A sensing device comprises a substrate material layer and a plurality of sensors provided on the substrate material layer. The plurality of sensors is electrically connected to form a loop. The loop has two output ends. There is a loop output value between the two output ends. The loop output value
A sensing device comprises a substrate material layer and a plurality of sensors provided on the substrate material layer. The plurality of sensors is electrically connected to form a loop. The loop has two output ends. There is a loop output value between the two output ends. The loop output value varies when the sensors are subjected to an external force. Each sensor has one induction value. The induction value of each sensor is different from each other. A total induction value of any one or more sensors is different from a total induction value of the other one or more sensors.
대표청구항▼
1. A sensing apparatus comprising: a base layer, and;a plurality of sensors disposed on the base layer, wherein the plurality of sensors are connected to form a circuit with two output terminals configured to output a circuit output that varies with a force applied on one or more sensors in the plur
1. A sensing apparatus comprising: a base layer, and;a plurality of sensors disposed on the base layer, wherein the plurality of sensors are connected to form a circuit with two output terminals configured to output a circuit output that varies with a force applied on one or more sensors in the plurality of sensors; wherein each of the plurality of sensors is configured to output a unique sensor output value such that a sensor output value of any one sensor of the plurality of sensors is different from a sensor output value of any other sensor of the plurality of sensors, and a sum of any one or more sensor output values is different from a sum of any other one or more sensor output values. 2. The sensing apparatus of claim 1, further comprising a signal processor connected to the output terminals for detecting the circuit output. 3. The sensing apparatus of claim 2 wherein the signal processor can identify one or more locations on the base layer of one or more sensors among the plurality of sensors that produce the circuit output. 4. The sensing apparatus of claim 1 wherein the base layer is made of textile or leather. 5. The sensing apparatus of claim 1, wherein the plurality of sensors comprise one or more of the following: a pressure sensor, a strain gauge, a switch, a humidity sensor, an ultrasound sensor, a microphone, a photo sensor, and a temperature sensor. 6. The sensing apparatus of claim 1, wherein the sensor has a protective device to prevent the structures of the sensor from being destroyed by excessive force. 7. The sensing apparatus of claim 1, wherein the sensor includes: a first sensing area disposed on the base layer;an accessory disposed above the first sensing area on the base layer;a second sensing area disposed on the accessory at a position corresponding to a position of the first sensing area; andan electronic component electrically connected to the first or second sensing areas. 8. The sensing apparatus of claim 7, wherein the sensor includes one of the following: a resistor, a capacitor, and an inductor. 9. The sensing apparatus of claim 1, wherein the sensor comprises a light-emitting-diode to indicate which sensor or sensors are activated or malfunctioning. 10. A physiological function detecting system, comprising: a sensing apparatus for sensing a posture change of a user's body, wherein the sensing apparatus comprises a base layer and a plurality of sensors disposed on the base layer, wherein the plurality of sensors are connected to form a circuit with two output terminals configured to output a circuit output that varies with a force applied on one or more sensors in the plurality of sensors; wherein each of the plurality of sensors is configured to output a unique sensor output value such that a sensor output value of any one sensor of the plurality of sensors is different from a sensor output value of any other sensor of the plurality of sensors, and a sum of any one or more sensor output values is different from a sum of any other one or more sensor output values;a detector to detect a physiological function or a treatment device; anda signal processor connected to the plurality of sensors and the detector to receive a signal from one or more of the plurality of sensors, and to trigger the detector to detect the physiological function or to trigger the treatment device according to a first criterion. 11. The physiological function signal detecting system of claim 10, wherein the physiological function signal detecting system comprises the treatment device. 12. The physiological function detecting system of claim 11, wherein the treatment device is a heater, a transcutaneous electrical nerve stimulator, an ultrasonic device, or an electrical shock device. 13. A sensing apparatus, comprising: a base layer, comprising a first sensing area, and;an accessory based on a hook-and-loop fastener, comprising a second sensing area at a position corresponding to a position of said first area, and a counterpart hook-and-loop fastener placed on the base material layer at a position corresponding to the position of the second sensing area, wherein the first and the second sensing areas are connected, and wherein a state of connection varies with an applied force in a force-strength dependent manner that various states correspond to different strengths of the applied force. 14. The sensing apparatus of claim 13, wherein the conducting circuit is implemented by a conductive hook-and-loop fastener. 15. A sensing apparatus, comprising: a base layer, comprising a first sensing area; andan extender comprising an accessory and a connecting part, wherein the connecting part is to connect the accessory to the base layer;a second sensing area is disposed on the extender at a position corresponding to a position of the first sensing area on the base layer, wherein the first and the second sensing areas are connected such that a state of the connection varies with an applied force, and the first and second sensing areas contain a magnet material such that the first sensing area and the second sensing area are inductively coupled, and a condition of inductive coupling is adapted to be changed by an outside force. 16. The physiological function detecting system of claim 10, wherein the physiological function is selected from the group consisting of EKG function, heart rate, pulmonary function, respiration, blood oxygen concentration, body temperature, sweat function, blood pressure, muscle electrograph, body resistance, concentrations of biological elements, and limb movement. 17. The sensing apparatus of claim 15, wherein the accessory is surrounded by a coil and a current is induced in the coil when a force is applied. 18. The sensing apparatus of claim 15, wherein the connecting part is a hook-and-loop fastener. 19. The sensing apparatus of claim 15, wherein another detecting sensor is installed nearby or on the outer surface of the accessory.
연구과제 타임라인
LOADING...
LOADING...
LOADING...
LOADING...
LOADING...
이 특허에 인용된 특허 (29)
Wilssens, Jean-Pierre, Apparatus and method for measuring the pressure distribution generated by a three-dimensional object.
Stirling, Harold Dan; Shears, Jay Allan; Cusey, Lee Norman, Apparatus, systems, and methods for gathering and processing biometric and biomechanical data.
Arbisi Dominic S. (13001 Berkshire Dr. Minnetonka MN 55343) Mitchell Roger E. (850 S. Longmore ; #281 Meza AZ 85202-3180), Electro-magnetic impact massager.
Sundaresan Jayaraman ; Sungmee Park ; Rangaswamy Rajamanickam ; Chandramohan Gopalsamy, Fabric or garment with integrated flexible information infrastructure.
Jayaramen, Sudaresan; Park, Sungmee; Rajamanickam, Rangaswamy; Gopalsamy, Chandramohan, Fabric or garment with integrated flexible information infrastructure for monitoring vital signs of infants.
Farrell, Brian; Nguyen, Patricia Wilson; Teverovsky, Justyna; Slade, Jeremiah; Powell, Mara, Method of manufacturing a fabric article to include electronic circuitry and an electrically active textile article.
Wong-Lam, Ho Wai; Schouhamer Immink, Kornelis Antonie; Van Uijen, Cornelis Marinus Johannes, Modulation code system and methods of encoding and decoding a signal by multiple integration.
Derchak, P. Alexander; Ostertag, Kathryn Lynn; Myers, Lance Jonathan, Systems and methods for non-invasive physiological monitoring of non-human animals.
Manaresi, Nicolò; Tartagni, Marco; Monnier, Joel; Guerrieri, Roberto, Textile-like capacitive pressure sensor and method of mapping the pressure exerted at points of a surface of a flexible and pliable object, particularly of a sail.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.