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Description

This reference design is a new human machine interface with LED animation and realizes a vivid lighting pattern on the LED ring with one TLC5955 LED driver.

Key Features

  • Vivid Lighting Pattern With LED Ring
  • Minimum Device Quantities in Multi RBG LED Modules System

Applications Matched

  • Personal Electronics

Description

This reference design is to show two distinct ways to protect the TMDS lines of a HDMI 2.0 drivers and retimers from electrostatic discharge (ESD). The HDMI standard is used in many applications from set-topboxes to notebooks to TV's. Since these ports are almost always external they are susceptible (...)

Key Features

  • Assists in HDMI 2.0 Compliance
  • Higher than IEC 61000-4-2 Level 4 (±8kV) Protection
  • Provides Ultra-Low Clamping Voltage Necessary to Protect Sensitive HDMI Drivers
  • Compatibility with both DP159 and TMDS181

Applications Matched

  • Personal Electronics

Description

The TIDA-01495 is a low profile (17 mm height), 94.1% peak efficiency, high power density, universal input, 24-V DC, 480-W output, consumer AC/DC power supply reference design. The circuit consists of a front-end two phase interleaved transition mode (TM) power factor correction (PFC) based on the (...)

Key Features

  • Thin profile < 17mm height for use in space constrained applications with PCB form factor of 185 x 110 mm
  • Full load efficiency of >93.3% (230V AC) and >91.1% (115V AC) with peak efficiency of 94.1% (230V AC) and 92% (115V AC) meets the 80+ Platinum standard
  • Phase shedding feature in the PFC stage and (...)

Applications Matched

  • Personal Electronics

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
TIDA-01495.1
(Output
Voltage1)
85 265 24 20 480 Isolated AC Half Bridge- LLC
PFC- Multiphase

Description

The Analog Audio Amplifier Front-end Reference Design demonstrates how to build an audio front end for the TPA32xx class-D amplifier. The AUDIO-OPA1632EVM is the board that was designed to test the results of this design. Design files for the board are available in the reference design product (...)

Key Features

  • Single-ended-to-differential conversion with single fully-differential amplifier optimizes THD+N ratio
  • Four parallel connectors for analog inputs: XLR, ¼”-stereo phone, RCA, and SMA jacks
  • Gain is adjustable to 0 dB, 6 dB, and 12 dB
  • The front end accepts differential inputs in addition to single-ended (...)

Applications Matched

  • Personal Electronics

Description

This reference design is a reference platform based on the 66AK2Gx DSP + ARM processor  System-On-Chip (SoC) and companion AIC3106 Audio codec and enables a quick path to audio processing algorithm design and demonstration. This audio solution design includes real time application software (...)

Key Features

  • Programmable three-band equialization with gain controls
  • Simple serial user interface
  • Digital radio input with up to 96KHz sample rate
  • DSP-based audio processing implementation

Applications Matched

  • Personal Electronics

Description

The TIDA-00714 TI Design is a complete TPS65982 based reference design for USB Type-C and Power Delivery applications. It allows the user to develop various power profiles and alternate modes such as DisplayPort and debug existing USB Type-C and Power Delivery systems.

Key Features

  • USB PD controller
  • Type-C compliant
  • Source or sink power port switch
  • Over-voltage/current protector
  • Data port multiplexer
  • USB Low speed end point

Applications Matched

  • Personal Electronics

Description

Wearable devices require advanced power management to achieve long battery run times with always-on functionality.  Additionally, the devices need to use small rechargeable batteries and enable small footprint designs.  This application note shows the implementation of a scalable power (...)

Key Features

  • Wireless charging for ease of use
  • Configurable charger and system power management
  • Boosts for display and heart rate monitor
  • Second buck for radio or dual core MCU

Applications Matched

  • Personal Electronics

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
PMP11311.1
(Output Voltage 1)
3.4 20 4.2 .3 1.26 Non-Isolated DC Linear Regulator
PMP11311.2
(Output Voltage 2)
3.4 20 1.8 .3 .54 Non-Isolated DC Buck- Synchronous
PMP11311.3
(Output Voltage 3)
3.4 20 1.8 .3 .54 Non-Isolated DC Buck- Synchronous
PMP11311.4
(Output Voltage 4)
3.4 20 5 .3 1.5 Non-Isolated DC Boost- Synchronous
PMP11311.5
(Output Voltage 5)
3.4 20 12 .1 1.2 Non-Isolated DC Boost- Synchronous

Description

The TIDA-01619 provides a three-phase brushless DC (BLDC) motor driver solution for systems that have operating range from 4.4 V to 18 V.

This design features the DRV10974 motor driver with the ability to add MCU for closed loop speed control. The DRV10974 offers sensorless commutation with no need (...)

Key Features

  • Thermally Enhanced: 2 layers and 2 oz copper thickness
  • Small Form Factor: 22 mm diameter
  • Low acoustics
  • Ability to add MCU for closed loop speed control
  • Fully protected realized by on-chip protection from 10974

Applications Matched

  • Personal Electronics

Description

This TI Design demonstrates how to resolve and optimize signal integrity challenges typically found when sending SPI signals over longer distance on the same PCB or off PCB to another board in a noisy environment by transmitting SPI signals over LVDS interface. The concept offers high noise (...)

Key Features

  • Noise immunity and range extension for SPI Bus using LVDS interface
  • At least 3 meter communication range using SPI over LVDS vs. 0.5 meter range using standard SPI
  • Techniques to reduce propagation delay and improve SPI communication speed or range by routing SCLK back to SPI master
  • 10x lower power (...)

Applications Matched

  • Personal Electronics

Description

The touch remote control enabled with CapTIvate™ technology demonstrates a capacitive-touch solution based on a single MSP430™ microcontroller (MCU) with CapTIvate technology. This design uses self- and mutual-capacitance technology to enable a multifunctional, capacitive-touch panel (...)

Key Features

  • CapTIvate Capacitive Touch Functions with Eight-Touch Buttons, One Touch Slider for Volume Control, One Gesture Pad for Slide and Tap Gestures and One Proximity Sensor for Grip Detection
  • Two LEDs to Indicate Power Status and Touch Operation
  • Wake-On Grip Detection With Ultra-Low-Power Standby Mode
  • PC (...)

Applications Matched

  • Personal Electronics

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