WO2016130735A1 - Apparatus and method for extending feature selection in a communication system - Google Patents
Apparatus and method for extending feature selection in a communication system Download PDFInfo
- Publication number
- WO2016130735A1 WO2016130735A1 PCT/US2016/017435 US2016017435W WO2016130735A1 WO 2016130735 A1 WO2016130735 A1 WO 2016130735A1 US 2016017435 W US2016017435 W US 2016017435W WO 2016130735 A1 WO2016130735 A1 WO 2016130735A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- control switch
- rotary control
- switch
- radio
- channel
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/38—Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
- H04B1/3827—Portable transceivers
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/38—Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
- H04B1/40—Circuits
- H04B1/403—Circuits using the same oscillator for generating both the transmitter frequency and the receiver local oscillator frequency
- H04B1/405—Circuits using the same oscillator for generating both the transmitter frequency and the receiver local oscillator frequency with multiple discrete channels
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H19/00—Switches operated by an operating part which is rotatable about a longitudinal axis thereof and which is acted upon directly by a solid body external to the switch, e.g. by a hand
- H01H19/02—Details
- H01H19/10—Movable parts; Contacts mounted thereon
- H01H19/14—Operating parts, e.g. turn knob
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/38—Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
- H04B1/3827—Portable transceivers
- H04B1/3833—Hand-held transceivers
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H2221/00—Actuators
- H01H2221/008—Actuators other then push button
- H01H2221/01—Actuators other then push button also rotatable
Definitions
- the present disclosure relates generally to portable communication devices, and more particularly to extending feature selection capability in portable radios being used in conjunction with electronic accessory devices.
- a portable communication device such as a portable radio operating in a two-way radio communications environment, typically utilizes a channel selector switch with hard stops to provide direct access to a plurality of radio channels.
- a typical channel selector switch (CSS) provides access tol6 channels as part of the radio's user interface.
- Some portable radio users have indicated a desire to access more channels. While a channel selector switch with hard stops is considered desirable, attempting to provide additional hardstops to such a switch reduces tactile feedback.
- Other approaches for example continuous rotary switches, are not well received in certain markets, and approaches using channel up/down buttons are more difficult to access and require multiple button presses or holding down of a button for a long time.
- Tactile feedback is very important for radios being operated in public safety environments, where loud noise, poor visibility, and gloved usage are often encountered. A simpler approach to extending radio features, particularly channel selection, is thus highly desirable. Additionally, space constraints must be addressed when attempting to add user interface features to any portable electronic product.
- FIG. 1 is a communication system in accordance with the various embodiments
- FIG. 2 is a method for extending channel selection in accordance with some embodiments
- FIG. 3 is another method for extending channel selection in accordance with some embodiments.
- FIG. 4 is another method for extending channel selection in accordance with some embodiments.
- FIG. 5 another method for extending channel selection in accordance with some embodiments.
- a secondary switch is remapped to become an extension of a primary switch (or alternatively the primary switch becomes an extension of the secondary switch).
- the function of one switch is automatically remapped to become a complimentary feature of another switch.
- the function of one switch is automatically remapped to become an extension of the other switch.
- the automatic remapping can occur automatically without the need for any user interaction or hardware changes.
- the various embodiments, as applied to channel control switches provide an improved user interface having an extended channel range using a channel control switch of a portable radio and a channel control switch of a radio accessory in conjunction with various remapping techniques.
- FIG. 1 is a communication system 100 operating in accordance with various embodiments.
- Communication system 100 comprises first and second portable communication devices 102, 104 operatively coupled, either via wired or wireless coupling 106, operating within a larger communications system or network.
- the primary portable communication device 102 may comprise a two- way radio or other portable communication device having a rotary control switch 108 controlling a radio function.
- the secondary communication device may comprise an electronic radio accessory, such as a remote speaker microphone, also having a rotary control switch, referred to as RSM rotary control switch 1 10.
- Portable radio 102 comprises known radio elements, such as a controller having a microprocessor 112, transmitter and receiver (not shown).
- Radio 102 further comprises user interface features including a push-to-talk (PTT) button 114, speaker 116 and microphone 118.
- the electronic radio accessory 104 may have similar (or fewer) elements depending on the accessory's purpose but generally provides remote access to the radio interface features.
- the primary communication device will also be referred to as portable radio 102
- secondary communication device 104 will also be referred to a remote speaker microphone (RSM) 104.
- the RSM 104 comprises a PTT button 120, a speaker 122, and a microphone 124.
- the RSM 104 is typically worn at the user's shoulder while the portable radio is coupled elsewhere on the user's body, for example clipped to the user's belt.
- Each communication device 102, 104 comprises its own respective rotary control switch 108, 110.
