[go: up one dir, main page]

US3882985A - Tiltable matrix print head to permit viewing of the characters - Google Patents

Tiltable matrix print head to permit viewing of the characters Download PDF

Info

Publication number
US3882985A
US3882985A US381974A US38197473A US3882985A US 3882985 A US3882985 A US 3882985A US 381974 A US381974 A US 381974A US 38197473 A US38197473 A US 38197473A US 3882985 A US3882985 A US 3882985A
Authority
US
United States
Prior art keywords
housing
wire
line
printing
printer
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.)
Expired - Lifetime
Application number
US381974A
Inventor
George N Liles
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
NCR Voyix Corp
Original Assignee
NCR Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by NCR Corp filed Critical NCR Corp
Priority to US381974A priority Critical patent/US3882985A/en
Priority to DE2430407A priority patent/DE2430407C3/en
Priority to GB2908974A priority patent/GB1432712A/en
Priority to CA205,265A priority patent/CA1020808A/en
Priority to JP49084065A priority patent/JPS5042918A/ja
Application granted granted Critical
Publication of US3882985A publication Critical patent/US3882985A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J2/00Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
    • B41J2/22Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of impact or pressure on a printing material or impression-transfer material
    • B41J2/23Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of impact or pressure on a printing material or impression-transfer material using print wires
    • B41J2/27Actuators for print wires
    • B41J2/28Actuators for print wires of spring charge type, i.e. with mechanical power under electro-magnetic control
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J29/00Details of, or accessories for, typewriters or selective printing mechanisms not otherwise provided for
    • B41J29/18Mechanisms for rendering the print visible to the operator

