US20060000938A1 - Wire dispenser with frictional drag - Google Patents
Wire dispenser with frictional drag Download PDFInfo
- Publication number
- US20060000938A1 US20060000938A1 US11/157,757 US15775705A US2006000938A1 US 20060000938 A1 US20060000938 A1 US 20060000938A1 US 15775705 A US15775705 A US 15775705A US 2006000938 A1 US2006000938 A1 US 2006000938A1
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- US
- United States
- Prior art keywords
- wire
- spools
- spool
- frictional
- collar
- 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.)
- Abandoned
Links
- 239000004020 conductor Substances 0.000 description 3
- 230000008901 benefit Effects 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 230000007246 mechanism Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 229910000831 Steel Inorganic materials 0.000 description 1
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
- 229910052782 aluminium Inorganic materials 0.000 description 1
- 229910010293 ceramic material Inorganic materials 0.000 description 1
- 239000010959 steel Substances 0.000 description 1
- 238000003466 welding Methods 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H59/00—Adjusting or controlling tension in filamentary material, e.g. for preventing snarling; Applications of tension indicators
- B65H59/02—Adjusting or controlling tension in filamentary material, e.g. for preventing snarling; Applications of tension indicators by regulating delivery of material from supply package
- B65H59/04—Adjusting or controlling tension in filamentary material, e.g. for preventing snarling; Applications of tension indicators by regulating delivery of material from supply package by devices acting on package or support
Definitions
- the present invention relates generally to wire dispensers used by electricians, for example. More particularly, the present invention provides an inexpensive and adjustable frictional drag that prevents overspinning of wire as the wire is pulled off a rotating spool.
- the prior art includes complicated wire feeding devices for use in automatic welding machines (U.S. Pat. No. 5,810,283). Complex braking mechanisms are also known to prevent binding or overspinning (U.S. Pat. Nos. 3,819,127; 3,796,392 and 4,124,176).
- the prior art also includes devices for rotatably mounting a spool of wire used by electricians (U.S. Pat. Nos. 4,548,368; 5,222,683; 6,086,013 and 6,523,777). Those devices either have no frictional drag or utilize a guide slot to frictionally engage the wire strand or a transverse rod to frictionally engage the outer circumference of the wire spool hub. The frictional engagement between the strand of wire and guide slot requires expensive and cumbersome equipment and the user must thread the wire strand through the guide slot. These devices do not lend themselves to the use of wire spools having flanges or hubs of different diameters.
- the present invention satisfies that need by providing a frictional collar that is preferably adjustable and engages the side of the spool, rather than the wire strand or the circumference of the spool.
- Two or more spools of different sizes may be mounted on the same shaft and one or more frictional collars of the present invention will create the desired drag on multiple spools simultaneously.
- the frictional collar is inexpensive, easy to use and quickly installed. It may be retrofitted onto existing wire caddies.
- a primary object is to provide a portable wire dispenser for use by electricians (and other) which prevents overspinning by creating a frictional drag on the side of the wire spool.
- a further object is to provide a wire dispenser which carries wire spools of different sizes and with wire of different thicknesses.
- Another object is to provide a wire dispenser capable of handling multiple wire spools with independently adjustable drag on each separate spool.
- a further object is to provide a frictional collar than can be retrofitted onto most existing wire caddies.
- FIG. 1 is a front elevational view of one embodiment of the invention
- FIG. 2A is a front elevational view of the friction collar means utilizes in the embodiment shown in FIG. 1 ;
- FIG. 2B is a side elevational view of the friction collar shown in FIG. 2A ;
- FIG. 3 is a front elevational view of an alternate embodiment of the friction collar means
- FIG. 4 is a front elevational view of a further embodiment of the frictional collar means
- FIG. 5A is a front elevational view of a further embodiment of a frictional collar means
- FIG. 5B is yet another embodiment of a frictional collar means for use with the invention.
- FIG. 6 is a front elevational view of an alternate embodiment of the invention showing multiple and different sized wire spools in use;
- FIG. 7 is a schematic representation showing the independent adjustability of the frictional drag.
- FIG. 1 is a front elevational view showing one embodiment of the invention.
- a spool of electrical, single conductor wire is shown as 20 and is carried by a conventional wire caddy 40 . Only a portion of wire caddy 40 is shown in FIG. 1 for clarity.
- Wire caddy 40 can be of various designs known, such as shown in U.S. Pat. Nos. 4,548,368 and/or 5,222,683.