- each rotary control switch 108, 110 operates as a channel control switch.
- communication system 100 operates in accordance with the various embodiments in which one of the rotary switches (108 or 110) is used to extend the selection of the other rotary switch (108 or 110). While the embodiments are described in terms of channel control switches, the embodiments of the disclosure may also be applied to other electronic functions controlled via hardstop rotary control switches of portable communication devices.
- communication system 100 is configured via controller 112 to remap a switch function (e.g. the RSM rotary control channel switch) based on the presence of another switch (e.g. radio rotary control channel switch).
- a switch function e.g. the RSM rotary control channel switch
- another switch e.g. radio rotary control channel switch
- the remapping advantageously occurs without any hardware changes. In some embodiments, the remapping occurs automatically without any user interaction.
- both switches selected the same channels 1-16.
- communication system 100 operating in accordance with one of the
- the communication system 100 remaps one of the rotary control switches to be a complimentary function of the other switch.
- a complimentary function is a feature that is closely aligned, or otherwise, generally associated with the first feature.
- the complimentary feature of zone (or folder) selection can be used to extend the channel selection.
- Zones are groupings of channels. A user will select which zone (group) of channels with one rotary switch, say at the radio rotary control switch 108, and then select the specific channel in that group from the RSM rotary control switch 110.
- the radio's 16 position channel selector switch 108 can automatically be remapped to select which zone the user wants when the RSM 104 is attached to the radio 102.
- Each zone (of 16 zones) will allow a selection of 16 channels per zone (at the RSM). Therefore, the user can select zones 1-16 on the radio selector switch and channels 1 - 16, 17-32, 33-48, etc. (in whichever zone is selected) through the RSM rotary control switch 110.
- This embodiment provides access to 256 channels (16 zones x 16 channels per zone).
- Both communication devices 102, 104 have rotary control switches 108, 110, and preferably rotary control switches for the use of channel selection (i.e. a rotary channel control switch).
- FIG. 2 is a method 200 for extending channel selection in accordance with some embodiments.
- a channel switch of the radio is rotated and the channel switch position is detected at 204.
- the radio determines whether the channel switch position lands on a predetermined extension location. If the channel switch location does not land on the predetermined extension location at 206, then the channel operation operates on the detected channel.
- the method 200 proceeds to extend channel selection to the switch of the remote speaker microphone (RSM) at 210, such as switch 110 of RSM 104 of FIG. 1.
- RMS remote speaker microphone
- the RMS control switch is then rotated at 212 to select a channel from the extended channel set.
- the radio 102 may provide positions 1-16 of operation via 16 hardstops, with positions 1-15 being used for channels, and position 16 being used as the enabler for channel extension. If the radio switch is rotated to hardstop 16, then channel control is remapped to the RSM control switch to provide an extension of channel selection, for example channels 17-32.
- method 200 can be enabled automatically upon operatively coupling the radio accessory 104 to the portable radio 102, without the need to dedicate a hardstop of the radio switch to the channel extension mode. This allows for channels 1-16 to be selected using the first control switch and channels 17-34 to be selected from the second control switch.
- FIG. 3 is a method 300 of extending channel selection in accordance with some embodiments.
- Method 300 reverses method 200 by remapping the secondary device.
- a channel switch of the accessory device such as RSM 104
- the channel switch position is detected at 304.
- the RSM determines whether the channel switch position lands on a predetermined extension location. If the channel switch location does not land on the predetermined extension location at 306, then the channel operation operates on the detected channel.
- the method 300 proceeds to extend channel selection to the radio control switch at 310, such as radio rotary control switch 108 of radio 102 of FIG. 1.
- the radio rotary control switch 108 can then be rotated at 312 to select a channel from the extended channel set.
- the RSM 104 may provide channels 1-16 of operation via 16 hardstops, with position 16 being used as the enabler for channel extension. If the RSM switch is rotated to hardstop 16, then channel control is remapped to the radio 102 to provide an extension of channel selection. For example radio channels 17-32. The radio channel switch 108 can then be rotated to select any channels from 17-32.
- method 300 can be enabled automatically upon operatively coupling the radio accessory 104 to the portable radio 102, without the need to dedicate a hardstop of the RSM switch to the channel extension mode. This allows for channels 1-16 to be selected using the RSM control switch and channels 17-32 to be selected from the radio control switch.
- FIG. 4 is a method 400 of extending channel selection in accordance with some embodiments.
- Method 400 shows complimentary feature remapping occurring automatically upon detection of a radio accessory (e.g. RSM 104) having similar switch capability.
- RSM 104 a radio accessory
- Method 400 begins by detecting coupling, either wired or wireless coupling, of the RSM to the radio at 402.
