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CatalogTCA6424ARGJR Product OverviewTCA6424ARGJR CAD ModelsTCA6424ARGJR Pin ConfigurationTCA6424ARGJR Block DiagramTCA6424ARGJR Typical ApplicationTCA6424ARGJR FeaturesTCA6424ARGJR ApplicationsTCA6424ARGJR Package OutlineTCA6424ARGJR DatasheetTCA6424ARGJR SpecificationsTCA6424ARGJR ManufacturerUsing WarningTCA6424ARGJR FAQ TCA6424ARGJR Product OverviewThe TCA6424ARGJR is a Low-Voltage 24-Bit I2C and SMBus I/O Expander With Interrupt Output, Reset, and Configuration Registers. Using the I2C interface [serial clock (SCL) and serial data (SDA)], this 24-bit I/O expander for the two-line bidirectional bus (I2C) is intended to enable general-purpose remote I/O expansion for the majority of microcontroller families. This device's broad VCC range is one of its main advantages. On the SDA/SCL side as well as the P-port side, it can function between 1.65 V and 5.5 V. As a result, the SDA/SCL side of the TCA6424ARGJR may interface with next-generation microprocessors and microcontrollers, where supply levels are decreasing to save power. While the power supplies of microprocessors and microcontrollers are lowering, some PCB components, including LEDs, continue to operate at a 5-V power source. TCA6424ARGJR CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Models TCA6424ARGJR Pin Configuration Figure: Pin ConfigurationPin NumberPin NameDescription1P00P-port input/output (push-pull design structure). At power on, P00 is configured as an input.2P01P-port input/output (push-pull design structure). At power on, P01 is configured as an input.3P02P-port input/output (push-pull design structure). At power on, P02 is configured as an input.4P03P-port input/output (push-pull design structure). At power on, P03 is configured as an input.5P04P-port input/output (push-pull design structure). At power on, P04 is configured as an input.6P05P-port input/output (push-pull design structure). At power on, P05 is configured as an input.7P06P-port input/output (push-pull design structure). At power on, P06 is configured as an input.8P07P-port input/output (push-pull design structure). At power on, P07 is configured as an input.9P10P-port input/output (push-pull design structure). At power on, P10 is configured as an input.10P11P-port input/output (push-pull design structure). At power on, P11 is configured as an input.11P12P-port input/output (push-pull design structure). At power on, P12 is configured as an input.12P13P-port input/output (push-pull design structure). At power on, P13 is configured as an input.13P14P-port input/output (push-pull design structure). At power on, P14 is configured as an input.14P15P-port input/output (push-pull design structure). At power on, P15 is configured as an input.15P16P-port input/output (push-pull design structure). At power on, P16 is configured as an input.16P17P-port input/output (push-pull design structure). At power on, P17 is configured as an input.17P20P-port input/output (push-pull design structure). At power on, P20 is configured as an input.18P21P-port input/output (push-pull design structure). At power on, P21 is configured as an input.19P22P-port input/output (push-pull design structure). At power on, P22 is configured as an input.20P23P-port input/output (push-pull design structure). At power on, P23 is configured as an input.21P24P-port input/output (push-pull design structure). At power on, P24 is configured as an input.22P25P-port input/output (push-pull design structure). At power on, P25 is configured as an input.23P26P-port input/output (push-pull design structure). At power on, P26 is configured as an input.24P27P-port input/output (push-pull design structure). At power on, P27 is configured as an input.25GNDGround26ADDRAddress input. Connect directly to VCCP or ground.27VCCPSupply voltage of TCA6424A for P port28RESETActive-low reset input. Connect to VCCI through a pullup resistor, if no active connection is used.29SCLSerial clock bus. Connect to VCCI through a pullup resistor.30SDASerial