- a vertical frame member 41 is commonly made of steel rod and is welded to a horizontal foot 42 . Foot 42 is typically placed on the ground or floor (not shown) at a job site.
- a horizontal spool carrying shaft 44 is welded to frame member 41 at their intersection 45 .
- Spool 20 has first and second hubs 21 and 22 and carries a length of either single conductor or multi-conductor wire 30 .
- the free end 31 of wire 30 is pulled off spool 20 as needed.
- the friction collar means 50 of the present invention includes a body 51 , a passageway 52 that slidably engages shaft 44 , and a connector means 60 .
- Connector means 60 as shown in FIG. 1 is a bolt which threads through one side of body 51 and is tightened against shaft 44 .
- FIG. 2A is a front elevational view of one embodiment of friction collar means 50 of FIG. 1 .
- Body 51 is aluminum, and has a passageway 52 that slidably engages shaft 44 .
- Connector means 60 is a bolt 61 which threads into threaded passageway 62 in body 51 .
- FIG. 2B is a side elevational of the collar means 50 of FIG. 2A .
- FIG. 3 is a front elevational view of an alternate frictional collar means 150 .
- Grooves 155 and 156 are formed in the face 158 of body 151 that bears against hub 22 of spool 20 shown in FIG. 1 . Grooves 155 and 156 increase the friction between collar 150 and spool 20 .
- FIG. 4 illustrates another embodiment of friction collar means 250 wherein a layer of frictional material 280 , such as ceramic materials used on brake pads, for example, is carried by face 258 of body 251 .
- a layer of frictional material 280 such as ceramic materials used on brake pads, for example, is carried by face 258 of body 251 .
- FIG. 5A illustrates a preferred embodiment of friction collar means 350 wherein a wave spring 390 is carried by face 358 .
- Wave spring 390 applies a constant axial force and a constant frictional drag to wire spool 20 .
- a layer of frictional material 380 is optionally carried by wave spring 390 as shown in FIG. 5B .
- FIG. 6 illustrates how the frictional collar means 50 may be used in conjunction with two or more spools of wire.
- a friction collar 450 is attached to shaft 44 adjacent member 41 .
- Wire spool 420 is slid onto shaft 44 and adjacent collar 450 .
- Collar 550 is slid onto shaft 44 , appropriate axial pressure is applied and collar 550 is tightened.
- Wire spool 520 is slid onto shaft 44 and then collar 650 is slid onto shaft 44 , axial pressure applied and collar 650 is tightened onto shaft 44 .
- Wire on spools 420 and 520 can now be fed simultaneously if desired, and there will be no overspinning!
- Spools 420 and 520 each have a friction collar bearing against each hub. This feature allows the use of greater drag on spool 420 than on spool 520 , if desired.
- Friction collars 450 , 550 and 650 prevent axial drifting or motion of wire spools 420 and 520 .
- spools 620 and 720 can be slid onto shaft 44 with spool 620 frictionally engaging member 41 and spool 720 frictionally engaging spool 620 .
- Collar 750 is now slid onto shaft 44 , axial pressure applied and collar 750 tightened onto shaft 44 .
- Spools 620 and 720 now both have frictional drag from a single collar 750 . Both spools 620 and 720 will turn when wire is pulled off either spool. If the user only wants wire from spool 620 , and no wire from spool 720 , he simply takes the free end of the wire from spool 720 and attaches it to one of the hubs of spool 720 . Spool 720 will rotate with spool 620 , but no wire will come off spool 720 .
- Connectors other than standard bolts may be utilized for connector means 60 , for example, Allen screws or thumbscrews.
- FIG. 7 illustrates how friction collars 850 , 950 and 1050 create independently adjustable frictional drag on wire spools 820 and 920 .
- Spools 820 and 920 are “interleaved” between collars 850 , 950 and 1050 .
- the term “interleaving,” as used herein and in the claims, means an alternating array of friction collars and spools so that no two adjacent spools frictionally engage each other and that a friction collar is placed at each end of a plurality of spools.
- Each of frictional collars 850 , 950 and 1050 uses the wavespring design shown in FIG. 5A . The user first loads collar 850 onto shaft 44 and tightens connector means 860 securely to shaft 44 .
- Spool 820 and collar 950 are then slid onto shaft 44 .
- the user then applies an axial force F 1 to collar 950 as connector means 960 is tightened.
