Abstract:
An pry-proof encrypted keyboard. The encrypted keyboard comprises a keyboard panel (1), a lining board (2) assembled under the keyboard panel (1), a waterproof silicon rubber (4) and a main control panel (5). Convex rib circles (22) are provided on the circumference of the surface of the lining board (2) attached with the waterproof silicon rubber (4). The waterproof silicon rubber is extruded by the lining board (2) when the encrypted keyboard is assembled, and the thickness of corresponding waterproof silicon rubber (4) extruded by the convex rib circles (22) is less than 0.2 MM. The metallic lining to board (2) can efficiently prevent fusion attack from the lateral face of the encrypted keyboard, meanwhile two convex rib circles (22) are added on the circumference of the surface of the lining board attached with the water silicon rubber (4), so that the thickness of the waterproof silicon rubber (4) at the grooves (41) is less than 0.2 MM, which is the diameter of the known thinnest needle, thus the attackers could not easily breakthrough the lining board (2) or the waterproof silicon rubber (4) to reach the inside of the encrypted keyboard, as a result illegally leading the wire out from the inside of the encrypted keyboard is efficiently prevented, thus the information of the keyboard is efficiently protected, and the security performance is improved.
Abstract:
An automated transaction machine includes a card reader that can read a unique magnetic characteristic of a magnetic stripe on a card. The machine can then send data reflective of the read characteristic to a remote card validator. The card validator can compare the received data to referenced magnetic characteristic data corresponding to cards authorized for use with the machine. The machine can also communicate with a transaction host computer to carry out a financial transaction. As a result of the magnetic data comparison, an invalid card can be discovered and a fraudulent transaction prevented. Communication between the card validator and machine is independent from communication between the transaction host and machine.
Abstract:
An automated banking machine can operate to cause financial transfers responsive to data read from data bearing records. The machine includes a card reader that can read a user identifier from a magnetic stripe of the user's card. Financial transfers are carried out responsive to machine communication with a transaction host computer. The machine also sends the read user identifier to a remote marketing computer. The marketing computer uses the user identifier to determine the next marketing presentation in a marketing campaign that is to be presented to the user. Responsive to a message received from the marketing computer, the machine operates to display the determined next marketing presentation to the user. The marketing campaign includes a sequence of presentations to be output in a predetermined order to the user.
Abstract:
A card actuated automated banking machine (152, 198, 200) includes a plurality of transaction function devices. The transaction function devices include a card reader (170), a printer (174), a bill dispenser (176), a coin dispenser (178), a display (182), a check imaging device (186), and at least one processor (190). The machine is operative responsive to receiving a check and certification data to dispense cash in exchange for the check. The person presenting the check need not provide user identifying inputs through input devices in order to receive cash for the check. A check recipient prior to presenting the check for payment is also enabled to verify that the check will be paid through communication with at least one computer (204) through at least one consumer interface device (208).
Abstract:
A display panel (4) is a display panel having a light-shield tape strip (21) and a light-shield tape strip (22), both light-shield tape strips are attached to the inside of the perimeter of the display panel (4). A first edge (21a) is formed at an end of the light-shield tape strip (21) of the display panel (4), and a second edge (22a) is formed at an end of the light-shield tape strip (22) of the display panel (4) so as to face the first edge (21a). The first edge (21a) and the second edge (22a) of the display panel (4) are shaped so as to be engaged with each other at least partly.
Abstract:
An automated banking machine operates to carry out financial transfers responsive to data read from data bearing records. The machine includes a card reader that operates to read data from user cards. The card data corresponds to financial accounts. The automated banking machine further includes a cash dispenser. The machine is operative to dispense cash to an authorized user based on identifying data including card data, and to cause a financial transfer from an account corresponding to card data through communication with at least one remote computer. The machine is operative to produce an audio output including verbal information through a headphone port to a headphone.
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Abstract:
A method and apparatus of reducing heat loss and cooling loss from a bank building caused by automatic teller machines, night drop vaults, and cash deal drawers.
Abstract:
An automated banking machine is part of a banking system that can operate to cause financial transfers responsive to data read from data bearing records. The machine can also receive user card data from a cell phone, including an electronic account number. The phone's banking application encrypts the account number along with an inputted random number which was generated by the machine. The phone then displays a bar code image containing the encrypted data. The machine includes a bar code reader. The random number is used to verify the current transaction session. Thereafter, normal transaction flow can follow, including PIN input. The process allows for secure input of card data without physical insertion of a card. Thus, fraudulent activities based on card insertion can be reduced.
Abstract:
A paper discharge device includes a waiting path, one side of which is connected to an input port and another side of which is connected to a discharge port. A collection path has one side connected to the waiting path through a merged portion and another side connected to a collection chamber. Conveyance mechanisms disposed along the waiting path convey a paper which was conveyed through the input port to the discharge port in a forward direction, and convey, after lapse of a given period of time after conveyance of the paper to the discharge port, the paper in a reverse direction through the merged portion to feed into the collection path. The waiting path has a downward curvature between the merged portion and the discharge port.
Abstract:
An automated banking machine operates responsive to data read from data bearing records, such as user cards, to cause machine user authorization and financial transfers. Account data read from a user card is associated in a data store with instructions for displaying a customer interface uniquely associated with the particular bank where the user holds the account. The customer interface includes user-selectable financial transaction options. The arrangement enables the customer interface of the user's home bank, with which the user is familiar, to also be automatically displayed when the user operates automated banking machines of other banks.