allow plug 102 to be inserted in the event that the cam is disengaged prior to being pulled back to the proximal position upon removal of the last plug 102 to have been inserted.


As seen in FIGS. 1, 2, 4 and 7-8, connector system 100 further includes symbology 170 provided on a surface of plug portion 102, preferably on an outer surface of first half-section 106a of housing 106. Symbology 170 can include and is not limited to at least one of the following: bar codes, UPC codes, Postnet. Data Matrix, Maxi Code, Aztec Code and the like. Preferably, symbology 170 includes at least one Aztec code, preferably, a pair of Aztec codes positioned side-by-side.


Aztec Code is a high density two dimensional matrix style bar code symbology that can encode up to 3750 characters from the entire 256 byte ASCII character set. The Aztec code symbol is built on a square grid with a bulls-eye pattern at its center. Data is encoded in a series of “layers” that circle around the bulls-eye pattern. Each additional layer completely surrounds the previous layer thus causing the symbol to grow in size as more data is encoded yet the symbol remains square.


In this manner, each electrosurgical instrument 12 is provided with a characteristic symbology 170 containing information regarding the operative parameters for that particular electrosurgical instrument, such as, for example, the operative RF energy setting, the operative waveform setting, and the algorithm for interpreting signals on contact(s) 110 and pin(s) 146.


Connector system 100 can further include a symbology reader and/or scanner (not shown) operatively supported in receptacle portion 104. Accordingly, when plug portion 102 is mated with receptacle portion 104, the reader scans and reads the operative parameters contained in the characteristic symbology 170 and transmits the operative parameters to electrosurgical generator 14 which in turn automatically configures and/or sets itself to supply operative parameters (e.g., preset ranges, preferred settings and the like) to electrosurgical instrument 12. Alternatively, electrosurgical generator 14 can be engaged with a data table which, once the instrument is identified, will transmit the appropriate RF parameter to the identified instrument. In addition, as described above, symbology 170 can also be used as a positive engagement mechanism. For example, the symbology must be aligned or in a position to allow the instrument to operate or to allow the instrument to operate in an enhanced mode.


For example and with respect to FIG. 6, receptacle 140 may contain additional symbology 170′ on the interior surface opposite the scanner window similar to that on plug 12. The symbology 170′ is positioned between the power pin and the next adjacent pin. The scanner will then read the symbology 170′ whenever a plug is not inserted. When a plug is inserted, the symbology 170′ will be blocked and the scanner will then read the symbology 170 on the plug 102 to determine pencil type and the appropriate electrosurgical settings associated that that particular pencil. If the symbology 170′ is blocked but no new symbology 170 is identified, then the generator will determine that the plug 102 is of an old style pencil without enhanced capabilities (e.g., an E2525 or E2516 Electrosurgical Pencil sold by Valleylab—a division of Tyco Healthcare LP in Colorado). Old style pencils will respond to switch signals on pins 138b and 138c outputting RF on a pin 138 as called for by the surgeon. The symbology 170′ in the receptacle is preferably positioned such that flying leads from existing devices will not obscure the symbology 170′ and therefore will not enable the electrosurgical generator to output RF through pin 108.


It is envisioned that connector system 100 can include a positive engagement mechanism configured and adapted to ensure proper engagement of prong portion 102 in receptacle portion 104 prior to allowing activation of electrosurgical instrument 12. For example, the positive engagement mechanism may include an optical coupler pair (e.g., an optical coupler member operatively associated with prong portion 102 and a cooperating coupler member operatively associated with receptacle portion 104, for example, reflective diodes), mechanical coupler pairs, electromechanical coupler pairs, and/or bar code readers. In addition, the positive engagement mechanism can be configured and adapted to not be activated and/or triggered by insertion of “flying leads”, from prior art instruments, into receptacle portion 104 thereby preventing activation of such instruments.


Turning now to FIGS. 10 and 11, a plug portion, in accordance with an alternate embodiment of the present disclosure, is designated generally as 202. Plug portion 202 is similar to plug portion 102 and will only be described in detail to the extent necessary to identify differences in construction and/or operation.


Plug portion 202 includes a prong 214 extending from housing 206. In particular, prong 214 includes a first portion 216 extending from first half-section 206a of housing 206 and a second portion 218 extending from second half-section 206b of housing 206. Preferably, second portion 218 of prong 214 has a width which is greater than a width of first portion 216. In this manner, when first and second half-sections 206a, 206b of housing 206 are joined to one another, prong 214 has an L-shaped transverse cross-sectional profile. In particular, prong 214 is configured and dimensioned to be received in complementary shaped prong receptacle 140 of receptacle portion 104 (see FIGS. 4 and 5).


Prong 214 includes a plurality of contacts 210 exposed along a front surface thereof. In particular, prong 214 includes a first set of contacts 210a, preferably two, exposed along a front surface of first portion 216 of prong 214 and a second set of contacts 210b, preferably, four, exposed along a front surface of second portion 218 of prong 214.


Accordingly, the first set of contacts 210a electrically engage pins 146 extending from openings 142 formed in upper portion 140b of prong receptacle 140. In addition, the second set of contacts 210b electrically engage pins 146 extending from opening 142 formed in lower portion 140a of prong receptacle 140.