- a determination is made as to whether the RSM and radio have similar switch capabilities. If the RSM and radio do not have similar switch capabilities, then regular radio switch operation takes place by rotating the radio switch position at 406 to change the radio channel to the detected position at 408.
- remapping occurs at 410 by remapping the radio switch to be a zone (or folder) selector, which is a complimentary feature of channel selection.
- zone or folder
- zone changes are detected at 414.
- the RSM switch can be rotated at 416 to change channels within that detected zone at 418.
- the embodiment of switch expansion provided by method 400 uses one of the two knobs as a zone (or folder) selector and the other knob as a channel selector with each zone having access to a different set of channels.
- radio rotary control switch 108 (Knob 1) being located at position 1 enables the RSM rotary control switch 110 (Knob 2) to select channels 1-16; radio rotary control switch 108 being located at position 2 enables the RSM rotary control switch 110 to select channels 17-32, and so on.
- FIG. 5 is a method 500 of extending channel selection in accordance with some embodiments.
- Method 500 provides automatic channel extension remapping upon detection of a radio accessory (e.g. RSM) with similar switch capability.
- RSM radio accessory
- Method 500 begins by detecting coupling, either wired or wireless coupling, of the RSM (e.g. RSM 104) to the radio (e.g. radio 102) at 502.
- RSM radio accessory
- Method 500 begins by detecting coupling, either wired or wireless coupling, of the RSM (e.g. RSM 104) to the radio (e.g. radio 102) at 502.
- a determination is made as to whether the RSM and radio have similar switch capabilities. If the RSM and radio do not have similar switch capabilities, then regular RSM switch operation takes place by rotating the RSM switch position at 506 to change the channel to the detected RSM switch position at 508.
- remapping occurs at 510 by remapping the RSM channel switch to be an extended channel selector for the radio.
- the radio switch thus provides a first set of predetermined channels, and the RSM switch provides a second set of predetermined channels. Rotation of the radio switch at 512 allows for the channel to be changed at 514 to a detected radio switch position. Rotating the RSM switch position at 516 allows for the channel to be changed through the extended switch position at 518.
- the channel can be changed using the predetermined channels of the radio switch or the extended channel selection provided by the RSM switch.
- the embodiment of switch expansion provided by method 500 uses both knobs as channel selectors, the first knob providing a first set of channels and the second knob being remapped to provide a second set of channels which are extended channels. Accordingly, for radio knobs having 16 switch positions, the method 500 can advantageously provide access to 32 channels via the two knobs. No hardware modifications are required for this expanded switch selectivity.
- embodiments of the disclosure provide the benefit of extending switch selectivity to an existing portable radio being used in conjunction with a radio accessory, such as a speaker microphone accessory, with no hardware changes required on either device.
- the embodiments have provided for a simpler approach to extending radio features, particularly channel selection.
- the expanded channel selection can occur automatically by coupling the devices and rotation of the switch in a single action.
- the disclosed methods expand existing channel capability without requiring shifting or holding buttons for an extended period of time. Tactile feedback and space constraints have been maintained by remapping existing hardstop rotary switches of the devices, making the radio and accessory devices highly beneficial to public safety environments, where products are often operated under severe conditions including loud noise, poor visibility, and gloved usage.
- processors such as microprocessors, digital signal processors, customized processors and field programmable gate arrays (FPGAs) and unique stored program instructions (including both software and firmware) that control the one or more processors to implement, in conjunction with certain non-processor circuits, some, most, or all of the functions of the method and/or apparatus described herein.
- processors or “processing devices”
- FPGAs field programmable gate arrays
- unique stored program instructions including both software and firmware
- some or all functions could be implemented by a state machine that has no stored program instructions, or in one or more application specific integrated circuits (ASICs), in which each function or some combinations of certain of the functions are implemented as custom logic.
- ASICs application specific integrated circuits
- an embodiment can be implemented as a computer-readable storage medium having computer readable code stored thereon for programming a computer (e.g., comprising a processor) to perform a method as described and claimed herein.
- Examples of such computer-readable storage mediums include, but are not limited to, a hard disk, a CD-ROM, an optical storage device, a magnetic storage device, a ROM (Read Only Memory), a PROM (Programmable Read Only Memory), an EPROM (Erasable Programmable Read Only Memory), an EEPROM (Electrically Erasable Programmable Read Only Memory) and a Flash memory.
