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創新產品
學習
影片長度 - 3:12
Hello! Everyone! I am Nuvoton FAE Tim.
Today, I will show you ML56 Capacitive Touch Key PCB Design.
First introduce the Touch Sensor Channel Selection.
Touch Sensor Channels.
ML56 series supports up to 14 touch sensor channels.
#Reference Sensor
It is recommended to select one reference sensor at touch sensor channel TK7 or TK14.
Maximize the distance between the reference sensor and other signals to minimize crosstalk.
#Shield Electrodes
Put the shield electrode around the touch sensor to get better signal quality and waterproof capability.
Recommended to select shield channel at touch TK0, TK4 or clock out pins (P3.2 / P4.6 / P5.7).
Next, we will explain the PCB Layout Rules.
#Touch Key Shapes
Recommended to have a 10 x 10 mm sensor area for good touch key sensitivity.
Larger touch sensor electrode work better for thicker cover.
#Reference Sensor
Recommended to assign the reference key at touch channel TK7 or TK14.
Maximize the distance to other signals to minimize crosstalk.
Round shape electrode with 1 mm diameter size is enough for normal case.
#Ground Plane
It is recommended that the traces of the touch key have a good hatched ground plane surround.
It is recommended to have hatched ground plane under the touch keys.
Hatched ground plane with 6 mil trace and 50 mil grid.
#Shield Electrode
Put touch keys with shield electrode around which provides the same phase signal around touch keys.
Hatched shield electrode with 6 mil trace and 50 mil grid.
Shield electrode area needs to keep filled around the touch key in greater than 10 mm width.
Finally, explain the Touch Key Cover Thickness.
As the cover thickness increases, the touch key sensitivities will decrease.
Larger touch key size work better for thicker cover.
Recommended touch key diameter size with difference acrylic cover thickness as shown in the table.
That's all for today's video, thank you everyone!
If you have any questions, please contact us.
-
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.comon.com
#Product #Learning #Basic #en
創新產品
學習
影片長度 - 2:43
Hello! Everyone! I am Nuvoton FAE Tim.
Today, I will show you ML56 Capacitive Touch Key Technology.
First introduce the Capacitive Touch Key Fundamentals.
The capacitance of the sensor without a finger touch is called as “parasitic capacitance”, CP.
Parasitic capacitance results from the electric field between the sensor (including the sensor pad and traces) and other conductors in the system such as the ground planes, traces, any metal in the product’s chassis or enclosure, etc.
The capacitance between the sensor pad and the finger is CF.
The total capacitance CT of the sensor is the sum of CP and CF.
Next, we will explain the ML56 Capacitive Touch Key Sensing Method.
ML56 implements two switching capacitor banks for injecting charges to CP (or CT) and CR.
CR is the parasitic capacitance of reference channel.
After touch key calibration, CP and CR are balanced with CB and CCB (comparator output is “low”).
Touch the sensing touch key which makes CT = CP + CF Now the negative input terminal voltage of the comparator is lower than positive side and comparator output is “high”.
ML56 touch key controller will increase CCB to CCB’ to balance CT and CR again (comparator output is “low”). A finger touch can be detected by checking the difference of CCB and CCB’.
By comparing the CCB’ shift level from CCB, the steady state to a predetermined threshold, the algorithm can determine whether the touch key is in ON (Touch) or OFF (No Touch) state.
That's all for today's video, thank you everyone!
If you have any questions, please contact us.
-
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.comon.com
#Product #Learning #Basic #en
創新產品
學習
影片長度 - 6:6
Nuvoton announced the latest ML56 microcontroller, built-in capacitive touch sensing, LCD driver highly integrated low power platform. And provides capacitive touch sensor and LCD driver library. The solution is delivered through the API guide, which includes details on each function call, parameters and returns. Finally, this video provides an overview on how to develop a custom touch key and LCD application from the BSP release.
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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.comon.com
#Product #Learning #Basic #en
創新產品
學習
影片長度 - 2:51
介紹與說明 Nuvoton NuMicro ML56 電容式觸控按鍵電路板設計。
哈囉大家好!我是新唐 FAE Tim。
今天為大家介紹 ML56 電容式觸控按鍵電路板設計。
首先介紹觸控傳感器通道選擇。
#觸控傳感器通道
ML56 系列最多支援 14 個觸控傳感器通道。
#參考傳感器
建議選擇觸控傳感器通道 TK7 或 TK14 當作參考傳感器。
加大參考傳感器和其他信號之間的距離,以降低互相干擾的機會。
#屏蔽電極
將屏蔽電極圍繞在觸控傳感器周圍,可以有更好的信號品質和防水能力。
建議選擇觸控傳感器通道 TK0, TK4 或時脈輸出腳位 (P3.2/ P4.6/ P5.7) 當作屏蔽通道。
接著要說明 PCB 佈局規則。
#觸控按鍵形狀
建議傳感器面積為 10 x 10 mm,以實現良好的觸控按鍵靈敏度。
觸控傳感器的電極越大,外殼厚度可以越厚。
#參考傳感器
建議選擇觸控傳感器通道 TK7 或 TK14 當作參考傳感器。
加大參考傳感器和其他信號之間的距離,以降低互相干擾的機會。
一般情況下,建議使用直徑為 1 mm 大小的圓形電極。
#接地
建議觸控按鍵的走線具有良好的網地圍繞。
建議觸控按鍵下方要鋪網地。
鋪網地的規格為 6 mil 的走線和 50 mil 的網格。
#屏蔽電極
將屏蔽電極圍繞在觸控按鍵周圍,用於在觸控按鍵周圍提供同相位的信號。
網狀屏蔽電極的規格為 6 mil 的走線和 50 mil 的網格。
屏蔽電極區域到觸控按鍵周圍的寬度需要大於 10 mm。
#觸控按鍵外殼厚度
隨著外殼厚度的增加,觸控按鍵的靈敏度將降低。
觸控按鍵尺寸越大,外殼能做得越厚。
建議的觸控按鍵直徑尺寸與搭配的壓克力外殼厚度如表所示。
以上是這次的教學影片,謝謝大家!