- Force F 1 is transmitted by wavesprings 890 and 990 to hubs 821 and 822 .
- Spool 920 and collar 1050 are then slid onto shaft 44 .
- a different, larger axial force F 2 is applied to hub 922 by pressing collar 1050 in the direction toward the center of spool 920 as shown by arrows F 2
- Connector means 1060 is tightened securely to shaft 44 as axial force F 2 is applied.
- the result is that the larger spool 920 has a larger frictional drag F 2 applied to it than the drag F 1 applied to spool 820 .
- each spool ( 820 and 920 ) is independent and independently adjustable. Pulling wire off spool 920 will not cause spool 820 to spin. Spools 820 and 920 are held in place axially on shaft 44 and cannot drift or slide on shaft 44 . Spools 820 and 920 may be of different sizes and carry wire of different thicknesses. More than two spools of wire can be loaded on shaft 44 .
- each friction collar can be retrofitted onto existing wire caddies.
- each friction collar may carry one or two wavesprings.
Landscapes
- Wire Bonding (AREA)
Abstract
A portable wire dispenser is provided having an adjustable frictional drag to prevent overspinning of the spool or spools carried by the dispenser. One or more frictional collars are carried by the same shaft that carries the wire spool or spools. The frictional collar engages the side of one or both hubs of each wire spool. Each frictional collar preferably carries a wavespring on one or both faces of the collar. The wavespring allows the use of adjustable frictional drag applied to the hubs of each spool.
Description
- This application claims the benefit of and priority from U.S. provisional application Ser. No. 60/584,914 filed on Jul. 1, 2004.
- The present invention relates generally to wire dispensers used by electricians, for example. More particularly, the present invention provides an inexpensive and adjustable frictional drag that prevents overspinning of wire as the wire is pulled off a rotating spool.
- The prior art includes complicated wire feeding devices for use in automatic welding machines (U.S. Pat. No. 5,810,283). Complex braking mechanisms are also known to prevent binding or overspinning (U.S. Pat. Nos. 3,819,127; 3,796,392 and 4,124,176). The prior art also includes devices for rotatably mounting a spool of wire used by electricians (U.S. Pat. Nos. 4,548,368; 5,222,683; 6,086,013 and 6,523,777). Those devices either have no frictional drag or utilize a guide slot to frictionally engage the wire strand or a transverse rod to frictionally engage the outer circumference of the wire spool hub. The frictional engagement between the strand of wire and guide slot requires expensive and cumbersome equipment and the user must thread the wire strand through the guide slot. These devices do not lend themselves to the use of wire spools having flanges or hubs of different diameters.
- There is a need for an inexpensive, easily used wire dispenser for electricians and others having a drag mechanism which prevents overspinning, allows the user to pull two or more sizes of wire from a single dispenser, does not require the use of special spools and does not require the user to thread the wire through a guide slot.
- The present invention satisfies that need by providing a frictional collar that is preferably adjustable and engages the side of the spool, rather than the wire strand or the circumference of the spool. Two or more spools of different sizes may be mounted on the same shaft and one or more frictional collars of the present invention will create the desired drag on multiple spools simultaneously. The frictional collar is inexpensive, easy to use and quickly installed. It may be retrofitted onto existing wire caddies.
- A primary object is to provide a portable wire dispenser for use by electricians (and other) which prevents overspinning by creating a frictional drag on the side of the wire spool.
- A further object is to provide a wire dispenser which carries wire spools of different sizes and with wire of different thicknesses.
- Another object is to provide a wire dispenser capable of handling multiple wire spools with independently adjustable drag on each separate spool.
- A further object is to provide a frictional collar than can be retrofitted onto most existing wire caddies.
