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    邊緣運算平台
    • 工業電腦 / 主機板 / 單板電腦
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    • Open Frame 平板電腦
    • All-in-One 平板電腦
    • 強固型面板電腦
    • 數位看板播放器
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    • 自動駕駛解決方案
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    • AI GPU 伺服器
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    • DMS+ (ODM/OEM 服務)
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    • 醫療專用觸控電腦
    • 醫療專用顯示器
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    軟體
    • EdgeGO
  • 產業
    車用解決方案 軍工與航太 娛樂資訊 智慧醫療 半導體解決方案 智慧製造 鐵路 機器人技術

    車用解決方案

    車用解決方案

    凌華科技的自動駕駛運算平台採用尖端技術,致力提供更安全、更高效的駕駛運行。以強大的運算能力,滿足自動駕駛和先進駕駛輔助系統(ADAS)技術,並提供適用於汽車的堅固設計。

    了解更多

    軍工與航太

    軍工與航太

    在軍工航太領域中,準確觀察環境並做出快速可靠的決策並及時採取行動至關重要。 凌華科技強固的系統和Data Distribution Service(DDS)是大型數據基礎架構的關鍵,該基礎架構可收集、儲存、分析資訊並將資訊從現場傳遞給決策者。

    了解更多

    娛樂資訊

    娛樂

    凌華科技博弈平台解決方案透過我們的軟、硬體和顯示產品為全球遊戲機製造商提供全面性的服務。 我們將電腦專業知識與尖端軟體完美結合,並遵循博弈產業的要求和法規限制來為我們客戶提供服務,使他們能夠專注於打造世界上最好的娛樂體驗。

    了解更多

    智慧醫療

    智慧醫療

    凌華科技專注於醫療可視化設備和經過醫療認證的解決方案,來滿足智慧醫療數位化的需求。 透過PENTA在醫療領域的設計和製造能力,凌華科技的智慧醫療解決方案可加速各種醫療環境中的智慧轉型。

    了解更多

    半導體解決方案

    半導體解決方案

    你所能想像的一切,都因晶片而有所改變。為了滿足不同應用的需求,完美的晶圓製造對於品質的工藝要求到效率和生產力的過程都無比講究。

    了解更多

    智慧製造

    智慧製造

    借由邊緣運算,ADLINK 智慧製造解決方案加速更快的數據決策,為半導體和電子製造業創造更具彈性和安全性的生產環境。

    了解更多

    鐵路

    鐵路

    我們的強固設計 CompactPCI、模組化電腦、工業級系統及平板電腦系列產品特別獲選納入車載 ATO/DMI 及軌旁 CTC/RBC/TSR 鐵路解決方案。凌華科技在設計和製造方面的卓越靈活性廣受全球鐵路號誌領導供應商的青睞。

    了解更多

    機器人技術

    機器人技術

    自主移動機器人(AMR)能夠在沒有或最低限度的人工操作監督之下來執行工作。在一些可以使用大量的AMR設施譬如學校、醫院、大型購物中心和工廠之類的,以提高營運效率和生活品質。

    了解更多
  • 策略夥伴
    AMD Ampere Arm Intel MediaTek NVIDIA NXP Qualcomm

    AMD-based Solutions

    AMD-based Solutions by ADLINK

    Empower your edge computing with ADLINK, a leading company enabling edge solutions. Leverage AMD's high performance, secure integration, and power efficiency advantages for a wide range of edge, networking, and edge systems with x86 core architecture. Experience superior processing and graphics performance with ADLINK's utilization of AMD Ryzen™ Embedded series, powered by Radeon™ RX, perfect for industrial, medical, automation and gaming applications.

    Learn More

    Ampere-based Solutions

    Ampere-based Solutions by ADLINK

    Experience the future of edge computing with our comprehensive offering, which includes the Ampere Altra-based COM-HPC module, a developer platform and/or dev kit. Dive in now to unleash superior performance, energy efficiency, and optimized TCO in applications including but not limited to industrial automation, autonomous vehicles, transportation, healthcare, video surveillance, and energy management.

    Learn More

    Arm-based Solutions

    Arm-based Solutions by ADLINK

    Based on Arm architecture, ADLINK also collaborates with Ampere, NXP, MediaTek, Qualcomm, and Rockchip in module computing development and value-added solutions across varied industries, including smart manufacturing, autonomous driving, robotics, AMR, drone, transportation, logistics, retail, infotainment, healthcare, security, and more.