data bus. Connect to VCCI through a pullup resistor.31VCCISupply voltage of I2C bus. Connect directly to the VCC of the external I2C controller. Provides voltage-level translation.32INTInterrupt output. Connect to VCCI through a pullup resistor. TCA6424ARGJR Block Diagram Figure: Block Diagram TCA6424ARGJR Typical Application Figure: Typical Application TCA6424ARGJR Features5-V Tolerant I/O portsActive-low reset input ( RESET)Open-drain active-low interrupt output ( INT)400-kHz Fast I2C BusInput/output configuration registerPolarity inversion registerInternal power-on resetPower up with all channels configured as inputsNo glitch on power upNoise filter on SCL/SDA inputsLatched outputs with high-current drive maximumcapability for directly driving LEDsLatch-up performance exceeds 100 mA per JESD78, class IIESD protection exceeds JESD 22– 2000-V Human-body model (A114-A)– 200-V Machine model (A115-A)– 1000-V Charged-device model (C101)Operating power-supply voltage range of 1.65 V to5.5 VAllows bidirectional voltage-level translation andGPIO expansion between:– 1.8-V SCL/SDA and 1.8-V, 2.5-V, 3.3-V, or 5-V P Port– 2.5-V SCL/SDA and 1.8-V, 2.5-V, 3.3-V, or 5-V P Port– 3.3-V SCL/SDA and 1.8-V, 2.5-V, 3.3-V, or 5-V P Port– 5-V SCL/SDA and 1.8-V, 2.5-V, 3.3-V, or 5-V P PortI2C to Parallel port expanderLow standby current consumption of 1 μASchmitt-Trigger action allows slow input transitionand better switching noise immunity at the SCLand SDA inputs– Vhys = 0.18 V Typ at 1.8 V– Vhys = 0.25 V Typ at 2.5 V– Vhys = 0.33 V Typ at 3.3 V– Vhys = 0.5 V Typ at 5 V TCA6424ARGJR ApplicationsMonitorControl several peripheral signals TCA6424ARGJR Package Outline Figure: Package Outline TCA6424ARGJR DatasheetYou can download the datasheet from the link given below: TCA6424ARGJR Datasheet TCA6424ARGJR SpecificationsTypeDescriptionCategoryIntegrated Circuits (ICs)InterfaceI/O ExpandersMfrTexas InstrumentsSeries-PackageTape & Reel (TR)Cut Tape (CT)Digi-Reel®Product StatusActiveNumber of I/O24InterfaceI²C, SMBusInterrupt OutputYesFeaturesPOROutput TypePush-PullCurrent - Output Source/Sink10mA, 25mAClock Frequency400 kHzVoltage - Supply1.65V ~ 5.5VOperating Temperature-40°C ~ 85°CMounting TypeSurface MountPackage / Case32-UFQFN Exposed PadSupplier Device Package32-UQFN (5x5)Base Product NumberTCA6424 TCA6424ARGJR ManufacturerTexas Instruments Incorporated (TI), a technological firm based in the United States with its headquarters in Dallas, Texas, creates and markets a range of integrated circuits and semiconductors that are sold to producers and designers of electronic devices all over the world. Based on sales volume, it is among the top 10 semiconductor businesses globally. Development of embedded processors and analog chips, which generate more than 80% of the company's income, is its main focus. Calculators, microcontrollers, and multi-core processors are among the devices that TI also makes using its digital light processing technology and for educational purposes. As of 2016, the corporation had 45,000 patents in existence. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. TCA6424ARGJR FAQWhat is I O Expander?The ability to add extra inputs and outputs (I/O) to a microprocessor (MPU) or microcontroller (MCU) system is made possible by GPIO Expanders, which are devices. They have an efficient data bus interface to reduce the I/O requirements of the MPU or MCU. What is the use of expander?The dynamic range can be expanded rather than compressed, which is the reverse of what a compressor does. Expanders are thus most effective when you desire a greater dynamic range. Expanders can be used to provide vocal or instrumental performances a little more loudness variation. What is I2C IO expander?The Raspberry Pi can communicate with other embedded devices via the I2C (eye-squared-cee) protocol (temperature sensors, displays, accelerometers, etc). In this illustration, we'll attach our Raspberry Pi to an MCP23008 I/O expander. The I/O expander increases the number of GPIO ports.
