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    • 43. 发明专利
    • POWDERED MEDICINE FEEDING DEVICE
    • JP2001097532A
    • 2001-04-10
    • JP27402999
    • 1999-09-28
    • TOSHO INC
    • OMURA SHIROISHII YASUHIROKOJIMA TOSHIYUKI
    • A61J3/00B06B1/06B06B1/16B65B1/30B65B37/04B65G27/32
    • PROBLEM TO BE SOLVED: To realize a powdered medicine feeding device capable of automatically setting the vibrating condition and facilitated in manufacture and maintenance thereof. SOLUTION: This powdered medicine feeding device is provided with a medicine feeder 10 for feeding the medicine with vibration, a control means 20 for setting the vibration strength on the basis of kind and weight of the medicine, and a correcting means 26 for correcting the set vale of the vibration strength on the basis the characteristic of the medicine feeder 10. The device is also provided with an input means 21 for inputting kind and weight of the medicine, a first set value deciding means 22 for obtaining the predetermined category based on the kind and grain diameter of the medicine, and a second set value deciding means 24 for obtaining the set value of the vibration strength on the basis of the weight of the medicine and the category obtained by the first set value deciding means 22. Each reference of each medicine feeder is relaxed for universality by correcting the set value of the vibration strength based on the kind of the medicine on the basis of the characteristic value of the medicine feeder.
    • 50. 发明专利
    • DRIVE CONTROL METHOD FOR VIBRATION FEEDER AND DEVICE THEREFOR
    • JPH11180530A
    • 1999-07-06
    • JP9393898
    • 1998-03-23
    • SHINKO ELECTRIC CO LTD
    • MURATA HIROHIKOTOMITA MASANOBU
    • B65G27/32B65G27/34
    • PROBLEM TO BE SOLVED: To minimize the electric capacity and eliminate the shock in drive starting by storing the frequency of voltage in the previous drive, and starting the drive at the stored frequency in restarting. SOLUTION: When a switch S is closed, an AC power source 8 is connected to a variable frequency power source 10 and laid in drive state. This output voltage is supplied to the electromagnetic coil 4 of an electromagnet 3 through an amplifier 12, and the bowl of a vibration part feeder performs a twisting vibration. When the switch S is then opened, the output from the variable frequency power source 10 is lost, the drive of the bowl is stopped, and a nonvolatile memory 15 stores the output frequency of the variable frequency power source 10 before the switch S is cut. When the switch S is closed again to restart the vibration part feeder, the variable frequency power source 10 is driven so as to output the resonance frequency stored in the memory 15. Thus, the shock in transfer from forced vibration to resonance frequency can be eliminated, and the power source capacity can be also minimized.