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    • 2. 发明专利
    • AT CUT CRYSTAL OSCILLATOR AND PRODUCTION THEREOF
    • JPH10308645A
    • 1998-11-17
    • JP13424497
    • 1997-05-08
    • TOYO COMMUNICATION EQUIP
    • TANAKA YOSHIAKI
    • H03H9/19H03H3/02
    • PROBLEM TO BE SOLVED: To form each crystal piece into convex or bevel without reducing productivity or increasing the cost by making each electrode into projecting electrode structure, with which an area gets concentrically narrow gradually toward an apex, and shaping the entire crystal oscillator into convex. SOLUTION: Concerning a crystal oscillator 1, its entire front form is made into convex or bevel by projecting the shape of entire respective exciting electrodes 3 respectively composed of plural steps by successively laminating and forming the respective electrodes 3 on both the main surfaces of disk-shaped or plate-shaped AT cut crystal element panel 2. Namely, respective electrode layers 3-1 to 3-n consisting of the electrode 2 is constituted in the circular shape concentrical with the circular crystal element panel 2 and the electrode 3 is stepwisely projected so that the area of 1st electrode layer 3-1 directly formed on the crystal element panel 2 can be maximum and areas can be successively narrowed gradually toward the top of lamination. Since the respective electrodes 3 are formed in a symmetric shape with the crystal element panel 2 inbetween, the crystal oscillator 1 is formed into convex as a whole.
    • 5. 发明专利
    • EMBEDDED SENSOR HAVING RECORDING MEDIUM
    • JPH02215437A
    • 1990-08-28
    • JP3555289
    • 1989-02-15
    • TOYO COMMUNICATION EQUIP
    • OSHIMA TAKESHITANAKA YOSHIAKI
    • A61B5/00A61B5/01
    • PURPOSE:To correctly and efficiently execute the information managements of the characteristic, embedding point, patient, etc., for each sensor by embedding the sensor in an organism, etc., and integrally fitting a separatably recording medium holding part to hold the recording medium to the sensor to measure a temperature, pressure, etc. CONSTITUTION:On the outer edge surface of a base 2 of the sensor, a thin piece 5 having a hole 4 in a proper size is projected integrally with it, the thin piece 5 is inserted into a pocket 7 provided at one edge of a card 6, thereafter, the pocket 7 both sides are heatingly bonded through the hole 4, and the sensor and card 6 are integrated. At the time of manufacturing the sensor, respective kinds of information related to a frequency-temperature character, etc., sensor are posted to the card 6, the card is given to a doctor, etc., on the other hand, a person to use it further posts the information related to the organism and the position in the organism to embed the sensor, etc., in the card 6 it is separated along with the thin piece 5, and it is stuck and stored in a health care carte. By the above-mentioned constitution, the necessary data management is made efficient.
    • 7. 发明专利
    • PIEZO-RESONATOR WITH BUILT-IN INDUCTOR
    • JPH01149607A
    • 1989-06-12
    • JP30930787
    • 1987-12-07
    • TOYO COMMUNICATION EQUIP
    • TANAKA YOSHIAKIHIRAMA KOICHI
    • H03H9/02H03H9/19
    • PURPOSE:To constitute the oscillation circuit of a circuit with an IC by forming an inductor by vapor-depositing or printing helical or U-shaped conductor patterns coupled in zigzags on a piezo-resonator blank plate or enclosing member and, at the same time, electrically coupling the conductor patterns with a piezo-resonator. CONSTITUTION:On the inner surface of an enclosing member 3 a helical conductor 11 is formed by vapor-deposition or printing. The outer peripheral end section of the conductor 11 is connected with a through hole 6b and its central end section is connected with a through hole 6a by means of a lead wire 13. Moreover, the inside of a through hole 12 is filled up with a glassy or ceramic material so as to maintain airtightness. Then the outer peripheral sections 14 of members 1, 2, and 3 which are brought into contact with other members and the periphery 15 of each through hole is metallized and soldered by using low-melting point glass solder so as to closely enclose a piezo-resonator blank plate 1. The blank plate 1 is connected with a lead wire 16 through through holes 4a and 4c. Therefore, this piezo-resonator becomes equivalent to the circuit shown in the figure and can be relatively easily and inexpensively manufactured.
    • 9. 发明专利
    • APPLICATOR FOR EMBEDDED SENSOR
    • JPH02215447A
    • 1990-08-28
    • JP3669089
    • 1989-02-16
    • TOYO COMMUNICATION EQUIP
    • OSHIMA TAKESHITANAKA YOSHIAKI
    • G01K1/14A61B5/00A61B5/01A61B8/08A61N5/02
    • PURPOSE:To forcibly excite a sensor most effectively by providing the sensor with an index which shown the direction to be excited of a piezoelectric vibrator built in the sensor, and providing a guide in the hollow needle of an applicator so that the sensor can be mounted only when the index is intended to mount to the hollow needle at a specified azimuth. CONSTITUTION:A wireless temperature sensor 10 fixes a tuning fork type crystal resonator 13, for which frequency fluctuation is large to a temperature change, on a base 11 equipped with a tip such as a spearhead, etc. Then, this crystal resonator is vacuum-sealed by a cap 15 in an interval with the base 11. The cross section shape of a joint part with the cap 15 in this base 11 and of the cap 15 are made oblong and the respective lead pieces of the tuning fork type crystal resonator 13 are arranged along the length of the cap. When this sensor is inserted into an organ, an applicator 20 is used. Then, when the forming position of a direction indicator 29 is made coincident with the both end parts of the sensor, which is mounted into a needle 21, in a length-wise direction, the sensor 10 can be inserted with confirming the direction of the sensor with the direction indicator 29 as the index when the applicator is used.
    • 10. 发明专利
    • APPLICATOR WITH SCALES
    • JPH02140138A
    • 1990-05-29
    • JP29423988
    • 1988-11-21
    • TOYO COMMUNICATION EQUIP
    • OSHIMA TAKESHITANAKA YOSHIAKI
    • G01K7/32A61B5/00A61B5/01A61M5/178
    • PURPOSE:To accurately measure the temperature of a part to be heated in an organ in a thermal treatment, etc., to heat and extinguish cancerous cells by a high frequency electromagnetic wave, etc., by forming scales to show the depth of piercing on the external surface of a needle in an applicator or fitting a scaling member, which freely appears and disappears elastically, along the axial direction of the needle. CONSTITUTION:A needle 2 normally has the length in the degree of 10-20cm, however, scales 15 are engraved with prescribed intervals (for example, for the unit of 1mm or 10mm) from the tip of the needle on the external surface. If possible, numerical values to express a distance from the tip of the needle can be engraved with the respective scales and intervals between the engraved lines 15 can be colored with different colors as well. For the needle 2 of the applicator, the extremely fine needle is sometimes used. Then, when it is difficult to discriminate the above mentioned engraving or coloring with the naked eyes, instead of the scales to the needle 2 of an applicator 1, a scaling member 20 to freely protruded and disappear elastically can be provided parallelly with the needle 2.