Turning now to FIGS. 12 and 13, a receptacle portion, in accordance with an alternate embodiment of the present disclosure, is designated generally as 204. Receptacle portion 204 is similar to receptacle portion 104 and will only be described in detail to the extent necessary to identify differences in construction and/or operation.


Receptacle portion 204 includes a prong receptacle 240 having a substantially rectilinear cross-sectional profile. Prong receptacle 240 is configured and dimensioned to receive prong 114 and/or prong 214 therein. Prong receptacle 240 includes a plurality of openings 242 formed in a rear wall 244 thereof. Preferably, two rows of openings 242 are formed, a first row including three openings and a second row including four openings. A pin 146 (not shown) can extend from each opening 242 for electrical engagement with contacts 210.


Turning now to FIG. 14, a plug portion, in accordance with yet another alternate embodiment of the present disclosure, is designated generally as 302. Plug portion 302 includes a housing 306 including a first half-section 306a and a second half-section 306b defining a plane therebetween. Housing 306 further includes a first side portion 308a and a second side portion 308b. Preferably, second side portion 308b has a length which is greater than a length of first side portion 308a.


As seen in FIG. 14, power pin 108 extends distally from first side portion 308a. Preferably, power pin 108 extends from first side portion 308a an amount sufficient such that a distal-most end of power pin 108 is substantially even with a distal-most surface of second side portion 308b.


Second side portion 308b includes a plurality of contacts 310 exposed along the distal-most surface thereof. In particular, second side portion 308b includes eight contacts 310 exposed along a distal-most surface thereof. Preferably, contacts 310 are in the same plane as power pin 108.


It is envisioned that electrosurgical generator 14 includes a receptacle portion (not shown) configured and dimensioned to receive and mate with plug portion 302.


While several embodiments of the disclosure have been shown in the drawings, it is not intended that the disclosure be limited thereto, as it is intended that the disclosure be as broad in scope as the art will allow and that the specification be read likewise. Therefore, the above description should not be construed as limiting, but merely as exemplifications of preferred embodiments.


Those skilled in the art will envision other modifications within the scope and spirit of the claims appended hereto.

Claims
  • 1. A connector system for connecting an electrosurgical instrument to an electrosurgical generator, the connector system comprising: a plug portion connectable to the electrosurgical instrument, said plug portion including a plurality of pins and a prong that extend therefrom, said prong retaining one or more electrical contacts therein;a plug receptacle portion disposed within the generator, said plug receptacle portion defining a recess for receiving at least a portion of said plug portion therein, said plug receptacle portion including a plurality of apertures for receiving respective ones of said plurality of pins and a prong receptacle for receiving said prong; anda tactile feedback mechanism pivotabley connected to the plug receptacle portion and adapted to engage the plug portion via a camming pin when the plug portion is inserted into the plug receptacle portion.
  • 2. The connector system according to claim 1, wherein the prong includes a plurality of electrical contacts.
  • 3. The connector system according to claim 1, wherein the prong has a first geometry and said prong receptacle has a second geometry different from the first geometry which is matingly compatible with said first geometry of said prong.
  • 4. The connector system according to claim 1, wherein the prong has at least one of a generally L-shaped cross-sectional profile and a rectilinear-shaped profile.
  • 5. The connector system according to claim 1, wherein each aperture includes a contact terminal operatively associated therewith.
  • 6. The connector system according to claim 1, wherein the tactile feedback mechanism provides positive feedback to the user that the plug portion has been properly inserted into the plug receptacle portion.
  • 7. The connector system according to claim 1, wherein the prong receptacle has an L-shaped cross-sectional profile.
  • 8. The connector system according to claim 7, wherein the L-shaped cross-sectional profile defines a corner that blocks insertion of a three pin plug into the plug receptacle when the three pin plug is being inserted upside down.
  • 9. The connector system according to claim 5, wherein the plug receptacle portion includes at least one contact pin extending therethrough.
  • 10. The connector system according to claim 9, wherein the contact pins are positioned to contact respective ones of the electrical contacts of the prong.
  • 11. The connector system according to claim 10, wherein the prong has an overall width which is less than about 0.43 inches and an overall height which is less than about 0.38 inches.
  • 12. The connector system according to claim 11, wherein the prong receptacle has an overall width which is greater than about 0.39 inches and an overall height which is greater than about 0.324 inches.
  • 13. The connector system according to claim 1, wherein the plug portion includes a plug housing configured to receive a connecting wire therein, the connecting wire having a power pin extending therefrom.
  • 14. The connector system according to claim 13, wherein the prong is positioned closer to a first side edge of the plug housing than a second side edge thereof, wherein the second side edge is opposite the first side edge thereof.
  • 15. The connector system according to claim 13, wherein the plug portion includes symbology provided on a surface thereof.
  • 16. The connector system according to claim 15, wherein the symbology includes information regarding the operative parameters of the electrosurgical instrument.
  • 17. The connector system according to claim 13, wherein the power pin is positioned closer to a first side edge of the plug housing than a second side edge thereof, wherein the second side edge is opposite the first side edge thereof.
  • 18. The connector system according to claim 17, wherein the plug portion further includes at least one position pin extending from the plug housing.
  • 19. The connector system according to claim 18, wherein a first position pin extends from the plug housing near the second side edge and in substantially the same direction as the power pin, and a second position pin extends from the plug housing at a location off-set from the center thereof and in the same direction as the power pin.
  • 20. The connector system according to claim 19, wherein the prong is positioned between the power pin and the second position pin.
  • 21. A connector system for coupling electrosurgical instruments to electrosurgical generators, the connector system comprising: a first plug portion connectable to a first electrosurgical instrument, the first plug portion of the first electrosurgical instrument having a first configuration;a plug receptacle portion supported on an electrosurgical generator, the plug receptacle portion being configured to receive the first plug portion of the first electrosurgical instrument and to receive a second plug portion of a second electrosurgical instrument that has a second configuration different than the first configuration of the first plug portion; anda tactile feedback mechanism pivotabley connected to the plug receptacle portion and adapted to engage the plug portion via a camming pin when the plug portion is inserted into the plug receptacle portion.
  • 22. The connector system according to claim 21, wherein the tactile feedback mechanism provides positive feedback to the user that the first plug portion has been properly inserted into the plug receptacle portion.
  • 23. The connector system according to claim 21, wherein the first plug portion includes symbology provided on a surface thereof, the symbology including information regarding the operative parameters of the first electrosurgical instrument.
  • 24. The connector system according to claim 21, wherein the first plug portion further includes a prong having a particular shape extending therefrom.
  • 25. The connector system according to claim 24, wherein the prong has an L-shaped cross-sectional profile and includes at least one electrical contact.
  • 26. The connector system according to claim 25, wherein the plug receptacle portion includes a prong receptacle formed therein configured and dimensioned to receive the prong therein.
  • 27. The connector system according to claim 26, wherein the prong receptacle includes at least one pin extending therefrom for contact with a corresponding electrical contact.
  • 28. The connector system according to claim 26, wherein the prong has an overall width which is less than about 0.43 inches and an overall height which is less than about 0.38 inches.
  • 29. The connector system according to claim 26, wherein the prong receptacle is configured and dimensioned to block insertion of the second plug portion that is being inserted in an incorrect orientation.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application is a continuation of U.S. application Ser. No. 10/718,114, filed Nov. 20, 2003 now U.S. Pat. No. 7,131,860.