    With plug-and-play tools, development kits, and all-encompassing systems, ADLINK and Arm empowers developers to accelerate and realize their innovations.

    Learn More

    Intel-based Solutions

    Intel based Solutions by ADLINK

    ADLINK is a Titanium member in Intel® Partner Alliance. From modular computing to system-ready use cases, ADLINK works closely with Intel to provide scalable, interoperable solutions that accelerate your intelligent device deployment with end-to-end analytics.

    Utilizing Intel-based modules, ADLINK accelerates your products’ time to market with edge AI platform development support while addressing diverse industry pain points, such as in networking, smart manufacturing, autonomous driving, AMR, transportation, healthcare, retail, and infotainment.

    Learn More

    MediaTek-based Solutions

    MediaTek-based Solutions by ADLINK

    ADLINK Technology and MediaTek are strategic partners that deliver innovative and powerful solutions for edge computing and edge AI applications. Leveraging MediaTek's flagship, power-efficient Genio platform SoCs and ADLINK's expertise in embedded and rugged designs, they provide high-performance, energy-efficient, and reliable modules and platforms in accomplishing various IoT use cases, such as smart home, human-machine interface, multimedia, industrial IoT, and robotics.

    Learn More

    NVIDIA-based Solutions

    NVIDIA-based Solutions by ADLINK

    To fulfill industry-specific requirements, ADLINK is able to efficiently develop edge AI platforms, AI smart cameras, medical platforms, and AI portable GPU accelerators based on NVIDIA Jetson modules, the NVIDIA IGX platform, and RTX Embedded GPUs for applicable industries, including smart manufacturing, autonomous driving, autonomous mobile robots (AMR), robotics, transportation, healthcare, logistics, retail, infotainment, AI development, professional graphics, and gaming.

    Learn More

    NXP-based Solutions

    NXP-based Solutions by ADLINK

    Utilizing NXP's i.MX 8 and i.MX 9 series technology, ADLINK offers edge-connected solutions to assist medical, test & measurement, automation, and smart city customers reduce TCO. This combination of NXP's technology with ADLINK's R&D experience in edge computing provides versatile and dynamic solutions for critical applications.

    Learn More

    Qualcomm-based Solutions

    Qualcomm-based Solutions by ADLINK

    Qualcomm Technologies’ portfolio of leading robotics and drones solutions is driving next-generation use cases, including autonomous deliveries, mission critical use cases, commercial and enterprise drone applications and more.

    Among them, the Qualcomm QRB5165 solution is designed to help build consumer, enterprise or industrial robots with 5G connectivity, on-device AI and machine learning, superior computing, and intelligent sensing capabilities. By adopting Qualcomm QRB5165, ADLINK’s module will enable the proliferation of 5G in robotics and intelligent systems.

