首页 / 国际专利分类库 / 物理 / 乐器;声学 / 电声乐器 / 特别适用于电子音乐的工具或乐器的输入/输出接口 / .用于电子乐器的用户输入界面 / ..服装传感器,即具有触发面或连接角度传感器的音乐控制装置,可以作为服装穿戴在身上,如手镯,智能衣服(重要参数传感入G10H2220/371;通用的可穿戴接口入G06F3)
序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 效果器 CN201480068647.6 2014-12-16 CN106062865A 2016-10-26 R.A.阿尔斯塔德
发明提供一种用于操作效果器的系统。本发明的目的是通过一种可由吉他弹奏者操作的遥控装置实现的。所述系统包括由吉他弹奏者使用的遥控装置以及至少一个效果器,其中,所述的至少一个效果器可从所述遥控装置控制。
2 使用接触开关的计算机输入装置 CN200680013804.9 2006-04-17 CN101164100A 2008-04-16 李汶基
发明提供了一种使用接触开关的计算机输入装置。电子信号在接触的导电垫之间流动。主要部分中的微控制器检测该电子信号并识别哪些垫相互接触以产生输入信号。垫部分可以进一步包括加速传感器,并且在这种情况下,该微控制器通过分析加速传感器的输出来识别垫的接触冲击强度,以产生输入信号。可以通过主要部分中的通信部分将对应于接触垫及由微控制器产生的接触冲击强度的输入信号传输到PC等外部系统。
3 楽器機能付携帯通信装置 JP2015134544 2015-07-03 JP6212076B2 2017-10-11 ロトーロ デ モラエス,アウレーリオ
4 楽器機能付携帯通信装置 JP2015134544 2015-07-03 JP2015233291A 2015-12-24 ロトーロ デ モラエス,アウレーリオ
【課題】楽器(パーカッション、キーボード、弦楽器、おより吹奏楽器)機能を有し、調整可能弾性ベルトを介して、ユーザーの体にストラップで留めることができる、携帯通信装置が説明される。
【解決手段】楽器インタフェース(パーカッション、キーボード、弦楽器、および吹奏楽器)を有し、好ましくは、調整可能弾性ベルトを介してユーザーの体にストラップで留めることができる、リモートセンサ4から、コマンドを受信することもできる。サウンドシステム6またはオーディオ/ビデオ装置は、アダプタ5を介して、携帯通信装置1から、オーディオおよび/またはビデオを受信できる。この装置の使用は、ユーザーを満足させ、楽しませ、リラックスさせ、ユーザーの精神的および肉体的健康の恩恵をもたらす作業療法として使用されることを目的としている。この装置の技術区分は、「電子機器」である。
【選択図】図1
5 Apparatus for providing a haptic sensation, systems, and methods JP2011267054 2011-12-06 JP5449301B2 2014-03-19 マーク アール トレンブレイ; マーク エイチ イム
A man-machine interface which provides tactile feedback to various sensing body parts is disclosed. The device employs one or more vibrotactile units, where each unit comprises a mass and a mass-moving actuator. As the mass is accelerated by the mass-moving actuator, the entire vibrotactile unit vibrates. Thus, the vibrotactile unit transmits a vibratory stimulus to the sensing body part to which it is affixed. The vibrotactile unit may be used in conjunction with a spatial placement sensing device which measures the spatial placement of a measured body part. A computing device uses the spatial placement of the measured body part to determine the desired vibratory stimulus to be provided by the vibrotactile unit. In this manner, the computing device may control the level of vibratory feedback perceived by the corresponding sensing body part in response to the motion of the measured body part. The sensing body part and the measured body part may be separate or the same body part.
