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RADIO-frequency

  • PW2163D.pdf規格書下載

    The PW2163D is a high frequency, synchronous, rectified, step-down, switch-mode converter withinternal powerMOSFETs. It offers a very compact solution to provide a 3A continuous current over awide input supply range,with excellent load and line regulation.The PW2163D requires a minimal number of readily available, external components and is availablein a spacesaving SOT23-6 package

    標簽: pw2163d

    上傳時間: 2022-02-11

    上傳用戶:

  • PW2163-2.0.pdf規格書下載

    The PW2163 is a high efficiency 500 kHz synchronous step-down DC-DC converter capable ofdelivering 3A current. The PW2163 operates over a wide input voltage range from 4.5V to 18V andintegrates main switch and synchronous switch with very low RDS(ON) to minimize the conductionloss. Low output voltage ripple and small external inductor and capacitor sizes are achieved with 500kHz switching frequency. It adopts the instant PWM architecture to achieve fast transient responsesfor high step down applications

    標簽: pw2163

    上傳時間: 2022-02-11

    上傳用戶:

  • PW2053-2.0.pdf規格書

    The PW2053 is a high-efficiency monolithic synchronous buck regulator using a constantfrequency, current mode architecture. The device is available in an adjustable version. Supply currentwith no load is 40uA and drops to <1uA in shutdown. The 2.5V to 5.5V input voltage range makesthe PW2053 ideally suited for single Li-Ion battery powered applications. 100% duty cycle provideslow dropout operation, extending battery life in portable systems. PWM/PFM mode operationprovides very low output ripple voltage for noise sensitive applications. Switching frequency isinternally set at 1.2MHz, allowing the use of small surface mount inductors and capacitors. Lowoutput voltages are easily supported with the 0.6V feedback reference voltage

    標簽: pw2053

    上傳時間: 2022-02-14

    上傳用戶:jason_vip1

  • 5G通信系統中massive-MIMO-FBMC技術的結合概述

    5G通信系統中massive-MIMO-FBMC技術的結合概述摘要為了應對第五代移動通信(5G)中更高數據率和更低時延的需求,大規模MIMO (massive multiple-input multiple-output)技術已經被提出并被廣泛研究。大規模 MIMO技術能大幅度地提升多用戶網絡的容量。而在5G中的帶寬研究方面,特別 是針對碎片頻譜和頻譜靈活性問題,現有的正交頻分多址(Orthogonal Frequency Division Multiplexing, OFDM)技術不可能應對未來的挑戰,新的波形方案需要 被設計出來。基于此,FBMC(filter bank multicarrier)技術由于具有比OFDM低 得多的帶外頻譜泄露而被受到重視,并已被標準推進組IMT-2020列為5G物理層 的主要備選方案之一。 本文首先回顧了5G中波形設計方案(主要是FBMC調制)和大規模多天線系 統(即massive MIMO)的現有工作和主要挑戰。然后,簡要介紹了基于Massive MIMO的FBMC系統中的自均衡性質,該性質可以用于減少系統所需的子載波數 目。同時,FBMC中的盲信道跟蹤性質可以用于消除massive MIMO系統中的導頻 污染問題。盡管如此,如何將FBMC技術應用于massive MIMO系統中的誤碼率、 計算復雜度、線性需求等方面仍然不明確,未來更多的研究工作需要在massive MIMO-FBMC方面展開來。 關鍵詞:大規模MIMO;FBMC;自均衡;導頻污染;盲均衡

    標簽: 5G 通信系統

    上傳時間: 2022-02-25

    上傳用戶:

  • 直流電動機測速裝置

    本系統采用電動機電樞供電回路串接采樣電阻的方式來實現對小型直流有刷電動機的轉速測量。該系統主要由二階低通濾波電路,小信號放大電路、單片機測量顯示電路、開關穩壓電源電路等組成。同時自制電機測速裝置,用高頻磁環作為載體,用線圈繞制磁環,利用電磁感應原理檢測電機運行時的漏磁,將變化的磁場信號轉化為磁環上的感應電流。用信號處理單元電路將微弱電信號轉化為脈沖信號,送由單片機檢測,從而達到準確測量電機的速度的要求。In this system, the sampling resistance of armature power supply circuit is connected in series to measure the speed of small DC brush motor. The system is mainly composed of second-order low-pass filter circuit, small signal amplifier circuit, single-chip measurement and display circuit, switching regulated power supply circuit and so on. At the same time, the self-made motor speed measuring device uses high frequency magnetic ring as the carrier, coil winding magnetic ring, and electromagnetic induction principle to detect the leakage of magnetic field during the operation of the motor, which converts the changed magnetic field signal into the induced current on the magnetic ring. The weak electric signal is transformed into pulse signal by signal processing unit circuit, which is sent to single chip computer for detection, so as to meet the requirement of accurate measurement of motor speed.