    Learn More
    EdgeOpen Voices

    EdgeOpen™ Voices

    了解業界專家如何透過實際案例與實務洞察推動邊緣 AI 發展。

    立即查看
  • 支援

    支援

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    下載

    軟體與驅動程式下載凌華科技 DDS宣傳手冊Content Hub凌華科技 GitHub

    聯絡我們

    銷售諮詢諮詢技術專家全球經銷商

    若您有任何價格、產品庫存問題,或需要任何技術上的協助,歡迎隨時與我們連繫。

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  • 關於我們

    價值

    品質政策與資源合作夥伴企業永續環境責任政策CapabilitesProduct Security

    公司

    關於凌華全球據點投資人關係公司簡介企業logo與品牌規範人才招募

    新聞

    新聞與活動Podcast部落格
    Support

    公司新聞、產品資訊、近期活動或技術部落格,一手掌握ADLINK的最新資訊。

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  • Integrated and simplified design
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    • 產品
      嵌入式模組化電腦+ GPU解決方案+ 強固型運算+ 邊緣運算平台+ 工業級顯示系統與平板電腦+ 車用解決方案+ 網路通訊與伺服器+ 自動化與控制+ 設計與製造服務+ 醫療專用電腦與顯示器+ 軟體+
      COM-HPCCOM ExpressOSMSMARCQsevenETX
      MXM GPU 模組PCIe 顯示卡
      CompactPCI & CompactPCI SerialVPXPC104AVA Railway Rugged ComputersPIDS
      工業電腦 / 主機板 / 單板電腦嵌入式電腦 / IoT Gateway邊緣 AI 運算平台AI 智慧相機機器人控制器工業級固態硬碟 (SSD)
      工業級觸控顯示器Open Frame 平板電腦All-in-One 平板電腦強固型面板電腦數位看板播放器
      自動駕駛解決方案AI-ADAS 解決方案
      AI GPU 伺服器工業級邊緣伺服器網路安全平台P5G 工業自動化專網-MicroRAN
      機器視覺運動控制與 I/OEtherCAT 運動控制解決方案HMI 平板電腦資料擷取模組GPIB 與數字化儀PXI 平台與模組自主移動機器人工業物聯網閘道器
      DMS+ (ODM/OEM 服務)
      醫療專用觸控電腦醫療專用顯示器醫療專用 BOX PC
      EdgeGO
      AdvancedTCA 交換器AdvancedTCA 平台AdvancedTCA 刀鋒伺服器
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      COM-HPC Server Type COM-HPC Client Type
      COM Express Type 6 COM Express Type 7 COM Express Type 10 COM Express Type 2
      MXM 3.1 Type A MXM 3.1 Type B
      Pocket AI (可攜式GPU)
      3U VPX 刀鋒伺服器 6U VPX 刀鋒伺服器 VPX 顯示卡, XMC模組
      Mini-ITX 嵌入式主機板 可擴充式無風扇電腦 嵌入式無風扇電腦 ATX 主機板 嵌入式板卡 工業電腦系統 PICMG 單板電腦 無電源背板 工業電腦周邊 工業電腦機箱
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      圖像擷取卡/視頻擷取卡 影像分析工具 智慧相機 視覺系統 人工智慧機器視覺設備
      集中式運動控制器 分散式運動控制器 編碼器和觸發器 運動控制軟體和工具
      設備狀態監測與維護平台 資料擷取模組 數字化儀 / 示波器
      PXI 機箱 PXI 控制器 PXI/PXIe 模組 遠端控制器
      AMR
    • 產業
      車用解決方案 軍工與航太 娛樂資訊 智慧醫療 半導體解決方案 智慧製造 鐵路 機器人技術

      車用解決方案

      車用解決方案

      凌華科技的自動駕駛運算平台採用尖端技術,致力提供更安全、更高效的駕駛運行。以強大的運算能力,滿足自動駕駛和先進駕駛輔助系統(ADAS)技術,並提供適用於汽車的堅固設計。

      了解更多

      軍工與航太

      軍工與航太

      在軍工航太領域中,準確觀察環境並做出快速可靠的決策並及時採取行動至關重要。 凌華科技強固的系統和Data Distribution Service(DDS)是大型數據基礎架構的關鍵,該基礎架構可收集、儲存、分析資訊並將資訊從現場傳遞給決策者。

      了解更多

      娛樂資訊

      娛樂

      凌華科技博弈平台解決方案透過我們的軟、硬體和顯示產品為全球遊戲機製造商提供全面性的服務。 我們將電腦專業知識與尖端軟體完美結合,並遵循博弈產業的要求和法規限制來為我們客戶提供服務,使他們能夠專注於打造世界上最好的娛樂體驗。

      了解更多

      智慧醫療

      智慧醫療

      凌華科技專注於醫療可視化設備和經過醫療認證的解決方案,來滿足智慧醫療數位化的需求。 透過PENTA在醫療領域的設計和製造能力,凌華科技的智慧醫療解決方案可加速各種醫療環境中的智慧轉型。

      了解更多

      半導體解決方案

      半導體解決方案

      你所能想像的一切,都因晶片而有所改變。為了滿足不同應用的需求,完美的晶圓製造對於品質的工藝要求到效率和生產力的過程都無比講究。

      了解更多

      智慧製造

      智慧製造

      借由邊緣運算,ADLINK 智慧製造解決方案加速更快的數據決策,為半導體和電子製造業創造更具彈性和安全性的生產環境。

      了解更多

      鐵路

      鐵路

      我們的強固設計 CompactPCI、模組化電腦、工業級系統及平板電腦系列產品特別獲選納入車載 ATO/DMI 及軌旁 CTC/RBC/TSR 鐵路解決方案。凌華科技在設計和製造方面的卓越靈活性廣受全球鐵路號誌領導供應商的青睞。

      了解更多

      機器人技術

      機器人技術

      自主移動機器人(AMR)能夠在沒有或最低限度的人工操作監督之下來執行工作。在一些可以使用大量的AMR設施譬如學校、醫院、大型購物中心和工廠之類的,以提高營運效率和生活品質。

