Part Details for TPS2065 by Texas Instruments
Overview of TPS2065 by Texas Instruments
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Price & Stock for TPS2065
Part # | Distributor | Description | Stock | Price | Buy | |
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Chip1Cloud | CURRENT-LIMITED, POWER-DISTRIBUTION SWITCHES | 21000 |
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Part Details for TPS2065
TPS2065 CAD Models
Resources and Additional Insights for TPS2065
Reference Designs related to TPS2065
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The PMP21065 Reference design operates off a typical 12V DC input to produce several common rails seen in set top boxes today. The key objectives of the design are to be low-cost: small in size and low stand-by power with high efficiency to help customers meet compliance to new regulatory guidelines on STB power consumption.
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PMP21098 具有 80 PLUS Gold 兼容性能的 170W 无辅助交流/直流电源参考设计
The PMP21098 reference design uses UCC28056 transition mode PFC controller and UCC25630 enhanced LLC controller with integrated driver to provide 12V/10.8A output (continuous: 14.2A peak) from universal AC input. This design achieves 91.8% peak efficiency at 115VAC input and 93.4% peak efficiency at 230VAC input. The efficiency and power factor numbers also meet both 115V and 230V internal 80 PLUS gold specifications. In addition: the design is able to achieve less than 300mW power consumption at no load without turning off PFC.
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Power Switching Reference Design for Set Top Box
The TIDA-01451 reference design’s functionality emulates the power distribution of Set Top Boxes. By using integrated load switches to control power rails: each rail can be turned on or off depending on the needs and wants of the user. Turning off rails that are not being used reduces power loss and facilitates meeting energy compliance standards: such as Energy Star. An eFuse placed at the input can manage Hot Plug transients and protect downstream DC/DC converters from an input voltage that is too high or too low: reducing end equipment return rate.
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OPC UA Data Access Server for AM572x Reference Design
OPC UA is an industrial machine-to-machine protocol designed to allow interoperability and communication between all machines connected under Industry 4.0. This reference design demonstrates use of the Matrikon OPC™ OPC UA server development kit (SDK) to allow communications using an OPC UA data access (DA) server running embedded in a project or design. The OPC UA DA deals with real-time data and is best suited for industrial automation applications where time is an important aspect of the data. A reference OPC UA server implementation is provided that accesses the GPIO capabilities of the AM572x IDK. The reference code can be extended to provide an OPC UA interface to any data the AM572x IDK board can access including data acquired through Profibus: RS-485: CAN bus and industrial Ethernet-based protocols such as EtherCAT™ or PROFINET™ using the Programmable Real-time Unit Industrial Communication Subsystems (PRU-ICSS).
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Cascade imaging radar capture reference design using Jacinto™ ADAS processor
The cascade development kit has two main use cases:To use the MMWCAS-DSP-EVM as a capture card to fully evaluate the AWR2243 four-chip cascade performance by using the mmWave studio tool: please read the TIDEP-01012 design guide.To use the MMWCAS-DSP-EVM to develop radar real time SW application: please read the TIDEP-01017 design guide.This reference design provides a processing foundation for a cascaded imaging radar system. Cascade radar devices can support front: long-range (LRR) beam-forming applications as well as corner- and side-cascade radar and sensor fusion systems. This reference design provides qualified developers the design materials to create a functioning software evaluation platform for developing and testing ADAS applications. The design will assist in shortening the development time of a base platform supporting multiple automotive radar front end and antenna subsystems.
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PROFINET is becoming the leading industrial Ethernet protocol in automation due to its high-speed: deterministic communications and enterprise connectivity. However: as the world’s most popular fieldbus: PROFIBUS’s importance and usage will continue for many years due to legacy investment protection. Recognizing the hybrid attribute in process plants: this reference design is integral for the migration of existing fieldbus technology into a real-time Ethernet network based on the Programmable Real-Time Unit and Industrial Communication SubSystems (PRU-ICSS) of Sitara™ AM57x processor. This design demonstrates PROFIBUS master and PROFINET IRT device on AM572x with protocol stacks simultaneously running on an ARM Cortex-A15 core while the entire PROFINET switch and PROFIBUS frame handler are executed on the two PRU-ICSS: respectively. The migration scheme is generally also suitable for other fieldbus and industrial protocols.
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