日本黄色一级经典视频|伊人久久精品视频|亚洲黄色色周成人视频九九九|av免费网址黄色小短片|黄色Av无码亚洲成年人|亚洲1区2区3区无码|真人黄片免费观看|无码一级小说欧美日免费三级|日韩中文字幕91在线看|精品久久久无码中文字幕边打电话

當前位置:首頁 > 電源 > 數(shù)字電源
[導讀]TI公司的手提超聲系統(tǒng)DSP解決方案重量大約10磅或不到10磅,可以在沒有電池的情況下工作. 手提超聲系統(tǒng)廣泛應(yīng)用于ICU病房,急診室, 麻醉和戰(zhàn)場. 手提超聲系統(tǒng)采用DSP和SoC來處理電傳感器(如照相機,變換器,麥克風等)所產(chǎn)

TI公司的手提超聲系統(tǒng)DSP解決方案重量大約10磅或不到10磅,可以在沒有電池的情況下工作. 手提超聲系統(tǒng)廣泛應(yīng)用于ICU病房,急診室, 麻醉和戰(zhàn)場. 手提超聲系統(tǒng)采用DSP和SoC來處理電傳感器(如照相機,變換器,麥克風等)所產(chǎn)品生的數(shù)字化電信號,一個診斷超聲圖像系統(tǒng)產(chǎn)生和發(fā)送超聲波,捕捉反射波并轉(zhuǎn)換成可視的圖像.接收到的反射波的信號處理包內(nèi)插,抽取,數(shù)據(jù)濾波和重建.可編程的DSP和SoC能實時實現(xiàn)這些復雜的數(shù)學運算.本文介紹了超聲波系統(tǒng)方框圖, 超聲波系統(tǒng)的前端處理,中間處理和后端處理,以及由DM648 + DM6446組成的系統(tǒng)框圖和由C6455 + OMAP3530組成的系統(tǒng)方框圖.此外還介紹了相關(guān)處理器和應(yīng)用處理的主要特性和方框圖.

DSPs and SoCs are specially designed single-chip digital microcomputers that process digitized electrical signals generated by electronic sensors (e.g., cameras, transducers, microphones, etc.) that will help to revolutionize the area of diagnostic ultrasound imaging. A diagnostic ultrasound imaging system generates and transmits acoustic waves and captures reflections that are then transformed into visual images. The signal processing on the received acoustic waves include interpolation, decimation, data filtering and reconstruction. Programmable DSPs and SOCs, with architectures designed for implementing complex mathematical algorithms in real-time, can efficiently address all the processing needs of such a system.

TI Digital Signal Processor (DSP) for Portable Ultrasound

Portable ultrasound systems are considered to be ultrasound systems that weigh around 10 lbs or less, and can run on batteries. They began to appear in the market place in the late 90s and have seen a remarkable growth in sales in the recent years. This growth has been a direct result of their applicability in areas such as ICUs, emergency medicine, regional anesthesia and battlefield.

DSPs and SoCs are specially designed single-chip digital microcomputers that process digitized electrical signals generated by electronic sensors (e.g., cameras, transducers, microphones, etc.) that will help to revolutionize the area of diagnostic ultrasound imaging. A diagnostic ultrasound imaging system generates and transmits acoustic waves and captures reflections that are then transformed into visual images. The signal processing on the received acoustic waves include interpolation, decimation, data filtering and reconstruction. Programmable DSPs and SOCs, with architectures designed for implementing complex mathematical algorithms in real-time, can efficiently address all the processing needs of such a system.

The following information introduces the concept of a complete portable ultrasound system solution based on Texas Instruments (TI) semiconductor components, development tools, and software solutions.

Additionally, the various concepts that outline the inherent advantages of a DSP and a SoC in a portable ultrasound system - efficient signal processing, lower power consumption and lower cost, all leading to better ultrasound diagnostic imaging - will also be covered.

The key driver requirements for a portable ultrasound system are the same with any portable device: size, weight, battery life, cost and performance. OEMs are making trade-offs in these areas, for example, providing just a basic imaging system with less features but with more battery life, (e.g., 8-channel black and white systems vs. more sophisticated 128 channel color systems that would need to be re-charged more often). The size of the portable system varies from laptop sized systems to handhelds. These size limitations are driving the need for more system integration on the supporting SoCs and more automatic image enhancement features due to fewer fine controls.