US Referenced Citations (558)
Number Name Date Kind
1787709 Wappler Jan 1931 A
1813902 Bovie Jul 1931 A
1841968 Lowry Jan 1932 A
1863118 Liebel Jun 1932 A
1945867 Rawls Feb 1934 A
2827056 Degelman Mar 1958 A
2849611 Adams Aug 1958 A
3042894 Fox Jul 1962 A
3058470 Seeliger et al. Oct 1962 A
3083345 Scheller Mar 1963 A
3089496 Degelman May 1963 A
3144292 Forney, Jr. Aug 1964 A
3163165 Islikawa Dec 1964 A
3252052 Nash May 1966 A
3391351 Trent Jul 1968 A
3413480 Biard et al. Nov 1968 A
3436563 Regitz Apr 1969 A
3439253 Piteo Apr 1969 A
3439680 Thomas, Jr. Apr 1969 A
3461874 Martinez Aug 1969 A
3471770 Haire Oct 1969 A
3478744 Leiter Nov 1969 A
3486115 Anderson Dec 1969 A
3495584 Schwalm Feb 1970 A
3513353 Lansch May 1970 A
3514689 Giannamore May 1970 A
3515943 Warrington Jun 1970 A
3551786 Van Gulik Dec 1970 A
3562623 Farnsworth Feb 1971 A
3571644 Jakoubovitch Mar 1971 A
3589363 Banko Jun 1971 A
3595221 Blackett Jul 1971 A
3601126 Estes Aug 1971 A
3611053 Rowell Oct 1971 A
3641422 Farnsworth et al. Feb 1972 A
3662151 Haffey May 1972 A
3675655 Sittner Jul 1972 A
3683923 Anderson Aug 1972 A
3693613 Kelman Sep 1972 A
3697808 Lee Oct 1972 A
3699967 Anderson Oct 1972 A
3720896 Bierlein Mar 1973 A
3743918 Maitre Jul 1973 A
3766434 Sherman Oct 1973 A
3768482 Shaw Oct 1973 A
3801766 Morrison, Jr. Apr 1974 A
3801800 Newton Apr 1974 A
3812858 Oringer May 1974 A
3815015 Swin et al. Jun 1974 A
3826263 Cage et al. Jul 1974 A
3848600 Patrick, Jr. et al. Nov 1974 A
3870047 Gonser Mar 1975 A
3875945 Friedman Apr 1975 A
3885569 Judson May 1975 A
3897787 Ikuno et al. Aug 1975 A
3897788 Newton Aug 1975 A
3905373 Gonser Sep 1975 A
3913583 Bross Oct 1975 A
3923063 Andrews et al. Dec 1975 A
3933157 Bjurwill et al. Jan 1976 A
3946738 Newton et al. Mar 1976 A
3952748 Kaliher et al. Apr 1976 A
3955869 Licht May 1976 A
3963030 Newton Jun 1976 A
3964487 Judson Jun 1976 A
3971365 Smith Jul 1976 A
3980085 Ikuno Sep 1976 A
4005714 Hiltebrandt Feb 1977 A
4024467 Andrews et al. May 1977 A
4029381 Tarrall et al. Jun 1977 A
4030796 Patzer Jun 1977 A
4041952 Morrison, Jr. et al. Aug 1977 A
4051855 Schneiderman Oct 1977 A
4074719 Semm Feb 1978 A
4092986 Schneiderman Jun 1978 A
4094320 Newton et al. Jun 1978 A
4097104 Furety et al. Jun 1978 A
4102341 Ikuno et al. Jul 1978 A
4114623 Meinke et al. Sep 1978 A
4121590 Gonser Oct 1978 A
4123673 Gonser Oct 1978 A
4126126 Bare et al. Nov 1978 A
4126137 Archibald Nov 1978 A
4171700 Farin Oct 1979 A
4188927 Harris Feb 1980 A
4191188 Belt et al. Mar 1980 A
4196734 Harris Apr 1980 A
4200104 Harris Apr 1980 A
4200105 Gonser Apr 1980 A
4209018 Meinke et al. Jun 1980 A
4231372 Newton Nov 1980 A
4232676 Herczog Nov 1980 A
4237887 Gonser Dec 1980 A
4269462 Bethurum May 1981 A
4281373 Mabille Jul 1981 A
4284312 Patchett et al. Aug 1981 A
4287557 Brehse Sep 1981 A
4303073 Archibald Dec 1981 A
4311154 Sterzer et al. Jan 1982 A
4314559 Allen Feb 1982 A
4321926 Roge Mar 1982 A
4334539 Childs et al. Jun 1982 A
4343308 Gross Aug 1982 A
4372315 Shapiro et al. Feb 1983 A
4376263 Pittroff et al. Mar 1983 A
4378801 Oosten Apr 1983 A
4384582 Watt May 1983 A
4397314 Vaguine Aug 1983 A
4411266 Cosman Oct 1983 A
4416276 Newton et al. Nov 1983 A