      了解更多
    • 策略夥伴
      AMD Ampere Arm Intel MediaTek NVIDIA NXP Qualcomm

      AMD-based Solutions

      AMD-based Solutions by ADLINK

      Empower your edge computing with ADLINK, a leading company enabling edge solutions. Leverage AMD's high performance, secure integration, and power efficiency advantages for a wide range of edge, networking, and edge systems with x86 core architecture. Experience superior processing and graphics performance with ADLINK's utilization of AMD Ryzen™ Embedded series, powered by Radeon™ RX, perfect for industrial, medical, automation and gaming applications.

      Learn More

      Ampere-based Solutions

      Ampere-based Solutions by ADLINK

      Experience the future of edge computing with our comprehensive offering, which includes the Ampere Altra-based COM-HPC module, a developer platform and/or dev kit. Dive in now to unleash superior performance, energy efficiency, and optimized TCO in applications including but not limited to industrial automation, autonomous vehicles, transportation, healthcare, video surveillance, and energy management.

      Learn More

      Arm-based Solutions

      Arm-based Solutions by ADLINK

      Based on Arm architecture, ADLINK also collaborates with Ampere, NXP, MediaTek, Qualcomm, and Rockchip in module computing development and value-added solutions across varied industries, including smart manufacturing, autonomous driving, robotics, AMR, drone, transportation, logistics, retail, infotainment, healthcare, security, and more.

      With plug-and-play tools, development kits, and all-encompassing systems, ADLINK and Arm empowers developers to accelerate and realize their innovations.

      Learn More

      Intel-based Solutions

      Intel based Solutions by ADLINK

      ADLINK is a Titanium member in Intel® Partner Alliance. From modular computing to system-ready use cases, ADLINK works closely with Intel to provide scalable, interoperable solutions that accelerate your intelligent device deployment with end-to-end analytics.

      Utilizing Intel-based modules, ADLINK accelerates your products’ time to market with edge AI platform development support while addressing diverse industry pain points, such as in networking, smart manufacturing, autonomous driving, AMR, transportation, healthcare, retail, and infotainment.

      Learn More

      MediaTek-based Solutions

      MediaTek-based Solutions by ADLINK

      ADLINK Technology and MediaTek are strategic partners that deliver innovative and powerful solutions for edge computing and edge AI applications. Leveraging MediaTek's flagship, power-efficient Genio platform SoCs and ADLINK's expertise in embedded and rugged designs, they provide high-performance, energy-efficient, and reliable modules and platforms in accomplishing various IoT use cases, such as smart home, human-machine interface, multimedia, industrial IoT, and robotics.

      Learn More

      NVIDIA-based Solutions

      NVIDIA-based Solutions by ADLINK

      To fulfill industry-specific requirements, ADLINK is able to efficiently develop edge AI platforms, AI smart cameras, medical platforms, and AI portable GPU accelerators based on NVIDIA Jetson modules, the NVIDIA IGX platform, and RTX Embedded GPUs for applicable industries, including smart manufacturing, autonomous driving, autonomous mobile robots (AMR), robotics, transportation, healthcare, logistics, retail, infotainment, AI development, professional graphics, and gaming.

      Learn More

      NXP-based Solutions

      NXP-based Solutions by ADLINK

      Utilizing NXP's i.MX 8 and i.MX 9 series technology, ADLINK offers edge-connected solutions to assist medical, test & measurement, automation, and smart city customers reduce TCO. This combination of NXP's technology with ADLINK's R&D experience in edge computing provides versatile and dynamic solutions for critical applications.

      Learn More

      Qualcomm-based Solutions

      Qualcomm-based Solutions by ADLINK

      Qualcomm Technologies’ portfolio of leading robotics and drones solutions is driving next-generation use cases, including autonomous deliveries, mission critical use cases, commercial and enterprise drone applications and more.

      Among them, the Qualcomm QRB5165 solution is designed to help build consumer, enterprise or industrial robots with 5G connectivity, on-device AI and machine learning, superior computing, and intelligent sensing capabilities. By adopting Qualcomm QRB5165, ADLINK’s module will enable the proliferation of 5G in robotics and intelligent systems.

