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- Smart HMI
- Re-Timer IC for USB4® Devices
- HMI Platforms and Graphical Libraries Introduction
- Wireless Smart Thermostat
- Gaming Lighting and Cooling Fans Control
- New HMI Platform NuMaker-HMI-MA35D1
- GPS Tracker for Pet
- Soy-milk Maker Driver
- Bluetooth Toothbrush Reference Design
- CSP MOSFET
- TWS Charging Box
- M031BT dual mode gaming mouse solution
- Four-in-one Smart Electronic Lock
- Erweitertes Headset
- Baby Gear
- DSC / DVC
- DVR
- ELA
- Spielkonsole
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- Mikrodrucker
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- Soundbar
- Spielzeug
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- Spracherkennung
- WLAN-Kamera
- Heating Kitchen Appliance
- Wireless Charging
- Half-bridge Induction Cooker
- Smart Projector
- Laser TV
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- Smart Plug
- USB Car Driving Simulator System
Industrie
- 48V Industrial Fan Motor Driver
- Totem Pole LLC EVB
- ARGB Fan Driver
- New Energy Gateway
- Industrial Weight scale
- Power Measurement
- Power Delivery 3.0 compliant DC Fan
- MA35D1 HDMI Video Playback
- Digital Power Control
- Industrial Battery Monitoring IC
- NUC980 OpenWrt Graphical Gateway
- DALI Ecosystem - Control Gears and Devices
- DALI Ecosystem - Application Controller
- High Voltage Fan Driver
- Low Voltage Fan Driver
- Motor Parameter Identify Tool
- Totem Pole PFC Reference Board
- Motor Driver
- Electric Scooter
- Air Purifier
- Out-of-band (OOB) Management Solution for Edge Devices
- Edge Computing for License Plate Recognition
- USB Type-C PD 3.0 TCPC and TCPM Solution
- Battery Management System
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- Servo Driver Module
- Elevator Call Board
- Thermostat with Touch Key
- LoRaWAN ECO System
- DALI Digital Lighting Control
- Low Power ML51 Series Electronic Shelf Label
- Interactive Human Machine Interface Solution
- Plug and Play Iindustrial Measurement Development Platform
- IoT Development Platform
- NB-IoT IoT Development Platform
- Industrial Remote Terminal Unit
- Smart Water Meter
- Label Printer
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- Smart battery management system
- BLDC Motor Control
- 8x8x8 LED Cube
- Door Access control system
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- LED Display
Smart Home Appliances
- TOF Solution
- M467 LVGL Display
- TFT Color Thermostat
- Virtual Reality (VR) Solution
- HDMI2.1 4x2 Matrix Solution
- TOF sensing solution
- Cold Chain Data Logger
- Color Display Wi-Fi Thermostat
- Smart Home Central Control utilizing IoT and Color Screen
- Smart Home Appliances with Video Playing Function
- Multi-Cloud Connection Platform
- TFT Thermostat
- Wireless Power Supply and Data Transfer Solution
- Machine Learning
- Intelligent Power Station
- PM2.5 Module
- OLED Display - GIF Format Decode (LZW) Supported
- Smart Toilet
IoT Security
- Matter for IT Monitor with Security
- M2354 for RTOS + PSA TF-M
- Cold Wallet Security
- CCTV VPN Security Module
- IoT Cloud-Ready Wireless Module
- Smart Sound Box
- IoT Secure Connection Solutions-1
- IoT Secure Connection Solutions-2
- Smart Meter for AMI 2.0
- Arm® Pelion Secure IoT Device Management Supported by M2351
- Fingerprint Secure IoT Door Lock
- USB FIDO Key for Identity Security
Audio / Video
- NSP2340T Voice Assistance with Touch Solution
- Smart Office UC Headset Solution
- Smart Office UC Speakerphone Solution
- NSP series voice assistance solution
- Noise reduction and echo cancellation solution
- Demo board template - ISD2361
- Bluetooth-Audio
- Docking of iPhone / Android
- TV-Audio
- WLAN-A/V-Streaming
- Kabelloses Mikrofon
- Kabelloser Lautsprecher
Rauch- / CO-Melder
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Ausbildung Tool Lernen Uhrzeit - 5:9Hello everyone, I am Chris, the field application engineer from Nuvoton Technology. Today, I will introduce the application and principle of programmable seriel I/O aka PSIO on M251/M252. The programmable serial I/O of NuMicro M251/M252 series can generate arbitrary waveforms and combine them to achieve data transmission and reception of specific serial communication protocols. Of course, standard serial communication can also be achieved, such as UART SPI I2C Usually, it is common to use Timer+GPIO to achieve these specific communication protocols, but it is more complicated and requires frequent CPU intervention. When we use PSIO, this not only simplifies the complexity of the operation but also reduces the burden on the CPU. The saved CPU performance could be distributed in other places. Since all hardware operations do not require software intervention, the timing control is more precise. The principle of PSIO is to use a slot controller to control the pin input and output or determine the state, and it can also control the duration of these states. Each slot controller has eight slots, which can be used as eight settings, and the registers