Microcontrollers(651)
- 8bit 8051 MCUs(94)
- 8bit KM101 MCUs(24)
-
Arm Cortex-M0 MCUs(293)
- M029G/M030G/M031G Series(9)
- M031 Series(21)
- M031BT Series(2)
- M032 Series(16)
- M032BT Series(2)
- M071 Series(4)
- M091 Series(4)
- M0A21 Series(4)
- M0A23 Series(4)
- NUC029 Series(12)
- Nano103 Base Series(3)
- Nano100/102 Base Series(19)
- Nano110/112 LCD Series(19)
- Nano120 USB Series(10)
- Nano130 Advanced Series(8)
- NUC100/200 Advanced Series(15)
-
NUC120/122/123/220 USB Series(38)
- NUC120LC1DN
- NUC120LD2DN
- NUC120LE3DN
- NUC120RD2DN
- NUC120RC1DN
- NUC120RE3DN
- NUC120VE3DN
- NUC122LC1AN
- NUC122LC1DN
- NUC122LD2AN
- NUC122LD2DN
- NUC122SC1AN
- NUC122SC1DN
- NUC122SD2AN
- NUC122SD2DN
- NUC122ZC1AN
- NUC122ZC1DN
- NUC122ZD2AN
- NUC122ZD2DN
- NUC123LC2AE1
- NUC123LD4AE0
- NUC123LD4AN0
- NUC123SC2AE1
- NUC123LC2AN1
- NUC123SC2AN1
- NUC123SD4AE0
- NUC123SD4AN0
- NUC123ZC2AE1
- NUC123ZC2AN1
- NUC123ZD4AN0
- NUC123ZD4AE0
- NUC220LC2AN
- NUC220LD2AN
- NUC220LE3AN
- NUC220SC2AN
- NUC220SD2AN
- NUC220SE3AN
- NUC220VE3AN
- NUC121/125 Series(6)
- NUC126 USB Series(6)
- NUC130/230 CAN Series(14)
- NUC140/240 Connectivity Series(14)
- M051 Base Series(21)
- Mini51 Base Series(21)
- M0518 Series(4)
- NUC131/NUC1311 CAN Series(7)
- M0519 Series(5)
- M0564 Series(5)
- Arm Cortex-M23 MCUs(82)
-
Arm Cortex-M4 MCUs(145)
- M433 CAN/USB FS OTG Series(2)
- KM1M4BF Series(1)
- M463 CAN FD/USB HS Series(7)
- M467 Ethernet/Crypto Series(8)
- M471 Series(6)
- M487 Ethernet Series(4)
- M485 Crypto Series(5)
- M484 USB HS OTG Series(5)
- M483 CAN Series(8)
- M482 USB FS OTG Series(14)
- M481 Base Series(11)
- M4TK Touch Key Series(6)
- M451 Base Series(10)
- M4521 USB Series(2)
- NUC442/472 Series(16)
- M452 USB Series(9)
- M453 CAN Series(10)
- NUC505 Series(7)
- M451M Series(6)
- Arm Cortex-M7 MCUs(7)
- 32bit KM103 MCUs(6)
MOSFET(73)
-
Low On Resistance MOSFET for Li-ion Battery Protection(47)
-
12V-30V Nch Dual MOSFET(47)
- KFCAB21B10L
- KFCAB21C00L
- KFCAB21860L
- KFCAB21520L
- KFCAB21B50L
- KFCAB21890L
- KFCAB21770L
- KFCAB21260L
- KFCAB21B30L
- KFCAB21740L
- KFCAB21490L
- KFCAB21A50L
- KFCAB21350L
- KFCAB21830L
- KFCAB12004NL
- KFC6B21150L
- KFC6B21B70L
- FC6B21100L
- KFC4B21A30L
- KFC4B21210L
- KFC4B21280L
- KFC4B21220L
- KFC4B21080L
- KFC4B21320L
- KFC4A21300L
- KFC4B21300L
- KFC4B21330L
- KFCAB22370L
- KFC6B22160L
- KFCAB22510L
- KFC6B22500L
- KFC4B22180L
- KFC4B22270L
- KFC4B22690L
- KFC4B22670L
- KFC4B22830L
- KFCAB22014NL
- KFCAB22020NL
- KFCAB22630L
- KFCAB22620L
- KFCAB22680L
- KFCAB22900L
- KFC6B22100L
- KFC6B22220L
- KFC4B22070L
- KFC7P23440L
- KFCAB30029NL
-
12V-30V Nch Dual MOSFET(47)
- Low On Resistance MOSFET for Li-ion Battery Charging Control(5)
- Small Size MOSFET for Automotive Switching(11)
- Small Size MOSFET for General Switching(10)
Smart Home Audio(326)
- Audio SoCs(20)
- ISD ChipCorder(28)
- Audio Converters(38)
- Audio Amplifiers(20)
- Audio Enhancement(3)
-
Audio & Speech Controllers(217)
- NuVoice Series(4)
-
PowerSpeech Series(128)
- N584L020
- N584L030
- N584L031
- N584L040
- N584L041
- N584L061
- N584L080
- N584L081
- N584L120
- N584L121
- N588H061
- N588H061
- N588H120
- N588H170
- N588H250
- N588H340
- N588HP340(OTP)
- W584A011
- W584A016
- W584A017
- W584A021
- W584A022
- W584A025
- W584A031
- W584A032
- W584A035
- W584A041
- W584A042
- W584A045
- W584A051
- W584A052
- W584A061
- W584A062
- W584A065
- W584A071
- W584A075
- W584A081
- W584A085
- W584A100
- W584A120
- W584A151
- W584A171
- W584A191
- W584A300
- W584A340
- W584AP017(OTP)
- W584AP065(OTP)
- W584B010
- W584B015
- W584B016
- W584B020
- W584B021
- W584B030
- W584B031
- W584B040
- W584B041
- W584B052
- W584B062
- W584B070
- W584B080
- W584B100
- W584B120
- W584B150
- W584B170
- W584B190
- W588C003
- W588C006
- W588C009
- W588C012
- W588C015
- W588C020
- W588C025
- W588C030
- W588C036
- W588C041
- W588C046
- W588C051
- W588C056
- W588C061
- W588C071
- W588C081
- W588C101
- W588C121
- W588C150
- W588C170
- W588C210
- W588C260
- W588C300
- W588C350
- W588C400
- W588D003
- W588D006
- W588D009
- W588D012
- W588D015
- W588D020
- W588D025
- W588D030