如果您有任何問題,歡迎聯絡我們。
-
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/low-power-8051-series/
聯絡我們: SalesSupport@nuvoton.com
#Product #Learning #Basic #zh-Hant
創新產品
學習
影片長度 - 4:24
新唐科技提供一電容式觸控解決方案調適工具 (NuSenadj),此調適工具最大的特點為可通過一人機介面針對不同的機構來自動調整參數,並將參數匯出並複製至其他開發板。不僅能大大縮短開發人員的開發時程,也可縮短量產時間。此影片將會介紹如何使用此調適工具以及各個參數代表的意義。
-
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/low-power-8051-series/
聯絡我們: SalesSupport@nuvoton.com
#Product #Learning #Basic #zh-Hant
創新產品
學習
影片長度 - 7:0
新唐科技推出最新集成控制、電容式觸控、驅動液晶顯示器 (LCD) 的三合一低功耗微控制器 - Nuvoton NuMicro ML56 系列,並提供一電容式觸控與驅動液晶顯示器解決方案程式庫。此影片將會介紹 API 的功能、參數及回傳值並且最後則會講解如何使用 BSP 裡的範例程式搭配 NuMaker-ML56SD 來開發您的第一個電容式觸控與驅動液晶顯示器的應用程式。
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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/low-power-8051-series/
聯絡我們: SalesSupport@nuvoton.com
#Product #Learning #Basic #zh-Hant
培訓
學習
影片長度 - 4:0
Take Nuvoton NuMaker-IIoT-NUC980 running Linux as the platform and learn how to develop various functions. Watch this video and you will learn how to install Buildroot for NuMaker-IIoT-NUC980 board before starting development.
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For more information, please visit Nuvoton Technology Website: https://bit.ly/3hVdcmC
Buy now: https://direct.nuvoton.com/tw/numaker-nuc980-iiot
Contact us: SalesSupport@nuvoton.com
#Training #Learning #Basic #en
創新產品
學習
影片長度 - 2:41
介紹與說明 Nuvoton NuMicro ML56 電容式觸控按鍵基本原理和感應方法。
哈囉大家好! 我是新唐 FAE Tim,今天為大家介紹 ML56 電容式觸控按鍵技術。
首先介紹 #電容式觸控按鍵基本原理。
在沒有手指觸摸的傳感器的電容稱為 “寄生電容” CP 。
寄生電容是由傳感器 (包括傳感器,走線和過孔) 與系統中其他導體 (例如接地層,走線,產品機構或外殼中的任何金屬等) 之間的電場所產生的。
傳感器和手指之間的電容為 CF,傳感器的總電容 CT 是 CP 和 CF 之和。
接著要說明 ML56 #電容式觸控按鍵感應方法。
ML56 實現了兩個可變電容器組,用於向 CP (或 CT) 和 CR 注入電荷。
CR 是參考通道的寄生電容,在觸控按鍵校正之後,CP 和 CR 與 CB 和 CCB 保持平衡 (比較器輸出為 “低準位”) 。
手指觸摸在目前偵測的觸控按鍵,導致 CT = CP + CF,使比較器的負輸入端電壓低於正輸入端,並且比較器輸出為 “高準位”。
ML56 觸控按鍵控制器會將 CCB 增加到 CCB’,以使 CT 和 CR 再次達到平衡 (比較器輸出為 “低準位”)。透過檢查 CCB 和 CCB’ 之間的差異,可以做手指觸摸的偵測。
CCB 增加到 CCB’ 的數值與預定的觸控門檻值來做比較,演算法可以確定觸控按鍵處於 ON (觸摸) 狀態還是 OFF (無觸摸) 狀態。
以上是這次的教學影片, 謝謝大家!
如果您有任何問題,歡迎聯絡我們。
-
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/low-power-8051-series/
聯絡我們: SalesSupport@nuvoton.com
#Product #Learning #Basic #zh-Hant
影片長度 - 5:10
Loudspeakers are highly nonlinear and time-variant systems. Signal distortion, heating, aging, climate and other external influences limit the maximum level and the quality of the reproduced sound. This video shows how Nuvoton smart amplifier can greatly improve the speaker performance and the sound quality by offering mechanical & thermal protection, automatic system alignment, active compensation of transducer nonlinearities, and active stabilization of the voice coil rest position based on the Klippel Controlled Sound (KCS) technology.
影片長度 - 5:11
Loudspeakers are highly nonlinear and time-variant systems. Signal distortion, heating, aging, climate and other external influences limit the maximum level and the quality of the reproduced sound. This video shows how Nuvoton smart amplifier can greatly improve the speaker performance and the sound quality by offering mechanical & thermal protection, automatic system alignment, active compensation of transducer nonlinearities, and active stabilization of the voice coil rest position based on the Klippel Controlled Sound (KCS) technology.
培訓
工具
學習
影片長度 - 5:40
Hello, 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
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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
培訓
工具
學習
影片長度 - 3:24
Hello 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