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    • 91. 发明授权
    • Temperature compensating circuit and method
    • 温度补偿电路及方法
    • US07777555B2
    • 2010-08-17
    • US12360416
    • 2009-01-27
    • Chun-Yao LiaoGuan-Xing HuangJ-Ian Wu
    • Chun-Yao LiaoGuan-Xing HuangJ-Ian Wu
    • H01L35/00
    • G05F3/245H03K3/011H03K3/0315H03K2005/00026H03K2005/00143H03K2005/00202
    • A temperature compensating circuit including a reference circuit, a transistor and a first circuit is provided. The reference circuit has a reference current and a resistance circuit, wherein the resistance circuit includes a first terminal receiving the reference current, a second terminal and a negative-temperature-coefficient resistor. The transistor has a drain, a source and a path disposed between the drain and the source, wherein the path of the transistor is connected in series with the resistance circuit, a gate of the transistor is electrically connected to the drain of the transistor and the second terminal of the resistance circuit, and the drain of the transistor produces a bias-voltage signal. The first circuit produces an output signal having a variable frequency in response to the bias-voltage signal, wherein the temperature compensating circuit utilizes the negative-temperature-coefficient resistor to compensate the variable frequency for a temperature change in the temperature compensating circuit.
    • 提供了包括参考电路,晶体管和第一电路的温度补偿电路。 参考电路具有参考电流和电阻电路,其中电阻电路包括接收参考电流的第一端子,第二端子和负温度系数电阻器。 晶体管具有设置在漏极和源极之间的漏极,源极和路径,其中晶体管的路径与电阻电路串联连接,晶体管的栅极与晶体管的漏极电连接, 电阻电路的第二端子,晶体管的漏极产生偏置电压信号。 第一电路响应于偏置电压信号产生具有可变频率的输出信号,其中温度补偿电路利用负温度系数电阻器来补偿温度补偿电路中的温度变化的可变频率。
    • 92. 发明授权
    • Method and apparatus for detecting temperatures of a plurality of circuits and controlling operations based on the detected temperatures
    • 用于检测多个电路的温度并基于检测到的温度来控制操作的方法和装置
    • US07777554B2
    • 2010-08-17
    • US11825429
    • 2007-07-06
    • Yasutoshi Hirano
    • Yasutoshi Hirano
    • H01L35/00H01L37/00
    • G01K1/026G01K3/005
    • A temperature detector includes a plurality of temperature sensors each configured to generate a voltage signal in accordance with sensed temperature and output the voltage signal, a plurality of storage circuits corresponding to the respective temperature sensors and each configured to store a signal level input to the storage circuit and output the stored signal level in response to a control signal, and a control circuit configured to exclusively select one of the voltage signals output from the respective temperature sensors, compare the selected voltage signal with a predetermined reference voltage, and store the selected voltage signal into the corresponding storage circuit sequentially in response to the control signal.
    • 温度检测器包括多个温度传感器,每个温度传感器被配置为根据感测到的温度产生电压信号并输出​​电压信号;对应于各个温度传感器的多个存储电路,并且每个存储电路被配置为将信号电平输入存储到存储器 电路并响应于控制信号输出存储的信号电平;以及控制电路,被配置为专门选择从各个温度传感器输出的电压信号之一,将所选择的电压信号与预定参考电压进行比较,并存储所选择的电压 响应于控制信号顺序地向相应的存储电路中输入信号。
    • 94. 发明授权
    • Thermaltronic analog device
    • Thermaltronic模拟器件
    • US07768338B2
    • 2010-08-03
    • US12237027
    • 2008-09-24
    • Joseph Martin Patterson
    • Joseph Martin Patterson
    • H01L35/00
    • H03K19/02
    • A method is provided for the electronic processing of analog signals in thermaltronic device. The method accepts an analog input signal, e.g., an AC signal, at a thermaltronic device input and generates a thermal electric (TE) temperature having a first transfer function responsive to the input signal. As opposed to having a digital response, the transfer function is either linear or logarithmic. An analog output signal, e.g., an AC signal, is generated having a second transfer function responsive to the TE, which is likewise either linear or logarithmic.
    • 提供了一种用于在热电子器件中进行模拟信号的电子处理的方法。 该方法在热电子设备输入处接收模拟输入信号,例如AC信号,并产生响应于输入信号的具有第一传递函数的热电(TE)温度。 与数字响应相反,传递函数是线性或对数的。 产生具有响应于TE的第二传递函数的模拟输出信号,例如AC信号,其同样是线性或对数的。
    • 96. 发明授权
    • Polarity conversion circuit
    • 极性转换电路
    • US07746159B1
    • 2010-06-29
    • US11756832
    • 2007-06-01
    • Gary Moscaluk
    • Gary Moscaluk
    • G01R19/00H01L35/00
    • H03K19/00384
    • Disclosed is a process, voltage and temperature compensated polarity conversion circuit comprising an input signal generator comprising an input signal having a first polarity, a variable frequency generator, a plurality of high voltage differential switches coupled to the variable frequency generator and a controllable threshold transmission gate circuit coupled to the input signal generator, coupled to the variable frequency generator and coupled to the plurality of high voltage differential switches. A method of polarity conversion and other embodiments are also disclosed.