- W588D035
- W588D040
- W588D045
- W588D050
- W588D055
- W588D060
- W588D070
- W588D080
- W588D100
- W588D120
- W588D150
- W588D170
- W588D210
- W588D260
- W588D300
- W588D350
- W588D400
- W588DF060(MTP)
- W588L020
- W588L030
- W588L035
- W588L040
- W588L050
- W588L060
- W588L070
- W588L080
- W588L100
- W588L121
- W588L150
- W588L170
-
BandDirector Series(48)
- N567G030
- N567G041
- N567G080
- N567G120
- N567G160
- N567G200
- N567G240
- N567G280
- N567G330
- N567H030
- N567H041
- N567H080
- N567H120
- N567H160
- N567H200
- N567H240
- N567H280
- N567H330
- N567HP330(OTP)
- N567K030
- N567K041
- N567K080
- N567K120
- N567K160
- N567K200
- N567K240
- N567K280
- N567K330
- N567L120
- N567L160
- N567L200
- W567C070
- W567C080
- W567C100
- W567C120
- W567C126
- W567C151
- W567C171
- W567C210
- W567C260
- W567C266
- W567C300
- W567C306
- W567C340
- W567C346
- W567C380
- W567C386
- W567CP260(OTP)
- ViewTalk Series(20)
- Peripheral Series(17)
- NuSpeech Series
- NSPxx Series
GUI Solution(18)
- GUI Reference Design(3)
-
GUI Platform(15)
- NuMaker-HMI-MA35H0-A2
- NuMaker-HMI-M467
- NuMaker-HMI-MA35D1-S1
- NuMaker-HMI-MA35H0-A1
- NuMaker-HMI-M032
- NuMaker-HMI-M2354
- NuMaker-HMI-M487
- NuMaker-HMI-N9H20
- NuMaker-HMI-N9H26
- NuMaker-HMI-N9H30
- NuMaker-HMI-N9H31-A1
- NuMaker-HMI-N9H31-A2
- NuMaker-emWin-M032
- NuMaker-emWin-M487
- NuMaker-emWin-N9H20
- NuMaker-emWin-N9H26
- NuMaker-emWin-N9H30
IoT Solution(22)
-
IoT Platform(20)
- NuMaker-IIoT-NUC980G1D
- NuMaker-IIoT-NUC980G1
- NuMaker-IoT-MA35D0-A1
- NuMaker-IoT-MA35D1-A1
- NuMaker-IoT-M2354
- NuMaker-RTU-NUC980(Chili)
- NuMaker-Server-NUC980
- NuMaker-IIoT-NUC980
- NuMaker-IIoT-NUC980G2
- NuMaker-IIoT-NUC980G2D
- NuMaker-Tomato
- NuMaker-IoT-M487
- NuMaker-PFM-M487
- NuMaker-PFM-M453
- NuMaker-PFM-NUC472
- NuMaker-PFM-M2351
- NuMaker-IoT-M263A
- NuMaker-PFM-NANO130
- NuMaker-Brick
- NuMaker-Uni
- Alexa Connect Kit Platform
- IoT Engine Platform(1)
- Arduino Compatible Platform(1)
- LoRa Platform
M4TK Touch Key Series
-
Application Learning Watch time - 2:56The Magic Board is a portable MCU playground, unleashing your creativity by downloading source code to create your own Magic. The Magic Board consists of three parts: an 8 x 24 COM/SEG TN-LCD panel board, a USB Type-C port and 3 capacitive touch keys. This unique blend of features positions the Magic Board as the optimal choice for creating compact and visually immersive systems. #Nuvoton #NuMicro #Microcontroller #MCU #en #M258 #TN-LCD #Capacitive Touch Keys #USB 2.0 Full Speed #Arm® Cortex®-M23 #Basic #Application #Learning - For more information, please visit Nuvoton Technology Website: https://bit.ly/3VgFUTL Buy now: https://direct.nuvoton.com/ Contact us: https://www.nuvoton.com/support/technical-support/form/
-
Watch time - 3:45Firstly, explain the safekeeping of cryptocurrency keys, and use Bitcoin to illustrate the important principles in the process of cryptocurrency transactions and compare the methods of safe storage of keys, and propose a block diagram of the cold wallet design based on the M2354 series. - For more information, please visit Nuvoton Technology Website: https://bit.ly/3hVdcmC buy now: https://direct.nuvoton.com/ contact us: SalesSupport@nuvoton.com
-
Product Learning Watch time - 6:27Nuvoton provides a development tool for capacitive Touch Sensors. The best feature of the calibration tool is that it uses the GUI to configure and tune your design automatically. Besides, the tool can export the configuration parameters and import them to another. Not only can greatly shorten the development time of developers, but also shorten the time for mass production. This video will introduce how to use this development tool and the definition of parameter. - 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
-
Product Learning Watch time - 2:43Hello! 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
-