corresponding to each slot can access the data that needs to be input and output, and can also set the time for the current pin to maintain this state. Each slot can reach a checkpoint, usually 1 to 1, 2 to 2, 3 to 3, and so on. Each checkpoint can set the pin status of the corresponding slot within the corresponding time. Next, let’s take a look at a simple output-only example In the initial stage, we first set the state of the pin to be high before SLOT has started, so the output is high Then when the Slot controller receives the start signal, SLOT0 is set to output low level according to the setting of CP0 and waits for the time of SLOT0 to expire. Then SLOT1 is set to output low level according to the setting of CP1 and waits for the time of SLOT1 to expire. And so on, followed by SLOT2 output low level SLOT3 low level SLOT4 high level SLOT5 high level After SLOT5, since SLOT6 is not set, the waveform of the protocol can be completed with only six slots Between the time of the next data transmission, we set the interval low, so the output is low at this time Users can complete different protocols according to these simple operations. In the related resources section, we have provided two PSIO application notes. There are two protocol examples with more detailed operations and descriptions. If you want to know more details about PSIO, please download it from the URL in the video. Several sample codes of different protocols are also provided in BSP. That’s all for this tutorial. Thank you for watching it. Welcome to subscribe to our channel. If you want to know more information, please contact us. #Tool #Training #Learning #Intermediate #en - For more information, please visit Nuvoton Technology Website: https://bit.ly/3hVdcmC Buy now: https://direct.nuvoton.com/numaker-m251sd Contact us: SalesSupport@nuvoton.com
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Ausbildung Tool Lernen Uhrzeit - 5:40Hello, everyone! I'm Chris, Field Application Engineer from Nuvoton Technology. Today, I will introduce you how to design NuMicro M251/ M252 application circuit. Let's start with the power application circuit of M251/M252. The external power should add 10uF and 0.1uF decoupling capacitors, and the capacitor should be placed close to the source of the external power supply. Before the external power enters the VDD/VDDIO/VBAT of the IC, 0.1uF bypass capacitors should be added separately, and the capacitors should be placed close to the IC. Before the external power enters the AVDD, the bead should be connected in series for filtering, and then 1uF, 0.1uF, and 0.01uF bypass capacitors should be added. The bead and capacitors should be placed close to the IC. Before connecting AVDD to VREF, first, connect the bead in series for filtering, and then add 2.2uF, 1uF, and 470pF bypass capacitors. The bead and capacitors should be placed close to the IC. A 1uF bypass capacitor should be added to the internal LDO power supply of the IC, and the capacitor should be placed close to the IC. AVSS and VSS should be connected in series with a bead for filtering. USB_VBUS should be connected in series with a 10-ohm resistor to enhance the ability of USB to resist EFT interference. USB_D+ and USB_D- should be connected in series with 27-ohm resistors for impedance matching. USB_VCC33_CAP needs to add a 1uF bypass capacitor. ICE_DAT and ICE_CLK should be connected to 100K ohm pull-up resistors. The two ends of the high-speed and low-speed crystal oscillators should be connected with an equivalent capacitance of 20pF to VSS. I2C_SCL and I2C_SDA should be connected to 4.7K ohm pull-up resistors. nRESET should be connected to a 10K ohm pull-up resistor and a 10 uF capacitor to VSS. The internal LDO power supply of the IC needs to add a 1 uF bypass capacitor, and the capacitor should be placed close to the IC. In addition, reference circuits for EBI, UART, SPI, and Audio are provided. VDD is connected to 4~32 MHz crystal oscillator, POR33, Power On Control, 5V to 1.5V LDO, IO Cell... and other circuits inside the IC. Among them, GPIO PF.4 to PF.6 and PA.0 to PA.5 output, the high level is equal to VDD. Vbus is connected to the USB 1.1 PHY inside the IC. This 1.5V regulator will provide 1.5V for Digital Logic, SRAM, Flash, POR15, LIRC, MIRC, HIRC... and so on. Vbat is connected to internal 1.5V RTC_LDO and provides 1.5V voltage for RTC, 32.768 kHz crystal oscillator, IO Cell PF.6. VDDIO is connected to some IO cell for use, and the output high level of PA.0 to PA.5 is equal to VDDIO. AVDD is connected to the analog circuit inside the IC, and VREF is the reference voltage of the analog circuit. That's all for the hardware design of the NuMicro M251/M252 series instruction. Thank you for watching it. If you have further questions, please contact us. #Tool #Training #Learning #Intermediate #en - For more information, please visit Nuvoton Technology Website: https://bit.ly/3hVdcmC Buy now: https://direct.nuvoton.com/numaker-m251sd Contact us: SalesSupport@nuvoton.com