4416277 Newton et al. Nov 1983 A
4420209 Reis et al. Dec 1983 A
4429694 McGreevy Feb 1984 A
4436091 Banko Mar 1984 A
4437464 Crow Mar 1984 A
4438766 Bowers Mar 1984 A
4463759 Garito et al. Aug 1984 A
4472661 Culver Sep 1984 A
4474179 Koch Oct 1984 A
4492231 Auth Jan 1985 A
4492832 Taylor Jan 1985 A
4494541 Archibald Jan 1985 A
4514619 Kugelman Apr 1985 A
4518212 Rumble May 1985 A
4520818 Mickiewicz Jun 1985 A
4543448 Deurloo Sep 1985 A
4559943 Bowers Dec 1985 A
4565200 Cosman Jan 1986 A
4566454 Mehl et al. Jan 1986 A
4569345 Manes Feb 1986 A
4582057 Auth et al. Apr 1986 A
4590934 Malis et al. May 1986 A
4608977 Brown Sep 1986 A
4630218 Hurley Dec 1986 A
4632109 Patterson Dec 1986 A
4644955 Mioduski Feb 1987 A
4651264 Shiao-Chung Hu Mar 1987 A
4651280 Chang et al. Mar 1987 A
4657015 Irnich Apr 1987 A
4658815 Farin et al. Apr 1987 A
4658819 Harris et al. Apr 1987 A
4658820 Klicek Apr 1987 A
4662383 Sogawa et al. May 1987 A
4691703 Auth et al. Sep 1987 A
4727874 Bowers et al. Mar 1988 A
4735204 Sussman et al. Apr 1988 A
4739759 Rexroth et al. Apr 1988 A
4741334 Irnich May 1988 A
4746298 Hollander May 1988 A
4754757 Feucht Jul 1988 A
4764129 Jones et al. Aug 1988 A
4788634 Schlecht et al. Nov 1988 A
4805621 Heinze et al. Feb 1989 A
4818954 Flachenecker et al. Apr 1989 A
4827927 Newton May 1989 A
4848335 Manes Jul 1989 A
4860745 Farin et al. Aug 1989 A
4862889 Feucht Sep 1989 A
4890610 Kirwan et al. Jan 1990 A
4903696 Stasz et al. Feb 1990 A
4907589 Cosman Mar 1990 A
4922210 Flachenecker et al. May 1990 A
4931047 Broadwin et al. Jun 1990 A
4931717 Gray et al. Jun 1990 A
4938761 Ensslin Jul 1990 A
4942313 Kinzel Jul 1990 A
4961047 Carder Oct 1990 A
4961435 Kitagawa et al. Oct 1990 A
4966597 Cosman Oct 1990 A
4969885 Farin Nov 1990 A
4993430 Shimoyama et al. Feb 1991 A
4995877 Ams et al. Feb 1991 A
5015227 Broadwin et al. May 1991 A
5024668 Peters et al. Jun 1991 A
5087257 Farin Feb 1992 A
5103804 Abele et al. Apr 1992 A
5108389 Cosmescu Apr 1992 A
5108391 Flachenecker Apr 1992 A
5122137 Lennox Jun 1992 A
5133711 Hagen Jul 1992 A
5151102 Kamiyama et al. Sep 1992 A
5152762 McElhenney Oct 1992 A
5157603 Scheller et al. Oct 1992 A
5160334 Billings et al. Nov 1992 A
5167658 Ensslin Dec 1992 A
5190517 Zieve et al. Mar 1993 A
5196008 Kuenecke Mar 1993 A
5196009 Kirwan, Jr. Mar 1993 A
5201900 Nardella Apr 1993 A
5207691 Nardella May 1993 A
5211581 Schwartz et al. May 1993 A
5230623 Guthrie et al. Jul 1993 A
5233515 Cosman Aug 1993 A
5249121 Baum et al. Sep 1993 A
5254117 Rigby et al. Oct 1993 A
RE34432 Bertrand Nov 1993 E
5267994 Gentelia et al. Dec 1993 A
5267997 Farin Dec 1993 A
5281213 Milder et al. Jan 1994 A
5300068 Rosar et al. Apr 1994 A
5300070 Gentelia Apr 1994 A
5318563 Malis et al. Jun 1994 A
5323778 Kandarpa et al. Jun 1994 A
5324283 Heckele Jun 1994 A
5330518 Neilson et al. Jul 1994 A
5334193 Nardella Aug 1994 A
5341807 Nardella Aug 1994 A
5342356 Ellman Aug 1994 A
5342357 Nardella Aug 1994 A
5342409 Mullett Aug 1994 A
5348554 Imran et al. Sep 1994 A
5370645 Klicek et al. Dec 1994 A
5370672 Fowler et al. Dec 1994 A
5370675 Edwards et al. Dec 1994 A
5372596 Klicek et al. Dec 1994 A
5376022 Carr et al. Dec 1994 A