6 Mobile communication device with music instrumental function JP2013151005 2013-07-19 JP2013257577A 2013-12-26 AURELIO ROTOLO DE MORAES
PROBLEM TO BE SOLVED: To provide a mobile communication device comprising musical instrument (a percussion, keyboards, a stringed instrument, and a wind instrument) functions, which can be kept to a body of a user with a strap through an adjustable elastic belt.SOLUTION: A mobile communication device 1 comprises musical instrument interface (a percussion, keyboards, a stringed instrument, and a wind instrument), preferably, can be kept to a body of a user with a strap through an adjustable elastic belt, and also can receive a command from a remote sensor 4. A sound system 6 or an audio/video device can receive audio and/or video from the mobile communication device 1 through an adapter 5. Use of the device is intended to be used as an occupational therapy, which makes a user satisfy, entertain and relax, and brings mental and physical health benefits of the user. Technical classification of the device is "electronics".
7 Apparatus for providing a haptic sensation, systems, and methods JP2009187992 2009-08-14 JP4782859B2 2011-09-28 マーク エイチ イム; マーク ア−ル トレンブレイ
A man-machine interface which provides tactile feedback to various sensing body parts is disclosed. The device employs one or more vibrotactile units, where each unit comprises a mass and a mass-moving actuator. As the mass is accelerated by the mass-moving actuator, the entire vibrotactile unit vibrates. Thus, the vibrotactile unit transmits a vibratory stimulus to the sensing body part to which it is affixed. The vibrotactile unit may be used in conjunction with a spatial placement sensing device which measures the spatial placement of a measured body part. A computing device uses the spatial placement of the measured body part to determine the desired vibratory stimulus to be provided by the vibrotactile unit. In this manner, the computing device may control the level of vibratory feedback perceived by the corresponding sensing body part in response to the motion of the measured body part. The sensing body part and the measured body part may be separate or the same body part.
8 Performance processing equipment JP2002191105 2002-06-28 JP4144269B2 2008-09-03 詠子 小林; 善樹 西谷
9 Tactile feedback man-machine interface device JP2007333078 2007-12-25 JP2008176779A 2008-07-31 TREMBLAY MARC R; YIM MARK H
<P>PROBLEM TO BE SOLVED: To present a man-machine interface providing tactile feedback to various sensing body parts. <P>SOLUTION: The device employs one or more vibrotactile units (1801-1805), where each unit comprises a mass (201) and a mass-moving actuator (200). As the mass is accelerated by the mass-moving actuator, the entire vibrotactile unit vibrates. Thus, the vibrotactile unit transmits a vibratory stimulus to the sensing body part to which it is affixed. The vibrotactile unit may be used in conjunction with a spatial placement sensing device which measures the spatial placement of a measured body part (1900). A computing device(1904) uses the spatial placement of the measured body part to determine the desired vibratory stimulus to be provided by the vibrotactile unit. <P>COPYRIGHT: (C)2008,JPO&INPIT
10 Electronic musical instrument JP23456292 1992-09-02 JP3367116B2 2003-01-14 徹夫 岡本; 直太 片田
11 Musical sound control system and musical sound control device JP2001145336 2001-05-15 JP2002341870A 2002-11-29 NISHITANI YOSHIKI; USA SATOSHI; KOBAYASHI EIKO; MIKI AKIRA