- Further objects and advantages will become apparent from the following description and drawings, wherein:
-
FIG. 1 is a front elevational view of one embodiment of the invention; -
FIG. 2A is a front elevational view of the friction collar means utilizes in the embodiment shown inFIG. 1 ; -
FIG. 2B is a side elevational view of the friction collar shown inFIG. 2A ; -
FIG. 3 is a front elevational view of an alternate embodiment of the friction collar means; -
FIG. 4 is a front elevational view of a further embodiment of the frictional collar means; -
FIG. 5A is a front elevational view of a further embodiment of a frictional collar means; -
FIG. 5B is yet another embodiment of a frictional collar means for use with the invention; -
FIG. 6 is a front elevational view of an alternate embodiment of the invention showing multiple and different sized wire spools in use; and -
FIG. 7 is a schematic representation showing the independent adjustability of the frictional drag. -
FIG. 1 is a front elevational view showing one embodiment of the invention. A spool of electrical, single conductor wire is shown as 20 and is carried by aconventional wire caddy 40. Only a portion ofwire caddy 40 is shown inFIG. 1 for clarity.Wire caddy 40 can be of various designs known, such as shown in U.S. Pat. Nos. 4,548,368 and/or 5,222,683. Avertical frame member 41 is commonly made of steel rod and is welded to ahorizontal foot 42.Foot 42 is typically placed on the ground or floor (not shown) at a job site. - A horizontal
spool carrying shaft 44 is welded toframe member 41 at theirintersection 45. - Spool 20 has first and
21 and 22 and carries a length of either single conductor orsecond hubs multi-conductor wire 30. Thefree end 31 ofwire 30 is pulled offspool 20 as needed. - The friction collar means 50 of the present invention includes a
body 51, apassageway 52 that slidably engagesshaft 44, and a connector means 60. Connector means 60 as shown inFIG. 1 is a bolt which threads through one side ofbody 51 and is tightened againstshaft 44. - As shown in
FIG. 1 , as thefree end 31 ofwire 30 is pulled offspool 20,hub 21 frictionally engagesframe member 41 andhub 22 frictionally engages friction collar means 50. The strength of the drag caused by friction collar means 50 onspool 20 varies with theaxial force 70 applied by the user to friction collar means 50 as connector means 60 is tightened. Alternatively, two friction collars will be utilized, one on either side ofspool 20, to avoid friction betweenframe 41 andspool 20. -
FIG. 2A is a front elevational view of one embodiment of friction collar means 50 ofFIG. 1 .Body 51 is aluminum, and has apassageway 52 that slidably engagesshaft 44. Connector means 60 is abolt 61 which threads into threadedpassageway 62 inbody 51.FIG. 2B is a side elevational of the collar means 50 ofFIG. 2A . -
FIG. 3 is a front elevational view of an alternate frictional collar means 150. 155 and 156 are formed in theGrooves face 158 ofbody 151 that bears againsthub 22 ofspool 20 shown inFIG. 1 . 155 and 156 increase the friction betweenGrooves collar 150 andspool 20. -
FIG. 4 illustrates another embodiment of friction collar means 250 wherein a layer offrictional material 280, such as ceramic materials used on brake pads, for example, is carried byface 258 ofbody 251. -
FIG. 5A illustrates a preferred embodiment of friction collar means 350 wherein awave spring 390 is carried byface 358.Wave spring 390 applies a constant axial force and a constant frictional drag to wirespool 20. A layer offrictional material 380 is optionally carried bywave spring 390 as shown inFIG. 5B . -
FIG. 6 illustrates how the frictional collar means 50 may be used in conjunction with two or more spools of wire. - On one side of member 41 a
friction collar 450 is attached toshaft 44adjacent member 41.Wire spool 420 is slid ontoshaft 44 andadjacent collar 450.Collar 550 is slid ontoshaft 44, appropriate axial pressure is applied andcollar 550 is tightened.Wire spool 520 is slid ontoshaft 44 and thencollar 650 is slid ontoshaft 44, axial pressure applied andcollar 650 is tightened ontoshaft 44. Wire on 420 and 520 can now be fed simultaneously if desired, and there will be no overspinning!spools 420 and 520 each have a friction collar bearing against each hub. This feature allows the use of greater drag onSpools spool 420 than onspool 520, if desired. 450, 550 and 650 prevent axial drifting or motion of wire spools 420 and 520.Friction collars - Alternately, spools 620 and 720 can be slid onto
shaft 44 withspool 620frictionally engaging member 41 andspool 720frictionally engaging spool 620.Collar 750 is now slid ontoshaft 44, axial pressure applied andcollar 750 tightened ontoshaft 44. 620 and 720 now both have frictional drag from aSpools single collar 750. Both spools 620 and 720 will turn when wire is pulled off either spool. If the user only wants wire fromspool 620, and no wire fromspool 720, he simply takes the free end of the wire fromspool 720 and attaches it to one of the hubs ofspool 720.Spool 720 will rotate withspool 620, but no wire will come offspool 720. - Connectors other than standard bolts may be utilized for connector means 60, for example, Allen screws or thumbscrews.