Definitions

  • ABSTRACT A low inertia wire matrix print head which tilts below the line of printing on a printer to permit viewing of the characters which are printed.
  • the printer includes a carriage which is traversed along the line of printing. and the print head is mounted thereon.
  • the print head includes a housing in which the associated wire plungers are slidably mounted, and the rear end of the housing is pivotally mounted on the carriage and the front end thereof is adjacent to the line of printing.
  • the actuators for the wire plungers do not pivot with the housing but are fixed to the carriage to provide a low inertia, tilting, print head.
  • Linkage attached to the front end of the housing lowers the print head to permit viewing of the characters which are printed.
  • PATENTEB MAY I 31975 SHEEF 10F 2 1 TILTABLE MATRIX PRINT HEAD TO PERMIT VIEWING OF THE CHARACTERS BACKGROUND OF THE INVENTION
  • This invention relates to a line printer which includes a low inertia. wire matrix print head which tilts below the line of printing to permit viewing of the most rc cently printed characters.
  • a prior art wire matrix printer is shown in the West German Pat. No. 2,108,006 which issued on Aug. 31. 1972.
  • This patent discloses a wire matrix printer having a wire guide housing which tilts slightly to provide for the printing of upper and lower case letters.
  • the actuators for the wire plungers are mounted on the housing so that both the actuators and the housing are tilted, making the combined mass quite large.
  • the present invention obviates the disadvantages mentioned relative to prior art printers described.
  • the present invention provides a wire guide housing whose front end can be tilted below the line of printing to enable the most recently printed characters to be viewed. Because only the wire guide housing and not the actuators for the wire plungers is tilted, a minimum of mass is moved which is essential for a fast cycle time. The fast cycle time is necessary so that the motion of the print head is not distracting to an operator using the printer. With a smaller mass to be moved, smaller energy requirements are necessary to move the print head, and with the smaller mass. the print-escapement cycle is not slowed down. It was discovered that a slight flexing of the wire plungers, when the housing was tilted below the line of printing. did not affect their operation.
  • This invention relates to a line printer which includes a low inertia. wire matrix print head which tilts below the line of printing to permit viewing of the most recently printed characters.
  • the printer includes a carriage which is traversed along the line of printing, and the print head is mounted thereon.
  • the print head includes a wire guide housing in which the associated wire plungers are slidably mounted, and mounting means are included to pivot ally mount the rear end of the housing on the carriage.
  • the front end of the housing is normally aligned with the line ofprinting by a spring means, and a link means is used to lower the front end of the housing below the line of printing to permit the viewing of the most recently printed characters.
  • the print head also includes actuator means which are fixed to the carriage and do not tilt with the housing. and are used for actuating the wire plungers. This invention may also be used for printing upper and lower case letters.
  • FIG. I is a plan view looking at the top of a printer embodying this invention showing a platen, carriage means, a wire matrix print head having a wire guide housing, mounting means for mounting the rear end of the housing on said carriage means, wire plungers, and actuator means therefor.
  • FIG. 2 is a side of the invention shown in FIG. 1. showing additional details of said mounting means and also showing means for tilting the housing below a line of printing on the platen.
  • FIG. 3 is a slightly enlarged. side view. in elevation. taken along the line 33 of FIG. I, to show details of a hinge which is part of the means for tilting the housing.
  • FIG. 4 is a cross-sectional view. in elevation. taken along the line 44 of FIG. I, to show additional details of the mounting means.
  • FIG. 5 is an end view, in elevation. taken along the line 55 of FIG. I. to show a ribbon carrier means which is part of the mounting means.
  • FIG. 6 is aside view, in elevation. taken along the line 66 of FIG. I, to show additional details of the actuator means.
  • FIG. 1 is a plan view of a printer embodying this invention, including a platen I0, carriage means 12, and print head means designated generally as 14.
  • the carriage means 12 (FIGS. I and 2) includes a support member 16 which is suitably apertured to slidably receive a rod 18 whose ends are mounted in the side frames (not shown) of the printer.
  • the rod 18 is aligned in spaced parallel relationship with the longitudinal rotating axis of the platen 10 so as to enable the print head means 14 to be traversed along a line of printing on the platen.
  • a rod 20, extending from the side of the support member 16 away from the platen 10 has a block 22 secured thereto by a retaining pin to allow alignment of the block 22 with the bar 24, as shown in FIG. 2.
  • the block 22 has a horizontally positioned slot therein to slidably receive a horizontally positioned bar 24 whose ends are supported on stationary supports 26.
  • the block 22 and bar 24 tend to stabilize and support the support member 16 to keep the print head means 14 aligned with the line of printing on the platen 10.
  • a traversing means for traversing the carriage means 12 along the line of printing on the platen I0 is also shown in FIG. 2.
  • This means includes a threaded plate 28 (functioning as a nut) which is secured to the support member 16 by fasteners 30.
  • a traversing screw 32, cooperating with the threaded plate 28, is used to traverse the carriage means 12 when the screw 32 is rotated.
  • the rotating axis of screw 32 is positioned parallel to the longitudinal axis of rod 18 and the screw 32 is conventionally rotated in both directions by a stepping motor (not shown) to index the print head means 14 along the line of printing on the platen in response to a conventional control means.
  • the print head means 14, FIGS. 1 and 2 includes a wire guide housing 34 having a front end 36 and a rear end 38.
  • the housing 34 is pivotally mounted near its rear end 34 on on the carriage means 12 by a mounting means designated generally as 40. to enable the front end 36 to tilt below the line of printing on the platen 10.
  • the mounting means 40 functions as a support for the wire-guide housing 34, as a hinge to enable the housing to be tilted below the line of printing. and as a ribbon carrier.
  • the mounting means 40 is made of a plastic material like polyterepthate and has the molded shape shown in FIGS. 15.
  • the mounting means 40 is generally U-shaped in cross section and includes a first flat portion 42 which is secured to the carriage means 12 by fasteners 44, a second flat portion 46, and bendable third sections 48 and 50 which together act as a hinge.
  • the housing 34 is secured to the second portion 46 by fasteners 52, and the flat second portion 46 is thickened at areas 54 and 56 to stiffen the second portion near the bendable third sections 48 and 50, respectively. As is apparent from FIG.
  • each third section (48,50) has horizontally positioned grooves 58,60 on opposed sides thereof to provide a reduced thickness portion in sections 48, 50 which act as a hinge to enable the print head means 14 to be tilted below the line of printing as shown in dashed outline 62 in FIG. 2.
  • the grooves 58 and 60, forming the hinge should be located as close to an imaginary plane including the wire plungers 64 as is possible to thereby provide a hinging action in which the wire plungers 64, associated with the print head means 14, bend the least when the front end 36 of the housing 34 is lowered.
  • the thickness of the portion between the grooves 58 and 60 is about 0.030 inch; however. the thickness of the portion will depend upon the design parameters of the particular print head and material being used. Because such designing may be conventional, it is not described in further detail.
  • the mounting means 40 in cooperation with a spring 66 (FIG. 2) and a limiting means 68 combine to maintain the print head means 14 in a first position in which the housing 34 of the print head means is aligned with the line of printing on the platen 10.
