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    • 3. 发明授权
    • Fabrication process and package design for use in a micro-machined seismometer or other device
    • 用于微加工地震仪或其他设备的制造工艺和封装设计
    • US07870788B2
    • 2011-01-18
    • US11414866
    • 2006-05-01
    • William T. PikeIan Standley
    • William T. PikeIan Standley
    • G01P15/125G01H11/00
    • G01V13/00G01P15/08G01P15/0802G01P15/125G01P15/131G01P15/132G01P2015/0814G01P2015/082G01V1/18G01V1/181Y10T29/49002Y10T29/49144
    • An accelerometer or a seismometer using an in-plane suspension geometry having a suspension plate and at least one fixed capacitive plate. The suspension plate is formed from a single piece and includes an external frame, a pair of flexural elements, and an integrated proof mass between the flexures. The flexural elements allow the proof mass to move in the sensitive direction in the plane of suspension while restricting movement in all off-axis directions. Off-axis motion of the proof mass is minimized by the use of intermediate frames disbursed within and between the flexural elements. Intermediate frames can include motion stops to prevent further relative motion during overload conditions. The device can also include a dampening structure, such as a spring or gas structure that includes a trapezoidal piston and corresponding cylinder, to provide damping during non-powered states. The capacitive plate is made of insulating material. A new method of soldering the capacitive plate to the suspension plate is also disclosed.
    • 一种使用具有悬挂板和至少一个固定电容板的面内悬挂几何形状的加速度计或地震仪。 悬挂板由单件形成,并且包括外框,一对弯曲元件以及挠曲件之间的集成的证明块。 弯曲元件允许检测质量在悬架平面中的敏感方向上移动,同时限制所有离轴方向上的移动。 通过使用在弯曲元件内部和之间分配的中间框架来使得证明物质的离轴运动最小化。 中间框架可以包括运动停止,以防止过载条件下进一步的相对运动。 该装置还可以包括阻尼结构,例如弹簧或气体结构,其包括梯形活塞和相应的气缸,以在非供电状态下提供阻尼。 电容板由绝缘材料制成。 还公开了将电容板焊接到悬挂板的新方法。
    • 4. 发明申请
    • Fabrication process and package design for use in a micro-machined seismometer or other device
    • 用于微加工地震仪或其他设备的制造工艺和封装设计
    • US20080282802A1
    • 2008-11-20
    • US11414866
    • 2006-05-01
    • William T. PikeIan Standley
    • William T. PikeIan Standley
    • G01P15/125H05K3/34
    • G01V13/00G01P15/08G01P15/0802G01P15/125G01P15/131G01P15/132G01P2015/0814G01P2015/082G01V1/18G01V1/181Y10T29/49002Y10T29/49144
    • An accelerometer or a seismometer using an in-plane suspension geometry having a suspension plate and at least one fixed capacitive plate. The suspension plate is formed from a single piece and includes an external frame, a pair of flexural elements, and an integrated proof mass between the flexures. The flexural elements allow the proof mass to move in the sensitive direction in the plane of suspension while restricting movement in all off-axis directions. Off-axis motion of the proof mass is minimized by the use of intermediate frames disbursed within and between the flexural elements. Intermediate frames can include motion stops to prevent further relative motion during overload conditions. The device can also include a dampening structure, such as a spring or gas structure that includes a trapezoidal piston and corresponding cylinder, to provide damping during non-powered states. The capacitive plate is made of insulating material. A new method of soldering the capacitive plate to the suspension plate is also disclosed.