kynix On 2023-03-04
CatalogProduct OverviewSTM8S105C6T6 CAD ModelsSTM8S105C6T6 Pin ConfigurationSTM8S105C6T6 Block DiagramSTM8S105C6T6 FeaturesSTM8S105C6T6 DatasheetSTM8S105C6T6 SpecificationsSTM8S105C6T6 ManufacturerUsing WarningSTM8S105C6T6 FAQ Product OverviewThe STM8S105x4/6 access line 8-bit microcontrollers offer from 16 to 32 Kbyte Flash program memory, plus integrated true data EEPROM. The STM8S microcontroller family reference manual (RM0016) refers to devices in this family as medium-density. All devices of the STM8S105x4/6 access line provide the following benefits: reduced system cost, performance and robustness, short development cycles, and product longevity. The system cost is reduced thanks to an integrated true data EEPROM for up to 300 k write/erase cycles and a high system integration level with internal clock oscillators, watchdog and brown-out reset. Device performance is ensured by a 16 MHz CPU clock frequency and enhanced characteristics which include robust I/O, independent watchdogs (with a separate clock source), and a clock security system. Short development cycles are guaranteed due to application scalability across common family product architecture with compatible pinout, memory map and modular peripherals. Product longevity is ensured in the STM8S family thanks to their advanced core which is made in a state-of-the-art technology for applications with 2.95 V to 5.5 V operating supply. Full documentation is offered as well as a wide choice of development tools. STM8S105C6T6 CAD ModelsFigure: STM8S105C6T6 PCB Symbol Figure: STM8S105C6T6 Footprint Figure: STM8S105C6T6 3D Models STM8S105C6T6 Pin ConfigurationFigure: STM8S105C6T6 Pin Configuration STM8S105C6T6 Block DiagramFigure: STM8S105C6T6 Block Diagram STM8S105C6T6 FeaturesCore16 MHz advanced STM8 core with Harvardarchitecture and3-stage pipelineExtended instruction setMemoriesProgram memory: up to 32 Kbyte Flash; dataretention 20 yearsat 55 °C after 10 kcycleData memory: up to 1 Kbyte true dataEEPROM; endurance 300kcycleRAM: up to 2 KbyteClock, reset and supply management2.95 to 5.5 V operating voltageFlexible clock control, 4 master clock sources– Low power crystal resonator oscillator– External clock input– Internal, user-trimmable 16 MHz RC– Internal low-power 128 kHz RCClock security system with clock monitorPower management:– Low-power modes (wait, active-halt, halt)– Switch-off peripheral clocks individuallyPermanently active, low-consumption poweron and power-downresetInterrupt managementNested interrupt controller with 32 interruptsUp to 37 external interrupts on 6 vectorsTimersAdvanced control timer: 16-bit, 4 CAPCOMchannels, 3complementary outputs, dead-time insertion and flexible synchronization2x16-bit general purpose timer, with 2+3CAPCOM channels (IC, OC or PWM)8-bit basic timer with 8-bit prescalerAuto wake-up timerWindow watchdog and independent watchdogtimers STM8S105C6T6 DatasheetYou can download the datasheet from the link given below:STM8S105C6T6 Datasheet STM8S105C6T6 SpecificationsTypeDescriptionCategoryIntegrated Circuits (ICs)EmbeddedMicrocontrollersMfrSTMicroelectronicsSeriesSTM8SPackageTrayProduct StatusActiveCore ProcessorSTM8Core Size8-BitSpeed16MHzConnectivityI²C, IrDA, LINbus, SPI, UART/USARTPeripheralsBrown-out Detect/Reset, POR, PWM, WDTNumber of I/O38Program Memory Size32KB (32K x 8)Program Memory TypeFLASHEEPROM Size1K x 8RAM Size2K x 8Voltage - Supply (Vcc/Vdd)2.95V ~ 5.5VData ConvertersA/D 10x10bOscillator TypeInternalOperating Temperature-40°C ~ 85°C (TA)Mounting TypeSurface MountPackage / Case48-LQFPBase Product NumberSTM8 STM8S105C6T6 ManufacturerSTMicroelectronics is a global independent semiconductor company and is a leader in developing and delivering semiconductor solutions across the spectrum of microelectronics applications. An unrivaled combination of silicon and system expertise, manufacturing strength, Intellectual Property (IP) portfolio and strategic partners positions the Company at the forefront of System-on-Chip (SoC) technology and its products play a key role in enabling today's convergence trends. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. STM8S105C6T6 FAQWhat is STM8 microcontroller?The STM8 is an 8-bit microcontroller family by STMicroelectronics. The STM8 microcontrollers use an extended variant of the ST7 microcontroller architecture. STM8 microcontrollers are particularly low cost for a full-featured 8-bit microcontroller. What are 8-bit microcontrollers used for?8-bit microcontrollers are used in embedded applications including medical devices, toys, remote controls, power tools and appliances. Are 8-bit microcontrollers still used?8-bit MCUs are still used in plenty of products in legacy products and in new designs. 8-bit MCUs tend to be easier to program and understand on a deep level compared to 32-bit MCUs and are not likely to go away as long as an 8-bit MCU costs less than an equivalent 32-bit MCU.