  • the spring 66 is of the compression type and is positioned between the first portion 42 and second portion 46 of the mounting means 40 (as shown in FIGS. 2 and 4) to urge the front end 36 of the housing 34 upwardly as viewed in FIG. 2.
  • the upward motion of the front end 36 is restrained by the limiting means 68 which is an apertured curved plate having the cross sectional shape shown in FIG. 2.
  • the means 68 has two mounting flanges 70 which are secured to the support member 16 by suitable fasten- 'ers.
  • the means 68 is apertured at its center to permit the housing 34 to pass therethrough. and it has an S- shaped bend at 72 (FIG. 2) on the top thereof which contacts the top of the housing at the central portion thereof to limit the upward motion of the front end of the housing 34 and to keep the housing 34 aligned with the line of printing.
  • the front end 36 of the housing 34 is tilted below the line of printing by the pivoting means shown in FIG. 2.
  • This means includes a vertically positioned link 74 having one end pivotally joined to a bifurcated flange 76 (FIG. 5) depending from the lowerside of the second flat portion 46, and the remaining end of the link has a leg 78 projecting at a right angle therefrom (FIG. 2).
  • the link 74 also has an extension containing a slot 82 on the side opposite the leg 78, which cooperates with a pin mounted on the support member 16 to slidably constrain the motion of link 74 to a movement which is perpendicular to the line of printing on the platen 10.
  • the link 74 is lowered to a second position by an arm 84 which is fixed to a shaft 86 which is rotatably mounted in the frame (not shown) of the printer.
  • An arm 88 also has one end fixed to the shaft 86 and the remaining end thereof is pivotally joined to the operating plunger 90 of a solenoid 92.
  • the solenoid 92 When the solenoid 92 is energized by said control means, the arm 84 is retated in a clockwise direction (as viewed in FIG. 2) to lower the front end 36 of the housing 34 to a second position shown in clashed outline at 62, permitting the most recently printed characters to be viewed at the printing line.
  • the top most end of the slot 82 limits the motion of the front end 36 at the second position.
  • the solenoid 92 is deenergized, the spring 66 returns the front end 36 to the first position in printing relationship with the platen 10.
  • the mounting means 40 also functions as a ribbon carrier.
  • the second portion 46 of the means 40 has laterally positioned extensions 94 and 96 (FIG. 5) which support the guides 98 and 100, respectively.
  • Each of the guides has an overhang portion 102 to retain a ribbon 104 thereunder.
  • the ribbon carrier also includes similar guides 106 and 108 located near the front end 36 of the housing 34 on opposed sides thereof as shown in FIG. 5 and these guides upstand from the second portion 46 and have overhang portions 110 to retain the ribbon 104 thereunder.
  • the ribbon 104 passes around the guide 98, around guide 106, around the front end 36 of the housing 34, around guide 108, and around guide 100.
  • the ribbon may be fed by conventional means (not shown).
  • the ribbon carrier, just described, is lowered with the front end 36 of the housing 34 to permit viewing of the most recently printed carriers.
  • the actuator means for actuating the wire plungers 64 is shown in FIGS. 2, 3, and 6, and includes, for each wire plunger, a leaf spring 112 having one end fixed to a block 114 (FIG. 6) which is secured to a plate 116 which in turn is secured to the support member 16 of the carriage means 12.
  • the free end of each leaf spring 112 has one end of the associated wire plunger secured thereto as shown at 118 in FIG. 6.
  • This free end also has an adjustment screw 120, threadedly secured thereto, to contact the core of its associated actuator 122.
  • the actuator may be an electromagnet which holds the associated leaf spring in the tensioned position shown in FIG. 6.
  • the associated actuator When a particular wire plunger 64 is to be actuated to form a character, the associated actuator is momentarily deenergized permitting the tensioned leaf spring 112 to drive the wire plunger out of the front end 36 of the housing 34, and to impact against the ribbon 104 and paper at the line of printing on the platen 10.
  • the actuator 122 Upon reenergization of the actuator 122, the screw 120 contacts the armature of the actuator to retension the associated leaf spring 112.
  • actuators 122 which are fixed to the plate 116 on the carriage means 12. It should be noted that these actuators do not tilt when the wire guide housing 34 is tilted, and
  • wire plungers 64 will bend somewhat in the sections thereof which are between the rear end 38 of the housing and the leaf springs 112. It was discovered that this small amount of bending did not aid versely affect the wire plungers 64, and because the actuators 122 do not tilt. but are secured to the carriage means. the mass of the housing 34 is considerably lighter and can be tilted more rapidly than prior art devices. These wire plungers 64 fan out in a horizontal direction at the rear end 38 of the housing 34 (FIG. 1) and are aligned in a vertical direction at the front end 36 as shown in FIG. 5.
  • the particular control means. for controlling the actuators 122 and the stepping motor which rotates the traversing screw 32 to translate the print head means 14 to produce characters in the SXT matrix. may be conventional. In the normal operation ofprinting a line of characters, it may not be necessary to tilt the front end 36 to the lower or second position each time a character is formed; however, after a momentary lapse of printing, it may be convenient to have the solenoid 92 energized to lower the front end of the housing to permit viewing of the most recently printed characters.
  • the housing 34 may also be lowered when desired by closing a manually-operated switch to energize solenoid 92. Suitable conventional controls to prevent printing when the housing 34 is lowered. may be employed.
  • a wire matrix printer having a platen. a carriage means. and traversing means for traversing said carriage means along a line of printing on said platen. the improvement comprising:
  • a wire guide housing having a front end located adja cent to said platen. and a rear end;
  • mounting means for pivotally mounting said housing at said rear end to said carriage means to enable the housing to be pivoted between a first position in which said front end is aligned with said line of printing and a second position in which said front end dips below said line of printing to enable said line of printing to be viewed;
  • plunger actuator means connected to said wire plungers and said carriage means to actuate said plungers to print in response to a control means; said wire plungers each having one end extending from said rear end, in a straight line and lying in a plane which is parallel to said line of printing. and being secured to said plunger actuator means; pivoting means to pivot said front end of said housing between said first and second positions to pivot only said housing and the plungers therein to provide a low inertia print head in which the housing and the wire plungers therein pivot relative to said carriage means between said first and second positions. but said actuator means remain fixed relative to said carriage means.
  • said mounting means includes a U-shaped means having first and second portions joined by bendable third portions. said first portion being secured to carriage means and said second portion being secured to said housing.
  • said pivoting means includes resilient means to resiliently urge said housing to said first position and lever means secured to the front end of said housing to pivot said housing to said second position.
  • said plunger actuator means includes:
  • each said wire plunger having one end fixed to said carriage means and the other end having one end of an associated wire plunger secured thereto near said rear end of said housing; each said leaf spring being biased to urge the associated wire plunger out of the front end of said housing;
  • each said leaf spring for holding the leaf spring in a tensioned position until released by said control means permitting the bias of the leaf spring to urge the associated wire plunger to impact against said platen.
  • said mounting means includes a U-shaped means having first and second portions joined by a third means, said first portion being secured to said carriage means and said second portion being secured to said housing; said third means being bendable to provide a hinge to enable said pivoting means to pivot said front end of said housing between said first and second positions.

