Abstract:
A method for manufacturing a spherical frozen food is provided. One or more plates are provided. The plates, when together, form a spherical mold. An inlet facilitates the injection of a mixture into the mold. The mold is subjected to a low temperature such that the mixture is caused to freeze. A rotating mechanism may cause one or more of the plates to open and/or rotate outwardly such that the frozen material may be removed from the mold with ease. Liquid nitrogen may be used to freeze the material.
Abstract:
Disclosed are a DLP security system and an operating method thereof. An operating method of a data loss prevention (DLP) apparatus, comprising: converting, into packets, Ethernet signals received from a fail over device that are transmitted and received between an external network and internal network; analyzing the packets to classify the packets into first packets required to be precisely judged and second packets not required to be precisely judged; distributing and allocating a judgment job about the first packet to at least one in-line instance according to a predetermined reference; and allocating the judgment job distributed to the in-line instance in which a fail occurs to the in-line instance which is normally operated when it is verified whether there is an in-line instance which is normally operated in the case where the fail occurs in the at least one in-line instance.
Abstract:
The present invention relates to Rhus verniciflua Stokes extract having an increased content of an active flavonoid compound through a gas bubbling treatment, a method for preparing the Rhus verniciflua Stokes extract, and a method for converting fustin into fisetin through the gas bubbling treatment of a solution containing fustin. The method for preparing the Rhus verniciflua Stokes extract of the present invention can convert the conventional Rhus verniciflua Stokes extract having high content of fustin and low content of fisetin into a Rhus verniciflua Stokes extract having high content of fisetin. Therefore, the Rhus verniciflua Stokes extract of the present invention can be commercialized into natural anticancer agents, anticancer and cancer prevention food products, and health functional foods due to the excellent bioactivity thereof, and promote the development of relevant industries through the high added-value of Rhus verniciflua Stokes. In addition, the method for converting fustin into fisetin can be applied to other natural substances and be used as a method for enhancing the functionality thereof by increasing the content of a high active flavonoid, thereby becoming an enabling technology that can lead high-functionalization of natural substances.
Abstract:
A digital image processing apparatus and a method of controlling the same. The digital image processing apparatus includes a multi-direction button as a shutter release button which can move an auto focus (AF) region while a first shutter release signal is being applied. The multi-direction shutter release button is operable along the first direction which is an up and down direction, and is operable in the multiple directions which include back, front, right, and left directions. Specifically, the multi-direction shutter release button is operable to apply a first shutter release signal when moved down along the first direction to a first position, to allow for auto focusing operations in accordance with movement in any of the multiple directions, and is operable to apply a second shutter release signal when moved down along the first direction to a second position to control the digital image processing apparatus to operate a shutter to capture an image.
Abstract:
An apparatus for vacuum bonding a liquid crystal display device includes a unitary vacuum processing chamber, upper and lower stages provided at upper and lower spaces within the vacuum processing chamber for receiving first and second substrates, and at least one first substrate receiving system provided within the vacuum chamber to contact dummy areas between cell areas of one of the first and second substrates.
Abstract:
Provided are a touch screen and a method of operating the same. The touch screen includes a detecting part, a control part, and a tactile feedback part. The detecting part detects object's approach or contact. The control part receives a signal of the detecting part to output a feedback signal. The tactile feedback part receives the feedback signal of the control part to provide a tactile feedback to a contact position using a magnetic force. The tactile feedback uses the magnetic force of a magnetic dipole.
Abstract:
A method of fabricating a liquid crystal display using a liquid crystal applying method includes loading a first substrate and a second substrate having seals formed thereon into a bonding chamber, aligning the first and second substrates, bonding the first and second substrates, fixing the bonded two substrates, and unloading the fixed first and second substrates.
Abstract:
Disclosed is a system for fabricating a liquid crystal display using liquid crystal dropping and a method of fabricating a liquid crystal display using the same. The present invention includes a liquid crystal forming line dropping liquid crystals on the first substrate, a sealant forming line forming the sealant on the second substrate, and a bonding and hardening line bonding the two substrates to each other and hardening the sealant, printing a sealant, bonding the substrates each other, and hardening the sealant and an inspection process line of cutting the bonded substrates into panel units and grinding and inspecting the unit panels. And, the GAP process line includes And, the present invention includes the processes of dropping LC on a first substrate using a dispenser, forming a main UV hardening sealant on a second substrate, bonding the first and second substrates to each other in a vacuum state, UV-hardening the main UV hardening sealant, cutting the bonded substrates into cell units, grinding the cut substrates, and inspecting the grinded substrates finally.
Abstract:
An apparatus for manufacturing a liquid crystal display device includes a first reverse unit for reversing a first substrate, a bonding unit for bonding the reversed first substrate and a second substrate having a liquid crystal material deposited thereon, and a first loading/unloading unit arranged between the first reverse unit and the bonding unit for loading the first and second substrates into the bonding unit.
Abstract:
An apparatus for manufacturing a liquid crystal display device includes a vacuum processing chamber having a single substrate entrance for loading and unloading first and second substrates, upper and lower stages disposed within the vacuum processing chamber for affixing the first and second substrates, and a stage moving system for providing relative movement of the upper and lower stages.