      Learn More
      EdgeOpen Voices

      EdgeOpen™ Voices

      了解業界專家如何透過實際案例與實務洞察推動邊緣 AI 發展。

      立即查看
    • 支援

      支援

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      下載

      軟體與驅動程式下載凌華科技 DDS宣傳手冊Content Hub凌華科技 GitHub

      聯絡我們

      銷售諮詢諮詢技術專家全球經銷商

      若您有任何價格、產品庫存問題,或需要任何技術上的協助,歡迎隨時與我們連繫。

      了解更多
    • 關於我們

      價值

      品質政策與資源合作夥伴企業永續環境責任政策CapabilitesProduct Security

      公司

      關於凌華全球據點投資人關係公司簡介企業logo與品牌規範人才招募

      新聞

      新聞與活動Podcast部落格
      Support

      公司新聞、產品資訊、近期活動或技術部落格,一手掌握ADLINK的最新資訊。

      了解更多
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Integrated and simplified design

Zhang Fugui,
Chengdu University of Information Technology

The system design of wind profiler laser digital intermediate-frequency receivers has troubled product development personnel because of the high complexity and long design period. Fortunately, advanced data acquisition digitizers provide a highly integrated hardware and software platform for system development to speed up the development progress of wind profiler laser digital intermediate-frequency receivers.

 

As an important part of laser systems, conventional weather laser receivers mainly control dynamic range expansion through instantaneous automatic gain, realize analog modulation for analog type I/Q modulator signals, depend a great deal on receiver hardware, and have low signal adaptive capacity; however, the emergence of software-defined radio technology has brought about a renovation of radio receivers. With booming device levels, digital receivers are becoming increasingly mature as an important part of software-defined radio technology and have already been extensively applied in radar equipment, electronic warfare, and communication receivers.

 

The ultimate goal of software-defined radio technology is to connect analog/digital converters (ADCs) with radio antennas firmly, realize sampling on the signal radio frequencies directly, convert analog signals into digital signals and achieve all the other processing functions under radio frequencies through software modules. Currently digital receivers are extensively deployed in weather radar equipment and have shown remarkable operational effectiveness. They have the main advantages of small size, lower costs and less complicated systems. Notably they also have greatly improved sensitivity and dynamic range performance.

 

Basically, these digital receivers adopt the design block diagram in Fig. 1. Each of the digital receivers consists essentially of three parts, i.e. a high-performance A/D converter (sampling device) and a super-large programmable logic device for digital frequency conversion and data transmission. The disadvantage of this kind of design is that each link needs meticulous design, so the whole design period is too long and the system is too complicated. Therefore, finding a highly integrated data acquisition platform to simplify the design has become an urgent problem.

Fig. 1 Block Diagram of a Universal Digital Receiver

ADLINK PCI-9846H high-speed digitizers can provide highly accurate, low-noise and high-dynamic range performance with high density and high accuracy. Is it possible to design a kind of wind profiler laser digital intermediate-frequency receiver based on the abovementioned characteristics of ADLINK PCI-9846H high-speed digitizers to simplify the long, complicated and error-prone design and development work of digital receivers?

Opportunity for system simplification

 

According to the parameter characteristics of the wind profiler laser systems of a certain model (intermediate-frequency point: 50MHz; band width: 5MHz), the digital intermediate-frequency receivers adopt a polyphase filtering-based, digital, orthogonal transformation method. This method needs no orthogonal local oscillator and has a lower subsequent digital filter order; therefore, it can be easily realized. Direct down-conversion is realized for the ADC data. After sampling of the ADC, the digital signal is first separated into two circuits, then goes through half-band filtering, speed reduction and digital filtering and is finally output as two circuits of orthogonal laser base data.

 

In order to verify the feasibility of the system according to the result of an analysis of the resource and structural characteristics of PCI-9846H high-speed digitizers, the establishment of a system simulation platform as shown in Fig. 2 of the design is planned.