kynix On 2023-03-01
CatalogProduct OverviewBTN8982TA CAD ModelsBTN8982TA Pin ConfigurationBTN8982TA Block DiagramBTN8982TA FeaturesBTN8982TA DatasheetBTN8982TA SpecificationsBTN8982TA ManufacturerUsing WarningBTN8982TA FAQ Product OverviewThe BTN8982TA is an integrated high current half bridge for motor drive applications. It is part of the NovalithIC™ family containing one p-channel highside MOSFET and one n-channel lowside MOSFET with an integrated driver IC in one package. Due to the p-channel highside switch the need for a charge pump is eliminated thus minimizing EMI. Interfacing to a microcontroller is made easy by the integrated driver IC which features logic level inputs, diagnosis with current sense, slew rate adjustment, dead time generation and protection against overtemperature, undervoltage, overcurrent and short circuit. The BTN8982TA provides a cost optimized solution for protected high current PWM motor drives with very low board space consumption. BTN8982TA CAD ModelsFigure: BTN8982TA PCB Symbol Figure: BTN8982TA Footprint Figure: BTN8982TA 3D Models BTN8982TA Pin ConfigurationFigure: BTN8982TA Pin Configuration BTN8982TA Block DiagramFigure: BTN8982TA Block Diagram BTN8982TA FeaturesPath resistance of max. 20.4 mΩ @ 150 °C (typ. 10.0 mΩ @ 25 °C)High Side: max. 10.5 mΩ @ 150 °C (typ. 5.3 mΩ @ 25 °C)Low Side: max. 9.9 mΩ @ 150 °C (typ. 4.7 mΩ @ 25 °C)Enhanced switching speed for reduced switching lossesCapable for high PWM frequency combined with active freewheelingLow quiescent current of typ. 7 μA @ 25 °CSwitched mode current limitation for reduced power dissipation in overcurrentCurrent limitation level of 55 A min.Status flag diagnosis with current sense capabilityOvertemperature shut down with latch behaviourUndervoltage shut downDriver circuit with logic level inputsAdjustable slew rates for optimized EMIOperation up to 40VGreen Product (RoHS compliant)AEC Qualified BTN8982TA DatasheetYou can download the datasheet from the link given below:BTN8982TA Datasheet BTN8982TA SpecificationsTypeDescriptionCategoryIntegrated Circuits (ICs)Power Management (PMIC)Full Half-Bridge DriversMfrInfineon TechnologiesSeriesNovalithIC™Product StatusNot For New DesignsOutput ConfigurationHalf BridgeApplicationsDC Motors, General PurposeInterfaceLogicLoad TypeInductiveTechnologyDMOSRds On (Typ)4.7mOhm LS, 5.3mOhm HSCurrent - Output / Channel50ACurrent - Peak Output117AVoltage - Supply5.5V ~ 40VVoltage - Load5.5V ~ 40VOperating Temperature-40°C ~ 150°C (TJ)FeaturesLatch Function, Slew Rate Controlled, Status FlagFault ProtectionCurrent Limiting, Over Temperature, Short Circuit, UVLOMounting TypeSurface MountPackage / CaseTO-263-8, D²Pak (7 Leads + Tab), TO-263CASupplier Device PackagePG-TO263-7-1Base Product NumberBTN8982 BTN8982TA ManufacturerInfineon is a leading global designer, manufacturer and supplier of a broad range of semiconductors used in various microelectronic applications. Infineon's product portfolio consists of logic products, including digital, mixed-signal, and analog integrated circuits, as well as discrete semiconductor products. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. BTN8982TA FAQWhat is a half-bridge circuit used for?A half-bridge converter is a type of DC-DC converter that, like flyback and forward converters, can supply an output voltage either higher or lower than the input voltage and provide electrical isolation via a transformer. What is the main drawback of half bridge inverter?The main drawback of a single-phase half-bridge inverter is that it requires a 3-wire DC supply source. However, this drawback can be overcome by the use of a full-bridge inverter. What is an H-bridge and why is it needed?The H-bridge is an electronic circuit that looks like the letter H. An H-bridge is used to drive a load, such as a brushed DC motor, in both directions. And it controls the flow of current to a load.