Landscapes

  • Common Mechanisms (AREA)
  • Printers Characterized By Their Purpose (AREA)

Abstract

A low inertia wire matrix print head which tilts below the line of printing on a printer to permit viewing of the characters which are printed. The printer includes a carriage which is traversed along the line of printing, and the print head is mounted thereon. The print head includes a housing in which the associated wire plungers are slidably mounted, and the rear end of the housing is pivotally mounted on the carriage and the front end thereof is adjacent to the line of printing. The actuators for the wire plungers do not pivot with the housing but are fixed to the carriage to provide a low inertia, tilting, print head. Linkage attached to the front end of the housing lowers the print head to permit viewing of the characters which are printed.

Description

United States Patent [191 Liles 1 May 13, 1975 1 TILTABLE MATRIX PRINT HEAD TO PERMIT VIEWING OF THE CHARACTERS [75] Inventor: George N. Liles, Dayton. Ohio [73] Assignee: NCR Corporation, Dayton. Ohio [22] Filed: July 23, 1973 [211 Appl. No.: 381,974
[52] US. Cl. 197/1 R; 1()l/93.()5 [51] Int. Cl B41j 3/04 [58] Field of Search 197/1; 101/93 C [56] References Cited UNITED STATES PATENTS 2.907.270 10/1959 Furman et a1 101/93 C 2,911.085 11/1959 Leathers 197/1 R 3.400.798 9/1968 Smith 197/1 R 3,426,880 3/1969 Blodgett 197/] R 3.592.311 7/1971 Chon et a1. 101/93 C X 3.633.723 1/1972 Kosters 197/17 3.685.629 8/1972 Rott 197/66 3,759,359 9/1973 Stellmach 197/1 R Primary E.\'aminerEdgar S. Burr Assistant E.raminerR. T. Rader Attorney, Agent. or FirmJ. T. Cavender; Arthur L. Sessler, Jr.; Elmer Wargo [57] ABSTRACT A low inertia wire matrix print head which tilts below the line of printing on a printer to permit viewing of the characters which are printed. The printer includes a carriage which is traversed along the line of printing. and the print head is mounted thereon. The print head includes a housing in which the associated wire plungers are slidably mounted, and the rear end of the housing is pivotally mounted on the carriage and the front end thereof is adjacent to the line of printing. The actuators for the wire plungers do not pivot with the housing but are fixed to the carriage to provide a low inertia, tilting, print head. Linkage attached to the front end of the housing lowers the print head to permit viewing of the characters which are printed.
PATENTEB MAY I 31975 SHEEF 10F 2 1 TILTABLE MATRIX PRINT HEAD TO PERMIT VIEWING OF THE CHARACTERS BACKGROUND OF THE INVENTION This invention relates to a line printer which includes a low inertia. wire matrix print head which tilts below the line of printing to permit viewing of the most rc cently printed characters.
One of the problems with the prior art line printers of the wire matrix variety is that it is difficult to view the most recently printed characters. This is due to the fact that the front end of the housing (through which the associated wire plungers emerge) must be positioned close to the line of printing to provide a short distance for the plungers to travel when impacting against a record medium positioned at the line ofprinting. Also, when inking ribbon guides are fixed to the front end of the housing. they tend to obscure the most recently printed characters.
A prior art wire matrix printer is shown in the West German Pat. No. 2,108,006 which issued on Aug. 31. 1972. This patent discloses a wire matrix printer having a wire guide housing which tilts slightly to provide for the printing of upper and lower case letters. The actuators for the wire plungers are mounted on the housing so that both the actuators and the housing are tilted, making the combined mass quite large.
Another prior art wire matrix printer is shown in the US Pat. No. 3,592,311 which issued on July 13, 1971 on the application Albert S. Chou. Monte Sereno. and Edgar A. Brown; however, this print head is fixed relative to its associated carriage means.
The US. Pat. No. 3,685,629 which issued on Aug. 22. 1972 on the application of John G. Rott discloses an impactless printer having a solenoid control for controlling the position of the electrostatic type printing head relative to the paper to be printed upon.
The present invention obviates the disadvantages mentioned relative to prior art printers described. The present invention provides a wire guide housing whose front end can be tilted below the line of printing to enable the most recently printed characters to be viewed. Because only the wire guide housing and not the actuators for the wire plungers is tilted, a minimum of mass is moved which is essential for a fast cycle time. The fast cycle time is necessary so that the motion of the print head is not distracting to an operator using the printer. With a smaller mass to be moved, smaller energy requirements are necessary to move the print head, and with the smaller mass. the print-escapement cycle is not slowed down. It was discovered that a slight flexing of the wire plungers, when the housing was tilted below the line of printing. did not affect their operation.
SUMMARY OF THE INVENTION This invention relates to a line printer which includes a low inertia. wire matrix print head which tilts below the line of printing to permit viewing of the most recently printed characters.
The printer includes a carriage which is traversed along the line of printing, and the print head is mounted thereon. The print head includes a wire guide housing in which the associated wire plungers are slidably mounted, and mounting means are included to pivot ally mount the rear end of the housing on the carriage.
The front end of the housing is normally aligned with the line ofprinting by a spring means, and a link means is used to lower the front end of the housing below the line of printing to permit the viewing of the most recently printed characters. The print head also includes actuator means which are fixed to the carriage and do not tilt with the housing. and are used for actuating the wire plungers. This invention may also be used for printing upper and lower case letters.
BRIEF DESCRIPTION OF THE DRAWINGS FIG. I is a plan view looking at the top of a printer embodying this invention showing a platen, carriage means, a wire matrix print head having a wire guide housing, mounting means for mounting the rear end of the housing on said carriage means, wire plungers, and actuator means therefor.
FIG. 2 is a side of the invention shown in FIG. 1. showing additional details of said mounting means and also showing means for tilting the housing below a line of printing on the platen.
FIG. 3 is a slightly enlarged. side view. in elevation. taken along the line 33 of FIG. I, to show details of a hinge which is part of the means for tilting the housing.
FIG. 4 is a cross-sectional view. in elevation. taken along the line 44 of FIG. I, to show additional details of the mounting means.
FIG. 5 is an end view, in elevation. taken along the line 55 of FIG. I. to show a ribbon carrier means which is part of the mounting means.
