Abstract:
Methods and apparatus to communicate data associated with media processing devices are disclosed. An example media processing device residing on a network includes a monitor configured to collect observational data associated with the media processing device in accordance with a configuration file stored on the media processing device; and communicate the observational data to a first device external to the network via a first persistent connection between the media processing device and the first external device; and a controller configured to receive an operational instruction from a second external device via a second persistent connection between the media processing device and the second external device, wherein the second persistent connection is independent of the first persistent connection; and implement the operational instruction on the media processing device, wherein the operation instruction controls media processing hardware of the media processing device.
Abstract:
Methods and apparatus to communicate data associated with media processing devices are disclosed. An example media processing device residing on a network includes a monitor configured to collect observational data associated with the media processing device in accordance with a configuration file stored on the media processing device; and communicate the observational data to a first device external to the network via a first persistent connection between the media processing device and the first external device; and a controller configured to receive an operational instruction from a second external device via a second persistent connection between the media processing device and the second external device, wherein the second persistent connection is independent of the first persistent connection; and implement the operational instruction on the media processing device, wherein the operation instruction controls media processing hardware of the media processing device.
Abstract:
Methods, apparatuses, and computer program products are provided to facilitate connections between devices, such as a printer and a cloud-based server, and to implement an adaptive application framework. In the context of an apparatus, a printer is provided comprising communications circuitry configured to facilitate communications with a network; and processing circuitry configured to transmit a connection request to the network; receive requested connection parameters from the network; transmit printer connection parameters to the network; and establish a first secure connection between the printer and the network. The printer comprising processing circuitry further configured to receive requested connection parameters comprising at least a signed security certificate and a DNS name for a server on the network and to verify the signed security certificate and the DNS name for the server. The printer comprising processing circuitry further configured to transmit printer connection parameters comprising at least a signed security certificate for the printer. The printer comprising processing circuitry further configured to receive a request from the network to establish one or more communication channels over the first secure connection.
Abstract:
An apparatus may comprise a code output device and a processor configured to detect a first apparatus condition indication, generate a first dynamic identifier code representative of a first apparatus condition in response to detecting the first apparatus condition indication, output the first dynamic identifier code to the code output device, detect a second apparatus condition indication, generate a second dynamic identifier code representative of a second apparatus condition in response to detecting the second apparatus condition indication, wherein the second dynamic identifier code is different than the first dynamic identifier code, and output the second dynamic identifier code to the code output device. Associated methods, computer program products, and systems are also provided.