kynix On 2023-03-01
CatalogSTM32F767BIT6 Product OverviewSTM32F767BIT6 Related Video IntroductionSTM32F767BIT6 CAD ModelsSTM32F767BIT6 Pin ConfigurationSTM32F767BIT6 Block DiagramSTM32F767BIT6 Power Supply SchemeSTM32F767BIT6 FeaturesSTM32F767BIT6 ApplicationsSTM32F767BIT6 DatasheetSTM32F767BIT6 SpecificationsSTM32F767BIT6 ManufacturerUsing WarningSTM32F767BIT6 FAQSTM32F767BIT6 Product OverviewThe STM32F767BIT6 is a Arm® Cortex®-M7 32b MCU+FPU. The high-performance Arm® Cortex®-M7 32-bit RISC core used in the STM32F765xx, STM32F767xx, STM32F768Ax, and STM32F769xx devices operates at up to 216 MHz frequency. A floating point unit (FPU) that supports Arm® single-precision and double-precision data-processing instructions and data formats is a feature of the Cortex®-M7 core. Moreover, it incorporates a memory protection unit (MPU) that improves program security together with the whole range of DSP instructions. The STM32F765xx, STM32F767xx, STM32F768Ax, and STM32F769xx devices include high-speed embedded memories with a Flash memory up to 2 Mbytes, 512 Kbytes of SRAM (including 128 Kbytes of Data TCM RAM for critical real-time data), 16 Kbytes of Instruction TCM RAM (for critical real-time routines), 4 Kbytes of backup SRAM available in the lowest power modes, and an extensive range of enhanced I/Os and peripherals connected to two APB buses, two AHB buses, a 32-bit multi-AHB bus matrix and a multi layer AXI interconnect supporting internal and external memories access. Two SDMMC interfaces, a Flexible Memory Control (FMC) interface, a Quad-SPI Flash memory interface, and a camera interface for CMOS sensors are examples of advanced peripherals. The STM32F765xx, STM32F767xx, STM32F768Ax, and STM32F769xx devices run on a 1.7 to 3.6 V power supply and function in the -40 to +105 °C temperature range. For a wider range of power supply options, dedicated supply inputs for USB (OTG FS and OTG HS) and SDMMC2 (clock, command, and 4-bit data) are available on all the packages with the exception of LQFP100. With the aid of an external power supply supervisor, the supply voltage can fall as low as 1.7 V. The development of low-power applications is made possible by a wide range of power-saving modes. The devices offered by the STM32F765xx, STM32F767xx, STM32F768Ax, and STM32F769xx come in 11 packages with pin counts ranging from 100 to 216. Depending on the device selected, a different set of peripherals are included. STM32F767BIT6 Related Video IntroductionVideo Description: Microprocessors and microcontrollers nearly have the same visual appearance, although they differ greatly in many ways. They differ in terms of the application they are used for, their processing speed, memory, price, and power requirements.You will learn about the distinctions between a microprocessor and a microcontroller in this video. STM32F767BIT6 CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Models STM32F767BIT6 Pin Configuration Figure: Pin Configuration STM32F767BIT6 Block Diagram Figure: Block Diagram STM32F767BIT6 Power Supply Scheme Figure: Power Supply Scheme STM32F767BIT6 FeaturesIncludes ST state-of-the-art patented technologyLow-power– Sleep, Stop and Standby modes– VBAT supply for RTC, 32×32 bit backup registers + 4 Kbytes backup SRAM3×12-bit, 2.4 MSPS ADC: up to 24 channelsDigital filters for sigma delta modulator(DFSDM), 8 channels / 4 filters2×12-bit D/A convertersGeneral-purpose DMA: 16-stream DMAcontroller with FIFOs and burst supportUp to 18 timers: up to thirteen 16-bit (1x lowpower 16-bit timer available in Stop mode) andtwo 32-bit timers, each with up to 4IC/OC/PWM or pulse counter and quadrature (incremental) encoder input. All 15 timers running up to 216 MHz. 2x watchdogs, SysTick timerDebug mode– SWD and JTAG interfaces– Cortex®-M7 Trace Macrocell™Up to 168 I/O ports with interrupt capability– Up to 164 fast I/Os up to 108 MHz– Up to 166 5 V-tolerant I/OsCore: Arm® 32-bit Cortex®-M7 CPU withDPFPU, ART Accelerator and L1-cache:16 Kbytes I/D cache, allowing 0-wait state execution from embedded Flash and external memories, up to 216 MHz, MPU, 462 DMIPS/2.14 DMIPS/MHz (Dhrystone 2.1), and DSP instructions.Memories– Up