-
FIG. 7 illustrates how 850, 950 and 1050 create independently adjustable frictional drag onfriction collars 820 and 920.wire spools 820 and 920 are “interleaved” betweenSpools 850, 950 and 1050. The term “interleaving,” as used herein and in the claims, means an alternating array of friction collars and spools so that no two adjacent spools frictionally engage each other and that a friction collar is placed at each end of a plurality of spools. Each ofcollars 850, 950 and 1050 uses the wavespring design shown infrictional collars FIG. 5A . The user first loadscollar 850 ontoshaft 44 and tightens connector means 860 securely toshaft 44.Spool 820 andcollar 950 are then slid ontoshaft 44. The user then applies an axial force F1 tocollar 950 as connector means 960 is tightened. Force F1 is transmitted by 890 and 990 towavesprings 821 and 822.hubs Spool 920 andcollar 1050 are then slid ontoshaft 44. A different, larger axial force F2 is applied tohub 922 by pressingcollar 1050 in the direction toward the center ofspool 920 as shown by arrows F2 Connector means 1060 is tightened securely toshaft 44 as axial force F2 is applied. The result is that thelarger spool 920 has a larger frictional drag F2 applied to it than the drag F1 applied to spool 820. The amount of drag applied to each spool (820 and 920) is independent and independently adjustable. Pulling wire offspool 920 will not causespool 820 to spin. 820 and 920 are held in place axially onSpools shaft 44 and cannot drift or slide onshaft 44. 820 and 920 may be of different sizes and carry wire of different thicknesses. More than two spools of wire can be loaded onSpools shaft 44. - As noted above, the friction collars described herein can be retrofitted onto existing wire caddies. Furthermore, each friction collar may carry one or two wavesprings.
- The foregoing description of the invention has been presented for purposes of illustration and description and is not intended to be exhaustive or to limit the invention to the precise form disclosed. Modifications and variations are possible in light of the above teaching. The embodiments were chosen and described to best explain the principles of the invention and its practical application to thereby enable others skilled in the art to best use the invention in various embodiments and with various modifications suited to the particular use contemplated. The scope of the invention is to be defined by the following claims.
Claims (7)
1. A portable wire dispenser having frictional drag to prevent overspinning of one or more wire spools as wire is pulled off said spools, comprising:
at least one wire spool, said spool having first and second hubs;
a shaft carrying said spool or spools, and
frictional collar means carried by said shaft and adapted to frictionally engage one or both of said hubs to prevent overspinning of said spool as wire carried by said spool is pulled off said spool.
2. The apparatus of claim 1 further comprising connecting means for removably attaching said frictional collar means to said shaft.
3. The apparatus of claim 2 wherein said frictional collar carries a wavespring wherein said wavespring is adapted to frictionally engage one of said hubs.
4. The apparatus of claim 3 wherein two spools are carried by said shaft and are interleaved between three friction collars.
5. The apparatus of claim 4 wherein the frictional drag on said two spools is independently adjustable.
6. A portable wire dispenser carrying a plurality of wire spools and having independent and independently adjustable frictional drag applied to each of said spools, comprising:
a plurality of wire spools, each spool having first and second hubs,
a shaft carrying said plurality of spools,
a plurality of friction collar means wherein said wire spools are interleaved between said friction collar means, said friction collar means each carrying a wavespring adapted to frictionally engage one of said hubs, and
connector means for removably attaching each of said friction collars to said shaft.
