Part Details for TPS60403 by Texas Instruments
Overview of TPS60403 by Texas Instruments
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Part Details for TPS60403
TPS60403 CAD Models
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Reference Designs related to TPS60403
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PMP10778 20A 通信或企业级存储 ASIC 自适应电压调节 (AVS) 电源参考设计
This is a 20A Communication or Enterprise Storage ASIC Adaptive Voltage Scaling (AVS) power supply using the TPS53819A PMBus PWM controller. The design enables high power density, PCB layout flexibility and ease of test and design for AVS using the PMBus interface and the Vout Adjustment and Marg
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TIDM-AUTO-DC-LED-LIGHTING Multiple Channels of High Density LED Control for Automotive Headlight Applications
This design, featuring the TMS320F2803x Piccolo microcontroller, implements a high efficiency multi-channel DC-DC LED control system for typically automotive lighting systems. The design support up to 6 channels of LED controls each with maximum of 1.2A current driving capabilities. With a
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PMP20545 80V/50W PSR 反激式转换器参考设计
This reference design is a universal line 85-265VAC input to 80V/50W power supply in a small form-factor, cost-effective design. It uses the UCC28704 controller. The design features an optional FET-startup circuit for low standby power and achieves over 91% efficiency. The PMP20545 Board is a 4-layer, 1-oz copper weight per layer, 80mm x 60mm board with 24mm max component height. This design is Non-isolated.
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12-bit: 20-MSPS Data Acquisition Reference Design for Digitizer
This reference design enables a cost-effective and low-power data acquisition system that provides an alternative to FPGA-based systems. It features a single-ended: high-impedance input that can be used in a wide number of applications: including portable instrumentation and digitizers.The reference design utilizes the ADS4122 analog-to-digital converter (ADC): along the with the OPA656 and THS4541 operational amplifiers (op amps) to develop a 12-bit: 20-MSPS digitizer for the BeagleBone Cape form factor. The expansion board devleoped in this reference design interfaces with the BeagleBone Black development platform: which is a low-cost: open-source: community-supported environment based on the ARM Cortex-A8 processor.
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Isolated: High-Accuracy Analog Input Module Reference Design Using 16-Bit ADC and Digital Isolator
This reference design provides accurate measurements of AC voltage and current inputs using a precision 16-bit SAR ADC over a wide input range: covering protection and measurement range (including sampling requirements of IEC 61850-9-2): simplifying system design and improving trip time performance and reliability. The analog input module (AIM) is isolated from the host processor using a digital isolator with an integrated power. For a limited function and cost optimized design approach: An AC AIM can be designed using only three TI products: reducing system cost and board size. The alarm feature identifies the AC analog input faults on a sample basis for faster fault detection. The ADC has an additional auxiliary channel to diagnose the supply output of the digital isolator. A 12-bit ADS8668 ADC with a gain amplifier can increase the dynamic range by using programmable internal ranges: further optimizing the system cost.
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TIDA-00949 采用单层 TO-247 封装的 3.3V 1A、低 EMI、效率达 92% 的直流/直流模块参考设计
TI 参考设计 TIDA-00949 展现了采用 TPS54202 的 15mmx20mm、效率高达 92% 的低电磁干扰 (EMI) 直流/直流模块,取代了大多数家电应用中的低压降稳压器 (LDO)。高效率消除了对散热器的需求,从而实现了尺寸更小、成本更低的解决方案。较高的电流容量支持添加更多功能(WiFi、传感器等)。高效率和低电流消耗有助于实现严格的能效评级。
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Quad-Channel: 12-Bit: 50-MSPS ADC Reference Design With Low Noise: Low Distortion: DC and AC Inputs
This reference design demonstrates how to implement a single-ended-to-differential input path: which can be AC-coupled or DC-coupled for an ADC3422. It also explains how to design a high-input impedance: DC-coupled input path. The reference design can be used for applications such as low-power data acquisition: portable instrumentation and IGBT diagnositics.
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PMP7481 针对小型尺寸优化的 4.7 至 60V、3.3V/200mA 输出同步降压转换器
DDPAK 或 TO-263 封装高压线性稳压器的小型高效替代品
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TIDM-GBD-ROBUST 耐用的破损玻璃检测器
This reference design describes a simple as well as a robust glass breakage detector designs using the MSP430F2274 (online only) and was developed to operate at low power, allowing long battery life. The simple desig
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Active Integrator for Rogowski Coil Reference Design with Improved Accuracy for Relay and Breaker
This reference design shows an active integrator design that covers wide-input current range for Rogowski Coil with accuracy: linearity: stability and repeatability. The integrator uses a precision amplifier with very-low offset and temperature drift. Two configurations of the integrator are shown. One is for precision measurement with less than 3O-phase error and the other is for fast response time (< 15-ms RC). While the output signal is bipolar: optional level shifting stage can be used when unipolar output is required.
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Reference Design to Measure AC Voltage & Current in Protection Relays w/Delta-Sigma Chip Diagnostics
The TIDA-00810 reference design accurately measures analog inputs performance and includes chip diagnostics to help identify power systems failures early by using a highly accuracy AC voltage and current measurement analog front end (AFE) and a four-channel: 24-bit simultaneously-sampling differential input Delta-Sigma ADC for measurement over wide dynamic range. The ADC is configured to measure 0-5 V unipolar. The inputs are scaled to ADC measurement range using a fixed gain amplifier with 2.5 V DC output level shift. The AFE can be used to measure output of a current transformer: potential divider with analog isolation and Rogowski active integrator. The AFE uses 10-Bit low resolution successive approximation register (SAR) ADC in parallel with a 24 bit ∑-∆ ADC for ADS131A04 diagnostics.
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High Accuracy ±0.5% Current and Isolated Voltage Measurement Ref Design Using 24-Bit Delta-Sigma ADC
The TIDA-00835 reference design allows for accurate voltage and current measurement using a bipolar input configuration by incorporating a four- channel: 24-bit simultaneously-sampling differential input Delta-Sigma ADC over wide dynamic range. The ADC is configured to measure ±2.5 V bipolar input. The inputs are scaled to ADC measurement range of ±2.5V using a fixed gain amplifier. This AFE chains two ADCs together using a common external clock to expand the number of input channels to eight while simultaneously sampling all of the input channels. By having more measurement channels per module: overall system cost is reduced.
1 - 5 of 12 reference designs