PROBLEM TO BE SOLVED: To control a musical sound by reflecting only an operation or a body state suitable for musical sound control when controlling the musical sound reflecting the operation or the body states of a plurality of regions of a plurality of users or a certain user. SOLUTION: When a plurality of operators carry and operate an operation detection terminal 5-1 to an operation detection terminal 5-n, respectively, operation detection results U1 to Un corresponding to operations are supplied to an information extraction and analysis part 23 through the radio receiving part 22 of a musical sound generating device 4 from an operation sensor MS mounted in each operation detection terminal. The information extraction and analysis part 23 carries out predetermined analysis processing to these operation detection results U1 to Un, extracts only an analysis result which coincides with conditions set in advance from these detection results, and outputs the analysis result to a performance parameter determining part 24. In the performance parameter determining part 24, a performance parameter is determined according to the analysis result extracted by the information extraction analysis part 23, and a musical sound signal which a musical sound generating part 25 generates is controlled by the performance parameter. COPYRIGHT: (C)2003,JPO
12 Musical tone control apparatus JP12149188 1988-05-18 JPH0721711B2 1995-03-08 真雄 坂間; 秀雄 鈴木
13 Musical sound controller JP12149188 1988-05-18 JPH01291291A 1989-11-22 SUZUKI HIDEO; SAKAMA MASAO
PURPOSE: To accurately perform even high-level play which is high in play speed at operation timing matching with the feeling of a player by deciding the increase/decrease tendency of the bending angles of joints according to angle information. CONSTITUTION: When an operation means 30H is operated, the increase/decrease tendency of the bending angles of the joints is decided according to current angle information held by 1st holding means 11R and 11L and delay angle information which is a specific time before the current point and held by 2nd holding means 9R and 9L. The future bending angles of the joints are predicted in consideration of the decision result, and musical sound control is performed according to the predicted angles. Consequently, even if the operation means 30H is operated before the bending angles of joints reach an angle area for specifying the sound pitch of next sounding, the desired sound pitch is obtained. Consequently, even accurate fast-speed and high-level play is enabled at operation timing matching with the feeling of the player. COPYRIGHT: (C)1989,JPO&Japio
14 웨어러블 오디오 믹싱 KR1020177012843 2015-11-20 KR1020170094138A 2017-08-17 앤더슨,글렌제이.
사운드들을믹싱하기위한시스템들및 방법들의예들이일반적으로본원에설명된다. 방법은복수의착용된디바이스들의식별자를결정하는단계를포함할수 있고, 복수의착용된디바이스들각각은사운드에할당된다. 방법은또한믹싱된사운드를생성하기위해복수의착용된디바이스들각각의개별적인사운드들을믹싱하는단계를포함할수 있다. 방법은믹싱된사운드를재생하는단계를포함할수 있다.
15 음향 제공 방법 및 이를 수행하는 전자 장치 KR1020150113726 2015-08-12 KR1020170019651A 2017-02-22 서은정; 지세진; 홍동근; 조태민; 박인수; 박혜인; 이두열; 이보라; 이은영; 이청재
일실시예에따른전자장치는, 디스플레이, 적어도하나의음원을저장하는메모리, 외부장치와무선통신을설정하는통신회로, 및상기디스플레이, 상기메모리, 및상기통신회로와전기적으로연결된프로세서를포함할수 있다. 상기메모리는, 실행시에, 상기프로세서가, 상기적어도하나의음원을로드하고, 상기외부장치로부터상기통신회로를통하여사용자의제스처에관련된데이터를수신하고, 상기제스처에관련된데이터의적어도일부에기초하여선택된음향효과또는상기음향효과의변화를상기음원에적용하고, 상기음향효과또는상기음향효과의변화가적용된음원에기초한음향을출력또는저장하도록하는인스트럭션들을저장할수 있다. 이외에도명세서를통해파악되는다양한실시예가가능하다.
16 접촉 스위치를 이용한 컴퓨터용 입력 장치 KR1020060032603 2006-04-11 KR1020060113397A 2006-11-02 이문기
A computer input device using a touch switch is provided to offer no restriction for movement, attract no sight, and offer an inexpensive input device by easily putting on a user body when a user inputs data to a computer. A pad portion includes multiple conductive pads not touched with each other and arranged at intervals. A main board(M) includes a microcontroller generating an input signal allocated to a pair of recognized conductive pads by detecting touch of the conductive pads and recognizing the pair of the touched pads. The main body includes a communicator transmitting the input signal generated from the microcontroller to an external device. The pad portion includes a right hand glove portion(Rg), a left hand glove portion(Lg), and more than two portions among three portions of a non-glove portion.
