Patents
Literature
Patsnap Copilot is an intelligent assistant for R&D personnel, combined with Patent DNA, to facilitate innovative research.
Patsnap Copilot

602 results about "Residual space" patented technology

Residual space criterion is based on the envelope surface of the residual space. residual space criterion is based on the envelope surface of the residual space. If the residual space of the new vehicle type is everywhere within the approved case residual space, this is favourable.

Usage based methods of traversing and displaying generalized graph structures

A method for generating a tree structure representation of a generalized graph structure for display includes the more important links in the representation. Usage parameters are referenced in generating the tree structure from the generalized graph structure. Frequency, recency, spacing of accesses, and path information are exemplary types of usage parameters. A breadth-first or depth-first traversal of the graph references usage parameters associated with each node or link. The usage parameters which are associated with each node are referenced in order to determine the visitation order. The visitation order is determined by visiting the highest used nodes or links first. A method of displaying the tree structure references the usage parameters to determine the positioning of the nodes in the layout of the tree structure. In a preferred embodiment, the root node is positioned in the center of the layout. In one example, sibling nodes are spread out on links which emanate radially about their parent. The highest-used sibling nodes can be placed farthest apart from each other so as to achieve optimal separation so that they have the most growth space. The lowest-used nodes are then placed in the remaining space between the high-usage nodes. In another example, sibling nodes are positioned at the same radius from the root node. Each leaf node in the hierarchy is assigned the same amount of angular space. The layout angle of each node is a function of the ranking of the node's usage parameter relative to its siblings. Derived usage parameters such as need probability, cocitation clustering, or functions of both node and link usages can alternatively be referenced.
Owner:GOOGLE LLC

Usage based methods of traversing and displaying generalized graph structures

A method for generating a tree structure representation of a generalized graph structure for display includes the more important links in the representation. Usage parameters are referenced in generating the tree structure from the generalized graph structure. Frequency, recency, spacing of accesses, and path information are exemplary types of usage parameters. A breadth-first or depth-first traversal of the graph references usage parameters associated with each node or link. The usage parameters which are associated with each node are referenced in order to determine the visitation order. The visitation order is determined by visiting the highest used nodes or links first. A method of displaying the tree structure references the usage parameters to determine the positioning of the nodes in the layout of the tree structure. In a preferred embodiment, the root node is positioned in the center of the layout. In one example, sibling nodes are spread out on links which emanate radially about their parent. The highest-used sibling nodes can be placed farthest apart from each other so as to achieve optimal separation so that they have the most growth space. The lowest-used nodes are then placed in the remaining space between the high-usage nodes. In another example, sibling nodes are positioned at the same radius from the root node. Each leaf node in the hierarchy is assigned the same amount of angular space. The layout angle of each node is a function of the ranking of the node's usage parameter relative to its siblings. Derived usage parameters such as need probability, cocitation clustering, or functions of both node and link usages can alternatively be referenced.
Owner:GOOGLE LLC

Implantable medical device having flat electrolytic capacitor with differing sized anode and cathode layers

InactiveUS20050264979A1Maximize anode electrode surface areaEasy to useAnti-noise capacitorsFeed-through capacitorsElectrolysisElectrical connection
Flat electrolytic capacitors, particularly, for use in implantable medical devices (IMDs), and the methods of fabrication of same are disclosed. The capacitors are formed with an electrode stack assembly comprising a plurality of stacked capacitor layers each comprising an anode sub-assembly of at least one anode layer, a cathode layer and separator layers wherein the anode and cathode layers have differing dimensions that avoid electrical short circuits between peripheral edges of adjacent anode and cathode layers but maximize anode electrode surface area. The electrolytic capacitor is formed of a capacitor case defining an interior case chamber and case chamber periphery, an electrode stack assembly of a plurality of stacked capacitor layers having anode and cathode tabs disposed in the interior case chamber, an electrical connector assembly for providing electrical connection with the anode and cathode tabs through the case, a cover, and electrolyte filling the remaining space within the interior case chamber. The plurality of capacitor layers and further separator layers are stacked into the electrode stack assembly and disposed within the interior case chamber such that the adjacent anode and cathode layers are electrically isolated from one another. The anode layer peripheral edges of the anode sub-assemblies of the stacked capacitor layers extend closer to the case side wall than the cathode peripheral edges of the cathode layers of the stack of capacitor layers throughout a major portion of the case chamber periphery. The separator layer peripheral edges extend to the case periphery and space the anode layer peripheral edges therefrom. Any burrs, debris or distortions along or of any of the anode layer peripheral edges causing the anode layer edges to effectively extend in the electrode stack height direction causes the anode layer peripheral edges having such tendency to contact an adjacent anode layer. In this way, anode layer surface area is maximized, and short circuiting of the anode layers with the cathode layers is avoided. A case liner can also be disposed around the electrode stack assembly periphery.
Owner:MEDTRONIC INC