Product Learning Watch time - 5:0Introduce the waterproof and noise immunity of ML56 touch key. Hello! Everyone! I am Nuvoton FAE Tim. Today, I will show you the waterproof and noise immunity of ML56 touch key. First introduce the waterproof and noise immunity of ML56 touch key. Good waterproof function, support finger touch with 2 mm depth water droplet. IEC 61000-4-6 conducted noise immunity (CNI) with 10 Vrms noise voltage. Next, we will explain the related parameter settings of the ML56 touch key, and first explain the touch sensitivity. #Pulse Width (Touch key sensing pulse width time control) Touch key sensitivity can be adjusted by setting Pulse Width properly, shorter Pulse Width setting comes with poor sensitivity and less power-consumption, vice versa. Then explain the stability of touch performance, Part 1. #Times (Touch key sensing times control) Touch key raw data stability can be adjusted by setting Times properly, shorter Times setting comes with poor raw data stability and less power-consumption, vice versa. Stability of touch performance, Part 2. #IIR (IIR filter) IIR filter can control the ratio of current raw data and previous one. User can enable IIR Filter to be against noise. It will increase the touch response time when enables IIR Filter. Stability of touch performance, Part 3. #Debounce (Touch key debounce) Touch key stability can be adjusted by setting Debounce properly, the debounce times for touch key entry (on) and release (off) detection, shorter Debounce setting comes with faster touch response time, vice versa. Stability of touch performance, Part 4. #Trace Baseline (Baseline is generated by “Calibration”) Touch key auto environment compensation is an algorithm that baseline tracking each touch key automatically at power-up and keeps compensating environment variation affects touch key performance during runtime. Based on the above parameter description, the following introduces the waterproof and noise immunity parameter settings. The first is waterproof parameter setting. Good waterproof function, support finger touch with 2 mm depth water droplet. Touch key system parameters are shown in the table Pulse Width = 500 ns Times = 128 Next is the noise immunity parameter setting IEC 61000-4-6 conducted noise immunity (CNI) with 10 Vrms noise voltage. Touch key system parameters are shown in the table. Pulse Width = 2 us Times = 128 IIR New = 6, Old = 2 Debounce Entry = 1, Release = 1 Then we use the ML56 NuMaker Board to show you the waterproof function of the touch key. Dip the finger in water first, and then touch the touch key. Repeat the above actions, we can see that the touch key still works normally and is not affected. Finally, we use the ML56 NuMaker Board to show you the noise immunity ability of the touch key. Turn on the walkie-talkie first, and then interfere with the touch key at close range, we can see that the touch key still operate normally and is not affected. 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#Basic #ML56 #NuMicro #Pulse Width (Touch key sensing pulse width time control) #IIR (IIR filter) #Product #en #Trace Baseline (Baseline is generated by “Calibration”) #Times (Touch key sensing times control) #8051 #Learning #Debounce (Touch key debounce) #Nuvoton #touch key IC #noise immunity #low power #ML54 #waterproof #MCU #ML51
-
Product Learning Watch time - 3:12Hello! 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
-
Product Learning Watch time - 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
-
Product Learning Watch time - 7:17.Why FIDO Authentication .Security Device for Personal Identity .USB Dongles Usage .M2351 USB FIDO Key SDK .Support Capacitive Fingerprint Sensors .M2351 USB FIDO Key with TrustZone .Values Brought by M2351 .Collaborative Software Development .An Open Platform with Content Protection .Leading Market Position for Software Protection For more information, please visit Nuvoton Technology Website: https://bit.ly/3hVdcmC #Product #Learning #Basic #en 0:00 簡介 0:28 Why FIDO Authentication 1:19 Security Device for Personal Identity 2:01 USB Dongles Usage 2:29 M2351 USB FIDO Key SDK 3:36 M2351 USB FIDO Key with TrustZone 4:07 Values Brought by M2351 4:55 Collaborative Software Development (2) 6:10 An Open Platform with Content Protection