17 악기 기능을 갖는 이동 통신 장치 KR1020137010416 2006-02-01 KR101403806B1 2014-06-27 로토로모라에스,아우렐리우
본 발명은 조정 가능한 탄성 벨트(151)를 통해 사용자의 신체에 고정될 수 있는, 악기(타악기, 건반악기, 현악기, 또는 관악기) 기능을 갖는 이동 통신 장치(1, 20, 50, 111, 150, 200, 220, 335)에 관한 것이다. 또한, 악기 인터페이스(타악기, 건반악기, 현악기, 또는 관악기)를 가지며 조정 가능한 탄성 벨트(151)에 의해 사용자의 신체에 고정되는 원격 센서(4, 70, 75, 160, 210, 257, 392, 412)로부터 커맨드를 수신할 수 있다. 음향 시스템(6) 또는 오디오/비디오 장비는 어댑터(5, 56, 63, 68)를 통해 이동 통신 장치(1, 20, 55, 111, 150, 200, 220, 335)로부터 오디오 및/또는 비디오를 수신할 수 있다. 이 장치를 사용하는 것은 사용자를 만족시키고, 즐겁게 하고, 편하게 하는 작업 치료를 위한 것으로, 이에 따라 사용자의 정신적 물리적 건강을 이롭게 할 것이다. 기술적 분류로는 전자기기에 속한다.
18 전신 햅틱 슈트 KR1020090093878 2009-10-01 KR1020110036295A 2011-04-07 홍경희; 이예진; 최지영; 김소영; 김시조
PURPOSE: A full-body haptic suit is provided to transfer skin stimulus including pressure sensation and cold and warm feeling to the skin through each pattern. CONSTITUTION: A full-body haptic suit comprises a plurality of circular patterns(200) manufactured according to the surface property such as extension and compression of the fabric of the suit, three dimensional shape motion of the human body, and characteristics of the human body. The skin stimulus is transferred to the human body through each pattern.
19 개선된 무선제어장치 KR1020047003417 2002-09-06 KR1020040047810A 2004-06-05 호워드로버트비.
무선 제어 장치는 오퍼레이터의 허리에 걸쳐진 작고 가벼운 하우징과 제어 장치를 포함한다. 몇가지 광학 에미터, 바람직하게는 발광 다이오드가 적외선 범위 내에서 동작을 하고, 몇가지 광학 디텍터가 하우징에 제공된다. 적어도 한쌍의 x축 에미터-디텍터가 x방향의 포인팅 모션 또는 제스처를 검출하고, 적어도 한쌍의 y축 에미터-디텍터가 y방향의 포인팅 모션 또는 제스처를 검출한다. 이 모션은 그리고나서 제어장치에 반응을 일으킬 수 있다. 예를들어, 허리부위에 있는 오퍼레이터의 손의 각도는 컴퓨터 스크린 상의 커서의 이동을 유발하는 것으로 해석될 수 있다. 또한, 장치는 모션 센서, 환경 상태 센서 또는 음성 인식 센서를 포함할 수 있으며, 제스처 인식과 이미지 스캐닝 응용에도 적용될 수 있다.
20 SYSTEM AND METHOD FOR MONITORING BIOMETRIC SIGNALS EP15809222 2015-05-01 EP3158569A4 2018-05-02 BERG JAMES; BUTT HAMID; JAYALATH DHANANJA
A system for monitoring biometric signals of a user comprising: a garment configured to be worn by the user and comprising a mounting module having an array of connection regions; a set of biometric sensors coupled to the garment and configured to communicate with the array of connection regions to receive and transmit biometric signals indicative of muscle activity of the user; and a portable control module configured to couple to the garment in a first configuration and to decouple from the garment in a second configuration and comprising: a housing comprising an array of openings; a set of contacts, each including a first region that seals at least one of the array of openings and couples to at least one of the array of connection regions in the first configuration, and an electronics subsystem coupled to the housing and in communication with a second region of each contact.
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