An advancing micro-force sensing device that can measure force in the range of sub-micro-Newton (mu N) is designed and realized in this paper. To accurately measure the micro interactive force (For example, adhesion, surface tension, friction, and assembly force) between the tool and the object during micromanipulation, the polyvinylidene fluoride (PVDF) is used to fabricate a highly sensitive force sensing device. In this paper, the relationship model of the interactive force and the charge generated on the PVDF surface, the design. of the signal processing method of PVDF output are illustrated. The transformation model between the micro interactive force and the signal of the sensing device is built. A new calibration method of the sensin...
To accurately measure the micro interactive force (For example, adhesion, surface tension, friction,...
To accurately measure the micro interactive force (For example, adhesion, surface tension, friction,...
To accurately measure the micro interactive force (For example, adhesion, surface tension, friction,...
An advancing micro-force sensing device that can measure force in the range of sub-micro-Newton (mu ...
An advancing micro-force sensing device that can measure force in the range of sub-micro-Newton (μN)...
This paper aims at designing a kind of advanced micro-force sensor that can measure force in the ran...
This paper aims at designing a kind of advanced micro-force sensor that can measure force in the ran...
A novel micro-force sensor that can reliably measure force in the range of sub-micro-Newton (μN) and...
© 2003 IEEE. This paper aims at advancing micromanipulation technology with in-situ PVDF piezoelectr...
At present, by existing sensors, sub-mu N micro-force in micro-assembly is not able to be reliably m...
At present, by existing sensors, sub-mu N micro-force in micro-assembly is not able to be reliably m...
At present, sub-micro-Newton (sub-μN) micro-force in micro-assembly and micro-manipulation is not...
This paper presents our development of a novel force and force rate sensory system to advance applic...
This paper aims at advancing micromanipulation technology with in situ polyvinylidene fluoride (PVDF...
Despite the enormous research efforts in creating new applications with MEMS, the research efforts a...
To accurately measure the micro interactive force (For example, adhesion, surface tension, friction,...
To accurately measure the micro interactive force (For example, adhesion, surface tension, friction,...
To accurately measure the micro interactive force (For example, adhesion, surface tension, friction,...
An advancing micro-force sensing device that can measure force in the range of sub-micro-Newton (mu ...
An advancing micro-force sensing device that can measure force in the range of sub-micro-Newton (μN)...
This paper aims at designing a kind of advanced micro-force sensor that can measure force in the ran...
This paper aims at designing a kind of advanced micro-force sensor that can measure force in the ran...
A novel micro-force sensor that can reliably measure force in the range of sub-micro-Newton (μN) and...
© 2003 IEEE. This paper aims at advancing micromanipulation technology with in-situ PVDF piezoelectr...
At present, by existing sensors, sub-mu N micro-force in micro-assembly is not able to be reliably m...
At present, by existing sensors, sub-mu N micro-force in micro-assembly is not able to be reliably m...
At present, sub-micro-Newton (sub-μN) micro-force in micro-assembly and micro-manipulation is not...
This paper presents our development of a novel force and force rate sensory system to advance applic...
This paper aims at advancing micromanipulation technology with in situ polyvinylidene fluoride (PVDF...
Despite the enormous research efforts in creating new applications with MEMS, the research efforts a...
To accurately measure the micro interactive force (For example, adhesion, surface tension, friction,...
To accurately measure the micro interactive force (For example, adhesion, surface tension, friction,...
To accurately measure the micro interactive force (For example, adhesion, surface tension, friction,...