FIG. 6 is aside view, in elevation. taken along the line 66 of FIG. I, to show additional details of the actuator means.
DETAILED DESCRIPTION OF THE INVENTION FIG. 1 is a plan view of a printer embodying this invention, including a platen I0, carriage means 12, and print head means designated generally as 14.
The carriage means 12 (FIGS. I and 2) includes a support member 16 which is suitably apertured to slidably receive a rod 18 whose ends are mounted in the side frames (not shown) of the printer. The rod 18 is aligned in spaced parallel relationship with the longitudinal rotating axis of the platen 10 so as to enable the print head means 14 to be traversed along a line of printing on the platen. A rod 20, extending from the side of the support member 16 away from the platen 10, has a block 22 secured thereto by a retaining pin to allow alignment of the block 22 with the bar 24, as shown in FIG. 2. The block 22 has a horizontally positioned slot therein to slidably receive a horizontally positioned bar 24 whose ends are supported on stationary supports 26. The block 22 and bar 24 tend to stabilize and support the support member 16 to keep the print head means 14 aligned with the line of printing on the platen 10.
A traversing means for traversing the carriage means 12 along the line of printing on the platen I0 is also shown in FIG. 2. This means includes a threaded plate 28 (functioning as a nut) which is secured to the support member 16 by fasteners 30. A traversing screw 32, cooperating with the threaded plate 28, is used to traverse the carriage means 12 when the screw 32 is rotated. The rotating axis of screw 32 is positioned parallel to the longitudinal axis of rod 18 and the screw 32 is conventionally rotated in both directions by a stepping motor (not shown) to index the print head means 14 along the line of printing on the platen in response to a conventional control means.
The print head means 14, FIGS. 1 and 2, includes a wire guide housing 34 having a front end 36 and a rear end 38. The housing 34 is pivotally mounted near its rear end 34 on on the carriage means 12 by a mounting means designated generally as 40. to enable the front end 36 to tilt below the line of printing on the platen 10.
The mounting means 40 functions as a support for the wire-guide housing 34, as a hinge to enable the housing to be tilted below the line of printing. and as a ribbon carrier. The mounting means 40 is made of a plastic material like polyterepthate and has the molded shape shown in FIGS. 15. The mounting means 40 is generally U-shaped in cross section and includes a first flat portion 42 which is secured to the carriage means 12 by fasteners 44, a second flat portion 46, and bendable third sections 48 and 50 which together act as a hinge. The housing 34 is secured to the second portion 46 by fasteners 52, and the flat second portion 46 is thickened at areas 54 and 56 to stiffen the second portion near the bendable third sections 48 and 50, respectively. As is apparent from FIG. 3, each third section (48,50) has horizontally positioned grooves 58,60 on opposed sides thereof to provide a reduced thickness portion in sections 48, 50 which act as a hinge to enable the print head means 14 to be tilted below the line of printing as shown in dashed outline 62 in FIG. 2. The grooves 58 and 60, forming the hinge, should be located as close to an imaginary plane including the wire plungers 64 as is possible to thereby provide a hinging action in which the wire plungers 64, associated with the print head means 14, bend the least when the front end 36 of the housing 34 is lowered. In the embodiment shown, the thickness of the portion between the grooves 58 and 60 is about 0.030 inch; however. the thickness of the portion will depend upon the design parameters of the particular print head and material being used. Because such designing may be conventional, it is not described in further detail.
The mounting means 40, in cooperation with a spring 66 (FIG. 2) and a limiting means 68 combine to maintain the print head means 14 in a first position in which the housing 34 of the print head means is aligned with the line of printing on the platen 10. The spring 66 is of the compression type and is positioned between the first portion 42 and second portion 46 of the mounting means 40 (as shown in FIGS. 2 and 4) to urge the front end 36 of the housing 34 upwardly as viewed in FIG. 2. The upward motion of the front end 36 is restrained by the limiting means 68 which is an apertured curved plate having the cross sectional shape shown in FIG. 2. The means 68 has two mounting flanges 70 which are secured to the support member 16 by suitable fasten- 'ers. The means 68 is apertured at its center to permit the housing 34 to pass therethrough. and it has an S- shaped bend at 72 (FIG. 2) on the top thereof which contacts the top of the housing at the central portion thereof to limit the upward motion of the front end of the housing 34 and to keep the housing 34 aligned with the line of printing.
The front end 36 of the housing 34 is tilted below the line of printing by the pivoting means shown in FIG. 2. This means includes a vertically positioned link 74 having one end pivotally joined to a bifurcated flange 76 (FIG. 5) depending from the lowerside of the second flat portion 46, and the remaining end of the link has a leg 78 projecting at a right angle therefrom (FIG. 2). The link 74 also has an extension containing a slot 82 on the side opposite the leg 78, which cooperates with a pin mounted on the support member 16 to slidably constrain the motion of link 74 to a movement which is perpendicular to the line of printing on the platen 10. The link 74 is lowered to a second position by an arm 84 which is fixed to a shaft 86 which is rotatably mounted in the frame (not shown) of the printer. An arm 88 also has one end fixed to the shaft 86 and the remaining end thereof is pivotally joined to the operating plunger 90 of a solenoid 92. When the solenoid 92 is energized by said control means, the arm 84 is retated in a clockwise direction (as viewed in FIG. 2) to lower the front end 36 of the housing 34 to a second position shown in clashed outline at 62, permitting the most recently printed characters to be viewed at the printing line. The top most end of the slot 82 limits the motion of the front end 36 at the second position. When the solenoid 92 is deenergized, the spring 66 returns the front end 36 to the first position in printing relationship with the platen 10.
As stated earlier, the mounting means 40 also functions as a ribbon carrier. The second portion 46 of the means 40 has laterally positioned extensions 94 and 96 (FIG. 5) which support the guides 98 and 100, respectively. Each of the guides has an overhang portion 102 to retain a ribbon 104 thereunder. The ribbon carrier also includes similar guides 106 and 108 located near the front end 36 of the housing 34 on opposed sides thereof as shown in FIG. 5 and these guides upstand from the second portion 46 and have overhang portions 110 to retain the ribbon 104 thereunder. The ribbon 104 passes around the guide 98, around guide 106, around the front end 36 of the housing 34, around guide 108, and around guide 100. The ribbon may be fed by conventional means (not shown). The ribbon carrier, just described, is lowered with the front end 36 of the housing 34 to permit viewing of the most recently printed carriers.