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- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Transceivers (AREA)
- Mobile Radio Communication Systems (AREA)
- Telephone Set Structure (AREA)
Abstract
Description
Claims
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| AU2016219277A AU2016219277B2 (en) | 2015-02-13 | 2016-02-11 | Apparatus and method for extending feature selection in a communication system |
| GB1712239.1A GB2549234A (en) | 2015-02-13 | 2016-02-11 | Apparatus and method for extending feature selection in a communication system |
| DE112016000752.3T DE112016000752T5 (en) | 2015-02-13 | 2016-02-11 | DEVICE AND METHOD FOR EXPANDING A CHARACTER SELECTION IN A COMMUNICATION SYSTEM |
| CA2975621A CA2975621C (en) | 2015-02-13 | 2016-02-11 | Apparatus and method for extending feature selection in a communication system |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US14/622,077 US9614572B2 (en) | 2015-02-13 | 2015-02-13 | Apparatus and method for extending feature selection in a communication system |
| US14/622,077 | 2015-02-13 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2016130735A1 true WO2016130735A1 (en) | 2016-08-18 |
Family
ID=55487100
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US2016/017435 Ceased WO2016130735A1 (en) | 2015-02-13 | 2016-02-11 | Apparatus and method for extending feature selection in a communication system |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US9614572B2 (en) |
| AU (1) | AU2016219277B2 (en) |
| CA (1) | CA2975621C (en) |
| DE (1) | DE112016000752T5 (en) |
| GB (1) | GB2549234A (en) |
| WO (1) | WO2016130735A1 (en) |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US11392536B2 (en) | 2019-10-23 | 2022-07-19 | Motorola Solutions, Inc. | Method and apparatus for managing feature based user input routing in a multi-processor architecture |
| US10840961B1 (en) | 2019-10-23 | 2020-11-17 | Motorola Solutions, Inc. | Method and apparatus for managing feature based user input routing in a multi-processor architecture using single user interface control |
| JP1663524S (en) * | 2019-12-25 | 2020-07-13 |
Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4147904A (en) * | 1978-03-06 | 1979-04-03 | Telex Communications, Inc. | Microphone with channel selector and push-to-talk button interlock |
| US4178547A (en) * | 1976-09-22 | 1979-12-11 | Santana Miguel E | Remote microphone with approved channel selector |
| GB1584623A (en) * | 1976-08-02 | 1981-02-18 | Motorola Inc | Multichannel communication device with manual and automatic scanning electronic channel selection |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4110690A (en) | 1976-01-16 | 1978-08-29 | Cybernet Electronic Corporation | Channel selecting device |
| US5784688A (en) * | 1996-03-04 | 1998-07-21 | Motorola, Inc. | Portable radio communication device with a rotary control knob assembly |
| US7154480B2 (en) | 2002-04-30 | 2006-12-26 | Kazuho Iesaka | Computer keyboard and cursor control system with keyboard map switching system |
| US7424312B2 (en) * | 2003-09-23 | 2008-09-09 | Motorola, Inc. | Interface system for an accessory and a communication device |
| US20130014167A1 (en) | 2008-10-17 | 2013-01-10 | Kazuhiro Sakashita | Broadcast receiving device and program selecting method |
| EP2528358A1 (en) | 2011-05-23 | 2012-11-28 | Oticon A/S | A method of identifying a wireless communication channel in a sound system |
-
2015
- 2015-02-13 US US14/622,077 patent/US9614572B2/en active Active
-
2016
- 2016-02-11 DE DE112016000752.3T patent/DE112016000752T5/en active Pending
- 2016-02-11 WO PCT/US2016/017435 patent/WO2016130735A1/en not_active Ceased
- 2016-02-11 CA CA2975621A patent/CA2975621C/en active Active
- 2016-02-11 GB GB1712239.1A patent/GB2549234A/en not_active Withdrawn
- 2016-02-11 AU AU2016219277A patent/AU2016219277B2/en active Active
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB1584623A (en) * | 1976-08-02 | 1981-02-18 | Motorola Inc | Multichannel communication device with manual and automatic scanning electronic channel selection |
| US4178547A (en) * | 1976-09-22 | 1979-12-11 | Santana Miguel E | Remote microphone with approved channel selector |
| US4147904A (en) * | 1978-03-06 | 1979-04-03 | Telex Communications, Inc. | Microphone with channel selector and push-to-talk button interlock |
Also Published As
| Publication number | Publication date |
|---|---|
| CA2975621C (en) | 2019-09-10 |
| GB2549234A (en) | 2017-10-11 |
| CA2975621A1 (en) | 2016-08-18 |
| AU2016219277B2 (en) | 2018-08-16 |
| US9614572B2 (en) | 2017-04-04 |
| DE112016000752T5 (en) | 2018-01-11 |
| US20160241298A1 (en) | 2016-08-18 |
| AU2016219277A1 (en) | 2017-08-24 |
| GB201712239D0 (en) | 2017-09-13 |
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