TPA6132A2RTET
Amplifier IC Headphones, 2-Channel (Stereo) Class AB 16-WQFN (3x3) The TPA6132A2RTET is a low-power stereo headphone amplifier developed by Texas Instruments for portable and battery-powered audio applications. The device incorporates DirectPath™ technology, eliminating the need for external DC-blocking capacitors while maintaining high audio fidelity and reduced component count. The amplifier supports fully differential as well as single-ended audio inputs, providing improved immunity against system noise and radio-frequency interference. The device is optimized for portable consumer electronics including smartphones, media players, notebook computers, handheld gaming systems, and other compact audio products. Integrated pop and click suppression circuitry minimizes audible transients during startup and shutdown operation, improving user listening experience and protecting connected headphones from unwanted noise. The amplifier provides selectable gain configurations and maintains consistent output performance across a wide operating supply range. Built-in short-circuit protection, thermal shutdown protection, and electrostatic discharge protection enhance system reliability and simplify compliance with industry standards for portable electronic equipment. The TPA6132A2RTET is packaged in a compact surface-mount WQFN package suitable for high-density PCB layouts and space-constrained designs. The device is intended for low-voltage analog audio amplification applications requiring efficient power consumption, low distortion, high power-supply rejection, and capacitor-free headphone drive capability. Key Features DirectPath™ capacitor-free headphone output architecture. Integrated pop and click noise suppression. Differential and single-ended input compatibility. Selectable gain settings. High power-supply noise rejection performance. Improved RF noise immunity. Low quiescent current operation. Short-circuit and thermal-overload protection. ESD-protected outputs. Compact WQFN surface-mount package. Typical Applications Portable audio devices. Smartphones and cellular handsets. Notebook and tablet computers. MP3 and media players. Portable gaming equipment. Battery-powered consumer audio systems. Package Information Package type: WQFN surface-mount package. Mounting type: Surface mount. Manufacturer: Texas Instruments. Part number: TPA6132A2RTET. #commonpartslibrary #integratedcircuit... show more40 Uses
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LM5176PWPR
DC-DC Controllers LM5176PWPR HTSSOP-28_L9.7-W4.4-P0.65-LS6.4-BL-EP LCSC Part Number: C442493 JLCPCB Part Class: Extended Part Manufactured by TI(德州仪器) Texas Instruments LM5176 synchronous 4-switch buck-boost DC/DC controller, regulates output voltage above, below or equal to input voltage, wide 4.2V to 55V input voltage range with 60V absolute maximum, adjustable 0.8V to 55V output voltage, single-inductor buck-boost architecture, current-mode control, high-efficiency buck-boost transition, adjustable switching frequency with optional synchronization and dithering, integrated 2A MOSFET gate drivers, cycle-by-cycle current limit, optional hiccup protection, input UVLO, soft-start, power-good output, output overvoltage protection, available in HTSSOP-28 and QFN-28 packages. Search Keywords: LM5176, Texas Instruments LM5176, TI LM5176, LM5176 buck boost controller, LM5176 4 switch buck boost, LM5176 synchronous buck boost controller, 55V buck boost controller, 4.2V to 55V DC DC controller, adjustable buck boost controller, single inductor buck boost controller, LM5176 HTSSOP-28, LM5176 QFN-28, LM5176 power supply controller, LM5176 USB power delivery, LM5176 battery powered systems, LM5176 LED lighting, LM5176 datasheet Hashtags: #LM5176 #TexasInstrumentsLM5176 #TIBuckBoostController #BuckBoostController #SynchronousBuckBoost #4SwitchBuckBoost #DCDCController #55VController #SingleInductorBuckBoost #CurrentModeController #MOSFETGateDriver #2AGateDriver #AdjustableFrequencyController #UVLOController #PowerGoodController #OutputOVP #HTSSOP28 #QFN28... show more47 Uses
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TPS62740DSST