Fig. 2 Verification Platform for Digital Intermediate-frequency Receivers

For convenient description of the operation process, the steps below will be followed:

 
  1. Insert a PCI-9846 digitizer into the PCI slot of the PC. Start the PC, insert the technical data disk provided by ADLINK Technology INC. and install the drive and related development tools necessary for system establishment.
  2. Set the external signal source to be two circuits of full phase parameter outputs and simulate the intermediate-frequency and sampling clock provided by the laser. Set one circuit to 40MHz, use it as an external clock of the PCI-9846 digitizer and connect it with the "CLK IN" end of the PCI-9846 digitizer; set the other circuit to 50MHz, use it as an intermediate-frequency input and connect it with the CH0 from the four input channels of the PCI-9846 digitizer.
  3. ADLINK Technology INC. makes great efforts to support its software. ADLink provides conventional WD-DASK drivers and development link libraries and task-oriented drivers and development link libraries as software solutions for PCI-9816/9826/9846. Run the LabVIEW software to use the ADLink DAQpilot control.
  4. Set the ADLink DAQpilot, use channel 0, make the amplitude range ±1V and choose the external clock.
  5. Execute down-conversion for output of the ADC with the method in Fig. 2. Fig. 6 shows the I/Q separation section of the down-conversion.
  6. For convenient data analysis, save the data of each level in LabVIEW and use MATLAB to perform deep analysis according to the design habits of the designer.

Fig. 3 I/Q Separation

After the simple and speedy establishment of the system simulation model, system simulation and verification can be done.

 
  1. Analyze the ADC data of channel 1 of the PCI-9846H digitizer. According to the result of the verification analysis, when operating with a 40MHz external clock, the PCI-9846H digitizer has normal data acquisition; however, it will suffer a certain signal-to-noise ratio loss because of the undersampling (bandpass sampling) adopted.
  2. By means of fast establishment of the digital under conversion system in a LabVIEW environment, the 50.3MHz intermediate-frequency input signal is converted into I/Q base data with a 4MHz bandwidth of the laser after frequency conversion and speed reduction. According to the result, the system realizes the function of digital down-conversion. The experiment in this section proves that ADLINK PCI-9846H digitizers can realize the design needs of a laser digital intermediate-frequency system of a certain model. The application of ADLINK PCI-9846H digitizers and related software tools significantly simplifies the complexity of the system design and shortens the product development period.

Entering the laser system

 

It can be seen from the modeling, simulation and verification introduced in the previous section that the system can realize applications of PCI-9846H digitizers in laser systems. See Fig. 4 for the block diagram of the system architecture. A PCI-9846H digitizer is directly inserted into a laser terminal, and the intermediate-frequency signal of the laser, the coherent clock signal from the frequency synthesizer, and other trigger signals are accessed by the related interfaces. The system simplifies previous digital intermediate-frequency receivers, eliminates the need for an external power supply, external space and other data connections. By means of PCI access, the system directly realizes frequency conversion and product display for the data from PCI9846H digitizers.

Fig. 4 Block Diagram of a Digital Receiver System

In order to verify if the laser system is operating normally, a signal is input from the RF front end of the laser system after the laser system is assembled in the way outlined in Fig. 4. Hereunder is the measurement information obtained when the laser system is in operation.

 
  1. Final I/Q time domain data output when the intermediate-frequency output and power of the laser system are 50.05MHz and +5dBm, respectively:

    This work is mainly done to check the power stability and phase stability of the output I/Q signal. Both the actual incidents of power miscounts and incidents of phase miscounts are zero; therefore, both amplitude consistency and phase stability of the digital down-conversion in the design of PCI9846H digitizers are basically in line with the requirements.
  2. The intermediate-frequency output of the laser system is a 50MHz+70Hz frequency offset, and the intermediate-frequency input power is -40dBm. The power spectrum of each beam of the wind profile is displayed. The operating frequency of the laser is 1290MHz, so the target measured value should be 8.13m/s if a 70Hz frequency offset is input. According to Fig. 5, the measured wind speed is 8.0m/s, which complies with the value obtained from the above formula. The difference is caused by the time domain coherence integration and spectrum average time error of the wind profiler laser. Therefore, the design requirements are met.
Fig. 5 Verification of the Wind Measurement Performance of a Wind Profiler Laser

ADLINK PCI-9846H digitizers integrate abundant hardware and other development resources and can complete program design and applications quickly via the interactive interfaces provided by DAQPilot, regardless of the types of development platforms used (such as Visual Studio, Borl C++ Builder, Delphi or LabVIEW). ADLINK PCI9846H digitizers can realize earlier proposal verifications quickly and conveniently, and speed up the development of the wind profiler laser digital intermediate-frequency receivers of a certain model. It is proved by actual system implementations that ADLINK PCI9846H digitizers can meet the design needs of digital intermediate-frequency receivers.

 

*LabVIEW™ is a registered trademark of National Instruments.


Related ADLINK Links:

  • More about ADLINK Digitizers
  • More about PCI-9816/9826/9846
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