MP18851-4EGY-Z
Isolated Dual-Input Control Independent Dual-Channel Gate Driver #ultralibrarian... show more0 Uses
0 Stars
MP18851-4BGY-Z
Isolated Dual-Input Control Independent Dual-Channel Gate Driver #ultralibrarian... show more0 Uses
0 Stars
MP18851-4AGY-Z
Isolated Dual-Input Control Independent Dual-Channel Gate Driver #ultralibrarian... show more0 Uses
0 Stars
MP18851-4EGSE-Z
Isolated Dual-Input Control Independent Dual-Channel Gate Driver #ultralibrarian... show more0 Uses
0 Stars
MP18851-A4EGLU-Z
Isolated Dual-Input Control Independent Dual-Channel Gate Driver #ultralibrarian... show more0 Uses
0 Stars
MP18851-A4BGLU-P
Isolated Dual-Input Control Independent Dual-Channel Gate Driver #ultralibrarian... show more0 Uses
0 Stars
MP18851-A4EGLU-P
Isolated Dual-Input Control Independent Dual-Channel Gate Driver #ultralibrarian... show more0 Uses
0 Stars
MP18851-4CGLU-Z
Isolated Dual-Input Control Independent Dual-Channel Gate Driver #ultralibrarian... show more0 Uses
0 Stars
MP5098GDT-Z
12V/5V Low-IQ Dual-Channel E-Fuse with Current Monitoring and Low On Resistance #ultralibrarian... show more8 Uses
0 Stars
MP5094GJ-P
Dual-Channel 12V/5V Current-Limit Switch with Output Over-Voltage Clamp in Small 3x3mm TSOT23-8 Package #ultralibrarian... show more0 Uses
0 Stars
MP5098GDT-P
12V/5V Low-IQ Dual-Channel E-Fuse with Current Monitoring and Low On Resistance #ultralibrarian... show more8 Uses
0 Stars
ISO7321C
Low Power Dual-Channel 1/1 Digital Isolator, 25Mbps 33ns, Fail-Safe High, SO8 2Ch Dual Digital Isolator 25Mbps SO*... show more1 Use
0 Stars
ADuM5211
Dual-Channel 2.5kV isolator with integrated dc-dc converter, 1 Input / 1 output, SSOP-24 digital isolator galvanic isopower SSOP*20*5.3x7.2mm*P0.65mm*... show more0 Uses
0 Stars
ADN4652
Dual-Channel LVDS Isolators, 5 kV RMS/3.75 kV RMS, 600 Mbps, SSOP-20 LVDS Isolator SSOP*5.3x7.2mm*P0.65mm*... show more0 Uses
0 Stars
ADN4651
Dual-Channel LVDS Isolators, 5 kV RMS/3.75 kV RMS, 600 Mbps, SSOP-20 LVDS Isolator SSOP*5.3x7.2mm*P0.65mm*... show more0 Uses
0 Stars
ADN4650
Dual-Channel LVDS Isolators, 5 kV RMS/3.75 kV RMS, 600 Mbps, SSOP-20 LVDS Isolator SSOP*5.3x7.2mm*P0.65mm*... show more0 Uses
0 Stars
AD9371BBCZ
IC RF TxRx Only 300MHz ~ 6GHz 196-LFBGA, CSPBGA AD9371 is a highly integrated dual-channel RF transceiver covering 300 MHz to 6 GHz, with up to 100 MHz receiver bandwidth, 250 MHz transmit synthesis bandwidth, integrated synthesizers, and a JESD204B interface. Keywords: AD9371, dual RF transceiver, 300MHz–6GHz, JESD204B, wideband radio... show more1 Use
0 Stars
ADuM121N
Dual-channel digital isolator,1.8 to 5V, 150Mbs, 3kV Dual-channel digital isolator SOIC*3.9x4.9mm*P1.27mm*... show more0 Uses
0 Stars
MPQ2026AGRE-0000-AEC1-P
40V 300mA Dual-Channel LDO with Pre-Boost Industry-Standard Synchronous Serial Interface and ADC for Digital Diagnosis and Protection AEC-Q100 Qualified #ultralibrarian... show more0 Uses
0 Stars
TPD2E2U06DCKR
12.4V (Typ) Clamp 5.5A (8/20µs) Ipp Tvs Diode Surface Mount SC-70-3 TPD2E2U06 USB ESD The TPD2E2U06 is a dual-channel low capacitance TVS diode ESD protection device. The device offers ±25-kV contact and ±30-kV air-gap ESD protection in accordance with the IEC 61000-4-2 standard. The 1.5-pF line capacitance of the TPD2E2U06 makes the device suitable for a wide range of applications. Typical application interfaces are USB 2.0, LVDS, and I 2C™. Features 1• IEC 61000-4-2 Level 4 – ±25 kV (Contact discharge) – ±30 kV (Air-gap discharge) • IEC 61000-4-5 Surge protection – 5.5-A Peak pulse current (8/20 µs Pulse) • IO Capacitance 1.5 pF (Typ) • DC Breakdown voltage 6.5 V (Min) • Ultra-Low leakage current 10 nA (Max) • Low ESD clamping voltage • Industrial temperature range: –40°C to +125°C • Small easy-to-route DRL and DCK package #CommonPartsLibrary #TVS-diode... show more347 Uses
0 Stars
DRV8833PWR