TPS62740DSST WSON-12_L3.0-W2.0-P0.5-BL-EP LCSC Part Number: C2659003 JLCPCB Part Class: Extended Part Manufactured by TI(德州仪器) Texas Instruments TPS62740/TPS62742 ultra-low-power step-down DC/DC converter, 2.2V to 5.5V input voltage range, 360nA typical quiescent current, up to 90% efficiency at 10µA load current, up to 300mA output current for TPS62740 and 400mA for TPS62742, DCS-Control architecture, up to 2MHz switching frequency, 16 selectable output voltages from 1.8V to 3.3V in 100mV steps, power-good output, slew-rate controlled load switch, output discharge function, optimized for 2.2µH inductor and 10µF output capacitor, small 2 x 3mm WSON package, suitable for Bluetooth Low Energy, RF4CE, Zigbee, industrial metering and energy harvesting applications. Search Keywords: TPS62740, TPS62742, Texas Instruments TPS62740, Texas Instruments TPS62742, TI TPS62740, TI TPS62742, TPS6274x buck converter, TPS62740 step down converter, TPS62742 step down converter, ultra low Iq buck converter, 360nA quiescent current converter, low power DC DC converter, energy harvesting buck converter, Bluetooth low energy buck converter, Zigbee power converter, 300mA buck converter, 400mA buck converter, 2x3mm WSON buck converter, TPS62740 datasheet, TPS62742 datasheet Hashtags: #TPS62740 #TPS62742 #TPS6274x #TexasInstrumentsTPS62740 #TexasInstrumentsTPS62742 #TIBuckConverter #StepDownConverter #BuckConverter #DCDCConverter #UltraLowIqConverter #360nAIq #LowPowerConverter #EnergyHarvestingConverter #BluetoothLEConverter #ZigbeeConverter #RF4CEConverter #300mABuckConverter #400mABuckConverter #DCSControl #WSONPackage... show more22 Uses
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ICM7555IPA+
Timer ICM7555IPA+ DIP-8_L10.1-W6.3-P2.54-LS7.6-BL LCSC Part Number: C1520201 ICM7555 / ICM7556 CMOS Precision Timer – low-power general-purpose timer IC compatible with the classic 555 timer architecture. Available as a single timer (ICM7555) or dual timer (ICM7556). Designed for accurate timing, pulse generation, pulse-width modulation (PWM), frequency generation, delay circuits, oscillators, and sequential timing applications. Features ultra-low supply current, wide operating voltage range (2 V to 18 V), TTL compatibility, adjustable duty cycle, and improved CMOS performance compared to standard bipolar 555 timers. Search Keywords: ICM7555, ICM7556, CMOS 555 Timer, Precision Timer IC, Low Power Timer, General Purpose Timer, PWM Generator, Pulse Generator, Oscillator IC, Delay Timer, Monostable Multivibrator, Astable Multivibrator, Frequency Generator, Timing Circuit, CMOS Timer, Analog Timer IC, Low Power Oscillator, Dual Timer IC, Single Timer IC, 555 Compatible Timer Hashtags: #ICM7555 #ICM7556 #CMOS555 #555Timer #TimerIC #PrecisionTimer #PulseGenerator #PWMGenerator #OscillatorIC #FrequencyGenerator #DelayCircuit #Monostable #Astable #CMOS #LowPowerElectronics #AnalogIC #EmbeddedSystems #ElectronicsDesign #CircuitDesign #PCBDesign... show more16 Uses
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ADA4096-4ARUZ-R7
Standard (General Purpose) Amplifier 4 Circuit Rail-to-Rail 14-TSSOP The ADA4096-4ARUZ-R7 is a precision quad operational amplifier designed for industrial, instrumentation, automotive, and general-purpose signal conditioning applications. It features rail-to-rail input and output operation, allowing accurate signal processing across a wide supply voltage range while maintaining low offset voltage, low bias current, and high stability. The device incorporates overvoltage protection on the inputs, enabling robust performance in harsh operating environments and fault-tolerant designs. Its combination of precision, low power consumption, and wide dynamic range makes it suitable for sensor interfaces, data acquisition systems, process control equipment, battery-powered devices, and measurement instrumentation. Engineering Specifications Manufacturer: Analog Devices Part Number: ADA4096-4ARUZ-R7 Device Type: Precision Operational Amplifier Amplifier Configuration: Quad Input Stage: Rail-to-Rail Output Stage: Rail-to-Rail Supply Voltage Range: Wide Operating Range Input Overvoltage Protection: Integrated Input Bias Current: Low Input Offset Voltage: Low Noise Performance: Low Noise Operation Gain Bandwidth Product: Optimized for Precision Signal Conditioning Slew Rate: Suitable for General-Purpose Analog Applications Power Consumption: Low Power Package Type: Thin Shrink Small Outline Package Mounting Style: Surface Mount Operating Temperature Range: Industrial Grade RoHS Compliant: Yes Applications: Sensor Interfaces, Data Acquisition Systems, Industrial Control, Instrumentation, Medical Electronics, Process Monitoring, Battery-Powered Equipment, Analog Signal Conditioning Key Features Rail-to-rail input and output architecture Input overvoltage protection for enhanced robustness Low offset voltage for precision measurements Low bias current for high-impedance sensor applications Stable operation across a wide supply range Suitable for single-supply and dual-supply designs Optimized for industrial and instrumentation environments #ADA4096 #ADA40964ARUZR7 #AnalogDevices #OperationalAmplifier #OpAmp #PrecisionAmplifier #RailToRail #SignalConditioning #InstrumentationAmplifier #IndustrialElectronics #DataAcquisition #SensorInterface #AnalogDesign #PCBDesign #EmbeddedSystems #SurfaceMount #LowPowerElectronics #ElectronicComponents... show more4 Uses
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BG95M3LA-64-SGNS
Cellular, Navigation BeiDou, EGDE, Galileo, GLONASS, GPS, GNSS, GSM, LTE Transceiver Module 850MHz, 900MHz, 1.8GHz, 1.9GHz Antenna Not Included Surface Mount The BG95M3LA-64-SGNS is a compact low-power LTE cellular communication module designed for IoT, telematics, asset tracking, industrial automation, and embedded wireless applications. The module supports global LTE Cat M1, Cat NB2, and EGPRS connectivity, enabling reliable wide-area wireless communication for battery-powered and mobile embedded systems. The device integrates cellular modem functionality, GNSS positioning capability, power management features, and multiple peripheral communication interfaces within a highly compact surface-mount package optimized for space-constrained embedded designs. The module is engineered for low-power operation, making it suitable for long-life IoT deployments requiring efficient wireless connectivity. The BG95M3LA-64-SGNS supports integrated satellite positioning technologies including GPS, GLONASS, Galileo, and BeiDou for location-aware applications. Its robust RF performance and industrial-grade operating capability allow deployment in harsh environmental conditions and demanding remote monitoring systems. The module provides comprehensive support for embedded communication protocols and is commonly used in smart meters, telematics units, industrial gateways, environmental monitoring systems, fleet tracking devices, and connected sensor platforms. Key Features LTE Cat M1 cellular communication support LTE Cat NB2 narrowband IoT capability EGPRS fallback connectivity Integrated GNSS positioning functionality Low-power optimized architecture Global wireless network compatibility Compact surface-mount module design Embedded TCP/IP protocol stack support UART, USB, and serial communication interfaces Integrated power management subsystem Industrial operating temperature support Embedded IoT connectivity optimization High-reliability wireless communication platform Multi-constellation satellite navigation support Electrical Characteristics Low operating power consumption Wide input voltage support High RF sensitivity performance Embedded low-power sleep functionality Stable wireless communication architecture Integrated RF and baseband processing Optimized antenna interface support Industrial-grade reliability performance Fast network registration capability Applications IoT and M2M communication systems Asset tracking devices Fleet management platforms Smart utility metering Industrial automation equipment Remote environmental monitoring Smart agriculture systems Telematics and transportation electronics Portable wireless data terminals Embedded gateway systems Smart city infrastructure Connected sensor platforms Package Information Package Type: LGA Module Mounting Type: Surface Mount Compact embedded wireless module package RoHS compliant configuration available #commonpartslibrary #wirelessmodule #lte #iot #embeddedhardware #cellularcommunication #gnss #telematics #industrialautomation #assettracking... show more113 Uses
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LP2985IM5X-3.3
Linear Voltage Regulator IC Positive Fixed 1 Output 150mA SOT-23-5 The LP2985IM5X-3.3 specification defines the engineering requirements for a low-dropout linear voltage regulator integrated circuit designed to provide a regulated 3.3 V output for precision analog and digital electronic systems. This specification establishes the functional, electrical, mechanical, thermal, environmental, and quality requirements necessary to ensure stable voltage regulation, low output noise, and long-term operational reliability. The device is intended for use in embedded systems, industrial automation, portable electronics, instrumentation, communication equipment, and battery-powered applications requiring a low-noise and highly stable power supply. Its low dropout voltage, high power supply rejection, and integrated protection features make it suitable for powering microcontrollers, sensors, analog circuitry, and other sensitive electronic devices. Engineering Requirements The low-dropout voltage regulator shall be manufactured using qualified semiconductor fabrication processes and high-quality materials to ensure consistent electrical performance, low quiescent current, and dependable long-term reliability. The device shall maintain stable operation under specified input voltage, output load, temperature, and environmental operating conditions. Electrical characteristics shall provide accurate output voltage regulation, low dropout voltage, excellent line and load regulation, high power supply rejection, and low output noise. The regulator shall maintain stable output performance during startup, shutdown, transient load changes, and supply voltage variations without compromising system operation. The integrated control architecture shall support reliable voltage regulation while incorporating protection mechanisms such as current limiting and thermal shutdown to safeguard both the device and the powered system during abnormal operating conditions. The regulator shall maintain stable performance throughout continuous operation and dynamic load transitions. Thermal performance shall support continuous operation within the specified junction temperature range while maintaining electrical integrity and long-term reliability. The package shall be suitable for automated surface-mount assembly and compatible with standard solder reflow manufacturing processes. Mechanical construction shall withstand thermal cycling, vibration, mechanical handling, and environmental exposure without degradation of electrical or mechanical performance. Workmanship shall be free from defects including contamination, package cracking, bond failures, lead deformation, plating irregularities, or structural inconsistencies that could adversely affect functionality or reliability. Inspection, validation, and testing shall be performed using calibrated equipment and controlled quality procedures to verify compliance with engineering and manufacturing requirements. Any deviation from this specification shall require formal engineering evaluation, documented technical justification, and approval through the established engineering change control process before implementation. Documentation Supporting documentation shall include engineering drawings, electrical performance specifications, thermal characterization reports, application guidelines, qualification records, inspection reports, reliability data, material declarations, and revision-controlled manufacturing documentation. All documentation shall be maintained under formal configuration management and quality assurance systems to ensure complete product traceability. Revision Control Any modification to this specification shall be managed through the formal engineering change management process. All revisions shall undergo technical review, validation, and approval before release to ensure continued compliance with design intent and applicable engineering standards. #EngineeringSpecification #LowDropoutRegulator #LDO #VoltageRegulator #PowerManagement #EmbeddedSystems #IndustrialElectronics #Semiconductor #QualityAssurance #EngineeringDocumentation... show more0 Uses
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Z84C2006PEG
Interface - Specialized Z84C2006PEG PDIP-40_L52.3-W13.8-P2.54-LS15.2-BL LCSC Part Number: C2614542 JLCPCB Part Class: Extended Part Manufactured by Zilog Z84C00 / Z84C0008PEC PDIP-40 Zilog Z80 microprocessor family, fourth-generation enhanced 8-bit CPU architecture with high computational performance and efficient memory utilization. Features two complete sets of general-purpose registers (main and alternate register banks) for fast context switching, two 16-bit index registers (IX and IY), stack pointer, program counter, refresh register, and interrupt register. Supports a single +5V power supply and interfaces directly with standard memory and peripheral devices. Includes advanced interrupt handling, daisy-chain interrupt capability, and built-in dynamic RAM refresh support. Widely used in industrial control systems, embedded equipment, terminals, instrumentation, retro computers, and communication devices. Search Keywords: Z80 CPU, Zilog Z80, Z84C00, Z8400, 8-bit microprocessor, enhanced Z80 processor, DIP40 CPU, CMOS Z80, NMOS Z80, embedded processor, industrial controller CPU, retro computer processor, vintage microprocessor, dynamic RAM refresh CPU, interrupt controller compatible CPU Hashtags: #Z80 #Zilog #Z84C00 #Z8400 #8BitCPU #Microprocessor #EmbeddedSystems #IndustrialElectronics #RetroComputing #VintageComputing #DIP40 #ComputerArchitecture #DigitalElectronics #CPU #ClassicComputing... show more0 Uses
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Z84C0006PEG
Zilog Z80 microprocessor family, fourth-generation enhanced 8-bit CPU architecture with high computational performance and efficient memory utilization. Features two complete sets of general-purpose registers (main and alternate register banks) for fast context switching, two 16-bit index registers (IX and IY), stack pointer, program counter, refresh register, and interrupt register. Supports a single +5V power supply and interfaces directly with standard memory and peripheral devices. Includes advanced interrupt handling, daisy-chain interrupt capability, and built-in dynamic RAM refresh support. Widely used in industrial control systems, embedded equipment, terminals, instrumentation, retro computers, and communication devices. Search Keywords: Z80 CPU, Zilog Z80, Z84C00, Z8400, 8-bit microprocessor, enhanced Z80 processor, DIP40 CPU, CMOS Z80, NMOS Z80, embedded processor, industrial controller CPU, retro computer processor, vintage microprocessor, dynamic RAM refresh CPU, interrupt controller compatible CPU Hashtags: #Z80 #Zilog #Z84C00 #Z8400 #8BitCPU #Microprocessor #EmbeddedSystems #IndustrialElectronics #RetroComputing #VintageComputing #DIP40 #ComputerArchitecture #DigitalElectronics #CPU #ClassicComputingMicroprocessors - MPU 6MHz Z80 CMOS CPU XT... show more2 Uses
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ACS758LCB-100B-PFF-T
Current Sensor 100A 1 Channel Hall Effect, Open Loop Bidirectional 5-CB Formed Leads, PFF The ACS758LCB-100B-PFF-T is a fully integrated Hall-effect current sensor IC from Allegro MicroSystems, designed for accurate and electrically isolated measurement of both AC and DC currents up to ±100 A. It incorporates a precision Hall sensing element positioned near a low-resistance copper current conductor, producing an analog output voltage proportional to the sensed current. The device offers galvanic isolation between the current path and signal pins, making it ideal for high-voltage and high-current applications such as motor drives, power supplies, inverters, battery management systems, and overcurrent protection circuits. Key Features Hall-effect based current sensing for AC and DC currents up to ±100 A Galvanic isolation between current conductor and signal circuitry 120 kHz typical bandwidth for fast current measurement 3 µs typical response time to step current changes 20 mV/A typical sensitivity Ultra-low 100 µΩ internal conductor resistance for minimal power loss Factory-trimmed gain and offset for improved accuracy Typical total output error of 2.4% over temperature Integrated electrostatic shield for improved immunity to high dV/dt and electrical noise Single-supply operation from 3.0 V to 5.5 V High reliability monolithic Hall IC architecture AEC-Q100 qualified for automotive applications Operating temperature range of -40°C to +150°C #ACS758LCB100BPFFT #ACS758 #CurrentSensor #HallEffectSensor #CurrentMonitoring #PowerElectronics #MotorControl #OvercurrentProtection #BatteryManagement #AutomotiveElectronics #AllegroMicroSystems #HighCurrentSensing #DCCurrentSensor #ACCurrentSensor #IndustrialAutomation #commonpartslibrary #currentsensor... show more34 Uses
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LM1881N/NOPB
Video Separator IC NTSC, PAL, SECAM 8-PDIP Package # LM1881N/NOPB Engineering Specifications **General Description** The LM1881N/NOPB is a precision video synchronization separator integrated circuit manufactured by Texas Instruments. It is designed to extract timing information from composite video signals and generate synchronization outputs required for video processing, display control, video capture, and television signal applications. The device separates composite sync, vertical sync, burst or back-porch timing, and odd/even field information from standard analog video formats. It operates with both monochrome and color composite video signals and is commonly used in video synchronization systems, frame grabbers, video overlays, video switching equipment, and display synchronization circuits. The integrated circuit simplifies video timing recovery by eliminating the need for complex discrete-component sync separation circuits. Its low-power bipolar architecture provides reliable operation across a wide range of video applications while maintaining accurate synchronization detection. **Engineering Specifications** **Manufacturer:** Texas Instruments **Manufacturer Part Number:** LM1881N/NOPB **Component Type:** Video synchronization separator integrated circuit **Function:** Composite video sync extraction and timing separation **Technology:** Bipolar analog integrated circuit **Video Signal Compatibility:** Composite video input **Supported Video Formats:** NTSC, PAL and SECAM composite video systems **Input Signal Type:** Composite video **Composite Sync Output:** Available **Vertical Sync Output:** Available **Burst or Back-Porch Output:** Available **Odd/Even Field Output:** Available **Synchronization Detection:** Automatic extraction of video timing signals **Power Supply Configuration:** Single-supply operation **Supply Voltage Range:** Wide operating voltage range suitable for video processing systems **Power Consumption:** Low-power operation **Output Configuration:** TTL and CMOS compatible synchronization outputs **Input Coupling:** AC-coupled composite video input **Noise Immunity:** High immunity to video signal disturbances and noise **Signal Processing Capability:** Composite sync, vertical sync and field identification extraction **Applications Compatibility:** Video displays, frame grabbers, video processors, video switching systems and synchronization controllers **Operating Temperature Range:** Commercial temperature range **Package Type:** Plastic dual in-line package **Package Configuration:** Through-hole mounting package **Pin Configuration:** Standard DIP package layout **Mounting Style:** Through-hole **Environmental Compliance:** Lead-free and RoHS compliant NOPB version **Reliability Features:** Stable synchronization extraction and accurate timing recovery **Typical Applications** Video synchronization circuits Video capture equipment Frame grabber systems Television signal processing Video overlay generators Video switching equipment Security and surveillance video systems Display synchronization controllers Industrial video monitoring equipment Embedded video processing systems #LM1881N #LM1881NNOPB #TexasInstruments #VideoSyncSeparator #CompositeVideo #VideoProcessing #EmbeddedSystems #SignalProcessing #FrameGrabber #VideoElectronics #AnalogIC #ElectronicComponents #EngineeringSpecifications #VideoSynchronization... show more0 Uses
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CD74HC4067M
The CD74HC4067M is a high-speed CMOS analog multiplexer and demultiplexer designed to route one of multiple analog or digital signals to a common input/output line. Built using advanced high-speed CMOS technology, this device provides low ON-state resistance, wide signal bandwidth, and low power consumption, making it suitable for signal routing, data acquisition systems, sensor expansion, communication interfaces, industrial control systems, and embedded electronics. The integrated channel selection logic enables efficient switching between multiple signal paths while maintaining signal integrity and minimizing distortion. Features High-speed CMOS analog multiplexer and demultiplexer architecture Multiple single-ended channels connected to a common input/output Low ON-state resistance for reduced signal loss Wide analog signal handling capability Bidirectional signal switching support Compatible with both analog and digital signals Low power consumption during operation Break-before-make switching characteristic High noise immunity Wide operating supply voltage range Direct interface compatibility with microcontrollers and digital logic devices Low crosstalk and low leakage current performance Surface-mount package optimized for automated assembly Applications Sensor multiplexing systems Data acquisition equipment Industrial automation controllers Embedded electronics Test and measurement instruments Communication systems Audio signal routing Battery monitoring systems Medical instrumentation Consumer electronic products Microcontroller input expansion Analog signal selection networks Electrical Characteristics CMOS logic implementation Analog and digital signal switching capability Low propagation delay Low channel capacitance Low leakage current High switching speed Wide bandwidth operation ESD protection features High input impedance Low standby power consumption Mechanical Characteristics Surface-mount integrated circuit package Compact footprint for high-density PCB layouts RoHS-compliant construction Suitable for automated pick-and-place assembly Standard industry package dimensions Design Considerations Use proper decoupling capacitors near supply pins Keep analog signal traces short to minimize noise pickup Ensure signals remain within specified supply voltage limits Consider ON-resistance effects in precision analog applications Implement appropriate PCB grounding techniques for optimal performance Avoid exceeding maximum switching current ratings #commonpartslibrary #integratedcircuit #analog #digital #multiplexer #demultiplexer #signalrouting #analogswitch #dataacquisition #embeddedsystems #industrialelectronics #texasinstruments... show more108 Uses
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W25Q32JVSSIQ
SPI Flash 32M-BIT Serial Flash Memory with Dual, Quad SPI The W25Q32JV (32M-bit) Serial Flash memory provides a storage solution for systems with limited space, pins and power. The 25Q series offers flexibility and performance well beyond ordinary Serial Flash devices. They are ideal for code shadowing to RAM, executing code directly from Dual/Quad SPI (XIP) and storing voice, text and data. The device operates on 2.7V to 3.6V power supply with current consumption as low as 1µA for power-down. The W25Q32JV array is organized into 16,384 programmable pages of 256-bytes each. Up to 256 bytes can be programmed at a time. Pages can be erased in groups of 16 (4KB sector erase), groups of 128 (32KB block erase), groups of 256 (64KB block erase) or the entire chip (chip erase). The W25Q32JV has 1,024 erasable sectors and 64 erasable blocks respectively. The small 4KB sectors allow for greater flexibility in applications that require data and parameter storage. (See Figure 2.) The W25Q32JV supports the standard Serial Peripheral Interface (SPI), and a high performance Dual/Quad output as well as Dual/Quad I/O SPI: Serial Clock, Chip Select, Serial Data I/O0 (DI), I/O1 (DO), I/O2, and I/O3. SPI clock frequencies of up to 133MHz are supported allowing equivalent clock rates of 266MHz (133MHz x 2) for Dual I/O and 532MHz (133MHz x 4) for Quad I/O when using the Fast Read Dual/Quad I/O instructions. These transfer rates can outperform standard Asynchronous 8 and 16-bit Parallel Flash memories. New Family of SpiFlash Memories – W25Q32JV: 32M-bit / 4M-byte – Standard SPI: CLK, /CS, DI, DO – Dual SPI: CLK, /CS, IO0, IO1, – Quad SPI: CLK, /CS, IO0, IO1, IO2, IO3 – Software & Hardware Reset(1) Highest Performance Serial Flash – 133MHz Single, Dual/Quad SPI clocks – 266/532MHz equivalent Dual/Quad SPI – 66MB/S continuous data transfer rate – Min. 100K Program-Erase cycles per sector – More than 20-year data retention Efficient “Continuous Read” – Continuous Read with 8/16/32/64-Byte Wrap – As few as 8 clocks to address memory – Allows true XIP (execute in place) operation – Outperforms X16 Parallel Flash Low Power, Wide Temperature Range – Single 2.7V to 3.6V supply – <1µA Power-down (typ.) – -40°C to +85°C operating range – -40°C to +105°C operating range Flexible Architecture with 4KB sectors – Uniform Sector/Block Erase (4K/32K/64K-Byte) – Program 1 to 256 byte per programmable page – Erase/Program Suspend & Resume Advanced Security Features – Software and Hardware Write-Protect – Special OTP protection(2) – Top/Bottom, Complement array protection – Individual Block/Sector array protection – 64-Bit Unique ID for each device – Discoverable Parameters (SFDP) Register – 3X256-Bytes Security Registers – Volatile & Non-volatile Status Register Bits #CommonPartsLibrary #IntegratedCircuit... show more121 Uses
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