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    • 1. 发明授权
    • Multiple battery system and method
    • 多电池系统及方法
    • US06545445B1
    • 2003-04-08
    • US09566766
    • 2000-05-08
    • Joseph K. McDermottJames W. WagnerRichard T. JohnsonJames W. SpencerDaniel A. SchwobPaul C. BrantnerArt S. Homa
    • Joseph K. McDermottJames W. WagnerRichard T. JohnsonJames W. SpencerDaniel A. SchwobPaul C. BrantnerArt S. Homa
    • H02J700
    • F02N11/0866H02J7/1423H02J7/1461H02J2001/006
    • A multiple battery system and method for starting internal combustion engines, such as on a boat or vehicle, and for powering auxiliary functions that operate primarily when the engine is not running is disclosed. A first battery is used for starting the engine. A second battery is used to power the auxiliary features associated with the boat or vehicle primarily when the engine is not running. The first battery, referred to as the starter battery, is a high output battery that produces high bursts of energy for limited amounts of time. The second battery, referred to as the auxiliary battery, has a low power output over a fairly long period of time, is capable of being completely drained without harming the battery, and is capable of being fully recharged. The starter battery and the auxiliary battery are connected by a circuit that has an on/off switch controlled by an electronics control module. The auxiliary battery is always on line in the circuit. The electronics control module monitors the circuit to detect certain parameters, such as a start engine event. When a start engine event is detected, the electronics control module connects the starter battery to the circuit with the switch. When the start event is over, the electronics control module disconnects the starter battery from the circuit with the switch. Thus, the electronics control module prevents the starter battery from being drained when power is being drawn from the auxiliary battery during non-start events.
    • 公开了一种用于启动诸如船上或车辆的内燃机以及用于对发动机未运行时主要工作的辅助功能供电的多电池系统和方法。 第一个电池用于起动发动机。 第二个电池主要用于在发动机不运行时为与船只或车辆相关联的辅助特征提供动力。 被称为起动电池的第一个电池是高输出电池,在有限的时间内产生高能量的电力。 被称为辅助电池的第二电池在相当长的时间段内具有低功率输出,能够在不损坏电池的情况下完全耗尽,并且能够被充分充电。 起动电池和辅助电池由具有由电子控制模块控制的开/关开关的电路连接。 辅助电池总是在线路上。 电子控制模块监视电路以检测某些参数,例如启动引擎事件。 当检测到启动发动机事件时,电子控制模块将起动电池与开关连接到电路。 当启动事件结束时,电子控制模块将开关电池从开关断开。 因此,电子控制模块防止在非启动事件期间从辅助电池抽出电源时起动电池被排出。
    • 5. 发明授权
    • Method and apparatus for a high output sensor system
    • 高输出传感器系统的方法和装置
    • US07102271B2
    • 2006-09-05
    • US10762278
    • 2004-01-23
    • Paul C. Brantner
    • Paul C. Brantner
    • H01L41/08
    • H01L41/1132G01D5/18H01L41/042
    • The present invention relates to the field of motion/movement sensors, detectors, and/or monitors, as well as other types of sensors. In particular, the present invention may provide, for example, a large pulsed output voltage in response to very low (or slow) sensed movement or environment changes, such as, temperature, pressure, and energy. The present invention relates, for example, to other available sensors and may provide an output high enough to turn on related processing circuitry from an “OFF” state. The present invention relates, among other things, to sensing various events via, for example, axially poled homopolymer polyvinyladine fluoride (PVDF) or other piezoelectric materials.
    • 本发明涉及运动/运动传感器,检测器和/或监视器以及其它类型的传感器的领域。 特别地,本发明可以提供例如响应于非常低(或缓慢的)感测到的移动或环境变化(例如温度,压力和能量)的大的脉冲输出电压。 本发明例如涉及其它可用的传感器,并且可以提供足够高的输出,以将相关的处理电路从“关”状态打开。 本发明尤其涉及通过例如轴向极化的均聚物聚偏二氟乙烯(PVDF)或其它压电材料来感测各种事件。
    • 8. 发明申请
    • Energy Device With Integral Conductive Surface For Data Communication Via Electromagnetic Energy And Method Thereof
    • 具有集成导电表面的能量装置,用于通过电磁能量进行数据通信及其方法
    • US20100068995A1
    • 2010-03-18
    • US12556880
    • 2009-09-10
    • Paul C. Brantner
    • Paul C. Brantner
    • H04B7/24
    • H01Q1/44H01M6/40H01M8/02H01M10/02
    • An apparatus, method, and system to, for example, transmit and/or receive wireless signals is disclosed. The present invention uses, for example, electrically conductive surfaces within the energy device itself as a means of receiving and/or transmitting wireless communications signals. The surface may be an integral portion of the energy device, such as a charge collection surface within a battery or a capacitor that mainly provides the battery or a capacitor with a necessary function. In another embodiment of the invention the metallic or conductive surface is added to and specifically built into the energy device during manufacturing for the main purpose of receiving and/or transmitting wireless communications signals but is otherwise not necessary for the energy storage component.