Dual-channel H-bridge motor driver The DRV8833PWR is a dual H-bridge motor driver IC from Texas Instruments designed for driving small DC motors, stepper motors, solenoids, and other inductive loads in low-voltage battery-powered systems. It integrates two full H-bridge outputs that allow independent or combined control of two motors or one bipolar stepper motor. It is commonly used in robotics, toys, printers, and embedded motion-control applications due to its compact size and built-in protection features. Key Features Dual H-Bridge Motor Driver Drives 2 DC motors independently or 1 bipolar stepper motor Wide Supply Voltage Range Operates from 2.7 V to 10.8 V motor supply (VM) Output Current Capability Up to 2 A peak per H-bridge (package-dependent RMS limits apply) Supports parallel operation for higher current drive Low On-Resistance MOSFET Output Stage Reduces power loss and improves efficiency in battery-powered designs PWM Current Regulation Built-in current limiting and chopping control for better motor performance Multiple Control Modes Forward, reverse, brake, and coast control via simple logic inputs Protection Features Overcurrent protection Short-circuit protection Undervoltage lockout (UVLO) Thermal shutdown Low-Power Sleep Mode Reduces standby current for battery applications Compact Package 16-pin TSSOP (PW package), optimized for space-constrained PCB designs #CommonPartsLibrary #IntegratedCircuit #PowerManagement... show more250 Uses
0 Stars
LT3641EFE#PBF
Buck Switching Regulator IC Positive Adjustable 0.6V, 1.265V 2 Output 1.3A, 1.1A 28-TSSOP (0.173", 4.40mm Width) Exposed Pad The LT3641EFE#PBF specification defines the engineering requirements for a dual-channel step-down switching regulator integrated circuit designed for high-efficiency power conversion and distribution applications. This specification establishes the functional, electrical, mechanical, thermal, environmental, and quality requirements necessary to ensure stable voltage regulation, efficient power delivery, and long-term operational reliability in industrial, embedded, communication, and control systems. The device is intended for use in distributed power architectures, industrial automation equipment, instrumentation, telecommunications systems, automotive electronics, and embedded applications requiring multiple regulated output voltages from a common input source. The integrated dual-channel architecture enables compact power supply designs while providing high conversion efficiency, low power dissipation, and reliable performance across a wide range of operating conditions. Engineering Requirements The switching regulator shall be manufactured using qualified semiconductor fabrication processes and high-quality materials to ensure consistent electrical performance, efficient power conversion, 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, high conversion efficiency, low output ripple, and fast transient response. The regulator shall maintain stable switching behavior during startup, shutdown, load variations, and input voltage fluctuations while ensuring reliable power delivery to connected circuits. The integrated control architecture shall support independent regulation of multiple output channels and provide reliable operation during dynamic system conditions. Built-in protection functions shall support safe operation during abnormal events including overload, short-circuit, thermal stress, and fault conditions, thereby enhancing overall system reliability. Thermal performance shall support continuous operation within the specified junction temperature range while maintaining electrical integrity and long-term reliability. The package shall facilitate effective heat dissipation and shall be suitable for automated surface-mount assembly and standard solder reflow manufacturing processes. Mechanical construction shall withstand thermal cycling, vibration, mechanical handling, and environmental exposure without degradation of electrical or structural performance. Workmanship shall be free from defects including contamination, package cracking, bond failures, lead deformation, 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 #SwitchingRegulator #BuckConverter #PowerManagement #DCDCConverter #PowerElectronics #EmbeddedSystems #IndustrialElectronics #QualityAssurance #EngineeringDocumentation... show more0 Uses
0 Stars
MIC2026-1BN
Dual-channel, high side, power distribution switch, 2.7V-5.5V, Active High Output, DIP-8 mosfet distribution DIP*W7.62mm*... show more0 Uses
0 Stars
Previous
Page 4 of 4