The actuator means for actuating the wire plungers 64 is shown in FIGS. 2, 3, and 6, and includes, for each wire plunger, a leaf spring 112 having one end fixed to a block 114 (FIG. 6) which is secured to a plate 116 which in turn is secured to the support member 16 of the carriage means 12. The free end of each leaf spring 112 has one end of the associated wire plunger secured thereto as shown at 118 in FIG. 6. This free end also has an adjustment screw 120, threadedly secured thereto, to contact the core of its associated actuator 122. The actuator may be an electromagnet which holds the associated leaf spring in the tensioned position shown in FIG. 6. When a particular wire plunger 64 is to be actuated to form a character, the associated actuator is momentarily deenergized permitting the tensioned leaf spring 112 to drive the wire plunger out of the front end 36 of the housing 34, and to impact against the ribbon 104 and paper at the line of printing on the platen 10. Upon reenergization of the actuator 122, the screw 120 contacts the armature of the actuator to retension the associated leaf spring 112.
In the embodiment shown, there are seven actuators 122 which are fixed to the plate 116 on the carriage means 12. It should be noted that these actuators do not tilt when the wire guide housing 34 is tilted, and
consequently. the wire plungers 64 will bend somewhat in the sections thereof which are between the rear end 38 of the housing and the leaf springs 112. It was discovered that this small amount of bending did not aid versely affect the wire plungers 64, and because the actuators 122 do not tilt. but are secured to the carriage means. the mass of the housing 34 is considerably lighter and can be tilted more rapidly than prior art devices. These wire plungers 64 fan out in a horizontal direction at the rear end 38 of the housing 34 (FIG. 1) and are aligned in a vertical direction at the front end 36 as shown in FIG. 5.
The particular control means. for controlling the actuators 122 and the stepping motor which rotates the traversing screw 32 to translate the print head means 14 to produce characters in the SXT matrix. may be conventional. In the normal operation ofprinting a line of characters, it may not be necessary to tilt the front end 36 to the lower or second position each time a character is formed; however, after a momentary lapse of printing, it may be convenient to have the solenoid 92 energized to lower the front end of the housing to permit viewing of the most recently printed characters. The housing 34 may also be lowered when desired by closing a manually-operated switch to energize solenoid 92. Suitable conventional controls to prevent printing when the housing 34 is lowered. may be employed.
Because of the small mass of housing 34 which is tilted. the structure disclosed in this application can be used to print upper and lower case letters as disclosed in said German patent and US. Pat. No. 3.592.3ll which are incorporated by reference in this application.
What is claimed is:
1. In a wire matrix printer having a platen. a carriage means. and traversing means for traversing said carriage means along a line of printing on said platen. the improvement comprising:
a wire guide housing having a front end located adja cent to said platen. and a rear end;
mounting means for pivotally mounting said housing at said rear end to said carriage means to enable the housing to be pivoted between a first position in which said front end is aligned with said line of printing and a second position in which said front end dips below said line of printing to enable said line of printing to be viewed;
wire plungers slidably mounted in said housing;
plunger actuator means connected to said wire plungers and said carriage means to actuate said plungers to print in response to a control means; said wire plungers each having one end extending from said rear end, in a straight line and lying in a plane which is parallel to said line of printing. and being secured to said plunger actuator means; pivoting means to pivot said front end of said housing between said first and second positions to pivot only said housing and the plungers therein to provide a low inertia print head in which the housing and the wire plungers therein pivot relative to said carriage means between said first and second positions. but said actuator means remain fixed relative to said carriage means.
2. The printer as claimed in claim 1 in which said mounting means includes a U-shaped means having first and second portions joined by bendable third portions. said first portion being secured to carriage means and said second portion being secured to said housing.
3. The printer as claimed in claim 2 in which said pivoting means includes resilient means to resiliently urge said housing to said first position and lever means secured to the front end of said housing to pivot said housing to said second position.
4. The printer as claimed in claim 3 in which said U shaped means is made of a plastic material like polyterephthate and said third portions each have a reduced thickness portion therein forming a hinge line which is parallel to said line of printing to facilitate the bending of said third portions.
5. The printer as claimed in claim 4 in which said reduced thickness portion of each of said third portions is located near said plane including said wire plungers to minimize the bending of said wire plungers when said housing is pivoted to said second position.
6. The printer as claimed in claim 5 in which said U- shaped means is formed of a single piece of said plastic material and also includes a ribbon carrier means integrally formed on said front end of said housing to be pivoted therewith to said second position to enable said line of printing to be viewed.
7. The printer as claimed in claim 1 in which said plunger actuator means includes:
a leaf spring for each said wire plunger having one end fixed to said carriage means and the other end having one end of an associated wire plunger secured thereto near said rear end of said housing; each said leaf spring being biased to urge the associated wire plunger out of the front end of said housing; and
an actuator for each said leaf spring for holding the leaf spring in a tensioned position until released by said control means permitting the bias of the leaf spring to urge the associated wire plunger to impact against said platen.
8. The printer as claimed in claim 7 in which said mounting means includes a U-shaped means having first and second portions joined by a third means, said first portion being secured to said carriage means and said second portion being secured to said housing; said third means being bendable to provide a hinge to enable said pivoting means to pivot said front end of said housing between said first and second positions.

