Embedded appliance for multimedia capture
View Patent ↗A multimedia device includes input ports dedicated to receiving a real-time media signal and a processor system dedicated to capturing the real-time media signal. The processor system defines an embedded environment. The input ports and the processor system are integrated into the multimedia capture device. The input ports include an audio input port and at least one of a visual-capture input port or a digital-image input port.
1. A non-transitory processor-readable medium storing code representing instructions to be executed by a processor system within an embedded environment, the code comprising code to cause the processor system to:
receive a first direct control signal representing a start indicator and in response to a first selection by a user of an embedded appliance that includes the processor system, the start indicator configured to trigger capture of an audio signal and at least one of a visual-capture signal or a digital-image signal;
receive, from a control device separate from the embedded appliance, schedule information associated with the capture the audio signal and the at least one visual-capture signal or the digital-image signal;
capture the audio signal and the at least one of the visual-capture signal or the digital-image signal based on the start indicator to produce a captured signal;
receive a second direct control signal representing a send indicator and in response to a second selection by the user, the send indicator configured to trigger to captured signal to be sent; and
send the captured signal after the captured signal is produced such that the captured signal is formatted in accordance with the schedule information.
2. The non-transitory processor-readable medium of claim 1 , wherein the second direct control signal is received in response to a selection by a user of an embedded appliance that includes the processor system.
3. The non-transitory processor-readable medium of claim 1 , wherein the second direct control signal is received in response to selection of a button of an embedded appliance that includes the processor system.
4. The non-transitory processor-readable medium of claim 1 , wherein the second direct control signal is received when a defined condition is satisfied.
5. The non-transitory processor-readable medium of claim 1 , wherein the second direct control signal is received when the control device is not operatively available, the capture signal being sent to the control device when the control device is operatively available.
6. The non-transitory processor-readable medium of claim 1 , wherein:
the first direct control signal received in response to a first selection by a user of an embedded appliance that includes the processor system; and
the a second direct control signal received in response to a second selection by the user.
7. The non-transitory processor-readable medium of claim 1 , wherein:
the first direct control signal received in response to selection of a first button of an embedded appliance that includes the processor system; and
the second direct control signal received in response to selection of a second button of the embedded appliance.
8. The non-transitory processor-readable medium of claim 1 , wherein:
the first direct control signal is received when a first defined condition is satisfied
the second direct control signal is received when a second defined condition is satisfied.
9. The non-transitory processor-readable medium of claim 1 , wherein:
the start indicator is a first start indicator received at a first time, the send indicator is a first send indicator received at a second time after the first time,
the schedule information includes at least one of a second start indicator or a second send indicator, the schedule information is received at a third time before the first time and before the third time,
the at least one of the second start indicator or the second send indicator replaced by the first start indicator or the first send indicator, respectively.
10. A method, comprising:
receiving a first direct control signal representing a start indicator and in response to a first selection by a user of an embedded appliance that includes the processor system, the start indicator configured to trigger capture of an audio signal and at least one of a visual-capture signal or a digital-image signal;
receiving, from a control device separate from the embedded appliance, schedule information associated with the capture the audio signal and the at least one visual-capture signal or the digital-image signal;
capturing the audio signal and the at least one of the visual-capture signal or the digital-image signal based on the start indicator to produce a captured signal;
receiving a second direct control signal representing a send indicator and in response to a second selection by the user, the send indicator configured to trigger to captured signal to be sent; and
sending the captured signal after the captured signal is produced such that the captured signal is formatted in accordance with the schedule information.
11. The method of claim 10 , wherein the second direct control signal is received in response to a selection by a user of an embedded appliance that includes the processor system.
12. The method of claim 10 , wherein the second direct control signal is received in response to selection of a button of an embedded appliance that includes the processor system.
13. The method of claim 10 , wherein the second direct control signal is received when a defined condition is satisfied.
14. The method of claim 10 , wherein the second direct control signal is received when the control device is not operatively available, the capture signal being sent to the control device when the control device is operatively available.
15. The method of claim 10 , wherein:
the first direct control signal received in response to a first selection by a user of an embedded appliance that includes the processor system; and
the a second direct control signal received in response to a second selection by the user.
16. The method of claim 10 , wherein:
the first direct control signal received in response to selection of a first button of an embedded appliance that includes the processor system; and
the second direct control signal received in response to selection of a second button of the embedded appliance.
17. The method of claim 10 , wherein:
the first direct control signal is received when a first defined condition is satisfied
the second direct control signal is received when a second defined condition is satisfied.
18. The method of claim 10 , wherein:
the start indicator is a first start indicator received at a first time, the send indicator is a first send indicator received at a second time after the first time,
the schedule information includes at least one of a second start indicator or a second send indicator, the schedule information is received at a third time before the first time and before the third time,
the at least one of the second start indicator or the second send indicator replaced by the first start indicator or the first send indicator, respectively.