RAID6 level mixed disk array, and method for accelerating performance and improving reliability

The invention discloses an RAID6 level mixed disk array, comprising a plurality of solid-state disks, two disks and a management control unit, wherein the plurality of solid-state disks are used for storing data; partial space in each disk is used as check disk space; the residual space is used as an image log area; the position index information of the data block in the image log area is recorded in one log chain table; and the management control unit is used for controlling access of the upper application program to the array, and specifically includes a monitoring module, a data distribution module and a data recovering module, wherein the monitoring module is used for monitoring I/O access of the application program and identifying write data; the data distribution module is used for distributing the write data identified by the monitoring module to the solid-state disk or the image log area; and the data recovering module is used for recovering the write data to the solid-state disk from the image log area. The invention also discloses a method for accelerating performance and improving reliability of the array. The array and the method can be used for various storage environments with unpredictable load, so that the array and the method are suitable for constructing a storage system with high performance and high reliability.
Owner:HUAZHONG UNIV OF SCI & TECH

Implantable medical device having flat electrolytic capacitor with differing sized anode and cathode layers

Flat electrolytic capacitors, particularly, for use in implantable medical devices (IMDs), and the methods of fabrication of same are disclosed. The capacitors are formed with an electrode stack assembly comprising a plurality of stacked capacitor layers each comprising an anode sub-assembly of at least one anode layer, a cathode layer and separator layers wherein the anode and cathode layers have differing dimensions that avoid electrical short circuits between peripheral edges of adjacent anode and cathode layers but maximize anode electrode surface area. The electrolytic capacitor is formed of a capacitor case defining an interior case chamber and case chamber periphery, an electrode stack assembly of a plurality of stacked capacitor layers having anode and cathode tabs disposed in the interior case chamber, an electrical connector assembly for providing electrical connection with the anode and cathode tabs through the case, a cover, and electrolyte filling the remaining space within the interior case chamber. The plurality of capacitor layers and further separator layers are stacked into the electrode stack assembly and disposed within the interior case chamber such that the adjacent anode and cathode layers are electrically isolated from one another. The anode layer peripheral edges of the anode sub-assemblies of the stacked capacitor layers extend closer to the case side wall than the cathode peripheral edges of the cathode layers of the stack of capacitor layers throughout a major portion of the case chamber periphery. The separator layer peripheral edges extend to the case periphery and space the anode layer peripheral edges therefrom. Any burrs, debris or distortions along or of any of the anode layer peripheral edges causing the anode layer edges to effectively extend in the electrode stack height direction causes the anode layer peripheral edges having such tendency to contact an adjacent anode layer. In this way, anode layer surface area is maximized, and short circuiting of the anode layers with the cathode layers is avoided. A case liner can also be disposed around the electrode stack assembly periphery.
Owner:MEDTRONIC INC

Data-driving control process monitoring method based on dynamic component analysis

The invention provides a data-driving control process monitoring method based on dynamic component analysis. The method comprises the steps of (1) establishing ICA and DICA process statistics models according to multiple detection variables obtained from continuous detection, and defining statistics I2 relevant to independent variables belonging to non-Gaussian distribution in measured variables according to the DICA process statistics model; (2) establishing PCA and DPCA process statistics models for a process information matrix E left over after non-Gaussian distribution measured variable extraction, and defining statistics T2 and SPE of the detected variables in pivot element space and residual space; (3) obtaining similarity indexes ISM to serve as monitoring indexes through training by means of the support vector data description algorithm which is input by the performance indexes Lambda = (I2, T2, SPE); (4) comparing actual monitoring indexes ISM with IMAX and getting the conclusion that faults appear in the current control process if ISM>IMAX. According to the data-driving control process monitoring method based on dynamic component analysis, the number of monitoring diagrams can be reduced, and monitoring efficiency can be improved. The data-driving control process monitoring method based on dynamic component analysis can be widely used for multivariable control system monitoring such as industrial process control.
Owner:SHANGHAI JIAO TONG UNIV

Magnetic inorganic hollow compound microsphere and preparation method thereof

The invention belongs to the field of advanced nanometer composite material technique, in particular to a magnetic inorganic hollow composite micro-ball and a preparation method thereof. The method of the invention comprises the steps as follows: firstly, by a solvent volatilization method, the co-deposition of magnetic nanometer particles and polymer micro-balls is generated so as to lead the magnetic nanometer particle to be filled into the gap of the polymer micro-ball; subsequently, by a nanometer pouring method, inorganic oxide sol is filled into the residual space of the polymer micro-ball gap; by inorganic oxide sol hydrolysis, the inorganic oxide enwraps the magnetic nanometer particle and covers around the polymer micro-ball; furthermore, the polymer micro-ball is removed by sintering so as to obtain the metal oxide composite hollow micro-ball with the shell doped with magnetic nanometer particles. The micro-ball can be dispersed in the water solution by supersonic oscillation. The magnetic hollow ball has stronger magnetic saturated strength and higher mechanical stability, has wide application on the aspects of biology separation, medicament transport, and catalyst load, etc. The method of the invention is simple, the raw material is easy to be obtained and the method of the invention is applicable for amplification production.
Owner:FUDAN UNIV