    • 一种使用具有悬挂板和至少一个固定电容板的面内悬挂几何形状的加速度计或地震仪。 悬挂板由单件形成,并且包括外框,一对弯曲元件以及挠曲件之间的集成的证明块。 弯曲元件允许检测质量在悬架平面中的敏感方向上移动,同时限制所有离轴方向上的移动。 通过使用在弯曲元件内部和之间分配的中间框架来使得证明物质的离轴运动最小化。 中间框架可以包括运动停止,以防止过载条件下进一步的相对运动。 该装置还可以包括阻尼结构,例如弹簧或气体结构,其包括梯形活塞和相应的气缸,以在非供电状态下提供阻尼。 电容板由绝缘材料制成。 还公开了将电容板焊接到悬挂板的新方法。
    • 5. 发明授权
    • Network analyzer performance verification
    • 网络分析仪性能验证
    • US5332974A
    • 1994-07-26
    • US518042
    • 1990-05-01
    • Daniel R. HarkinsPaul R. HerndayRoger W. WongWilliam T. PikePaul S. Stafford
    • Daniel R. HarkinsPaul R. HerndayRoger W. WongWilliam T. PikePaul S. Stafford
    • G01R27/32G01R35/00
    • G01R35/00G01R27/32
    • A method to verify that a test and measurement system continues to operate within a predetermined acceptable range with respect to a given calibrated state previously defined for that system without the need for conventional external reference components. In accordance with one embodiment, performance verification of a network analyzer used to perform electrical measurements is achieved by storing RF "thru" measurement data (an RF thru measurement trace of the system) at the time of calibration at the factory or later repair and/or recalibration at a field service site. In accordance with another embodiment, performance verification of a lightwave component analyzer, used to perform electrical, electro-optical, opto-electrical, and optical measurements, is achieved by storing RF and optical thru measurement data (both an RF thru measurement trace of the system and an optical thru measurement trace of the system) at the time of calibration at the factory or later repair and/or recalibration. In both cases, at the time of manufacture, the key measurement paths (with calibrated reference components in the loop) of the test and measurement system are measured and stored in system memory or, alternatively, on a disc that is shipped with the system. Repeating these measurements with the same thru connection(s) at a later time(s) indicates how well the test and measurement system is reproducing the conditions of its initial calibration. Setting a range of allowable deviation (for measurement repeatability and normal system drift) between the initial and any later measurements establishes limits within which the integrity of the test and measurement system hardware performance is assured for subsequent measurements on an unknown device under test.
    • 一种验证测试和测量系统在预定的可接受范围内相对于先前为该系统定义的校准状态而不需要常规外部参考部件的方法继续运行的方法。 根据一个实施例,用于执行电测量的网络分析仪的性能验证通过在出厂时存储RF“通过”测量数据(系统的RF直通测量轨迹)或稍后修复和/ 或在现场服务站点重新校准。 根据另一个实施例,用于执行电,光电,光电和光学测量的光波分量分析仪的性能验证是通过存储RF和光学通过测量数据(两者的RF直通测量轨迹 系统和系统的光学通过测量轨迹)在工厂进行校准时或稍后修理和/或重新校准。 在这两种情况下,在制造时,测量和测量系统的关键测量路径(具有循环中的校准参考部件)都被测量并存储在系统存储器中,或者备选地在系统随附的盘上。 以后再通过相同的连接重复这些测量,表明测试和测量系统正在重现初始校准的条件。 在初始测量和任何后续测量之间设置允许偏差范围(用于测量重复性和正常系统漂移)建立了测试和测量系统硬件性能的完整性的限制,以确保在未测试的器件上进行后续测量。
    • 6. 发明申请
    • FABRICATION PROCESS AND PACKAGE DESIGN FOR USE IN A MICRO-MACHINED SEISMOMETER OR OTHER DEVICE
    • 用于微机械地震仪或其他装置的制造工艺和包装设计
    • US20110170376A1
    • 2011-07-14
    • US13007975
    • 2011-01-17
    • William T. PikeIan Standley
    • William T. PikeIan Standley
    • H04R19/00B23K31/02B23K1/20B32B38/00B32B37/02B32B37/14C23F1/02
    • G01V13/00G01P15/08G01P15/0802G01P15/125G01P15/131G01P15/132G01P2015/0814G01P2015/082G01V1/18G01V1/181Y10T29/49002Y10T29/49144
    • An accelerometer or a seismometer using an in-plane suspension geometry having a suspension plate and at least one fixed capacitive plate. The suspension plate is formed from a single piece and includes an external frame, a pair of flexural elements, and an integrated proof mass between the flexures. The flexural elements allow the proof mass to move in the sensitive direction in the plane of suspension while restricting movement in all off-axis directions. Off-axis motion of the proof mass is minimized by the use of intermediate frames disbursed within and between the flexural elements. Intermediate frames can include motion stops to prevent further relative motion during overload conditions. The device can also include a dampening structure, such as a spring or gas structure that includes a trapezoidal piston and corresponding cylinder, to provide damping during non-powered states. The capacitive plate is made of insulating material. A new method of soldering the capacitive plate to the suspension plate is also disclosed.
    • 一种使用具有悬挂板和至少一个固定电容板的面内悬挂几何形状的加速度计或地震仪。 悬挂板由单件形成,并且包括外框,一对弯曲元件以及挠曲件之间的集成的证明块。 弯曲元件允许检测质量在悬架平面中的敏感方向上移动,同时限制所有离轴方向上的移动。 通过使用在弯曲元件内部和之间分配的中间框架来使得证明物质的离轴运动最小化。 中间框架可以包括运动停止,以防止过载条件下进一步的相对运动。 该装置还可以包括阻尼结构,例如弹簧或气体结构,其包括梯形活塞和相应的气缸,以在非供电状态下提供阻尼。 电容板由绝缘材料制成。 还公开了将电容板焊接到悬挂板的新方法。