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    • 4. 发明申请
    • HEAT-BONDING APPARATUS AND METHOD OF MANUFACTURING HEAT-BONDED PRODUCTS
    • 热粘合装置和制造热粘合产品的方法
    • US20150366079A1
    • 2015-12-17
    • US14763135
    • 2014-01-09
    • ORIGIN ELECTRIC COMPANY, LIMITED
    • Jun MATSUDATakayuki SUZUKIMasami KURODA
    • H05K3/34B23K3/047B23K1/00
    • H05K3/3494B23K1/0016B23K1/008B23K3/04B23K3/047B23K2101/42H05K2203/085
    • A heat-bonding apparatus and method of manufacturing a heat-bonded product without overheating during cooling thereof after the completion of the heat-bonding, where the object can be cooled in a shorter time than the conventional when the heat-bonding is performed in a vacuum. A heat-bonding apparatus having a vacuum chamber for housing an object to be heat-bonded and a buffer part, a heater for applying heat to the buffer part placed into contact with the object, an object temperature sensor for detecting a temperature of the object heated through the buffer part, a buffer temperature sensor for detecting a temperature of the buffer part, a vacuum breaker for breaking the vacuum, and a controller for operating the vacuum breaker to break the vacuum when a temperature difference between a temperature detected by the object temperature sensor and a temperature detected by the buffer temperature sensor falls within a range of specified temperature difference.
    • 一种热粘合装置和热粘合产品的制造方法,其在热粘合完成之后在其冷却期间不会过热,其中可以在比在常规方法中进行热粘合时更短的时间来冷却物体 真空。 一种具有用于容纳要被热粘合的物体的真空室和缓冲部分的热粘合装置,用于向与物体接触的缓冲部分提供热量的加热器,用于检测物体的温度的物体温度传感器 通过缓冲部分加热,用于检测缓冲部分的温度的缓冲温度传感器,用于断开真空的真空断路器,以及当由对象检测到的温度之间的温度差来操作真空断路器以断开真空的控制器 温度传感器和由缓冲温度传感器检测的温度落在规定的温度差的范围内。
    • 5. 发明申请
    • CAPACITIVE WELDER AND METHOD FOR CHARGING SAME
    • 电容焊接机及其充电方法
    • US20150015212A1
    • 2015-01-15
    • US14371403
    • 2013-01-10
    • ORIGIN ELECTRIC COMPANY, LIMITED
    • Yasuo KadoyaKouji AraiAkio Komatsu
    • B23K11/26B23K11/24H02J7/00
    • B23K11/26B23K11/24H02J7/0052H02J7/345
    • The capacitive welder includes a charging circuit, a welding transformer, a capacitor, a discharging switching element connected in parallel with a primary winding of the welding transformer and the capacitor that are connected in series, a bypass switching element connected in parallel with the primary winding, welding electrodes connected in parallel with a secondary winding of the welding transformer, and a control circuit for bringing the welding transformer into a reset allowing state by allowing a reset current to flow in the primary winding using the input power introduced through the charging circuit without supplying an ON signal to the bypass switching element, and then supplying the ON signal to the bypass switching element such that the capacitor is charged through the bypass switching element by the input power introduced through the charging circuit.
    • 电容焊机包括充电电路,焊接变压器,电容器,与焊接变压器的初级绕组并联连接的放电开关元件和串联连接的电容器,与初级绕组并联连接的旁路开关元件 焊接电极与焊接变压器的次级绕组并联连接的焊接电极,以及控制电路,用于通过使用通过充电电路引入的输入电力允许复位电流在初级绕组中流动而使焊接变压器进入复位状态,而没有 向旁路开关元件提供ON信号,然后向旁路开关元件提供ON信号,使得通过旁路开关元件通过充电电路引入的输入电力对电容器进行充电。
    • 6. 发明授权
    • Method of manufacturing bonded member and bonded member manufacturing apparatus
    • 制造接合构件和接合构件制造装置的方法
    • US08613823B2
    • 2013-12-24
    • US12981648
    • 2010-12-30
    • Takayuki SuzukiTomoyuki SaitoMasahiro Nakamura
    • Takayuki SuzukiTomoyuki SaitoMasahiro Nakamura
    • B32B37/00
    • C09J5/00G02F2001/133331Y10T156/10Y10T156/1744
    • It can prevent extension of the time required for bonding, even when relatively large members are bonded. a bonded member manufacturing apparatus comprises a first holder 11 for holding a first member D, a second holder 12 for holding a second member E, an application device 40 for applying the intermediate substance G to a first bonded surface Df, a moving device 20 for moving the first holder 11 and/or the second holder 12, and a controller. The controller controls the first holder 11, the second holder 12 and the moving device 20 so that a first extended plane De and a second extended plane Ee are arranged such that the first extended plane De and the second extended plane Ee oppose each other in parallel and such that a range where the first bonded surface Df overlaps with the second bonded surface Ef is equal or smaller than a predetermined range when viewed in a direction of the thickness, and then so that the first member D is moved relatively to the second member E in a direction that the range where the first bonded surface Df overlaps with the second bonded surface Ef gradually increases when viewed in the direction of the thickness while maintaining a distance between the first extended plane De and the second extended plane Ee.