7. In a portable wire dispenser having one or more wire spools carried by a shaft, wherein each of said wire spools has first and second hubs, the improvement comprising:
frictional collar means adapted to be carried by said shaft and adapted to frictionally engage one or both of said hubs to prevent overspinning of said spools as wire carried by said spools is pulled off said spools.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US11/157,757 US20060000938A1 (en) | 2004-07-01 | 2005-06-21 | Wire dispenser with frictional drag |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US58491404P | 2004-07-01 | 2004-07-01 | |
| US11/157,757 US20060000938A1 (en) | 2004-07-01 | 2005-06-21 | Wire dispenser with frictional drag |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US20060000938A1 true US20060000938A1 (en) | 2006-01-05 |
Family
ID=35512905
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US11/157,757 Abandoned US20060000938A1 (en) | 2004-07-01 | 2005-06-21 | Wire dispenser with frictional drag |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US20060000938A1 (en) |
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2016196785A1 (en) * | 2015-06-02 | 2016-12-08 | Klayman Dr Kevin H | Wire organizer and methods of use |
| USD939328S1 (en) * | 2018-02-02 | 2021-12-28 | Dariusz Grzybowski | Foldable wire caddy |
| US11237349B2 (en) * | 2016-02-12 | 2022-02-01 | Ppc Broadband, Inc. | Cable spool and storage |
| DE102020007283A1 (en) | 2020-11-27 | 2022-06-02 | Helmut Wollnitzke | Fastening device, in particular for a coil of welding wire |
| US20240117535A1 (en) * | 2022-10-07 | 2024-04-11 | Tsudakoma Kogyo Kabushiki Kaisha | Warp supply device for loom |
Citations (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US605301A (en) * | 1898-06-07 | Ticket-case | ||
| US1340710A (en) * | 1919-04-29 | 1920-05-18 | Graham Wallace Anderson | Friction braking means for cinematograph-film spools |
| US1364259A (en) * | 1917-07-06 | 1921-01-04 | Joseph D Eaton | Tension device |
| US2337790A (en) * | 1941-08-09 | 1943-12-28 | Ditto Inc | Web roll supporting and controlling mechanism |
| US3771743A (en) * | 1972-01-03 | 1973-11-13 | Porta Systems Corp | Wire spool holding and dispensing apparatus |
| US3813055A (en) * | 1973-02-02 | 1974-05-28 | J Pickrell | Readily detachable water ski towline pay-out and retrieval apparatus |
| US4494710A (en) * | 1983-11-02 | 1985-01-22 | Harris Michael J | Reel brake apparatus |
| US5322236A (en) * | 1992-06-17 | 1994-06-21 | Smith Ronnie L | Fishing line spool holder |
| US5725175A (en) * | 1994-06-20 | 1998-03-10 | The Miller Group, Ltd. | Single tension adjustment for dual wire rolls |
-
2005
- 2005-06-21 US US11/157,757 patent/US20060000938A1/en not_active Abandoned
Patent Citations (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US605301A (en) * | 1898-06-07 | Ticket-case | ||
| US1364259A (en) * | 1917-07-06 | 1921-01-04 | Joseph D Eaton | Tension device |
| US1340710A (en) * | 1919-04-29 | 1920-05-18 | Graham Wallace Anderson | Friction braking means for cinematograph-film spools |
| US2337790A (en) * | 1941-08-09 | 1943-12-28 | Ditto Inc | Web roll supporting and controlling mechanism |
| US3771743A (en) * | 1972-01-03 | 1973-11-13 | Porta Systems Corp | Wire spool holding and dispensing apparatus |
| US3813055A (en) * | 1973-02-02 | 1974-05-28 | J Pickrell | Readily detachable water ski towline pay-out and retrieval apparatus |
| US4494710A (en) * | 1983-11-02 | 1985-01-22 | Harris Michael J | Reel brake apparatus |
| US5322236A (en) * | 1992-06-17 | 1994-06-21 | Smith Ronnie L | Fishing line spool holder |
| US5725175A (en) * | 1994-06-20 | 1998-03-10 | The Miller Group, Ltd. | Single tension adjustment for dual wire rolls |
Cited By (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2016196785A1 (en) * | 2015-06-02 | 2016-12-08 | Klayman Dr Kevin H | Wire organizer and methods of use |
| US9675778B2 (en) | 2015-06-02 | 2017-06-13 | Kevin Klayman | Wire organizer basin with spools |
| US11237349B2 (en) * | 2016-02-12 | 2022-02-01 | Ppc Broadband, Inc. | Cable spool and storage |
| US11835780B2 (en) | 2016-02-12 | 2023-12-05 | Ppc Broadband, Inc. | Cable spool and storage |
| USD939328S1 (en) * | 2018-02-02 | 2021-12-28 | Dariusz Grzybowski | Foldable wire caddy |
| DE102020007283A1 (en) | 2020-11-27 | 2022-06-02 | Helmut Wollnitzke | Fastening device, in particular for a coil of welding wire |
| DE102020007283B4 (en) | 2020-11-27 | 2023-11-16 | Helmut Wollnitzke | Fastening device in particular for a welding wire coil |
| US20240117535A1 (en) * | 2022-10-07 | 2024-04-11 | Tsudakoma Kogyo Kabushiki Kaisha | Warp supply device for loom |
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |