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CatalogDescriptionCAD ModelsPin ConfigurationTypical Application Block DiagramFeaturesApplicationsDatasheetProduct AttributesManufacturerUsing WarningDescriptionThe TCA9406 is a 2-bit bidirectional I2C and SMBus voltage-level translator with an output enable (OE) input. It is operational from 1.65 V to 3.6 V on the Aside, referenced toVCCA, and from 2.3 V to 5.5 V on the B-side, referenced to VCCB. This allows the device to interface between lower and higher logic signal levels at any of the typical 1.8-V, 2.5-V, 3.3-V, and 5-V supply rails. The OE input pin is referenced to VCCA, can be tied directly to VCCA, but it is also 5.5-V tolerant. The OE pin can also be controlled and set to a logic low to place all the SCL and SDA pins in a high-impedance state, which significantly reduces the quiescent current consumption. Under normal I2C and SMBus operation or other open-drain configurations, the TCA9406 can support up to 2 Mbps; therefore, it is compatible with standard I2C speeds where the frequency of SCL is 100 kHz (Standard-mode), 400 kHz (Fast-mode), or 1 MHz (Fast-mode Plus). The device can also be used as a general purpose level translator, and when the A- and B-side ports are both driven with push-pull devices the TCA9406 can support up to 24 Mbps. The TCA9406 features internal 10-kΩ pullup resistors on SCL_A, SDA_A, SCL_B, and SDA_B. Additional external pullup resistors can be added to the bus to reduce the total pullup resistance and speed up rising edges. CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Model Pin Configuration Figure: Pin Configurations Typical Application Block Diagram Figure: Typical Application Block Diagram for TCA9406 Features2-Bit Bidirectional Translator for SDA and SCL Lines in I2C ApplicationsProvides Bidirectional Voltage Translation With No Direction PinHigh-Impedance Output SCL_A, SDA_A, SCL_B, SDA_B Pins When OE = Low or VCC = 0 VInternal 10-kΩ Pullup Resistor on All SDA and SCL Pins1.65 V to 3.6 V on A port and 2.3 V to 5.5 V on B port (VCCA ≤ VCCB)VCC Isolation Feature: If Either VCC Input Is at GND, Both Ports Are in the High-Impedance StateNo Power-Supply Sequencing Required: Either VCCA or VCCB Can Be Ramped FirstLow Ioff of 2 µA When Either VCCA or VCCB = 0 VOE Input Can Be Tied Directly to VCCA Or Controlled By GPIOLatch-Up Performance Exceeds 100 mA Per JESD 78, Class IIESD Protection Exceeds JESD 22 – A Port – 2500-V Human-Body Model (A114-B) – 250-V Machine Model (A115-A) – 1500-V Charged-Device Model (C101) – B Port – 8-kV Human-Body Model (A114-B) – 250-V Machine Model (A115-A) – 1500-V Charged-Device Model (C101) ApplicationsI2C/SMBusUARTGPIO DatasheetYou can download the datasheet from the link given below:TCA9406DCUR-Datasheet Product AttributesManufacturer:Texas InstrumentsProduct Category:Translation - Voltage LevelsSupply Voltage - Max:5.5 VSupply Voltage - Min:1.65 VMinimum Operating Temperature:- 40 ℃Maximum Operating Temperature:+ 85 ℃Mounting Style:SMD/SMTPackage / Case:VSSOP-8Series:TCA9406Packaging:ReelPackaging:Cut TapePackaging:MouseReelBrand:Texas InstrumentsFeatures:Enable PinFunction:I2C Voltage Level TranslatorOperating Temperature Range:- 40 ℃ to + 85 ℃Product Type:Translation - Voltage LevelsFactory Pack Quantity:3000Subcategory:Logic ICsUnit Weight:0.000670 oz ManufacturerTexas Instruments Incorporated (TI) is an American technology company headquartered in Dallas, Texas, that designs and manufactures semiconductors and various integrated circuits, which it sells to electronics designers and manufacturers globally. It is one of the top 10 semiconductor companies worldwide based on sales volume.The company's focus is on developing analog chips and embedded processors, which account for more than 80% of its revenue.TI also produces TI digital light processing technology and education technology products including calculators, microcontrollers and multi-core processors. The company holds 45,000 patents worldwide as of 2016. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit.
Kynix On 2021-10-28
CatalogDescriptionProduct HighlightsCAD ModelsPin ConfigurationFunctional Block DiagramFeaturesApplicationsDatasheetProduct AttributesManufacturerUsing WarningDescriptionThe ADG1419 is a monolithic iCMOS device containing a single-pole/double-throw (SPDT) switch.An EN input on the LFCSP is used to enable or disable the device. When disabled, all channels are switched off. The industrial CMOS (iCMOS) modular manufacturing process combines high voltage, complementary metal-oxide semiconductor (CMOS) and bipolar technologies. It enables the development of a wide range of high performance analog ICs capable of 33 V operation in a footprint that no other generation of high voltage parts has achieved. Unlike analog ICs using conventional CMOS processes, iCMOS components can tolerate high supply voltages while providing increased performance, dramatically lower power consumption, and reduced package size. The on-resistance profile is very flat over the full analog input range, ensuring excellent linearity and low distortion when switching audio signals. The iCMOS construction ensuresultralow power dissipation, making the part ideally suited for portable and battery-powered instruments. Each switch conducts equally well in both directions when on and has an input signal range that extends to the supplies. In the off condition, signal levels up to the supplies are blocked. The ADG1419 exhibits break-before-make switching action for use in multiplexer applications. Product Highlights2.4 Ω maximum on resistance at 25°C.Minimum distortion.3 V logic-compatible digital inputs: VINH = 2.0 V, VINL = 0.8 V.No VL logic power supply required.8-lead MSOP and 8-lead, 3 mm × 2 mm LFCSP. CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Model Pin Configuration Figure: Pin Configurations Functional Block Diagram Figure: Functional Block Diagram Features2.1 Ω on resistance0.5 Ω maximum on-resistance flatness at 25°CUp to 390 mA continuous currentFully specified at +12 V, ±15 V, ±5 VNo VL supply required3 V logic-compatible inputsRail-to-rail operation8-lead MSOP and 8-lead, 3 mm × 2 mm LFCSP ApplicationsAutomatic test equipmentData acquisition systemsBattery-powered systemsRelay replacementsSample-and-hold systemsAudio signal routingVideo signal routingCommunication systems DatasheetYou can download the datasheet from the link given below:ADG1419BRMZ-Datasheet Product AttributesManufacturer:Analog Devices Inc.Product Category:Analog Switch ICsMounting Style:SMD/SMTPackage / Case:MSOP-8Number of Channels:1 ChannelConfiguration:1 x SPDTOn Resistance - Max:2.4 OhmsSupply Voltage - Min:5 VSupply Voltage - Max:16.5 VMinimum Dual Supply Voltage:+/- 4.5 VMaximum Dual Supply Voltage:+/- 16.5 VOn Time - Max:110 nsOff Time - Max:140 nsMinimum Operating Temperature:- 40 ℃Maximum Operating Temperature:+ 125 ℃Series:ADG1419Packaging:TubeBrand:Analog DevicesHeight:0.85 mmLength:3 mmPd - Power Dissipation:2 mWProduct Type:Analog Switch ICsFactory Pack Quantity:50Subcategory:Switch ICsSupply Current - Max:95 uASupply Type:Single Supply, Dual SupplySwitch Continuous Current:215 mAWidth:3 mmUnit Weight:0.004938 oz ManufacturerAnalog Devices, Inc. (ADI), also known simply as Analog, is an American multinational semiconductor company specializing in data conversion, signal processing and power management technology, headquartered in Wilmington, Massachusetts. In 2012, Analog Devices led the worldwide data converter market with a 48.5% share, according to analyst firm Databeans. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit.
Kynix On 2021-10-28
Product OverviewThis two-bit non-inverting translator is a bidirectional voltage-level translator and can be used to establish digital switching compatibility between mixed-voltage systems. It uses two separate configurable powersupply rails, with the A ports supporting operating voltages from 1.65 V to 3.6 V while it tracks the VCCA supply, and the B ports supporting operating voltages from 2.3 V to 5.5 V while it tracks the VCCB supply. This allows the support of both lower and higher logic signal levels while providing bidirectional translation capabilities between any of the 1.8-V, 2.5-V, 3.3-V, and 5-V voltage nodes. This blog will introduce TXS0102DQER systematically from its features, pinout to its specifications, applications, also including TXS0102DQER datasheet and so much more. Video: Voltage Level Translation for UART Interface CatalogProduct OverviewTXS0102DQER FeaturesTXS0102DQER PinoutTXS0102DQER ApplicationsTypical Application Block DiagramTXS0102DQER CAD ModelsTypical Application CircuitTXS0102DQER PackageTXS0102DQER SpecificationTXS0102DQER ManufacturerTXS0102DQER DatasheetUsing WarningsTXS0102DQER FAQ TXS0102DQER FeaturesNo Direction-Control Signal NeededMaximum Data Rates– 24 Mbps (Push Pull)– 2 Mbps (Open Drain)Available in the Texas Instruments NanoStar™Package1.65 V to 3.6 V on A Port and 2.3 V to 5.5 V on BPort (VCCA ≤ VCCB)VCC Isolation Feature: If Either VCC Input Is atGND, Both Ports Are in the High-Impedance StateNo Power-Supply Sequencing Required: EitherVCCA or VCCB Can Be Ramped FirstIoff Supports Partial-Power-Down Mode OperationLatch-Up Performance Exceeds 100 mA PerJESD 78, Class IIESD Protection Exceeds JESD 22– A Port:– 2500-V Human-Body Model (A114-B)– 250-V Machine Model (A115-A)– 1500-V Charged-Device Model (C101)– B Port:– 8-kV Human-Body Model (A114-B)– 250-V Machine Model (A115-A)– 1500-V Charged-Device Model (C101) TXS0102DQER PinoutThe following figure is the diagram of TXS0102DQER pinout. TXS0102DQER Pinout TXS0102DQER Pin Functions TXS0102DQER ApplicationsI2C / SMBusUARTGPIO Typical Application Block DiagramThe following figure shows the typical application block diagram for TXS0102. Typical Application Block DiagramTXS0102DQER CAD ModelsThe followings are TXS0102DQER Symbol, Footprint, and 3D Model. TXS0102DQER Symbol TXS0102DQER Footprint TXS0102DQER 3D Model Typical Application CircuitThe following is the typical application circuit diagram of TXS0102 device. TXS0102 Circuit Diagram TXS0102DQER PackageThe following diagram shows the TXS0102DQER package. TXS0102DQER Package TXS0102DQER SpecificationAmbient Temperature Range High85 °CData Rate24 MbpsHigh Level Output Current-20µALogic FunctionTranslatorLow Level Output Current1 mAMax Junction Temperature (Tj)150 °CMax Operating Temperature85 °CMax Supply Voltage5.5 VMin Operating Temperature-40 °CMin Supply Voltage1.65 VNominal Supply Current14.4 µANumber of Bits2Number of Channels2Number of Circuits1Number of Inputs2Number of Outputs2Output TypeVoltagePackagingCut Tape (CT)Propagation Delay4.6 nsQuiescent Current14.4 µASchedule B8542390000Turn-On Delay Time260 ns TXS0102DQER ManufacturerTexas Instruments Incorporated designs and manufactures analog technologies, digital signal processing (DSP) and microcontroller (MCU) semiconductors. TI is a leader in semiconductor solutions for analog and digital embedded and applications processing. A global semiconductor company, TI innovates through design, sales and manufacturing operations in more than 30 countries. TXS0102DQER DatasheetYou can download TXS0102DQER datasheet from the link given below:TXS0102DQER Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. TXS0102DQER FAQWhat kind of power supply does txs0102dqer use?It uses two separate configurable power-supply rails, with the A ports supporting operating voltages from 1.65 to 3.6V while it tracks the VCCA supply and the B ports supporting operating voltages from 2.3 to 5.5V while it tracks the VCCB supply. Is there a warranty on Texas Instruments txs0102dqer?Texas Instruments has several brands around the world that may alttemate names for TXS0102DQER due to regional differences or acquisition. Each product from Kynix has been given a warranty period of 1 YEAR .During this period ,we could provide free technical maintenance if there are any problems about our products. What is a voltage level translator?A level shifter (level translator), in digital electronics, also called logic-level shifter or voltage level translation, is a circuit used to translate signals from one logic level or voltage domain to another, allowing compatibility between ICs with different voltage requirements, such as TTL and CMOS.
Kynix On 2021-10-28
CatalogProduct Overview STM32F407VET6 CAD Models STM32F407VET6 Pin ConfigurationSTM32F407VET6 Block Diagram STM32F407VET6 FeaturesSTM32F407VET6 ApplicationsSTM32F407VET6 DatasheetSTM32F407VET6 SpecificationsSTM32F407VET6 ManufacturerUsing WarningSTM32F407VET6 FAQ Product OverviewThe STM32F405xx and STM32F407xx family is based on the high-performance ARM® Cortex®-M4 32-bit RISC core operating at a frequency of up to 168 MHz. The Cortex-M4 core features a Floating point unit (FPU) single precision which supports all ARM singleprecision data-processing instructions and data types. It also implements a full set of DSP instructions and a memory protection unit (MPU) which enhances application security. The STM32F405xx and STM32F407xx family incorporates high-speed embedded memories (Flash memory up to 1 Mbyte, up to 192 Kbytes of SRAM), up to 4 Kbytes of backup SRAM, and an extensive range of enhanced I/Os and peripherals connected to two APB buses, three AHB buses and a 32-bit multi-AHB bus matrix. All devices offer three 12-bit ADCs, two DACs, a low-power RTC, twelve general-purpose 16-bit timers including two PWM timers for motor control, two general-purpose 32-bit timers, a true random number generator (RNG). They also feature standard and advanced communication interfaces. STM32F407VET6 CAD ModelsFigure: PCB Symbol Figure: Footprint Figure: 3D Models STM32F407VET6 Pin ConfigurationFigure: Pin Configuration STM32F407VET6 Block DiagramFigure: Block Diagram STM32F407VET6 Features1)Core: ARM® 32-bit Cortex®-M4 CPU with FPU, Adaptive real-time accelerator (ART Accelerator™) allowing 0-wait state execution from Flash memory, frequency up to 168 MHz, memory protection unit, 210 DMIPS/1.25 DMIPS/MHz (Dhrystone 2.1), and DSP instructions 2)Memories 3)Up to 1 Mbyte of Flash memory 4)Up to 192+4 Kbytes of SRAM including 64-Kbyte of CCM (core coupled memory) data RAM 5)Flexible static memory controller supporting Compact Flash, SRAM, PSRAM, NOR and NAND memories 6)LCD parallel interface, 8080/6800 modes 7)Clock, reset and supply management -1.8 V to 3.6 V application supply and l/Os-POR, PDR, PVD and BOR-4-t0-26 MHz crystal oscillator-Internal 16 MHz factory-trimmed RC (1%accuracy)-32 kHz oscillator for RTC with calibration-Internal 32 kHz RC with calibration 8)Low-power operation-Sleep, Stop and Standby modes-VBAT supply for RTC, 20×32 bit backup registers + optional 4 KB backup SRAM 9)3x12-bit, 2.4 MSPS A/D converters: up to 24 channels and 7.2 MSPS in triple interleaved mode 10)2x12-bit DIA converters 11)General-purpose DMA: 16-stream DMA controller with FIFOs and burst suport 12)Up to 17 timers: up to twelve 16-bit and two 32- bit timers up to 168 MHz, each with up to 4 IC/OC/PWM or pulse counter and quadrature (incremental) encoder input 13)Debug mode-Serial wire debug (SWD) & JTAG interfaces-Cortex-M4 Embedded Trace Macrocell™ 14)Up to 140 I/O ports with interrupt capability-Up to 136 fast I/Os up to 84 MHz-Up to 138 5 V-tolerant I/Os 15)Up to 15 communication interfaces-Up to 3 × I2C interfaces (SMBus/PMBus)-Up to 4 USARTs/2 UARTs (10.5 Mbit/s, ISO 7816 interface, LIN, IrDA, modem control)-Up to 3 SPIs (42 Mbits/s), 2 with muxed full-duplex I2S to achieve audio class accuracy via internal audio PLL or external clock-2 × CAN interfaces (2.0B Active)-SDIO interface 16)Advanced connectivity-USB 2.0 full-speed device/host/OTG controller with on-chip PHY-USB 2.0 high-speed/full-speed device/host/OTGcontroller with dedicated DMA, on-chip full-speed PHY and ULPI-10/100 Ethernet MAC with dedicated DMA: supports IEEE 1588v2 hardware, MII/RMII 17)8- to 14-bit parallel camera interface up to 54 Mbytes/s 18)True random number generator 19)CRC calculation unit 20)96-bit unique ID 21)RTC: subsecond accuracy, hardware calendar STM32F407VET6 Applications1)Motor drive and application control 2)Medical equipment 3)Industrial applications: PLC, inverters, circuit breakers 4)Printers, and scanners 5)Alarm systems, video intercom, and HVAC 6)Home audio appliances STM32F407VET6 DatasheetYou can download the datasheet from the link given below:Datasheet STM32F407VET6 SpecificationsProduct AttributeAttribute ValueManufacturer:STMicroelectronicsProduct Category:ARM Microcontrollers - MCUSeries:STM32F407VEMounting Style:SMD/SMTPackage / Case:LQFP-100Core:ARM Cortex M4Program Memory Size:512 kBData Bus Width:32 bitADC Resolution:12 bitMaximum Clock Frequency:168 MHzNumber of I/Os:82 I/OData RAM Size:192 kBOperating Supply Voltage:1.8 V to 3.6 VMinimum Operating Temperature:- 40℃Maximum Operating Temperature:+ 85℃Brand:STMicroelectronicsDAC Resolution:12 bitData RAM Type:SRAMInterface Type:CAN, I2C, SDIO, I2S / SPI, UART / USART, USBMoisture Sensitive:YesNumber of ADC Channels:16 ChannelProcessor Series:STM32F40Product:MCU+FPUProduct Type:ARM Microcontrollers - MCUProgram Memory Type:FlashSubcategory:Microcontrollers - MCUSupply Voltage - Max:3.6 VSupply Voltage - Min:1.8 VTradename:STM32Watchdog Timers:Watchdog Timer, WindowedUnit Weight:0.046530 oz STM32F407VET6 ManufacturerSTMicroelectronics is a French-Italian multinational electronics and semiconductors manufacturer headquartered in Plan-les-Ouates near Geneva, Switzerland. The company resulted from the merger of two government-owned semiconductor companies in 1987: "Thomson Semiconducteurs" of France and "SGS Microelettronica" of Italy. It is commonly called "ST", and it is Europe's largest semiconductor chip maker based on revenue. While STMicroelectronics corporate headquarters and the headquarters for EMEA region are based in the Canton of Geneva, the holding company, STMicroelectronics N.V. is incorporated in the Netherlands. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. STM32F407VET6 FAQWhat is STM32F407VET6?The STM32F407VET6 is a high performance foundation line, ARM Cortex-M4 32bit microcontroller in 100 pin LQFP package. The STM32F407VET6 incorporates high speed embedded memories, extensive range of enhanced I/Os and peripherals connected to two APB buses, three AHB buses and 32bit multi AHB bus matrix. How do I program a STM32F407VET6?Warning1.Provide power for the STM32F407VET6 board through a 3.3V pin, 5V pin or over a USB cable.2.Connect the NUCLEO board to your PC over a USB cable.3.To program the STM32F407VET6 board, click on the Compile button and save the binary to the NUCLEO virtual disk . What is a microcontroller used for?In the office, microcontrollers are used in computer keyboards, monitors, printers, copiers, fax machines, and telephone systems to name a few. In your home, microcontrollers are used in microwave ovens, washers and dryers, security systems, lawn sprinkler station controllers, and music/video entertainment components.
Kynix On 2021-10-28
Product Overview74AHCT595 is an 8-bit serial-in/serial or parallel-out shift register with a storage register and 3-state outputs. Both the shift and storage register have separate clocks. The device features a serial input (DS) and a serial output (Q7S) to enable cascading and an asynchronous reset MR input. A LOW on MR will reset the shift register. Data is shifted on the LOW-to-HIGH transitions of the SHCP input. The data in the shift register is transferred to the storage register on a LOW-to-HIGH transition of the STCP input. This blog will introduce 74AHCT595D systematically from its features, pinout to its specifications, applications, also including 74AHCT595D datasheet and so much more. Video: How 74HC595 Shift Register Works ? | 3D animated CatalogProduct Overview74AHCT595D Features74AHCT595D Pinout74AHCT595D Pin description74AHCT595D Applications74AHCT595D Functional Diagram74AHCT595D PackageWaveforms and test circuit74AHCT595D Specification74AHCT595D Manufacturer74AHCT595D DatasheetUsing Warnings74AHCT595D FAQ 74AHCT595D FeaturesWide supply voltage range from 2.0 V to 5.5 VBalanced propagation delaysAll inputs have Schmitt-trigger actionOvervoltage tolerant inputs to 5.5 VHigh noise immunityCMOS low power dissipationInput levels:The 74AHC595 operates with CMOS input levelsThe 74AHCT595 operates with TTL input levelsESD protection:HBM JESD22-A114F exceeds 2000 VMM JESD22-A115-A exceeds 200 VCDM JESD22-C101E exceeds 1000 VLatch-up performance exceeds 100 mA per JESD 78 Class II Level AMultiple package optionsSpecified from -40 °C to +85 °C and from -40 °C to +125 °C 74AHCT595D PinoutThe following figure is the diagram of 74AHCT595D pinout. 74AHCT595D Pinout 74AHCT595D Pin descriptionSymbolPinDescriptionQ0, Q1, Q2, Q3, Q4, Q5, Q6, Q715, 1,2,3,4,5, 6, 7parallel data outputGND8ground (0 V)Q7S 9serial data outputMR10master reset (active LOW)SHCP11shift register clock inputSTCP12storage register clock inputOE13output enable input (active LOW)DS14serial data inputVcc16supply voltage 74AHCT595D ApplicationsSerial-to-parallel data conversionRemote control holding register 74AHCT595D Functional DiagramThe following is the circuit diagram of 74AHCT595D. 74AHCT595D Functional Diagram 74AHCT595D PackageThe following diagram shows the 74AHCT595D package. 74AHCT595D Package Waveforms and test circuitVOL and VOH are typical output voltage levels that occur with the output load. Waveforms and test circuit 74AHCT595D SpecificationLogic FunctionShift RegisterMax Operating Temperature125 °CMax Supply Voltage5.5 VMin Operating Temperature-40 °CMin Supply Voltage4.5 VNumber of Bits8Number of Circuits1Number of Elements1Number of Input Lines1Number of Output Lines9Operating Supply Voltage5 VPropagation Delay3.8 nsTurn-On Delay Time14.5 ns 74AHCT595D ManufacturerNexperia is a dedicated global leader in discretes, logic and MOSFET devices. Formerly a part of NXP Standard Products, Nexperia is focused on efficiency, producing consistently reliable semiconductor components at high volume. The company’s extensive portfolio meets the stringent standards set by the automotive industry. Industry-leading small packages, produced in Nexperia’s manufacturing facilities, combine power and thermal efficiency with best-in-class quality levels. 74AHCT595D DatasheetYou can download 74AHCT595D datasheet from the link given below:74AHCT595D Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. 74AHCT595D FAQHow does the shift register work in the 74hc595?The 595 has two registers (which can be thought of as “memory containers”), each with just 8 bits of data. The first one is called the Shift Register. The Shift Register lies deep within the IC circuits, quietly accepting input. What is shift register and its types?There are four types of shift registers: serial in-serial out (SISO) shift registers, in which data is input serially until it reaches the output; serial in-parallel out (SIPO) shift registers, in which the data is input serially one bit at a time and output in a parallel form; parallel in-serial out (PISO) shift. What is 4 bit shift register?These 4-bit registers feature parallel inputs, parallel outputs, J-K serial inputs, shift/load control input, and a direct overriding clear. The registers have two modes of operation: parallel (broadside) load, and shift (in the direction QA and QD). What is a 3 bit shift register?The shift register, which allows parallel input and produces parallel output is known as Parallel In − Parallel Out PIPO shift register. The block diagram of 3-bit PIPO shift register is shown in the following figure. This circuit consists of three D flip-flops, which are cascaded. What is an 8-bit register?The accumulator is an 8-bit register (can store 8-bit data) that is the part of the arithmetic and logical unit (ALU). After performing arithmetical or logical operations, the result is stored in accumulator. Accumulator is also defined as register A. Flag registers: It consists of 8 bits and only 5 of them are useful.
Kynix On 2021-10-28
CatalogProduct Overview DP83867ERGZT CAD ModelsDP83867ERGZT Pin ConfigurationDP83867ERGZT Block DiagramDP83867ERGZT FeaturesDP83867ERGZT ApplicationsDP83867ERGZT DatasheetDP83867ERGZT SpecificationsDP83867ERGZT ManufacturerUsing WarningDP83867ERGZT FAQ Product OverviewThe DP83867 device is a robust, low power, fully featured Physical Layer transceiver with integrated PMD sublayers to support 10BASE-Te, 100BASE-TX and 1000BASE-T Ethernet protocols. Optimized for ESD protection, the DP83867 exceeds 8-kV IEC 61000-4-2 (direct contact). The DP83867 is designed for easy implementation of 10/100/1000 Mbps Ethernet LANs. It interfaces directly to twisted pair media through an external transformer. This device interfaces directly to the MAC layer through Reduced GMII (RGMII) or embedded clock Serial GMII (SGMII). The DP83867 provides precision clock synchronization, including a synchronous Ethernet clock output. It has low latency and provides IEEE 1588 Start of Frame Detection. Designed for low power, the DP83867 consumes only 457 mW under full operating power. Wake-on-LAN can be used to lower system power consumption. DP83867ERGZT CAD ModelsFigure: PCB Symbol Figure: Footprint 3D-Models DP83867ERGZT Pin ConfigurationFigure: Pin Configuration DP83867ERGZT Block DiagramFigure: Block Diagram DP83867ERGZT Features1)Extra low latency TX < 90 ns, RX < 290 ns2)Time Sensitive Network (TSN) compliant3)Low power consumption: 457 mW4)Exceeds 8000 V IEC 61000-4-2 ESD protection5)Meets EN55011 class B emission standards6)16 programmable RGMII delay modes on RX/TX7)Integrated MDI termination resistors8)Programmable MAC interface termination impedance9)WoL (Wake-on-LAN) packet detection10)25-MHz or 125-MHz synchronized clock output11)IEEE 1588 time stamp support12)RJ45 mirror mode13)Fully compatible to IEEE 802.3 10BASE-Te, 100BASE-TX, and 1000BASE-T Specification14)Cable diagnostics15)RGMII and SGMII MAC interface options16)Configurable I/O voltage (3.3 V, 2.5 V, 1.8 V)17)Fast link drop mode18)JTAG support DP83867ERGZT Applications1)Motor drives2)Industrial factory automation3)Field Bus Support4)Industrial embedded computing5)Wired and wireless communications infrastructure6)Test and measurement7)Consumer electronics DP83867ERGZT DatasheetYou can download the datasheet from the link given below:Datasheet DP83867ERGZT SpecificationsTypeDescriptionCategoryIntegrated Circuits (ICs)Interface - ControllersMfrTexas InstrumentsPart StatusActiveProtocolEthernetFunctionPhysical Layer ControllerInterfaceSerialStandards10/100/1000 Base-TX PHYVoltage - Supply1.1V, 2.5VCurrent - Supply0Operating Temperature-40°C ~ 105°CPackage / Case48-VFQFN Exposed PadSupplier Device Package48-VQFN (7x7)Base Product NumberDP83867 DP83867ERGZT ManufacturerTexas Instruments Incorporated (TI) is an American technology company headquartered in Dallas, Texas, that designs and manufactures semiconductors and various integrated circuits, which it sells to electronics designers and manufacturers globally. It is one of the top 10 semiconductor companies worldwide based on sales volume.The company's focus is on developing analog chips and embedded processors, which account for more than 80% of its revenue.TI also produces TI digital light processing technology and education technology products including calculators, microcontrollers and multi-core processors. The company holds 45,000 patents worldwide as of 2016. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. DP83867ERGZT FAQWhat is Ethernet physical layer transceiver?An Industrial Ethernet PHY is a physical layer transceiver device for sending and receiving Ethernet frames based on the OSI network model. In the OSI model, Ethernet covers Layer 1 (the physical layer) and part of Layer 2 (the data link layer) and is defined by the IEEE 802.3 standard. Is Ethernet a physical layer protocol?The Ethernet physical layer is the physical layer functionality of the Ethernet family of computer network standards. What is the purpose of physical layer?Physical Layer is responsible for the communication of the unstructured raw data streams over a physical medium. Physical Layer maintains the data rate (how many bits a sender can send per second). It performs Synchronization of bits. It helps in Transmission Medium decision (direction of data transfer).
Kynix On 2021-10-27
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