    標簽: 直流電動機

    上傳時間: 2022-03-26

    上傳用戶:

  • 基于STM32單片機設計的非接觸式電流檢測控制系統

    本系統基于STM32單片機設計的非接觸式電流檢測控制系統,通過OPA548片將所給任意信號放大,由100Ω電阻和INA128芯片進行電流電壓轉換放大后,利用STM32單片機對獲取的電壓信號以0.488μs頻率采樣,利用STM32單片機的FFT庫,獲得信號的諧波信息。測量電流信號精準,該設計可廣泛應用在以STM32單片機為核心控制器件的新型儀表中,性能精準且抗干擾能力強。This system is a non-contact current detection and control system based on STM32 single chip microcomputer. It amplifiesany signal through OPA548 chip, converts and amplifies the current and voltage by 100 Ω resistance and INA128 chip. The obtainedvoltage signal is sampled at the frequency of 0.488 μs by STM 32 single chip microcomputer, and the harmonic information of the signalis obtained by the FFT library of STM 32 single chip microcomputer. The measurement of current signal is accurate. This design can bewidely used in a new instrument with STM 32 single chip microcomputer as its core control device, with accurate performance and stronganti-interference capability.

    標簽: stm32 單片機

    上傳時間: 2022-03-27

    上傳用戶:

  • 基于MSP430單片機及FPGA的簡易數字示波器

    數字示波器功能強大,使用方便,但是價格相對昂貴。本文以Ti的MSP430F5529為主控器,以Altera公司的EP2C5T144C8 FPGA器件為邏輯控制部件設計數字示波器。模擬信號經程控放大、整形電路后形成方波信號送至FPGA測頻,根據頻率值選擇采用片上及片外高速AD分段采樣。FPGA控制片外AD采樣并將數據輸入到FIFO模塊中緩存,由單片機進行頻譜分析。測試表明:簡易示波器可以實現自動選檔、多采樣率采樣、高精度測頻及頻譜分析等功能。Digital oscilloscope is powerful and easy to use, but also expensive. The research group designed a low-cost digital oscilloscope, the chip of MSP430F5529 of TI is chosen as the main controller and the device of EP2C5T144C8 of Altera company is used as the logic control unit. Analog signal enter the programmable amplifier circuit, shaping circuit and other pre-processing circuit. The shaped rectangular wave signal is sent to FPGA for measure the frequency. According to the frequency value to select AD on-chip or off-chip high-speed AD for sampling. FPGA controls the off-chip AD sampling and buffers AD data by FIFO module. The single chip microcomputer receives the data, and do FFT for spectrum analysis. The test shows that the simple oscilloscope can realize automatic gain selection, sampling at different sampling rates, high precision frequency measurement and spectrum analysis.

    標簽: msp430 單片機 fpga 數字示波器

    上傳時間: 2022-03-27

    上傳用戶:

