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Description

Interleaved Continuous Conduction Mode (CCM) Totem Pole (TTPL) Bridgeless Power Factor Correction (PFC) is an attractive power topology with use of high band-gap GaN devices, because of high efficiency and reduced size of the power supply. This design illustrates a method to control this power stage (...)

Key Features

  • AC Input (90-230Vrms), 50-60Hz and 3.3KW rated power at high line
  • 98.75% peak efficiency and less than 2% Total Harmonic Distortion (THD)
  • powerSUITE support for easy adaptation of the design for user requirement
  • In built frequency response analyzer (SFRA) for verification and design of control loops
  • Low (...)

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Description

High-speed multi-channel applications require low noise and scalable clocking solutions capable of precise channel-to-channel skew adjustment to achieve optimal system SNR, SFDR, and ENOB. This reference design supports scaling up JESD204B synchronized clocks in daisy chain configuration. This (...)

Key Features

  • High frequency (GSPS) sample clock generation
  • High channel count and scalable JESD204B compliant clock solution
  • Low phase noise clocking for RF sampling ADC/DAC
  • Configurable phase synchronization to achieve low skew in multi-channel system
  • Supports TI’s high-speed converter and capture cards (...)

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Description

High speed multi-channel applications require precise clocking solutions capable of managing channel-to-channel skew in order to achieve optimal system SNR, SFDR, and ENOB. This reference design is capable of supporting two high speed channels on separate boards by utilizing TI’s LMX2594 (...)

Key Features

  • Up to 15GHz sample clock generation
  • Multi-channel JESD204B compliant clock solution
  • Low phase noise clocking for RF sampling ADC/DAC
  • Configurable phase synchronization to achieve low skew in multi-channel system
  • Supports TI’s high-speed converter and capture cards (ADC12DJ3200EVM, TSW14J56 / TSW14J57)

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Description

High-speed multi-channel applications require low noise and scalable clocking solutions capable of precise channel-to-channel skew adjustment to achieve optimal system SNR, SFDR, and ENOB. This reference design supports high channel count JESD204B synchronized clocks using one master and multiple (...)

Key Features

  • High frequency (GSPS) sample clock generation
  • High channel count and scalable JESD204B compliant clock solution
  • Low phase noise clocking for RF sampling ADC/DAC
  • Configurable phase synchronization to achieve low skew in multi-channel system
  • Supports TI’s high-speed converter and capture cards (...)

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Description

This reference design introduces a large current, highly accurate and bi-directional power solution used in battery test systems (BTS). It includes a LM5170EVM-BIDIR and a signal control board. The LM5170EVM-BIDIR is an evaluation board  to showcase the high performance of the dual-channel (...)

Key Features

  • 50A bidirection current
  • Lower than 0.05% FS current accuracy
  • Diode emulation to prevent reverse current
  • Easy to increase the current capability
  • High efficiency and small ripple with multiphase interleave operation

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Design Parameters

 
 
Vin (V) (Min)
Vin (V) (Min)
Vin (V) (Max)
Vin (V) (Max)
Vout (V) (Nom)
Vout (V) (Nom)
Iout (A) (Max)
Iout (A) (Max)
Output Power (W)
Output Power (W)
Isolated/Non-Isolated
Isolated/Non-Isolated
Input Type
Input Type
Topology
Topology
Designed for
Designed for
PMP15038.1
(Output
Voltage1)
12 15 4 50 200 Non-Isolated DC Boost- Synchronous

Description

This wireless subwoofer amplifier reference design demonstrates the ease of integrating wireless connectivity to a traditional analog input subwoofer design.The wired or wireless mode is controlled by an MSP430. The reference design includes a high performance stereo digital audio amplifier system (...)

Key Features

  • Easy integration of wireless connectivity to analog subwoofer design
  • High performance stereo digital input amplifier system
  • Volume, bass, mute control
  • Selectable bass frequency
  • Wireless Subwoofer system comprising Analog & Wireless Control board, Audio RF SoC module board digital input Class D audio (...)
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    Description

    Fault Indicators (FI) are devices installed at certain distance on overhead power lines in electric power distribution networks to detect and indicate the occurence of faults. The benefit is reduction in outage times by identifying the fault zone easily.  The TIDA-00807 reference design (...)

    Key Features

    • Current voltage measurement range: 0.5-100A, 50-300V
    • Measurement accuracy: ≤±2%
    • Multiple gain stage and ADC channels used for covering wide curent and voltage range
    • Dual rail, configurable DC-DC converter (with integrated load switch) adds flexibility with power savings
    • MCU selected based on ultra-low (...)

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    Description

    TIDA-00231 is a reference design for an industrial Programmable Logic Controller (PLC) analog output module. The design provides a unique power saving solution for a digital-to-analog converter (DAC)-based analog current output module with an adaptive power supply. This adaptive power supply (...)

    Key Features

    • 16 bit user configurable analog current output
    • Accuracy
      o Un-calibrated better than  ±0.2% FSR at 25 °C
      o Calibrated better than  ±0.05% FSR at 25 °C
    • Adaptive Power Supply reduces system power dissipation- power losses across FET are limited to < 50mW for typical load resistance > 300Ω
    • Reverse voltage (...)

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    Description

    This reference design circuit introduces a highly accurate, bi-directional current power solution used in battery test systems (BTS). The maximum current capability is 6A with lower than 0.05% full scale accuracy. Controlling through a logic pin, the circuit can be used to charge or discharge a (...)

    Key Features

    • 6A bidirection current
    • Lower than 0.05% FS current accuracy
    • Programmable current and voltage control
    • Fully integrated converter minimizes the solution size

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    Design Parameters

     
     
    Vin (V) (Min)
    Vin (V) (Min)
    Vin (V) (Max)
    Vin (V) (Max)
    Vout (V) (Nom)
    Vout (V) (Nom)
    Iout (A) (Max)
    Iout (A) (Max)
    Output Power (W)
    Output Power (W)
    Isolated/Non-Isolated
    Isolated/Non-Isolated
    Input Type
    Input Type
    Topology
    Topology
    Designed for
    Designed for
    PMP15043.1
    (Output
    Voltage1)
    12 15 4 6 24 Non-Isolated DC Boost- Synchronous

    Description

    This high speed multi-channel data capture reference design enables optimum system performance. System designers needs to consider critical design parameters like clock jitter and skew for high speed multi-channel clock generation, which affects overall system SNR, SFDR, channel to channel skew and (...)

    Key Features

    • 3.2 Gsps, 1.5 GHz multi- channel high speed analog front for high performance receiver
    • < 5 ps clock skew between channels
    • Multi-channel JESD204B complaint clock solution
    • Scalable platform for pin compatible ADC12DJxx00 family
    • Supports TI’s high-speed converter and capture cards (TSW14J56 / TSW14J57)

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