The requirements for portable systems is also being driven from geographies where the infrastructure is more rural and access to the larger more sophisticated imaging systems is limited, and where clinicians must now take the system to the patient. This makes cost a critical factor as well.

圖1.超聲波系統(tǒng)方框圖

圖2.超聲波系統(tǒng)前端處理框圖

圖3.超聲波系統(tǒng)中間處理框圖

圖4.超聲波系統(tǒng)后端處理框圖

系統(tǒng)框圖案例:

1.

System block diagram highlighting the use of TMS320DM648 and TMS320DM6446 for carrying out mid-end, back-end, and system controller functions.

圖5.DM648 + DM6446系統(tǒng)框圖}[!--empirenews.page--]

TMS320DM648性能介紹

TMS320DM648 – Well suited for medical imaging applications needing high-performance

processing, TMS320C64x+ DSPs – which include the TMS320DM648 – are the high-performance fixed-point DSPs in the TMS320C6000? DSP platform. DM647/DM648 devices are based on TI’s third-generation high-performance, advanced VelociTI? very long instruction word (VLIW) architecture. With performance of up to 7,200 MIPS at a clock rate of 900 MHz, the C64x+? DSP core offers a high-performance solution to a medical imaging processing challenge.

圖6.TMS320DM648方框圖

TMS320DM644x性能介紹

TMS320DM644x – Ideal for portable imaging applications, TMS320DM644x digital media processors are highly integrated SoCs that combine the power of an ARM926 processor and a TMS320C64x+? DSP core. The TMS320DM644x enables medical equipment OEMs and ODMs to quickly bring to market products featuring robust operating systems support, rich user interfaces, high processing performance and long battery life through the maximum flexibility of a fully integrated mixed-processor solution.

圖7.TMS320DM644x方框圖

2.

圖8.C6455 + OMAP3530系統(tǒng)方框圖

TMS320C6455性能介紹

A TMS320C6455 DSP is used here, with a wider EMIFA bus, which allows higher input data rates. Larger L2 memory and higher operating clock frequency are the major contributors to increased compute capability. In this example, the OMAP3530 plays the dual role of system controller and back-end processor.

The C6455 device is based on the third-generation high-performance, advanced VelociTI? very-long-instruction-word (VLIW) architecture developed by Texas Instruments (TI), making these DSPs an excellent choice for applications including video and telecom infrastructure, imaging/medical, and wireless infrastructure (WI). The C64x+? devices are upward code-compatible from previous devices that are part of the C6000? DSP platform.

Based on 90-nm process technology and with performance of up to 9600 million instructions per second (MIPS) [or 9600 16-bit MMACs per cycle] at a 1.2-GHz clock rate, the C6455 device offers cost-effective solutions to high-performance DSP programming challenges. The C6455 DSP possesses the operational flexibility of high-speed controllers and the numerical capability of array processors.

圖9.TMS320C6455方框圖

OMAP3515 和 OMAP3530性能介紹

The OMAP3515 and OMAP3530 processors are based on the enhanced OMAP?architecture, which features the superscalar ARM Cortex?-A8 processor, a 2-D/3-D graphics engine, high-performance DSP core and video accelerators to provide the best combination of general-purpose, graphics and video processing in a single chip. Combined with state-of-the-art power management techniques, these devices are well-suited for high-performance portable and handheld imaging applications such as portable ultrasound systems.

圖10. OMAP35x方框圖

Key Benchmarks

詳情請見:

http://focus.ti.com/lit/an/sprab18a/sprab18a.pdf

http://focus.ti.com/lit/wp/sprab12/sprab12.pdf

更多醫(yī)療電子信息請關(guān)注:21ic醫(yī)療電子頻道

本站聲明: 本文章由作者或相關(guān)機構(gòu)授權(quán)發(fā)布,目的在于傳遞更多信息,并不代表本站贊同其觀點,本站亦不保證或承諾內(nèi)容真實性等。需要轉(zhuǎn)載請聯(lián)系該專欄作者,如若文章內(nèi)容侵犯您的權(quán)益,請及時聯(lián)系本站刪除。
換一批
延伸閱讀

隨著在線會議、直播和游戲語音交流的普及,高質(zhì)量的音頻輸入設(shè)備變得越來越重要。為此,邊緣AI和智能音頻專家XMOS攜手其全球首家增值分銷商飛騰云科技,利用其集邊緣AI、DSP、MCU和靈活I(lǐng)/O于一顆芯片的xcore處理器...

