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    • 34. 发明申请
    • Three electrodes system cell for evaluation of performance of molten carbonate fuel cell
    • 用于评估熔融碳酸盐燃料电池性能的三电极系统电池
    • US20060049045A1
    • 2006-03-09
    • US11011590
    • 2004-12-13
    • Jonghee HanSeong HongTae LimSuk-Woo NamIn OhSung YoonHeung HaEunAe ChoJaeyoung LeeBo Ryu
    • Jonghee HanSeong HongTae LimSuk-Woo NamIn OhSung YoonHeung HaEunAe ChoJaeyoung LeeBo Ryu
    • G01N27/26H01M8/04
    • H01M8/04552H01M8/14H01M2008/147Y02E60/526
    • Disclosed is a three electrodes system cell for evaluation of performance of a molten carbonate fuel cell. A lower part of the reference electrode is fixed to a wet seal part of the single cell without penetrating a current collector plate and an electrode of the single cell. Preferably, the reference electrode comprises cured matrix slurry and powders of electrolyte stacked on the matrix slurry in the lower part thereof. Preferably, a diameter of an electrolyte-interchanging hole formed in a bottom of the lower part of the reference electrode is 1ψ. Preferably, an outer diameter of an alumina tube in the reference electrode is 6ψ. According to a three electrodes system cell for evaluation of performance of a molten carbonate fuel cell of the invention, it is possible to separately evaluate the performance of each electrode which cannot be evaluated by the prior method of evaluating the performance of the single cell. Particularly, contrary to the prior art, it is possible to prevent a crack of the matrix due to a physical shock and a heat shock resulting from the outflow and inflow of the supply gas, to reduce the gas leakage resulting from a decrease of adhesive strength between the matrix and the alumina tube and a heat shock due to the gas leakage, to improve the problem of electrolyte depletion and to reduce the physical defects resulting from a size of the reference electrode. Accordingly, it is possible to clearly measure the variation of the performance of each electrode while reducing the physical errors to the highest degree, to provide an exact criterion regarding the factor influencing on the variation of performance of the single cell when evaluating the performance of the single cell having 100 cm2 of large area, and to directly evaluate the performance of the molten carbonate fuel cell.
    • 公开了一种用于评价熔融碳酸盐燃料电池的性能的三电极系统电池。 参考电极的下部固定到单个电池的湿式密封部分,而不会渗透集电板和单电池的电极。 优选地,参比电极包括固化的基质浆料和堆叠在其下部的基质浆料上的电解质粉末。 优选地,形成在参考电极的下部的底部的电解质交换孔的直径为1psi。 优选地,参考电极中的氧化铝管的外径为6psi。 根据用于评价本发明的熔融碳酸盐燃料电池的性能的三电极系统电池,可以分别评价通过评价单电池的性能的现有方法不能评价的各电极的性能。 特别地,与现有技术相反,可以防止由于物理冲击和由于供给气体的流入和流入而产生的热冲击而导致的基体的裂纹,从而减少由于粘合强度的降低导致的气体泄漏 在基体和氧化铝管之间以及由于气体泄漏引起的热冲击,以改善电解质耗尽的问题并减少由参考电极的尺寸导致的物理缺陷。 因此,可以清楚地测量各电极的性能的变化,同时将物理误差降到最高程度,以便在评估单电池性能的变化时提供影响单电池性能变化的因素的准确标准 具有大面积的100cm 2的单电池,并且直接评估熔融碳酸盐燃料电池的性能。
    • 37. 发明授权
    • Duty cycle corrector
    • 占空比校正器
    • US07310010B2
    • 2007-12-18
    • US11403453
    • 2006-04-13
    • Alessandro MinzoniJonghee Han
    • Alessandro MinzoniJonghee Han
    • H03K3/017H03K5/04H03K7/08
    • H03K5/1565
    • A duty cycle corrector includes a first controllable delay, a second controllable delay, a phase detector, and a compensation circuit. The first controllable delay is configured to delay a first signal to provide a second signal. The second controllable delay is configured to delay the second signal to provide a third signal. The phase detector is configured to adjust the first controllable delay and the second controllable delay to phase lock the third signal to the first signal. The compensation circuit is configured to compensate for a mismatch between the first controllable delay and the second controllable delay to provide a fourth signal in response to the first signal and a fifth signal approximately 180 degrees out of phase with the fourth signal in response to the second signal.
    • 占空比校正器包括第一可控延迟,第二可控延迟,相位检测器和补偿电路。 第一可控延迟被配置为延迟第一信号以提供第二信号。 第二可控延迟被配置为延迟第二信号以提供第三信号。 相位检测器被配置为调整第一可控延迟和第二可控延迟以将第三信号锁相到第一信号。 补偿电路被配置为补偿第一可控延迟和第二可控延迟之间的失配,以响应于第一信号提供第四信号,并响应于第二信号与第四信号大致180度异相,响应于第二信号 信号。
    • 39. 发明申请
    • DUAL POWER SENSING SCHEME FOR A MEMORY DEVICE
    • 用于存储器件的双电源感测方案
    • US20050111274A1
    • 2005-05-26
    • US10723211
    • 2003-11-26
    • Jonghee Han
    • Jonghee Han
    • G11C5/06G11C7/00G11C7/06G11C11/406G11C11/407G11C11/4091
    • G11C11/4091G11C7/06G11C2207/065
    • Sensing operations involving a first array of bit line sense amplifiers (BLSAs) may be powered by an upper reference voltage and a first intermediate voltage and the first array may be precharged to a voltage level therebetween. Sensing operations involving a second array of BLSAs may be powered by a second intermediate voltage (greater than the first intermediate voltage) and a lower reference voltage and the second array may be precharged to a voltage level therebetween. After precharge, charge may be transferred from a second power line of the first array to a first power line of the second array. Subsequently, the second power line of the first array may be coupled to a power supply node at the first intermediate voltage level and the first power line of the second array may be coupled to a power supply node at the second intermediate voltage level.
    • 涉及第一阵列位线读出放大器(BLSA)的感测操作可以由上参考电压和第一中间电压供电,并且第一阵列可以被预充电到它们之间的电压电平。 涉及第二阵列BLSA的感测操作可以由第二中间电压(大于第一中间电压)供电,并且较低的参考电压和第二阵列可以被预充电到它们之间的电压电平。 在预充电之后,电荷可以从第一阵列的第二电力线转移到第二阵列的第一电力线。 随后,第一阵列的第二电源线可以耦合到处于第一中间电压电平的电源节点,并且第二阵列的第一电源线可以耦合到处于第二中间电压电平的电源节点。