Claims (8)

1. In a wire matrix printer having a platen, a carriage means, and traversing means for traversing said carriage means along a line of printing on said platen, the improvement comprising: a wire guide housing having a front end located adjacent to said platen, and a rear end; mounting means for pivotally mounting said housing at said rear end to said carriage means to enable the housing to be pivoted between a first position in which said front end is aligned with said line of printing and a second position in which said front end dips below said line of printing to enable said line of printing to be viewed; wire plungers slidably mounted in said housing; plunger actuator means connected to said wire plungers and said carriage means to actuate said plungers to print in response to a control means; said wire plungers each having one end extending from said rear end, in a straight line and lying in a plane which is parallel to said line of printing, and being secured to said plunger actuator means; pivoting means to pivot said front end of said housing between said first and second positions to pivot only said housing and the plungers therein to provide a low inertia print head in which the housing and the wire plungers therein pivot relative to said carriage means between said first and second positions, but said actuator means remain fixed relative to said carriage means.
2. The printer as claimed in claim 1 in which said mounting means includes a U-shaped means having first and second portions joined by bendable third portions, said first portion being secured to carriage means and said second portion being secured to said housing.
3. The printer as claimed in claim 2 in which said pivoting means includes resilient means to resiliently urge said housing to said first position and lever means secured to the front end of said housing to pivot said housing to said second position.
4. The printer as claimed in claim 3 in which said U-shaped means is made of a plastic material like polyterephthate and said third portions each have a reduced thickness portion therein forming a hinge line which is parallel to said line of printing to facilitate the bending of said third portions.
5. The printer as claimed in claim 4 in which said reduced thickness portion of each of said third portions is located near said plane including said wire plungers to minimize the bending of said wire plungers when said housing is pivoted to said second position.
6. The printer as claimed in claim 5 in which said U-shaped means is formed of a single piece of said plastic material and also includes a ribbon carrier means integrally formed on said front end of said housing to be pivoted therewith to said second position to enable said line of printing to be viewed.
7. The printer as claimed in claim 1 in which said plunger actuator means includes: a leaf spring for each said wire plunger having one end fixed to said carriage means and the other end having one end of an associated wire plunger secured thereto near said rear end of said housing; each said leaf spring being biased to urge the associated wire plunger out of the front end of said housing; and an actuator for each said leaf spring for holding the leaf spring in a tensioned position until released by said control means permitting the bias of the leaf spring to urge the associated wire plunger to impact against said platen.
8. The printer as claimed in claim 7 in which said mounting means includes a U-shaped means having first and second portions joined by a third means, said first portion being secured to said carriage means and said second portion being secured to said housing; said third means being bendable to provide a hinge to enable said pivoting means to pivot said front end of said housing between said first and second positions.
US381974A 1973-07-23 1973-07-23 Tiltable matrix print head to permit viewing of the characters Expired - Lifetime US3882985A (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
US381974A US3882985A (en) 1973-07-23 1973-07-23 Tiltable matrix print head to permit viewing of the characters
DE2430407A DE2430407C3 (en) 1973-07-23 1974-06-25 Mosaic wire print head
GB2908974A GB1432712A (en) 1973-07-23 1974-07-01 Line printer with matrix printing head
CA205,265A CA1020808A (en) 1973-07-23 1974-07-22 Tiltable matrix print head
JP49084065A JPS5042918A (en) 1973-07-23 1974-07-22

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US381974A US3882985A (en) 1973-07-23 1973-07-23 Tiltable matrix print head to permit viewing of the characters

Publications (1)

Publication Number Publication Date
US3882985A true US3882985A (en) 1975-05-13

Family

ID=23507062

Family Applications (1)

Application Number Title Priority Date Filing Date
US381974A Expired - Lifetime US3882985A (en) 1973-07-23 1973-07-23 Tiltable matrix print head to permit viewing of the characters

Country Status (5)

Country Link
US (1) US3882985A (en)
JP (1) JPS5042918A (en)
CA (1) CA1020808A (en)
DE (1) DE2430407C3 (en)
GB (1) GB1432712A (en)

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4049109A (en) * 1976-03-08 1977-09-20 Xerox Corporation Print member carriage assembly
US4086997A (en) * 1977-03-07 1978-05-02 Wang Laboratories, Inc. Adjustable support for print head assembly
US4090600A (en) * 1976-09-22 1978-05-23 Ncr Corporation Printing device forms compensation and ribbon control means
US4155661A (en) * 1976-10-28 1979-05-22 Siemens Aktiengesellschaft Mounting arrangement for electromagnet driving structures in a mosaic needle printer head
USD256474S (en) 1976-10-11 1980-08-19 Facit Aktiebolag Printing head for a dot matrix printer
EP0023270A1 (en) * 1979-07-30 1981-02-04 International Business Machines Corporation Dot printer comprising a tiltable print head
US4401025A (en) * 1981-05-08 1983-08-30 Kienzle Apparate Gmbh Device for pivoting a printing unit
US4459051A (en) * 1979-08-15 1984-07-10 Canon Kabushiki Kaisha Matrix printer
US4629344A (en) * 1984-04-03 1986-12-16 Mannesmann Aktiengesselschaft Dot matrix print head with an adjustable print needle guide
US4900167A (en) * 1987-11-06 1990-02-13 Mannesmann Aktiengesellschaft Matrix pin printer with adjustable print pin guide
US5560721A (en) * 1993-12-24 1996-10-01 Brother Kogyo Kabushiki Kaisha Shuttle printer with shifting wire guides

