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    • 1. 发明申请
    • WRITING INSTRUMENT WITH LENS PROVIDED ON BARREL FOR MAGNIFYING INFORMATION IN BARREL
    • 带有镜头的笔记本仪器用于放大条形码信息
    • WO1982004420A1
    • 1982-12-23
    • PCT/JP1981000137
    • 1981-06-12
    • MINATO KOHEI
    • B43K29/00
    • B43K29/003B43K29/12
    • A writing instrument such as a ball point pen or a mechanical pencil with information such as letters recorded on a recording member rotatably disposed inside the barrel and a lens provided on the barrel for magnifying the information so it can be seen. The lens (3) is formed at a part of the barrel (2) of the writing instrument in the axial direction. An internal ferrule (rotary ferrule) with information recorded on it is contained in the barrel (2). A rotating knob (1) is provided at one end of the ferrule (not shown ) and engaged with the rear end of the barrel (2) (See Fig. 4). The recording medium may also be formed of a sheet of paper (4) on which information is recorded and which is wound between an upper shaft (2) and a lower shaft (3) so as to be fed when the shafts are rotated (See Fig. 6).
    • 诸如圆珠笔或自动铅笔的书写工具,其具有可旋转地设置在镜筒内的记录构件上记录的字母和设置在镜筒上的镜头的信息,以放大信息,因此可以看出。 透镜(3)形成在书写工具的筒体(2)的轴向的一部分上。 其中记录有信息的内部套圈(旋转套圈)包含在枪管(2)中。 旋转旋钮(1)设置在套圈(未示出)的一端并与筒体(2)的后端接合(见图4)。 记录介质也可以由一张纸(4)形成,其上记录有信息,并且被卷绕在上轴(2)和下轴(3)之间以在轴旋转时被供给(参见 图6)。
    • 4. 发明申请
    • MAGNETIC ROTARY DEVICE
    • 磁力旋转装置
    • WO1987004576A1
    • 1987-07-30
    • PCT/JP1987000039
    • 1987-01-22
    • MINATO, Kohei
    • H02N11/00
    • H02K29/10H02K53/00
    • A magnetic rotary device comprises first and second rotors that are arranged in parallel close to each other, and that are rotatably supported. The first and second rotors are coupled to each other so as to turn in the opposite directions. Along the outer peripheries of the first and second rotors are arranged permanent magnets of the same number maintaining an equal distance in the circumferential direction. Magnetic poles on one side of these permanent magnets are directed toward the outside in the radial direction of the rotor and magnetic poles on the other side are directed toward the inside in the radial direction to the rotor, the magnetic poles located on the outside in the radial direction of the rotor being all of the same polarity. When the first and second rotors are rotated being interlocked to each other, the permanent magnets in one rotor rotate being slightly ahead in rotational phase relative to the permanent magnets of the other rotor that form pairs with the above-mentioned permanent magnets. One of the permanent magnets in one rotor is replaced with an electromagnet. The polarity of a magnetic pole located on the outside in the radial direction of the electromagnet can be changed by changing the direction of conduction to the electromagnet.
    • 6. 发明专利
    • DE3751215T2
    • 1995-08-10
    • DE3751215
    • 1987-01-22
    • MINATO KOHEI
    • MINATO KOHEI
    • H02K49/00H02K29/10H02K49/10H02K53/00H02N11/00
    • A magnetic rotary device comprises rotors arranged in parallel close to each other, and rotatably supported. The rotors are coupled to each other to turn in the opposite directions. Along the outer peripheries of the rotors are arranged permanent magnets of the same number maintaining an equal distance in the circumferential direction. Magnetic poles on one side of these permanent magnets are directed toward the outside in the radial direction of the rotor and magnetic poles on the other side are directed toward the inside in the radial direction to the rotor. The magnetic poles located on the outside in the radial direction of the rotor being all of the same polarity. When the rotors are rotated being interlocked to each other, the permanent magnets in one rotor rotate being slightly ahead in rotational phase relative to the permanent magnets of the other rotor that form pairs with the above mentioned permanent magnets. One of the permanent magnets in one rotor is replaced with an electromagnet. The polarity of a magnet pole located on the outside in the radial direction of the electromagnet can be changed by chanqing the direction of conduction to the electromagnet.