5383874 Jackson Jan 1995 A
5383876 Nardella Jan 1995 A
5383917 Desai et al. Jan 1995 A
5385148 Lesh et al. Jan 1995 A
5400267 Denen et al. Mar 1995 A
5403311 Abele et al. Apr 1995 A
5403312 Yates et al. Apr 1995 A
5409000 Imran Apr 1995 A
5409485 Suda Apr 1995 A
5413573 Koivukangas May 1995 A
5414238 Steigerwald et al. May 1995 A
5417719 Hull et al. May 1995 A
5422567 Matsunaga Jun 1995 A
5423808 Edwards et al. Jun 1995 A
5423809 Klicek Jun 1995 A
5423810 Goble et al. Jun 1995 A
5425704 Sakurai et al. Jun 1995 A
5430434 Lederer et al. Jul 1995 A
5432459 Thompson Jul 1995 A
5433739 Sluijter et al. Jul 1995 A
5436566 Thompson Jul 1995 A
5438302 Goble Aug 1995 A
5443463 Stern et al. Aug 1995 A
5445635 Denen Aug 1995 A
5451224 Goble et al. Sep 1995 A
5458597 Edwards et al. Oct 1995 A
5462521 Brucker et al. Oct 1995 A
5472441 Edwards et al. Dec 1995 A
5472443 Cordis et al. Dec 1995 A
5480399 Hebborn Jan 1996 A
5483952 Aranyi Jan 1996 A
5490850 Ellman et al. Feb 1996 A
5496312 Klicek Mar 1996 A
5496313 Gentelia et al. Mar 1996 A
5500012 Brucker et al. Mar 1996 A
5500616 Ochi Mar 1996 A
5514129 Smith May 1996 A
5520684 Imran May 1996 A
5531774 Schulman et al. Jul 1996 A
5534018 Wahlstrand et al. Jul 1996 A
5536267 Edwards et al. Jul 1996 A
5540681 Strul et al. Jul 1996 A
5540683 Ichikawa Jul 1996 A
5540684 Hassler, Jr. Jul 1996 A
5541376 Ladtkow et al. Jul 1996 A
5556396 Cohen et al. Sep 1996 A
5558671 Yates Sep 1996 A
5569242 Lax et al. Oct 1996 A
5571147 Sluijter et al. Nov 1996 A
5573533 Strul Nov 1996 A
5584830 Ladd et al. Dec 1996 A
5588432 Crowley Dec 1996 A
5596466 Ochi Jan 1997 A
5599344 Paterson Feb 1997 A
5599345 Edwards et al. Feb 1997 A
5599348 Gentelia et al. Feb 1997 A
5605150 Radons et al. Feb 1997 A
5613966 Makower et al. Mar 1997 A
5626575 Crenner May 1997 A
5628745 Bek May 1997 A
5643330 Holsheimer et al. Jul 1997 A
5647869 Goble et al. Jul 1997 A
5647871 Levine et al. Jul 1997 A
5651780 Jackson et al. Jul 1997 A
5658173 Genta Aug 1997 A
5658322 Fleming Aug 1997 A
5660567 Nierlich et al. Aug 1997 A
5674217 Wahlstrom et al. Oct 1997 A
5685840 Schechter et al. Nov 1997 A
5688267 Panescu et al. Nov 1997 A
5693042 Bioarski et al. Dec 1997 A
5694304 Telefus et al. Dec 1997 A
5695494 Becker Dec 1997 A
5702386 Stern et al. Dec 1997 A
5702429 King Dec 1997 A
5707369 Vaitekunas et al. Jan 1998 A
5712772 Telefus et al. Jan 1998 A
5713896 Nardella Feb 1998 A
5720744 Eggleston et al. Feb 1998 A
5722975 Edwards et al. Mar 1998 A
5733281 Nardella Mar 1998 A
5749869 Lindenmeier et al. May 1998 A
5749871 Hood et al. May 1998 A
5755715 Stern May 1998 A
5766165 Gentelia et al. Jun 1998 A
5769847 Panescu Jun 1998 A
5772659 Becker et al. Jun 1998 A
5792138 Shipp Aug 1998 A
5797902 Netherly Aug 1998 A
5814092 King Sep 1998 A
5817092 Behl Oct 1998 A
5817093 Williamson, IV et al. Oct 1998 A
5820568 Willis Oct 1998 A
5827271 Bussey et al. Oct 1998 A
5830212 Cartmell Nov 1998 A
5836909 Cosmescu Nov 1998 A
5836943 Miller, III Nov 1998 A
5836990 Li Nov 1998 A
5846236 Lindenmeier et al. Dec 1998 A
5868737 Taylor et al. Feb 1999 A
5868739 Lindenmeier et al. Feb 1999 A
5868740 LeVeen et al. Feb 1999 A
5871481 Kannenberg et al. Feb 1999 A