to 2 Mbytes of Flash memory organized into two banks allowing read-while-write– SRAM: 512 Kbytes (including 128 Kbytes of data TCM RAM for critical real-time data) + 16 Kbytes of instruction TCM RAM (forcritical real-time routines) + 4 Kbytes of backup SRAM– Flexible external memory controller with up to 32-bit data bus: SRAM, PSRAM, SDRAM/LPSDR SDRAM, NOR/NAND memoriesDual mode Quad-SPIGraphics– Chrom-ART Accelerator (DMA2D), graphical hardware accelerator enabling enhanced graphical user interface– Hardware JPEG codec– LCD-TFT controller supporting up to XGA resolution– MIPI® DSI host controller supporting up to 720p 30 Hz resolutionClock, reset and supply management– 1.7 V to 3.6 V application supply and I/Os– POR, PDR, PVD and BOR– Dedicated USB power– 4-to-26 MHz crystal oscillator– Internal 16 MHz factory-trimmed RC (1% accuracy)– 32 kHz oscillator for RTC with calibration– Internal 32 kHz RC with calibrationUp to 28 communication interfaces– Up to 4 I2C interfaces (SMBus/PMBus)– Up to 4 USARTs/4 UARTs (12.5 Mbit/s, ISO7816 interface, LIN, IrDA, modem control)– Up to 6 SPIs (up to 54 Mbit/s), 3 with muxed simplex I2S for audio– 2 x SAIs (serial audio interface)– 3 × CANs (2.0B Active) and 2x SDMMCs– SPDIFRX interface– HDMI-CEC– MDIO slave interfaceAdvanced connectivity– USB 2.0 full-speed device/host/OTG controller with on-chip PHY– USB 2.0 high-speed/full-speed device/host/OTG controller with dedicated DMA, on-chip full-speed PHY and ULPI– 10/100 Ethernet MAC with dedicated DMA: supports IEEE 1588v2 hardware, MII/RMII8- to 14-bit camera interface up to 54 Mbyte/sTrue random number generatorCRC calculation unitRTC: subsecond accuracy, hardware calendar96-bit unique ID STM32F767BIT6 ApplicationsAlarm systems, video intercom, and HVACHome audio appliancesMobile applications, Internet of ThingsWearable devices: smartwatchesMotor drive and application controlMedical equipmentIndustrial applications: PLC, inverters, circuit breakersPrinters, and scanners STM32F767BIT6 DatasheetYou can download the datasheet from the link given below: STM32F767BIT6 Datasheet STM32F767BIT6 SpecificationsTypeDescriptionCategoryIntegrated Circuits (ICs)EmbeddedMicrocontrollersMfrSTMicroelectronicsSeriesSTM32F7PackageTrayProduct StatusActiveCore ProcessorARM® Cortex®-M7Core Size32-Bit Single-CoreSpeed216MHzConnectivityCANbus, EBI/EMI, Ethernet, I²C, IrDA, LINbus, MMC/SD/SDIO, QSPI, SAI, SPDIF, SPI, UART/USART, USB OTGPeripheralsBrown-out Detect/Reset, DMA, I²S, LCD, POR, PWM, WDTNumber of I/O159Program Memory Size2MB (2M x 8)Program Memory TypeFLASHEEPROM Size-RAM Size512K x 8Voltage - Supply (Vcc/Vdd)1.7V ~ 3.6VData ConvertersA/D 24x12b; D/A 2x12bOscillator TypeInternalOperating Temperature-40°C ~ 85°C (TA)Mounting TypeSurface MountPackage / Case208-LQFPSupplier Device Package208-LQFP (28x28)Base Product NumberSTM32F767STM32F767BIT6 ManufacturerSTMicroelectronics N.V., sometimes known as ST or STMicro, is a global Dutch firm that specializes in technology with French and Italian roots. Its headquarters are in Plan-les-Ouates, which is close to Geneva, Switzerland, and it is listed on the French stock exchange. The largest semiconductor contract manufacturing and design business in Europe is ST. In 1987, Thomson Semiconducteurs of France and SGS Microelettronica of Italy, two government-owned semiconductor businesses, merged to form the corporation. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. STM32F767BIT6 FAQWhat is a microcontroller used for?A microcontroller is a compact microcomputer designed to manage embedded systems in office equipment, robotics, home appliances, cars, and several other devices. A microcontroller is made up of different parts, including a CPU, memory, and peripherals. Is an Arduino a microprocessor or microcontroller?An 8-bit microcontroller board is called an Arduino. Eight bits of data can be processed at once. A 64-bit microprocessor is at the heart of the Raspberry Pi minicomputer. At one time, 64 bits of data can be processed. Does microcontroller use AC or DC?For the purpose of our needs in circuits containing microcontrollers, the output voltage must be in the form of direct current (DC).