  • 接收機的設計

    本論文是依托“985”工程超寬帶全中頻比幅比相測向系統研制項目,在原有經典雷達接收機系統設計方案的基礎上,結合測向系統的工作原理和測向要求,采用四通道一次變頻超外差設計方案,基于MC和MMC器件分模塊設計了一個雷達接收機,并對該接收機的頻率源進行了研制論文首先針對該接收機系統的指標要求,進行了系統的變頻分析以及鏈路的指標分配和核算,對接收機進行了系統級設計和功能模塊規劃。下變頻電路是整個接收機系統的主要組成部分。論文選用雙平衡混頻器,并對下變頻電路中各個功能模塊,包括耦合電路、低噪聲放大電路、混頻電路、中頻放大電路和中頻濾波電路以及其本振信號功分電路和測試信號功分電路進行了設計和測試。在此基礎上,還完成了下變頻電路的結構布局和電磁兼容設計。頻率源已成為雷達接收機系統的乃至整個雷達系統十分關鍵的技術。論文采用直接數字頻率合成器(DDs)和鎖相環(PLL)相結合的頻率合成方案,完成了頻率合成器,包括DDS、PLL以及其基于ARM的控制電路的設計和測試對接收機及其頻率源的測試結果表明:系統工作狀態正常,基本滿足設計要求。21世紀進入高技術兵器時代,武器裝備的自動化和智能化是其發展的主要趨勢。智能化武器中最為突出的是精確制導和無人機,其精確的探測技術是由一個建立在一定體制上的測向系統完成,因而現代電子戰對測向系統的準確性要求越來越高。在眾多的測向體制中,比幅比桕測向具有系統設備少、易實現、通道的致性好及抗干擾性高等優點,被廣泛使用于電子偵察設備。在這樣一個測向系統中,雷達接收機是一個重要的組成部分。雷達(RADAR)詞源于美國海軍在1940年第二次世界大戰中使用的一個保密代號,它是無線電探測和測距(Radio Detection and Ranging)的英文縮寫,即用無線電方法發現目標并測定它們在空間的位置,因此雷達也稱為“無線電定位”。隨著雷達技術的發展,雷達的基本任務不僅僅是從探測目標中提取諸如目標距離,角坐標(方位角和俯仰角),而且還包括測量目標的速度,以及從目標回波中獲取更多目標反射特性等方面的信息。

    標簽: 接收機

    上傳時間: 2022-03-29

    上傳用戶:slq1234567890

  • 基于數字信號處理的超聲手術刀電源控制電路設計與實現

    目的:自主研制一款超聲手術刀電源控制系統,以減少能量的消耗,維持手術刀的正常溫度。方法:對超聲換能器在諧振附近的等效電路建立模型,并設計基于數字信號處理(DSP)的超聲手術刀的硬件控制系統。結果:經對電源控制系統的電路和工作性能測試,生成的電流和電壓的有效值等參數,能夠及時調整電源的頻率,并達到預期的功能指標,使超聲手術刀工作在諧振狀態。結論:以DSP為核心設計的超聲手術刀電源控制系統,測試指標均能夠達到預期的要求,能夠使系統在諧振狀態下工作。Objective: To independently develop a power control system of ultrasonic scalpel so as to reduce the energy consumption and maintain the normal temperature of ultrasonic scalpel. Methods: In this paper, the model of equivalent circuit of ultrasonic transducer nearby syntony was built up, and the hardware control system of ultrasonic scalpel based on digital signal processing(DSP) was designed. Results: Through testing the circuit and work performance of power control system, the series of parameters such as effective value and so on which were produced by this system could adjust frequency of power source in time and attain anticipative functional indicator, and it took the ultrasonic scalpel to work in syntonic situation. Conclusion: The tested indicators of power control system of ultrasonic scalpel based on the kernel design of DSP can attain anticipative requirement, and can take this system to work in syntonic situation.

    標簽: 數字信號處理 超聲手術刀 電源控制

    上傳時間: 2022-04-03

    上傳用戶:bluedrops

  • 高通藍牙芯片QCC5144_硬件設計指導書

    高通(Qualcomm)藍牙芯片QCC5144_硬件設計詳細指導書(官方內部培訓手冊)其內容是針對硬件設計、部分重要元器件選擇(ESD,Filter)及走線注意事項的詳細說明。2 Power management 2.1 SMPS 2.1.1 Components specification 2.1.2 Input power supply selection 92.1.3 Minimize SMPS EMI emissions 2.1.4 Internal LDOs and digital core decoupling 2.1.5 Powering external components 2.2 Charger 2.2.1 Charger connections.2.2.2 General charger operation2.2.3 Temperature measurement during charging 2.3 SYS_CTRL 3 Bluetooth radio3.1 RF PSU component choice 3.2 RF band-pass filter3.3 Layout (天線 走線的注意事項)4 Audio4.1 Audio bypass capacitors 4.2 Earphone speaker output4.3 Line/Mic input 4.4 Headphone output optimizition5 LED pads 5.1 LED driver 5.2 Digital/Button input 5.3 Analog input5.4 Disabled 6 Reset pin (Reset#)7 USB interfaces7.1 USB device port7.1.1 USB device port7.1.2 Layout notes 7.1.3 USB charger detectionA QCC5144 VFBGA example schematic and BOM B Recommended SMPS components specificationB.1 Inductor specifition B.2 Recommended inductors B.3 SMPS capacitor specifition

    標簽: 藍牙芯片 qcc5144

    上傳時間: 2022-04-07

    上傳用戶:默默

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