5897552 Edwards et al. Apr 1999 A
5908444 Azure Jun 1999 A
5913882 King Jun 1999 A
5921982 Lesh et al. Jul 1999 A
5925070 King et al. Jul 1999 A
5931836 Hatta et al. Aug 1999 A
5938690 Law et al. Aug 1999 A
5948007 Starkenbaum et al. Sep 1999 A
5951545 Schilling Sep 1999 A
5951546 Lorentzen Sep 1999 A
5954686 Garito et al. Sep 1999 A
5954717 Behl et al. Sep 1999 A
5954719 Chen et al. Sep 1999 A
5961344 Rosales et al. Oct 1999 A
5971784 Fabian et al. Oct 1999 A
5971980 Sherman Oct 1999 A
5976128 Schilling et al. Nov 1999 A
5983141 Sluijter et al. Nov 1999 A
6010499 Cobb Jan 2000 A
6014581 Whayne et al. Jan 2000 A
6033399 Gines Mar 2000 A
6044283 Fein et al. Mar 2000 A
6053910 Fleenor Apr 2000 A
6053912 Panescu et al. Apr 2000 A
6055458 Cochran et al. Apr 2000 A
6056745 Panescu et al. May 2000 A
6056746 Goble et al. May 2000 A
6063075 Mihori May 2000 A
6063078 Wittkampf May 2000 A
6068627 Orszulak et al. May 2000 A
6074386 Goble et al. Jun 2000 A
6074388 Tockweiler et al. Jun 2000 A
6080149 Huang et al. Jun 2000 A
6093186 Goble Jul 2000 A
6102497 Ehr et al. Aug 2000 A
6113591 Whayne et al. Sep 2000 A
6113596 Hooven Sep 2000 A
6123702 Swanson et al. Sep 2000 A
6132429 Baker Oct 2000 A
6142992 Cheng et al. Nov 2000 A
6155975 Urich et al. Dec 2000 A
6162217 Kannenberg et al. Dec 2000 A
6171304 Netherly et al. Jan 2001 B1
6203541 Keppel Mar 2001 B1
6210403 Klicek Apr 2001 B1
6228080 Gines May 2001 B1
6228081 Goble May 2001 B1
6231569 Bek May 2001 B1
6235020 Cheng et al. May 2001 B1
6238387 Miller, III May 2001 B1
6238388 Ellman May 2001 B1
6241725 Cosman Jun 2001 B1
6245065 Panescu Jun 2001 B1
6246912 Sluijter et al. Jun 2001 B1
6251106 Becker et al. Jun 2001 B1
6258085 Eggleston Jul 2001 B1
6261129 Kusagaya Jul 2001 B1
6261285 Novak Jul 2001 B1
6261286 Goble et al. Jul 2001 B1
6273886 Edwards Aug 2001 B1
6275786 Daners Aug 2001 B1
6293941 Strul Sep 2001 B1
6293942 Goble et al. Sep 2001 B1
6296636 Cheng et al. Oct 2001 B1
6306131 Hareyama et al. Oct 2001 B1
6306134 Goble et al. Oct 2001 B1
6309386 Bek Oct 2001 B1
6316778 Goodman et al. Nov 2001 B1
6325795 Lindemann et al. Dec 2001 B1
6325799 Goble Dec 2001 B1
6337998 Behl et al. Jan 2002 B1
6338657 Harper et al. Jan 2002 B1
6350262 Ashley Feb 2002 B1
6358245 Edwards Mar 2002 B1
6364877 Goble et al. Apr 2002 B1
6368106 Clark Apr 2002 B1
6383183 Sekino et al. May 2002 B1
6391024 Sun et al. May 2002 B1
6398779 Buysse et al. Jun 2002 B1
6398781 Goble et al. Jun 2002 B1
6402741 Keppel et al. Jun 2002 B1
6402743 Orszulak et al. Jun 2002 B1
6402747 Lindemann et al. Jun 2002 B1
6409533 Savage, Jr. Jun 2002 B1
6409549 Yeh Jun 2002 B1
6416509 Goble et al. Jul 2002 B1
6436096 Hareyama Aug 2002 B1
6451015 Rittman, III et al. Sep 2002 B1
6458000 Shappell Oct 2002 B2
6458121 Rosenstock Oct 2002 B1
6464689 Qin Oct 2002 B1
6464696 Oyama Oct 2002 B1
6506189 Rittman, III et al. Jan 2003 B1
6508815 Strul Jan 2003 B1
6511476 Hareyama Jan 2003 B2
6511478 Burnside Jan 2003 B1
6517538 Jacob et al. Feb 2003 B1
6520787 Lott Feb 2003 B1
6524308 Muller et al. Feb 2003 B1
6544076 Pocrass Apr 2003 B2
6547786 Goble Apr 2003 B1
6558203 Pocrass May 2003 B2
6558376 Bishop May 2003 B2