kynix On 2023-03-01
CatalogPIC24FJ64GA004-I/PT PIC Microcontrollers OverviewPIC24FJ64GA004-I/PT CAD Model PIC24FJ64GA004-I/PT FeaturesPIC24FJ64GA004-I/PT ApplicationsPIC24FJ64GA004-I/PT DatasheetPIC24FJ64GA004-I/PT SpecificationsPIC24FJ64GA004-I/PT Functional Block DiagramPIC24FJ64GA004-I/PT Pin configuration PIC24FJ64GA004-I/PT Package OutlinePIC24FJ64GA004-I/PT Microcontrollers ManufacturerPIC24FJ64GA004-I/PT FAQs PIC24FJ64GA004-I/PT Microcontrollers OverviewBefore you begin experimenting, it is a good idea to read up on the basic categories and features of the PIC24FJ64GA004-I/PT PIC microcontroller. Understanding what is meant by the MCU for industrial applications helps put things into perspective. Understand what makes one chip superior to another in the same family group. PIC24FJ64GA004-I/PT CAD Model The PIC24FJ64GA004-I/PT CAD model divides into 3 parts as follows.The PIC24FJ64GA004-I/PT PCB Symbol is as follows. Figure: PIC24FJ64GA004-I/PT PCB Symbol The PIC24FJ64GA004-I/PT PCB Footprint is as follows. Figure: PIC24FJ64GA004-I/PT PCB Footprint The PIC24FJ64GA004-I/PT 3D Model is as follows. Figure: PIC24FJ64GA004-I/PT 3D Model PIC24FJ64GA004-I/PT FeaturesThe following are the features of the PIC24FJ64GA004-I/PT PIC microcontroller MCU.Central to all PIC24F devices is the 16-bit modified Harvard architecture, first introduced with Microchip’s dsPIC® Digital Signal Controllers (DSCs). The PIC24F CPU core offers a wide range of enhancements, such as:• 16-bit data and 24-bit address paths with the ability to move information between data and memory spaces• Linear addressing of up to 12 Mbytes (program space) and 64 Kbytes (data)• A 16-element working register array with built-in software stack support• A 17 x 17 hardware multiplier with support for integer math• Hardware support for 32 by 16-bit division• An instruction set that supports multiple addressing modes and is optimized for high-level languages such as ‘C’• Operational performance up to 16 MIPSPIC24FJ64GA004-I/PT ApplicationsThe following are the applications of the PIC24FJ64GA004-I/PT. • Phones• Computer• Embedded Operating System• Audio accessories• Peripherals• Video gamesPIC24FJ64GA004-I/PT DatasheetYou can download the PIC microcontroller PIC24FJ64GA004-I/PT datasheet from the link given below:PIC24FJ64GA004-I/PTPIC24FJ64GA004-I/PT SpecificationsThe PIC24FJ64GA004-I/PT PIC microcontroller specifications are as follows. Product AttributeAttribute ValueManufacturer:MicrochipProduct Category:16-bit Microcontrollers - MCUSeries:PIC24FJxxGA00xMounting Style:SMD/SMTPackage / Case:TQFP-44Core:PIC24FProgram Memory Size:64 kBData Bus Width:16 bitADC Resolution:10 bitMaximum Clock Frequency:32 MHzNumber of I/Os:35 I/OData RAM Size:8 kBSupply Voltage - Min:2 VSupply Voltage - Max:3.6 VMinimum Operating Temperature:- 40 ℃Maximum Operating Temperature:+ 85 ℃Qualification:AEC-Q100Packaging:TrayBrand:Microchip Technology / AtmelData RAM Type:RAMHeight:1 mmInterface Type:I2C, IrDA, SPI, UARTLength:10 mmMoisture Sensitive:YesNumber of ADC Channels:13 ChannelNumber of Timers/Counters:5 TimerProcessor Series:PIC24FProduct:MCUProduct Type:16-bit Microcontrollers - MCUProgram Memory Type:FlashSubcategory:Microcontrollers - MCUTradename:PICWidth:10 mmUnit Weight:0.077179 ozPIC24FJ64GA004-I/PT Functional Block DiagramThe PIC24FJ64GA004-I/PT PIC microcontroller's functional block diagram is as follows. Figure: PIC24FJ64GA004-I/PT PIC microcontroller's functional block diagram PIC24FJ64GA004-I/PT Pin configurationThe PIC24FJ64GA004-I/PT PIC microcontroller Pin configuration is as follows. Figure: PIC24FJ64GA004-I/PT PIC microcontroller pin configurationPIC24FJ64GA004-I/PT Package OutlineThe PIC24FJ64GA004-I/PT PIC microcontroller Package outline is as follows. Figure: PIC24FJ64GA004-I/PT PIC microcontroller Package outlinePIC24FJ64GA004-I/PT PIC microcontroller ManufacturerMicrochip Technology provides crypto element devices for authentication, data integrity, and confidentiality in a wide range of applications, including disposables, accessories, and nodes. Crypto element devices employ highly secure, hardware-based cryptographic countermeasures, such as tamper