    • 即使粘结较大的构件,也能够防止粘合所需的时间的延长。 接合部件制造装置包括:用于保持第一部件D的第一保持器11,用于保持第二部件E的第二保持件12,用于将中间物质G施加到第一接合面Df的施加装置40, 移动第一保持器11和/或第二保持器12以及控制器。 控制器控制第一保持器11,第二保持器12和移动装置20,使得第一延伸平面De和第二延伸平面Ee被布置成使得第一延伸平面De和第二延伸平面Ee平行地彼此相对 并且使得当从厚度方向观察时,第一接合面Df与第二接合面Ef重叠的范围等于或小于预定范围,然后使得第一构件D相对于第二构件 E在第一接合面Df与第二接合面Ef重叠的范围的方向上逐渐增大,同时保持第一延伸面De和第二延伸面Ee之间的距离,从厚度方向观察。
    • 7. 发明申请
    • DC Power Supply System and Control Method
    • 直流电源系统及控制方法
    • US20130278056A1
    • 2013-10-24
    • US13996779
    • 2011-12-22
    • Tomonari KoizumiYasuo MasudaYusuke KubotaAkiyoshi FukuiAkira Matsumoto
    • Tomonari KoizumiYasuo MasudaYusuke KubotaAkiyoshi FukuiAkira Matsumoto
    • H02J1/00
    • H02J1/00H02J7/0068H02J7/045Y10T307/305
    • A DC power supply system and a control method, which can continue charging of a storage battery with a constant current even if an assist current is needed due to, for example, overload during charging of the storage battery and can suppress a current output from the storage battery as much as possible. In a power supply system, when a charger operates at a potential of an output voltage smaller than the potential of the output voltage of a rectifier during charging of the storage battery, the output current of the charger is controlled so that a charging current Ie supplied from the charger to the storage battery is kept at a predetermined value, and when a load requires a current larger than the current supplied by the rectifier during charging of the storage battery, the potential of the output voltage of the rectifier is reduced smaller than the potential of the output voltage of the charger by a current drooping operation, and the diode is electrically connected, the output current of the charger is controlled so that the charger outputs the assistant current Ic supplied toward the load while the charging current Ie is kept at a predetermined value.
    • 直流电源系统和控制方法,即使由于例如在蓄电池充电期间过载而需要辅助电流,也能够以恒定电流继续对蓄电池进行充电,并且可以抑制来自蓄电池的电流输出 蓄电池尽可能多。 在电源系统中,当充电器在蓄电池充电期间以比在整流器的输出电压的电位小的输出电压的电位下工作时,控制充电器的输出电流,使得充电电流Ie 从充电器到蓄电池被保持在预定值,并且当负载需要比在蓄电池充电期间由整流器提供的电流大的电流时,整流器的输出电压的电位减小到小于 充电器的输出电压的电位通过电流下降操作,并且二极管电连接,充电器的输出电流被控制,使得充电器输出向充电提供的辅助电流Ic,同时充电电流Ie保持在 预定值。
    • 8. 发明授权
    • Synchronization detecting circuit and automatic synchronous parallelization apparatus
    • 同步检测电路和自动同步并联装置
    • US08553436B2
    • 2013-10-08
    • US13006636
    • 2011-01-14
    • Masaaki OhshimaShuichi UshikiJinbin Zhao
    • Masaaki OhshimaShuichi UshikiJinbin Zhao
    • H02M7/5395
    • H02J3/42
    • An automatic synchronous parallelization apparatus capable of suppressing an inrush current by automatically adjusting the magnitude, the frequency, and the phase of the voltage when a single-phase voltage-type DC-to-AC converting device performing an autonomous parallel operation is connected in parallel with an external single-phase AC voltage source. The automatic synchronous parallelization apparatus includes a synchronization detecting circuit, a voltage amplitude command value generating circuit, and a frequency command value generating circuit. The voltage amplitude command value generating circuit generates the 1st-axis voltage command value, and the frequency command value generating circuit generates the 2nd-axis voltage command value, based on a value relating to a frequency difference between an external single-phase AC voltage source and a single-phase voltage-type DC-to-AC converting device and an effective value of a voltage of the external single-phase AC voltage source that are detected by synchronization detecting circuit. By using such command values, an output of the single-phase voltage-type DC-to-AC converting device can be adjusted to as to coincide with a voltage waveform of the external single-phase AC voltage source.
    • 一种自动同步并联装置,其能够通过在并行地连接进行自主并联运算的单相电压型DC-AC变换装置时自动调整电压的大小,频率和相位来抑制浪涌电流 具有外部单相交流电压源。 自动同步并行化装置包括同步检测电路,电压振幅指令值产生电路和频率指令值产生电路。 电压幅度指令值产生电路产生第一轴电压指令值,并且频率指令值产生电路根据与外部单相交流电压源之间的频率差有关的值产生第二轴电压指令值 以及由同步检测电路检测的单相电压型DC-AC转换装置和外部单相AC电压源的电压的有效值。 通过使用这样的指令值,可以将单相电压型DC-AC转换装置的输出调整为与外部单相交流电压源的电压波形一致。