Experimental Study of the Output of Acetone ISFET in Condition of Electric Field 电场对丙酮离子敏感器件输出影响的实验研究
ISFET ion transducer/ sensor Superoxide Biosensor Based on Superoxide Dismutase/ Nano-ZnO 基于超氧化物歧化酶/氧化锌的超氧离子传感器
The Research on Current-mode Readout Circuit for ISFET Biosensor ISFET生物传感器电流模式读出电路的研究
Urease-based field effect transistor biosensor has been fabricated by the transfer of urease/ amphiphile mixed Langmuir films onto ion-sensitive field effect transistor ( ISFET). 用LB膜技术将脲酶/两亲性分子混合Langmuir膜转移到离子敏感场效应晶体管(ISFET)表面,制成了脲酶场效应晶体管生物传感器;
The modified ISFET of tri-o-e-β-CD is made, and used to analysis ephedrine. 将药物敏感膜与离子敏感场效应管相结合,用tri-o-e-β-CD修饰传感器,测定麻黄碱。
ISFET solid-state pH electrode 离子敏场效应晶体管PH电极
Based on analyzing structures of ISFET sensors compatible with CMOS technology, a kind of measuring circuits is researched. It can reduce body effect, common modle noise, temperature drift and so on. 在对与CMOS工艺兼容的ISFET传感器结构模型分析的基础上,研究了一种测量电路,它具有有利于消除体效应的影响、减少共模噪声的影响、克服温度漂移等优点。
Based on the Ion-Sensitive Field Effect Transistor structure and electro-characteristic, a pH-ISFET has a multi-layer floating electrode structure realized in standard CMOS technology is presented. 基于离子敏感场效应晶体管(ISFET)基本结构及其电学特性,提出了一种应用标准CMOS工艺实现的多层浮栅结构pH-ISFET。
Experimental research of NH_4~+ sensitive urea sensor with reinforcement ISFET 增强型场效应管NH4~+敏尿素传感器的实验研究
The instrument used ion-sensitive field effect transistor as its sensor for ionic concentration measurement. 该仪器用离子敏场效应晶体管(ISFET)作为传感器来测量离子浓度。
A novel instrument was designed. It uses ion-sensitive field effect transistor ( ISFET) as its sensor for ionic concentration measurement. 本文设计了一种新型测量仪,它用离子敏场效应晶体管(ISFET)作为传感器来测量离子浓度。
The substrate type ISFET is a chemically sensitive device. 衬底型ISFET是一种化学敏感器件。
It is possible to fabricate ISFET entirely using CMOS process. The gate structure of the ISFET is a multilayer, which consists of insulator, poly and metal. So it is called multilayer-gate. 完全用CMOS工艺实现离子敏场效应型晶体管(ISFET)成为可能,这种ISFET的栅极结构是由绝缘体、多晶硅、金属层叠起来,称之为多层栅结构。
Development of a compound ca~ ( 2+), k~+-isfet 复合型Ca~(2+)、K~+-离子选择性场效应管的研究
This paper presents a measuring system of the concentration of penicillin with DSP based on the theory of ISFET. 本文基于离子敏场效应管的工作原理,设计了以DSP为核心单元的青霉素浓度测试系统。
Based on the analyses of the basic structure and operational principle of H+-ISFET sensor, the relationship between current and voltage of the sensor is discussed with PSPICE simulation, and different pH values, channel sizes, temperatures adopted. 在对H+-ISFET传感器基本结构和工作原理分析的基础上,采用PSPICE仿真的方法讨论了传感器在不同pH值、不同沟道尺寸、不同温度等情况下的电流电压关系。
The simulation results show that "complementary ISFET/ MOSFET pair" can eliminate "temperature drift" and "body effect", which proves that this is a more suitable readout circuit for ISFET integration. 模拟仿真的结果表明,所采用的ISFET/MOSFET互补对结构的信号读取电路形式能够抑制温漂和克服硅衬底体效应对器件测量灵敏度的影响,证明是一种更适用于ISFET集成设计的信号读取方式。
The basic structure and working principle of H+ Ion Sensitive fieldeffect transistors ( H+-ISFET) are briefly introduced, A new H+-ISFET with backside contacts has been developed. 简要地介绍了氢离子敏场效应晶体管(H~+-ISFET)的基本结构和工作原理,提出了一种新型背面接触式H~+-ISFET。
A New H~+-ISFET with Backside Contacts 一种新型背面接触式H~+-ISFET
Study of F-ISFET 氟离子敏感场效应晶体管的研究
The Development and Application of H~+-ISFET 氢离子敏场效应晶体管的研制及应用
This paper presents methods for analogue signal processing and digital signal processing of an ISFET sensor. The methods are suitable for processing signals of other ISFET sensors as well. 本文介绍了离子敏场效应管传感器(ISFET)的模似信号和软件数字信号处理技术,所述方法可用于各种ISFET的信号检测处理中。
Substrate Type Ion Sensitive Field Effect Transistor ( ISFET) 衬底型离子敏感场效应晶体管(ISFET)
It is explained that why the effect appearing in the ISFET does not conform to Nernst effect, when Na+, Ca++ cations etc. are measured with Ag-AgCl reference electrode. 并对用银-氯化银参比电极测量Na~+,Ca~(++)等阳离子时,敏感场效应晶体管不符合能斯特响应的现象进行了解释。
Its function has been studied with ISFET meter, and the intensity of output signals shows linear relationship with the logarithmic urea concentration from 0 to 20 mM. 采用离子敏感场效应管特性测定仪对它的性能进行了分析。当尿素浓度在0-20mM范围内,尿素浓度的对数与响应值之间呈线性关系。
Signal processing of an Ion Sensitive ISFET Sensor 离子敏场效应管传感器信号处理技术
Biosensors based on screen-printing electrode, ISFET, pressure-sensitive and light-sensitive ele-ments can be fabricated by thick film and thin film techniques. 用各种厚薄膜技术可以制造以丝网印刷电极、离子敏场效应晶体管、压敏和光敏元件为基础的生物传感器。
Objective To fabricate the NH+ 4 sensitive urea sensor with reinforced ion sensitive field effect transistor ( ISFET) using the plane semiconductor technique with biochemical theory, and to evaluation its detecting function. 目的结合平面半导体技术及生物化学原理,制作NH+4敏感的尿素传感器,并对其检测性能进行评价。
ISFET is based on MOSFET structure and used to measure biochemical parameter. ISFET是基于MOS结构,用于生化参数测量的传感器。
The multi-parameter biochemical measure system uses ISFETs which have different sensitive area to realize multi-parameter detection. 论文研制的多参数生化检测系统采用具有不同的敏感区域的ISFET传感器,达到多参数测量的目的。