detection.PIC24FJ64GA004-I/PT FAQs1. Is the PIC24FJ64GA004-I/PT PIC microcontroller used in the industry?The PIC24FJ64GA004-I/PT PIC microcontrollers are currently widely used in the industry due to their low power requirements, high-performance capabilities, and ease of accessibility to the hardware and software tools needed to support them, such as compilers, debuggers, and simulators.2. What are the industrial applications of the PIC24FJ64GA004-I/PT PIC microcontroller?The PIC24FJ64GA004-I/PT PIC microcontrollers can be found in a variety of applications, including audio accessories, peripherals, and video games, as well as phones, computers, and embedded operating systems.3. What is the best PIC microcontroller for industrial applications?The PIC24FJ64GA004-I/PT Microcontroller for advanced industrial applications is the newest device in Microchip Technology's industrial microcontroller portfolio, with a high-performance CPU and Peripheral Features to increase flexibility and value to the designer.
kynix On 2023-03-01
L293DD DescriptionL293DD FeaturesL293DD ApplicationsL293DD PinoutL293DD CAD ModelsL293DD ParametersL293DD ManufacturerL293DD PackageL293DD DatasheetL293DD FAQs L293DD Description The L293DD is a monolithic integrated high voltage, high current four channel driver designed to accept standard DTL or TTL logic levels and drive inductive loads (such as relays solenoides, DC and stepping motors) and switching power transistors.To simplify use as two bridges each pair of channels is equipped with an enable input. A separate supply input is provided for the logic, allowing operation at a lower voltage and internal clamp diodes are included. This device is suitable for use in switching applications at frequencies up to 5 kHz. The L293DD is assembled in a 20 lead surface mount which has 8 center pins connected together and used for heatsinking. L293DD Features 600mA output current capability per channel1.2A peak output current (non repetitive) per channelEnable facilityOvertemperature protectionLogical "0" Input voltage up to 1.5 V (high noise immunity)Internal clamp diodes L293DD Applications Stepper Motor DriversDC Motor DriversLatching Relay Drivers L293DD Pinout L293DD CAD ModelsSymbolFootprint3D Models L293DD Parameters Product AttributeAttribute ValueManufacturer:STMicroelectronicsProduct Category:Motor/Motion/Ignition Controllers & DriversRoHS:DetailsProduct:Brushed DC Motor DriversType:Full BridgeOperating Supply Voltage:4.5 V to 36 VOutput Current:600 mAOperating Supply Current:2 mAMinimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 150 CMounting Style:SMD/SMTPackage/Case:SOIC-20Packaging:TubeMoisture Sensitive:YesNumber of Outputs:2 OutputProduct Type:Motor / Motion / Ignition Controllers & DriversSeries:L293DSubcategory:PMIC - Power Management ICsUnit Weight:266.700 mg L293DD Manufacturer STMicroelectronics is a global independent semiconductor company and is a leader in developing and delivering semiconductor solutions across the spectrum of microelectronics applications. An unrivaled combination of silicon and system expertise, manufacturing strength, Intellectual Property (IP) portfolio and strategic partners positions the Company at the forefront of System-on-Chip (SoC) technology and its products play a key role in enabling today's convergence trends. L293DD Package L293DD Datasheet L293DD PDF L293DD FAQs -What is L293D used for?-The L293D is designed to provide bidirectional drive currents of up to 600-mA at voltages from 4.5 V to 36 V. Both devices are designed to drive inductive loads such as relays, solenoids, DC and bipolar stepping motors, as well as other high-current/high-voltage loads in positive-supply applications. -What type is L293D?-The L293D is a dual-channel H-Bridge motor driver capable of driving a pair of DC motors or a single stepper motor. This means it can drive up to two motors individually which makes it ideal for building a two-wheeled robotic platform. -Can a L293D control 4 motors?-Using this L293D motor shield, we can control 4 DC motor operating from 4.5V to 36V with 600mA current per channel.
kynix On 2023-03-01
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