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    • 1. 发明授权
    • Transmission method, transmission device, transmission program, and transmission system
    • 传输方式,传输设备,传输程序和传输系统
    • US09112470B2
    • 2015-08-18
    • US14372252
    • 2013-01-11
    • Tomohiro Nagase
    • Tomohiro Nagase
    • H03G3/20H04L25/02H04L1/16H04L1/18H04L5/16H04L25/03
    • H03G3/20H04L1/0007H04L1/1692H04L1/1858H04L1/189H04L5/16H04L25/0264H04L25/03885H04L43/0864
    • To keep communication even if a distance between transmission devices is farther and a transmission distance therebetween is longer.A transmission device for alternately performing transmission and reception to/from a communication destination transmission device transmits transmit data to the communication destination transmission device. It receives return data transmitted by the communication destination transmission device after the transmit data reaches the communication destination transmission device. A predetermined period of time is assumed as one time unit, one transmission of transmit data and one reception of return data are tried within the one time unit, and when it is determined that one transmission of transmit data and one reception of return data do not fall within the one time unit, the transmission device is controlled such that N number of transmit data are continuously transmitted and then N number of return data are continuously received within N (N is an integer of two or more) time units.
    • 为了保持通信,即使传输设备之间的距离更远,并且其间的传输距离更长。 用于向/从通信目的地发送装置进行交换的发送接收的发送装置向通信目的地发送装置发送发送数据。 在发送数据到达通信目的地发送装置之后,接收由通信目的地发送装置发送的返回数据。 假设一个预定的时间段是一个时间单位,在一个时间单位内尝试发送数据的一个发送和返回数据的一个接收,并且当确定发送数据的一个发送和一个接收返回数据不是 控制在一个时间单位内,发送装置被控制成N个发送数据被连续地发送,然后在N(N是2个以上的整数)时间单位内连续接收N个返回数据。
    • 2. 发明授权
    • Fitting structure for connector housing
    • 连接器外壳的安装结构
    • US5947766A
    • 1999-09-07
    • US975336
    • 1997-11-20
    • Takeshi TsujiTakao OtsukiTomohiro NagaseHisashi Muraji
    • Takeshi TsujiTakao OtsukiTomohiro NagaseHisashi Muraji
    • H01R13/73
    • H01R13/748H01R2201/26
    • A fitting structure for a connector housing can maintain a stable vibration absorbing function. A flange (14) of a connector housing (10) is provided on the periphery with an outer annular retaining wall (15). A rubber sheet (20) is contained in an interior of the connector housing (10). The connector housing (10) is attached to a body (E) of an engine by means of bolts (B) and nuts (N). When fattening bolts (B) and nuts (N), the rubber sheet (20) is compressed. In a conventional fitting structure, the compressed rubber sheet (20) expands laterally to bulge out of the flange (14). Since the outer annular retaining wall (15), however, serves to limit the lateral expansion of the rubber sheet (20) so that the rubber sheet (20) does not bulge out from the flange (14), it is possible to prevent the rubber sheet (20) from changing its physical and/or chemical nature and to effectively maintain its vibration absorbing function.
    • 用于连接器壳体的装配结构可以保持稳定的振动吸收功能。 连接器壳体(10)的凸缘(14)在外周设置有外环形挡土墙(15)。 橡胶片(20)容纳在连接器壳体(10)的内部。 连接器壳体(10)通过螺栓(B)和螺母(N)附接到发动机的主体(E)。 当加固螺栓(B)和螺母(N)时,橡胶片(20)被压缩。 在传统的装配结构中,压缩橡胶片(20)横向膨胀以凸出凸缘(14)。 然而,由于外侧的环状的保持壁(15)用于限制橡胶片(20)的横向膨胀,使得橡胶片(20)不从凸缘(14)凸出,所以可以防止 橡胶板(20)改变其物理和/或化学性质并有效地保持其吸振功能。