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH623271A5 (en) * 1977-11-15 1981-05-29 Hasler Ag
CH618630A5 (en) * 1978-02-07 1980-08-15 Hermes Precisa International
DE2919209C2 (en) * 1979-05-12 1982-09-02 Triumph-Adler Aktiengesellschaft für Büro- und Informationstechnik, 8500 Nürnberg Typewriter control device
EP0055614A3 (en) * 1980-12-29 1983-04-13 Integrex Limited Improvements in or relating to computer matrix printers
DE3125426A1 (en) * 1981-06-27 1983-01-20 Olympia Werke Ag, 2940 Wilhelmshaven Dot-matrix printer with a print head which can be moved along a recording carrier in the print-line direction
DE4020010A1 (en) * 1990-06-21 1992-01-09 Mannesmann Ag MATRIX NEEDLE PRINT HEAD

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2907270A (en) * 1954-12-31 1959-10-06 Ibm Wire printer
US2911085A (en) * 1957-07-01 1959-11-03 Burroughs Corp Wire printer with oscillatory print head
US3400798A (en) * 1967-08-21 1968-09-10 Friden Inc Last character visibility mechanism for a matrix page printer
US3426880A (en) * 1967-04-14 1969-02-11 Friden Inc Serial character matrix page printer
US3592311A (en) * 1968-10-02 1971-07-13 Ibm Wire printing head
US3633723A (en) * 1969-02-24 1972-01-11 Sperry Rand Corp Power-operated typewriter
US3685629A (en) * 1970-09-21 1972-08-22 Scope Inc Print head carriage mechanism for impactless printer
US3759359A (en) * 1971-02-19 1973-09-18 Walther Bueromasch Gmbh Wire matrix printer heads

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2907270A (en) * 1954-12-31 1959-10-06 Ibm Wire printer
US2911085A (en) * 1957-07-01 1959-11-03 Burroughs Corp Wire printer with oscillatory print head
US3426880A (en) * 1967-04-14 1969-02-11 Friden Inc Serial character matrix page printer
US3400798A (en) * 1967-08-21 1968-09-10 Friden Inc Last character visibility mechanism for a matrix page printer
US3592311A (en) * 1968-10-02 1971-07-13 Ibm Wire printing head
US3633723A (en) * 1969-02-24 1972-01-11 Sperry Rand Corp Power-operated typewriter
US3685629A (en) * 1970-09-21 1972-08-22 Scope Inc Print head carriage mechanism for impactless printer
US3759359A (en) * 1971-02-19 1973-09-18 Walther Bueromasch Gmbh Wire matrix printer heads

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4049109A (en) * 1976-03-08 1977-09-20 Xerox Corporation Print member carriage assembly
US4090600A (en) * 1976-09-22 1978-05-23 Ncr Corporation Printing device forms compensation and ribbon control means
USD256474S (en) 1976-10-11 1980-08-19 Facit Aktiebolag Printing head for a dot matrix printer
US4155661A (en) * 1976-10-28 1979-05-22 Siemens Aktiengesellschaft Mounting arrangement for electromagnet driving structures in a mosaic needle printer head
US4086997A (en) * 1977-03-07 1978-05-02 Wang Laboratories, Inc. Adjustable support for print head assembly
EP0023270A1 (en) * 1979-07-30 1981-02-04 International Business Machines Corporation Dot printer comprising a tiltable print head
US4459051A (en) * 1979-08-15 1984-07-10 Canon Kabushiki Kaisha Matrix printer
US4401025A (en) * 1981-05-08 1983-08-30 Kienzle Apparate Gmbh Device for pivoting a printing unit
US4629344A (en) * 1984-04-03 1986-12-16 Mannesmann Aktiengesselschaft Dot matrix print head with an adjustable print needle guide
US4900167A (en) * 1987-11-06 1990-02-13 Mannesmann Aktiengesellschaft Matrix pin printer with adjustable print pin guide
US5560721A (en) * 1993-12-24 1996-10-01 Brother Kogyo Kabushiki Kaisha Shuttle printer with shifting wire guides

Also Published As

Publication number Publication date
DE2430407B2 (en) 1978-02-23
GB1432712A (en) 1976-04-22
JPS5042918A (en) 1975-04-18
CA1020808A (en) 1977-11-15
DE2430407C3 (en) 1978-10-26
DE2430407A1 (en) 1975-04-10

Similar Documents

Publication Publication Date Title
US3882985A (en) Tiltable matrix print head to permit viewing of the characters
US4498792A (en) Printing and/or correcting device for printing machines
US2919008A (en) Ribbon lift mechanism
JPH0611567B2 (en) Recording member cutting mechanism
US3400798A (en) Last character visibility mechanism for a matrix page printer
EP0207127B1 (en) Dot matrix printer
GB1581986A (en) Wire printer
JPS63501702A (en) printer
US3393787A (en) Impression control mechanism
CA1199223A (en) Arrangement for pressing down a print head comprising at least one print electrode
JPS6018550B2 (en) serial printer
US3572487A (en) Margin control structure
CA1236339A (en) Backstop and damping apparatus for actuator
US2797790A (en) Case shift mechanism for typewriters
JP3215609B2 (en) Ink jet recording device
JPH028770Y2 (en)
EP0122774B1 (en) Portable electric typewriter
US3838762A (en) Type action arrangement
US3651710A (en) Variable radius crank arm for typewriter impression control
US2206017A (en) Case shift mechanism for typewriting machines
US3197011A (en) Sponge rubber typewriter key biasing means
US2555521A (en) Type action for typewriting machines
US3179226A (en) Impression control mechanism
US1025171A (en) Type-writing machine.
US3996852A (en) Line printer