6562037 Paton May 2003 B2
6565559 Eggleston May 2003 B2
6568965 Pocrass May 2003 B2
6575969 Rittman, III et al. Jun 2003 B1
6579644 Hasegawa et al. Jun 2003 B2
6582427 Goble et al. Jun 2003 B1
6595805 Pocrass Jul 2003 B2
6620157 Dabney et al. Sep 2003 B1
6623423 Sakurai Sep 2003 B2
6635057 Harano Oct 2003 B2
6648883 Francischelli Nov 2003 B2
6652514 Ellman Nov 2003 B2
6654643 Schmid Nov 2003 B1
6663623 Oyama et al. Dec 2003 B1
6663624 Edwards Dec 2003 B2
6666860 Takahashi Dec 2003 B1
6679875 Honda Jan 2004 B2
6682527 Strul Jan 2004 B2
6685700 Behl Feb 2004 B2
6685701 Orszulak et al. Feb 2004 B2
6685703 Pearson et al. Feb 2004 B2
6692311 Kamei et al. Feb 2004 B1
6692489 Heim Feb 2004 B1
6712813 Ellman Mar 2004 B2
6730080 Harano May 2004 B2
6733495 Bek May 2004 B1
6733498 Paton May 2004 B2
6740079 Eggers May 2004 B1
6740085 Hareyama May 2004 B2
6749451 Schmitt Jun 2004 B2
6758700 Konno et al. Jul 2004 B2
6783523 Qin Aug 2004 B2
6786777 Sakatani Sep 2004 B2
6786905 Swanson et al. Sep 2004 B2
6786906 Cobb Sep 2004 B1
6786909 Dransfeld et al. Sep 2004 B1
6790206 Panescu Sep 2004 B2
6796849 Villain Sep 2004 B2
6796981 Wham Sep 2004 B2
6824539 Novak Nov 2004 B2
6830569 Thompson Dec 2004 B2
6835082 Gonnering Dec 2004 B2
6843789 Goble Jan 2005 B2
6846307 Whitman et al. Jan 2005 B2
6846308 Whitman et al. Jan 2005 B2
6846309 Whitman et al. Jan 2005 B2
6849071 Whitman et al. Feb 2005 B2
6849073 Hoey Feb 2005 B2
6854994 Stein et al. Feb 2005 B2
6855141 Lovewell Feb 2005 B2
6855142 Harano Feb 2005 B2
6857903 Hyde Feb 2005 B2
6860881 Sturm Mar 2005 B2
6864686 Novak Mar 2005 B2
6875210 Refior Apr 2005 B2
6890220 Wang May 2005 B2
6893435 Roane May 2005 B2
6923804 Eggers et al. Aug 2005 B2
7044948 Keppel May 2006 B2
7044949 Orszulak et al. May 2006 B2
7060063 Marion et al. Jun 2006 B2
7063692 Sakurai et al. Jun 2006 B2
7066933 Hagg Jun 2006 B2
7131860 Sartor et al. Nov 2006 B2
7137980 Buysse et al. Nov 2006 B2
7172591 Harano et al. Feb 2007 B2
20010014804 Goble et al. Aug 2001 A1
20010029315 Sakurai et al. Oct 2001 A1
20010031962 Eggleston Oct 2001 A1
20020035363 Edwards et al. Mar 2002 A1
20020035364 Schoenman et al. Mar 2002 A1
20020052599 Goble May 2002 A1
20020068932 Edwards Jun 2002 A1
20020107517 Witt et al. Aug 2002 A1
20020111624 Witt et al. Aug 2002 A1
20020151889 Swanson et al. Oct 2002 A1
20020193787 Qin Dec 2002 A1
20030004510 Wham et al. Jan 2003 A1
20030060818 Kannenberg Mar 2003 A1
20030078572 Pearson et al. Apr 2003 A1
20030139741 Goble et al. Jul 2003 A1
20030153908 Goble Aug 2003 A1
20030163123 Goble Aug 2003 A1
20030163124 Goble Aug 2003 A1
20030171745 Francischelli Sep 2003 A1
20030199863 Swanson Oct 2003 A1
20030225401 Eggers et al. Dec 2003 A1
20040002745 Flemming Jan 2004 A1
20040015163 Buysse et al. Jan 2004 A1
20040015216 DeSisto Jan 2004 A1
20040019347 Sakurai Jan 2004 A1
20040024395 Ellman Feb 2004 A1
20040030328 Eggers Feb 2004 A1
20040030330 Brassell et al. Feb 2004 A1
20040044339 Beller Mar 2004 A1
20040049179 Francischelli Mar 2004 A1
20040054365 Goble Mar 2004 A1
20040059323 Sturm et al. Mar 2004 A1
20040068304 Paton Apr 2004 A1
20040082946 Malis Apr 2004 A1
20010095100 Thompson May 2004