    • 7. 发明专利
    • DE3751215D1
    • 1995-05-11
    • DE3751215
    • 1987-01-22
    • MINATO KOHEI
    • MINATO KOHEI
    • H02K49/00H02K29/10H02K49/10H02K53/00H02N11/00
    • A magnetic rotary device comprises rotors arranged in parallel close to each other, and rotatably supported. The rotors are coupled to each other to turn in the opposite directions. Along the outer peripheries of the rotors are arranged permanent magnets of the same number maintaining an equal distance in the circumferential direction. Magnetic poles on one side of these permanent magnets are directed toward the outside in the radial direction of the rotor and magnetic poles on the other side are directed toward the inside in the radial direction to the rotor. The magnetic poles located on the outside in the radial direction of the rotor being all of the same polarity. When the rotors are rotated being interlocked to each other, the permanent magnets in one rotor rotate being slightly ahead in rotational phase relative to the permanent magnets of the other rotor that form pairs with the above mentioned permanent magnets. One of the permanent magnets in one rotor is replaced with an electromagnet. The polarity of a magnet pole located on the outside in the radial direction of the electromagnet can be changed by chanqing the direction of conduction to the electromagnet.
    • 8. 发明专利
    • AT120902T
    • 1995-04-15
    • AT87900885
    • 1987-01-22
    • MINATO KOHEI
    • MINATO KOHEI
    • H02K49/00H02K29/10H02K49/10H02K53/00H02N11/00
    • A magnetic rotary device comprises rotors arranged in parallel close to each other, and rotatably supported. The rotors are coupled to each other to turn in the opposite directions. Along the outer peripheries of the rotors are arranged permanent magnets of the same number maintaining an equal distance in the circumferential direction. Magnetic poles on one side of these permanent magnets are directed toward the outside in the radial direction of the rotor and magnetic poles on the other side are directed toward the inside in the radial direction to the rotor. The magnetic poles located on the outside in the radial direction of the rotor being all of the same polarity. When the rotors are rotated being interlocked to each other, the permanent magnets in one rotor rotate being slightly ahead in rotational phase relative to the permanent magnets of the other rotor that form pairs with the above mentioned permanent magnets. One of the permanent magnets in one rotor is replaced with an electromagnet. The polarity of a magnet pole located on the outside in the radial direction of the electromagnet can be changed by chanqing the direction of conduction to the electromagnet.
    • 9. 发明专利
    • NO943277L
    • 1995-03-17
    • NO943277
    • 1994-09-05
    • MINATO KOHEI
    • MINATO KOHEI
    • H02K21/12H02K25/00H02K53/00H02K29/06H02K29/10H02K1/27
    • On a rotor (6;8) which is fixed to a rotatable rotating shaft (4), a plurality of permanent magnets (22A-22H) are disposed along the direction of rotation such that the same magnetic pole type thereof face outward. In the same way, balancers (20A-20H) are disposed on the rotor for balancing the rotation of this rotor. Each of the permanent magnets is obliquely arranged with respect to the radial direction line of the rotor. At the outer periphery of the rotor, an electromagnet (12;14) is disposed facing this rotor, with this electromagnet intermittently energized based on the rotation of the rotor. According to the magnetic rotating apparatus of the present invention, rotational energy can be efficiently obtained from permanent magnets. This is made possible by minimizing as much as possible current supplied to the electromagnets, so that only a required amount of electrical energy is supplied to the electromagnets.
    • 10. 发明专利
    • NO943277D0
    • 1994-09-05
    • NO943277
    • 1994-09-05
    • MINATO KOHEI
    • MINATO KOHEI
    • H02K21/12H02K25/00H02K53/00H02K29/06H02K29/10H02K
    • On a rotor (6;8) which is fixed to a rotatable rotating shaft (4), a plurality of permanent magnets (22A-22H) are disposed along the direction of rotation such that the same magnetic pole type thereof face outward. In the same way, balancers (20A-20H) are disposed on the rotor for balancing the rotation of this rotor. Each of the permanent magnets is obliquely arranged with respect to the radial direction line of the rotor. At the outer periphery of the rotor, an electromagnet (12;14) is disposed facing this rotor, with this electromagnet intermittently energized based on the rotation of the rotor. According to the magnetic rotating apparatus of the present invention, rotational energy can be efficiently obtained from permanent magnets. This is made possible by minimizing as much as possible current supplied to the electromagnets, so that only a required amount of electrical energy is supplied to the electromagnets.