Intelligent mobile terminal data storage and backup method and system based on multi-cloud storage

The invention discloses an intelligent mobile terminal data storage and backup method and system based on multi-cloud storage. The method comprises the steps that firstly, an intelligent mobile terminal selects a plurality of cloud disks to carry out the authorization authentication, and an authorized cloud disk set R is obtained; secondly, a multi-cloud storage scheme planner converts the attribute information of a file to be stored and backed up into a storage vector U, and a user requested cloud disk attribute weight vector W is calculated according to U; thirdly, the multi-cloud storage scheme planner searches the set R for a cloud disk subset R' with the residual space suitable for the file to be stored and backed up, for all cloud disks in R', a cloud disk weight vector Qw is generated according to the expectation value vector mu for attributes of the cloud disks of a user, the final weight of the cloud disks is calculated according to Qw and W, m cloud disks are selected from the set R' as a multi-cloud storage system, the reliability index P of the system is calculated, if P is larger than or equal to Fp, the file to be stored and backed up is stored into the candidate multi-cloud storage system, and Fp is the reliability index set by the user.
Owner:PEKING UNIV

Gas concentration early warning method, gas concentration early warning device and refrigerator

The invention provides a gas concentration early warning method, a gas concentration early warning device and a refrigerator. The gas concentration early warning method comprises the steps that the current gas concentration in the refrigerator is detected through a gas concentration sensor every preset interval; according to the preset interval, the weight of objects stored in the refrigerator, the free space volume of the refrigerator and the current gas concentration, the rising acceleration of the current gas concentration is calculated; whether the rising acceleration of the current gas concentration reaches an early warning concentration threshold value or not is determined; and when it is determined that the rising acceleration of the current gas concentration reaches the early warning concentration threshold value, gas concentration early warning is given. According to the technical scheme, the freshness of the objects stored in the refrigerator can be identified accurately so that a user can treat the objects stored in the refrigerator in time, in this way, air in the refrigerator is prevented from being polluted by foul smell caused by putrefaction of the stored objects, and the user experience is improved.
Owner:HEFEI HUALING CO LTD +1

Automatic interface element adjusting method and automatic interface element adjusting device

An embodiment of the invention provides an automatic interface element adjusting method and an automatic interface element adjusting device. The automatic interface element adjusting method includes: acquiring an adding operation signal generated by adding a new interface element by a user, and determining the position for the to be placed new interface element and required space according to the adding operation signal; adjusting positions and sizes of interface elements on a first interface according to the position for the to be placed new interface element and required space when a left continuous space of the first interface is judged to be sufficient for the new interface element or not according to the position for the to be placed new interface element and required space, and enabling the left space of the adjusted first interface to be sufficient for holding the new interface element. The automatic interface element adjusting method has the advantages that positions and sizes of interface elements can be adjusted automatically when the space of the first interface is insufficient, so that the first interface is sufficient for holding the new interface element, manual operation on the interface elements is not required, better appearance can be brought to the user, and utilization efficiency of a user interface is improved.
Owner:HUAWEI DEVICE CO LTD

Low-pressure injection molding encapsulation method of polymer battery and low-pressure injection molding polymer battery

The invention relates to a low-pressure injection molding encapsulation method of a polymer battery and a low-pressure injection molding polymer battery. The battery of the invention comprises a battery protecting board, a battery cell and an adhesive wherein the battery protecting board is welded with the positive pole and the negative pole of the battery cell; the adhesive frame is composed of a front side, a back side, a left side and a right side; the height of the adhesive frame is equivalent to the thickness of the battery cell; the battery protecting board is clamped on one side, which is provided with an electrode hole, of the adhesive frame; a plurality of convex ribs are arranged on the inner sides of the other three sides of the adhesive frame; the convex ribs abut against the corresponding side of the battery cell, so a gap is formed between the battery cell and the adhesive frame; and hot melt adhesive molded by low-pressure injection molding is filled in the residual space in the adhesive frame. The invention has the advantages of simple structure, low manufacturing cost, good mechanical property, low height of the battery, precise dimension and high realizability.
Owner:SHENZHEN RUIDE ELECTRONICS IND
Who we serve
  • R&D Engineer
  • R&D Manager
  • IP Professional
Why Eureka
  • Industry Leading Data Capabilities
  • Powerful AI technology
  • Patent DNA Extraction
Social media
Try Eureka
PatSnap group products