20040097912 Gonnering May 2004 A1
20040097914 Pantera May 2004 A1
20040097915 Refior May 2004 A1
20040116919 Heim Jun 2004 A1
20040133189 Sakurai Jul 2004 A1
20040138653 Dabney et al. Jul 2004 A1
20040138654 Goble Jul 2004 A1
20040147918 Keppel Jul 2004 A1
20040167508 Wham et al. Aug 2004 A1
20040172016 Bek Sep 2004 A1
20040193148 Wham et al. Sep 2004 A1
20040230189 Keppel Nov 2004 A1
20040243120 Orszulak et al. Dec 2004 A1
20040260279 Goble Dec 2004 A1
20050004564 Wham Jan 2005 A1
20050004569 Witt et al. Jan 2005 A1
20050021020 Blaha et al. Jan 2005 A1
20050021022 Sturm et al. Jan 2005 A1
20050101949 Harano et al. May 2005 A1
20050101951 Wham May 2005 A1
20050113818 Sartor May 2005 A1
20050113819 Wham May 2005 A1
20050149151 Orszulak Jul 2005 A1
20050182398 Paterson Aug 2005 A1
20050197659 Bahney Sep 2005 A1
20050203504 Wham et al. Sep 2005 A1
20060025760 Podhajsky Feb 2006 A1
20060079871 Plaven et al. Apr 2006 A1
20060161148 Behnke Jul 2006 A1
20060178664 Keppel Aug 2006 A1
20060224152 Behnke et al. Oct 2006 A1
20060281360 Sartor et al. Dec 2006 A1
20070038209 Buysse et al. Feb 2007 A1
20070093800 Wham et al. Apr 2007 A1
20070093801 Behnke Apr 2007 A1
Foreign Referenced Citations (87)
Number Date Country
179607 Mar 1905 DE
1099658 Feb 1961 DE
1139927 Nov 1962 DE
1149832 Jun 1963 DE
1439302 Jan 1969 DE
2439587 Feb 1975 DE
2455174 May 1975 DE
2407559 Aug 1975 DE
2602517 Jul 1976 DE
2504280 Aug 1976 DE
2540968 Mar 1977 DE
2820908 Nov 1978 DE
2803275 Aug 1979 DE
2823291 Nov 1979 DE
2946728 May 1981 DE
3143421 May 1982 DE
3045996 Jul 1982 DE
3120102 Dec 1982 DE
3510586 Oct 1986 DE
3604823 Aug 1987 DE
390937 Apr 1989 DE
3904558 Aug 1990 DE
3942998 Jul 1991 DE
4339049 May 1995 DE
19717411 Nov 1998 DE
19848540 May 2000 DE
246350 Nov 1987 EP
310431 Apr 1989 EP
325456 Jul 1989 EP
336742 Oct 1989 EP
390937 Oct 1990 EP
556705 Aug 1993 EP
569130 Nov 1993 EP
608609 Aug 1994 EP
0694291 Jan 1996 EP
836868 Apr 1998 EP
878169 Nov 1998 EP
1051948 Nov 2000 EP
1293171 Mar 2003 EP
1495712 Jan 2005 EP
1500378 Jan 2005 EP
1535581 Jun 2005 EP
880220 Jun 2006 EP
1707143 Oct 2006 EP
1275415 Oct 1961 FR
1347865 Nov 1963 FR
2313708 Dec 1976 FR
2502935 Oct 1982 FR
2517953 Jun 1983 FR
2573301 May 1986 FR
607850 Sep 1948 GB
855459 Nov 1960 GB
902775 Aug 1962 GB
2164473 Mar 1986 GB
2214430 Sep 1989 GB
2358934 Aug 2001 GB
166452 Jan 1965 SU
727201 Apr 1980 SU
WO9206642 Apr 1992 WO
WO9324066 Dec 1993 WO
WO9424949 Nov 1994 WO
WO9428809 Dec 1994 WO
WO9509577 Apr 1995 WO
WO9519148 Jul 1995 WO
WO9602180 Feb 1996 WO
WO9604860 Feb 1996 WO
WO9608794 Mar 1996 WO
WO9618349 Jun 1996 WO
WO9629946 Oct 1996 WO
WO9639914 Dec 1996 WO
WO9706739 Feb 1997 WO
WO9706740 Feb 1997 WO
WO9706855 Feb 1997 WO
WO9717029 May 1997 WO
WO0211634 Feb 2002 WO
WO0245589 Jun 2002 WO
WO0247565 Jun 2002 WO
WO02088128 Jul 2002 WO
WO03090635 Nov 2003 WO
WO03092520 Nov 2003 WO
WO2005060365 Nov 2003 WO
WO2004028385 Apr 2004 WO
WO2004098385 Apr 2004 WO
WO2005046496 May 2005 WO
WO2005048809 Jun 2005 WO
WO2005050151 Jun 2005 WO
WO2005060849 Jul 2005 WO
Related Publications (1)
Number Date Country
20060281360 A1 Dec 2006 US
Continuations (1)
Number Date Country
Parent 10718114 Nov 2003 US
Child 11508615 US