    • 公开了一种例如发射和/或接收无线信号的装置,方法和系统。 本发明使用例如能量装置本身内的导电表面作为接收和/或发送无线通信信号的手段。 表面可以是能量装置的整体部分,例如主要为电池或电容器提供必要功能的电池或电容器内的电荷收集表面。 在本发明的另一个实施例中,在制造期间将金属或导电表面添加到能量装置中并且特别地内置于用于接收和/或发送无线通信信号的主要目的,但是对于能量存储部件则不是必需的。
    • 9. 发明授权
    • Method and apparatus for a high output sensor system
    • 高输出传感器系统的方法和装置
    • US07274130B2
    • 2007-09-25
    • US11376926
    • 2006-03-16
    • Paul C. Brantner
    • Paul C. Brantner
    • H01L41/08
    • H01L41/1132G01D5/18H01L41/042
    • The present invention relates to the field of motion/movement sensors, detectors, and/or monitors, as well as other types of sensors. In particular, the present invention may provide, for example, a large pulsed output voltage in response to very low (or slow) sensed movement or environment changes, such as, temperature, pressure, and energy. The present invention relates, for example, to other available sensors and may provide an output high enough to turn on related processing circuitry from an “OFF” state. The present invention relates, among other things, to sensing various events via, for example, axially poled homopolymer polyvinyladine fluoride (PVDF) or other piezoelectric materials.
    • 本发明涉及运动/运动传感器,检测器和/或监视器以及其它类型的传感器的领域。 特别地,本发明可以提供例如响应于非常低(或缓慢的)感测到的移动或环境变化(例如温度,压力和能量)的大的脉冲输出电压。 本发明例如涉及其它可用的传感器,并且可以提供足够高的输出,以将相关的处理电路从“关”状态打开。 本发明尤其涉及通过例如轴向极化的均聚物聚偏二氟乙烯(PVDF)或其它压电材料来感测各种事件。
    • 10. 发明授权
    • Energy device with integral collector surface for electromagnetic energy harvesting and method thereof
    • 具有电磁能收集整体收集器表面的能量装置及其方法
    • US08906523B2
    • 2014-12-09
    • US12539327
    • 2009-08-11
    • Paul C. Brantner
    • Paul C. Brantner
    • H01M10/0525H01M10/0585H01M10/44H01M10/46H01M14/00H01M4/70H01L31/04H02J17/00H02J7/02H01L31/0224H02J7/00H01L31/042
    • H01L31/022425H01L31/042H01M10/46H01M10/465H01Q1/248H01Q1/44H02J7/0042H02J7/025H02J17/00H02J50/00H02J50/40H02S40/38Y02E10/50Y02E60/12
    • An apparatus, method, and system to harvest and store electromagnetic energy is disclosed. The present invention uses, for example, conductive surfaces within the energy storage component itself as a means of electromagnetic energy collection. The surface may be an integral portion of the energy device, such as a charge collection surface within a battery or a capacitor that mainly provides the battery or a capacitor with a necessary function. In another embodiment of the invention a metallic or conductive surface is added to and specifically built into the energy device during manufacturing for the main purpose of collecting electromagnetic energy for the energy device but is otherwise not necessary for the energy storage component. Once the energy is collected, it can be rectified either via rectification components that were built directly into the energy storage component during its manufacture or connected external to the energy storage component but within the energy device. The so-designed energy device may represent a self-sustaining, autonomous electromagnetic energy harvesting—energy storage device.
    • 公开了收获和储存电磁能量的装置,方法和系统。 本发明使用例如能量存储部件本身内的导电表面作为电磁能量收集的手段。 表面可以是能量装置的整体部分,例如主要为电池或电容器提供必要功能的电池或电容器内的电荷收集表面。 在本发明的另一个实施例中,金属或导电表面在制造期间被添加到能量装置中,并且特别地内置在能量装置中,主要用于为能量装置收集电磁能,但是对于能量存储部件则不是必需的。 一旦能量被收集,它可以通过在其制造期间直接构建到能量存储部件中或在能量存储部件外部但在能量装置内连接的整流部件来整流。 如此设计的能量装置可以表示自维持的,自主的电磁能量收集能量存储装置。