關(guān)鍵字: AI DSP MCU

多DSP集群的實時信號處理系統(tǒng),通信拓撲的優(yōu)化直接決定任務(wù)調(diào)度效率與系統(tǒng)吞吐量。RapidIO與SRIO作為嵌入式領(lǐng)域的主流互連協(xié)議,其帶寬利用率差異與QoS配置策略對集群性能的影響尤為顯著。以無線基站、雷達陣列等典型應(yīng)...

關(guān)鍵字: DSP 通信拓撲優(yōu)化

隨著5G網(wǎng)絡(luò)普及與物聯(lián)網(wǎng)設(shè)備爆發(fā)式增長,邊緣計算正從概念驗證走向規(guī)?;渴?。據(jù)IDC預(yù)測,2025年全球邊緣數(shù)據(jù)量將占總體數(shù)據(jù)量的50%,這對邊緣節(jié)點的實時處理能力提出嚴苛要求。在此背景下,AI加速器的DSP化趨勢與可重...

關(guān)鍵字: AI加速器 DSP

在工業(yè)控制領(lǐng)域,數(shù)字信號處理器(DSP)的性能直接決定了系統(tǒng)的實時控制能力和可靠性。德州儀器(TI)的C2000系列芯片憑借其卓越的采樣、控制和功率管理能力,長期以來在全球工業(yè)控制市場占據(jù)絕對領(lǐng)導地位,廣泛應(yīng)用于能源、電...

關(guān)鍵字: TI C2000 DSP 格見半導體 芯來 RISC-V 工控

2025年7月16日 – 專注于引入新品的全球電子元器件和工業(yè)自動化產(chǎn)品授權(quán)代理商貿(mào)澤電子 (Mouser Electronics) 持續(xù)供貨Texas Instruments (TI) 的新產(chǎn)品和解決方案。作為一家授權(quán)...

關(guān)鍵字: 線性穩(wěn)壓器 柵極驅(qū)動器 DSP

在當今數(shù)字化浪潮的推動下,數(shù)據(jù)流量呈爆炸式增長,數(shù)據(jù)中心、5G通信網(wǎng)絡(luò)以及云計算等領(lǐng)域?qū)Ω咚俟馔ㄐ诺男枨笥l(fā)迫切。800G光模塊作為高速光通信的關(guān)鍵組件,其性能直接影響著整個通信系統(tǒng)的傳輸效率和可靠性。數(shù)字信號處理(DS...

關(guān)鍵字: 800G DSP PAM4均衡算法

以氫燃料電池空壓機為研究對象 ,開發(fā)超高速永磁同步電機控制器 ,采用傳統(tǒng)的IGBT主功率器件 ,且為兩電平主回 路結(jié)構(gòu)形式 ,通過改進的V/F控制算法 ,完成了控制器的設(shè)計。搭建了試驗平臺進行測試 ,結(jié)果表明 ,控制器能...

關(guān)鍵字: 超高速永磁同步電機 V/F控制 DSP

醫(yī)療設(shè)備智能化進程,數(shù)字信號處理器(DSP)作為核心計算單元,承擔著實時處理生物電信號、醫(yī)學影像等敏感數(shù)據(jù)的重任。然而,隨著醫(yī)療設(shè)備與網(wǎng)絡(luò)互聯(lián)的深化,數(shù)據(jù)泄露風險顯著增加。美國《健康保險流通與責任法案》(HIPAA)明確...

關(guān)鍵字: 醫(yī)療設(shè)備 DSP

數(shù)字信號處理器(DSP)作為實時信號處理的核心器件,其架構(gòu)設(shè)計直接決定了運算效率與功耗表現(xiàn)。自20世紀70年代DSP理論誕生以來,其硬件架構(gòu)經(jīng)歷了從馮·諾依曼結(jié)構(gòu)到哈佛結(jié)構(gòu)的演進,這一過程體現(xiàn)了對實時性、并行性與存儲帶寬...

關(guān)鍵字: DSP 馮·諾依曼

隨著嵌入式系統(tǒng)對實時性、多任務(wù)處理能力的需求日益增長,實時操作系統(tǒng)(RTOS)在數(shù)字信號處理器(DSP)中的移植與性能優(yōu)化成為關(guān)鍵技術(shù)課題。DSP以其高效的數(shù)值計算能力和并行處理特性,廣泛應(yīng)用于通信、圖像處理、工業(yè)控制等...

關(guān)鍵字: RTOS DSP
關(guān)閉