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Ausbildung Tool Lernen Uhrzeit - 3:24Hello everyone I am Chris, the Field Application Engineer from Nuvoton Technology. Today I will introduce the programming and debugging tool, called NuLink-Gang, and NuLink2-Pro. And I will show you in what kind of situation you can utilize the tools. During system development, Nuvoton provides three IDE interfaces: KEIL, IAR, and NuEclipse for user to develop source code. When programming the Chip, Nuvoton provides ICP programming Tool in PC and the debugger Nu-Link2-Pro for users to perform debugging and programming function. User who uses all of the Nuvoton Nu-Maker boards series can develop through the Nu-Link2-Me debugger and programmer; it’s attached to the board. During the mass-production stage, there are 2 modes for programming the target chip. One is online programming and the other is offline programming. At first, in online programming mode, user can use ICP programming Tool and a Nu-Link2-Pro to program a target chip. Besides, if it needs to program several chips at one times, the Nu-Link Command Tool supports program multiple develop board by several Nu-Link2-Pro. Nu-Link2-Pro also supports drag-and-drop Flash programming. User can intuitively complete the programming action. Nu-Link2-Pro In offline programming mode, user can pre-store the programming file in SPI flash, USB flash drive, or SD card. When user wants to program the target chip, pressing the programming button on Nu-Link2-Pro to complete the programming action. If it needs a large number of ICs to be programming, it recommends using the Nu-Link-Gang programmer. Nu-Link-Gang programmer can perform offline programming on four different chips at a time, significantly increasing the programming efficiency. Besides, Nu-Link-Gang programmer can also use the control bus to connect with an automatic programming machine for automatic programming. In the system upgrade, Nu-Link2-Pro also provides five standard communication interfaces such as SPI, I2C, UART, RS485, and CAN for transmission, which is convenient for users to upgrade the system. That’s all for the introduction of Nuvoton’s programming and debugging tool, NuLink-Gang, and NuLink2-Pro. Thank you for watching it. If you want to know more details, please contact us! Thank you. #Tool #Training #Learning #Intermediate #en - For more information, please visit Nuvoton Technology Website: https://bit.ly/3hVdcmC Buy now: https://direct.nuvoton.com/numaker-m251sd Contact us: SalesSupport@nuvoton.com
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Produkte Lernen Uhrzeit - 9:3Nuvoton announced the latest ML51/ML54/ML56 microcontroller, built-in capacitive touch sensing, LCD driver highly integrated low power platform. Based on 1T 8051 core, running up to 24MHz, the power consumption in normal run mode is 80uA/MHz, lower than 1uA in power down mode the power consumption while power down with LCD on is lower than 20uA. 0:00 intro 0:37 NuMicro 8051 Microcontroller 1:38 ML51/ML54/ML56 Product Portfolio 2:18 ML51/ML54/ML56 Features 3:27 Broad Scalability 4:05 Provide 4 Different Power Modes 4:44 LCD Driver Feature 5:52 Touch Key Features 7:05 Target Applications #Product #Learning #Basic #en #ML51 #ML54 #ML56 #8051 #LowPower #LCD-Driver #HumanMachineInterface #HMI #TouchKey-IC #HomeAppliance #EmbeddedWorld2022 - For more information, please visit Nuvoton Technology Website: https://bit.ly/3hVdcmC Buy now: https://direct.nuvoton.com/tw/low-power-8051-series/ Contact us: SalesSupport@nuvoton.com
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Uhrzeit - 5:46經由ADC量測Bandgap電壓,能夠反推電池的電壓,再搭配電池的規格文件,可得知產品目前所剩電量。另外,結合新唐晶片內部紀錄bandgap電壓的機制,可以消除不同晶片間的製程誤差,以得到更精準的電池電壓量測結果。 - 更多產品資訊,請至新唐科技網站 https://bit.ly/3hVdcmC 購買管道:https://direct.nuvoton.com/tw/ 聯絡我們: SalesSupport@nuvoton.com
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Produkte Lernen Uhrzeit - 2:46Nuvoton NuMicro M031/M032 series microcontroller integrates an Arm Cortex-M0 core operating frequency up to 72 MHz, with 32-bit hardware divider, and is equipped with 16 ~ 512 KB Flash and 2~96 KB SRAM and provides 1.8V ~ 3.6V operating voltage. #Product #Learning #Basic #en - For more information, please visit Nuvoton Technology Website: https://bit.ly/3hVdcmC buy now: https://direct.nuvoton.com/tw/m031-series/ contact us: SalesSupport@nuvoton.com
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Uhrzeit - 21:57新唐 NuMicro M031/M032 微控制器集成了工作頻率高達 72 MHz Arm Cortex-M0 內核,16~512KB Flash、2~96KB SRAM 可供選擇,封裝從 20 到 128 PIN,也提供 QFN32 緊湊型封裝。 - 更多產品資訊,請至新唐科技網站 https://bit.ly/3hVdcmC 購買管道:https://direct.nuvoton.com/tw/m031-series/ 聯絡我們: SalesSupport@nuvoton.com
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Uhrzeit - 2:5新唐 NuMicro M031/M032 微控制器集成了工作頻率高達 72 MHz,Arm Cortex-M0 內核,16 ~ 512 KB Flash、2 ~ 96 KB SRAM 可供選擇,封裝從 20 到 128 PIN,電壓範圍支援 1.8V ~ 3.6V。 - 更多產品資訊,請至新唐科技網站 https://bit.ly/3hVdcmC 購買管道:https://direct.nuvoton.com/tw/m031-series/ 聯絡我們: SalesSupport@nuvoton.com