    • 公开了一种过程,电压和温度补偿极性转换电路,包括输入信号发生器,其包括具有第一极性的输入信号,可变频率发生器,耦合到可变频率发生器的多个高压差分开关和可控阈值传输门 耦合到输入信号发生器的电路,耦合到可变频率发生器并耦合到多个高压差动开关。 还公开了极性转换的方法和其他实施例。
    • 97. 发明授权
    • Heating-control isolation-diode temperature-compensation
    • 加热控制隔离二极管温度补偿
    • US07746087B2
    • 2010-06-29
    • US11777719
    • 2007-07-13
    • Qun SongQi WangFang XieDe-Song HuangQi Xu
    • Qun SongQi WangFang XieDe-Song HuangQi Xu
    • G01K7/00G01K1/00H01L35/00
    • G01K1/20G01K7/16G01K2207/00
    • A semiconductor integrated circuit (IC) acts as a controller of a heating-controlled device or appliance. A heating body has a positive temperature coefficient and acts as both a heating element and a temperature sensor. A Silicon-Controlled Rectifier (SCR) switches AC current to the heating body to increase its temperature. When the SCR switches off, temperature sensing is performed using a sampling resistor, isolation diode, voltage comparator, and switch for a low-voltage DC supply are formed on an integrated circuit that has a first circuit branch and a second circuit branch. A compensation diode and a compensation resistor can be added in parallel to reference resistors. The compensation diode compensates for the forward voltage drop of the isolation diode that would otherwise create an inaccurate temperature measurement. The diodes have the same temperature response, allowing for a more accurate temperature measurement over a full temperature range of the sensorless appliance.
    • 半导体集成电路(IC)用作加热控制装置或器具的控制器。 加热体具有正温度系数并且充当加热元件和温度传感器。 硅控整流器(SCR)将交流电流切换到加热体以增加其温度。 当SCR关断时,使用采样电阻器进行温度检测,隔离二极管,电压比较器和用于低压直流电源的开关形成在具有第一电路支路和第二电路支路的集成电路上。 补偿二极管和补偿电阻可以与参考电阻并联。 补偿二极管补偿隔离二极管的正向压降,否则会产生不准确的温度测量。 二极管具有相同的温度响应,允许在无传感器设备的整个温度范围内进行更准确的温度测量。
    • 98. 发明授权
    • Method and apparatus of measuring temperature
    • 测量温度的方法和装置
    • US07726877B1
    • 2010-06-01
    • US11874595
    • 2007-10-18
    • Shimon Avitan
    • Shimon Avitan
    • G01K1/00G01K7/00H01L35/00G01K3/00
    • G01K7/015G01K2219/00
    • The disclosure provides methods and apparatuses of measuring a temperature. A method of measuring a temperature can include generating a time varying signal that varies with time in a known manner, such as having a repeating sawtooth waveform. Further, the method can include generating a first intersecting signal that intersects with the time varying signal at a first time, and generating a second intersecting signal that varies with temperature and intersects with the time varying signal at a second time. Subsequently, the method can construct a pulse signal having a first edge corresponding to the first time and a second edge corresponding to the second time, with the pulse signal having a width corresponding to the temperature.
    • 本公开提供了测量温度的方法和装置。 测量温度的方法可以包括产生以已知方式随时间变化的时变信号,例如具有重复的锯齿波形。 此外,该方法可以包括在第一时间产生与时变信号相交的第一相交信号,以及产生随温度变化并在第二时间与时变信号相交的第二相交信号。 随后,该方法可以构成具有对应于第一时间的第一边缘和对应于第二时间的第二边缘的脉冲信号,其中脉冲信号具有对应于该温度的宽度。
    • 99. 发明申请
    • Thermoelectric module
    • 热电模块
    • US20100126547A1
    • 2010-05-27
    • US11631845
    • 2005-04-25
    • Gennadiy Gusamovich GromovVasiliy Vasilievich Volodin
    • Gennadiy Gusamovich GromovVasiliy Vasilievich Volodin
    • H01L35/00
    • H01L35/32H01L35/325
    • The invention relates to microelectronic engineering, to the structural design of cooling thermoelectric modules in particular. The utility model can be used in single-cascade and multicascade thermoelectric modules. The aim of the invention is to provide a thermoelectric module design that absolutely excludes environmental factors. The invented thermoelectric module comprises at least one cascade of alternating n- and p-type thermoelectric elements (1), electrodes (2) connected to the thermoelectric elements (1), heat transfer substrates (5, 6) fixed on the heat-absorbing (3) and heat-rejecting ends (4) of the thermoelectric elements (1) by means of the electrodes, and an insulating film (7) continuously covering all the internal surfaces of the thermoelectric module.
    • 本发明涉及微电子工程,特别涉及冷却热电模块的结构设计。 本实用新型可用于单级联和多级联热电模块。 本发明的目的是提供一种绝对排除环境因素的热电模块设计。 本发明的热电模块包括至少一个级联的交替的n型和p型热电元件(1),连接到热电元件(1)的电极(2),固定在吸热材料上的传热衬底(5,6) (3)和热电元件(1)的排热端(4),以及连续覆盖热电模块的所有内表面的绝缘膜(7)。