The PCM4202EVM provides a convenient platform for evaluating the performance and functionality of the PCM4202 device. The EVM has two differential analog input channels corresponding to Left and Right analog input channels. Each of these channels are buffered and filtered using a low noise input circuit, a Texas Instruments OPA1632 fully differential amplifier.
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The TPA2017D2RTJEVM allows the engineer to evaluate the TPA2017D2, a stereo, Class-D audio power amplifier with SmartGain™ (AGC/DRC) in a QFN package. The TPA2017D2 has 2 GPIO pins for easy configuration.
The DACxx18EVM features the DAC7718, DAC8218, or DAC8718 digital to analog converter. The EVM provides a quick and easy way to evaluate the functionality and performance of this high resolution serial input Digital to Analog Converter (DAC). The DACxx18EVM is designed to work by default for a bipolar output range, but it can be configured for a unipolar output range by properly configuring two jumpers.
The TPS40190EVM-001 evaluation module (EVM) is a synchronous buck converter providing a fixed 1.5 V output at up to 10 A from a 12 V input bus. The EVM is designed to start up from a single supply, so no additional bias voltage is required for start-up. The module uses the TPS40190 Reduced Pin Count Synchronous Buck Controller.
The bq24002RGWEVM is an evaluation tool for the 5mm by 5mm MLP-20 bq24002 linear single-cell Li-Ion charger with integrated FET. The EVM is a complete designed-and-tested charger circuit that allows to test all functions of the bq24002 and to charge a single-cell Li-Ion battery with up to 1.0 A of continuous charge current. To evaluate other devices of the bq2400x family please refer to the respective EVMs.
The TPS22932BEVM is an evaluation module for the Texas Instruments family of low-input voltage, ultra-low rON load switches. This EVM operates over a 0.9 V to 3.6 V range and provides a continuous output current of up to 110 mA. Additional open resistor and capacitor footprints allow for the use of customer-selected input and output load values.
The bq24022EVM is an evaluation tool for the bq24022 linear single-cell Li-Ion charger with autonomous USB and AC adapter power management in 3x3mm2 QFN package. The EVM is a complete designed-and-tested charger circuit that allows to test all functions of the bq24022 and to charge a single-cell Li-Ion battery with up to 1.0 A of continuous charge current. The EVM comes with a pre-programmed charge current setting of 0.7A.
The TPS60210EVM-167 is an evaluation tool for the 100 mA low ripple charge pump TPS60210. With 1.6 V to 3.3 V input it delivers a regulated output voltage of 3.3 V. The device can operate in a snooze mode to reduce the quiescent current.
The TPS22924CEVM-532 evaluation module (EVM) is a fully assembled and tested circuit for evaluating the TPS22924C Ultra Small, Low-Input Voltage, Ultra-Low rON Load Switch. The EVM allows the user to apply different input voltages (0.9V to 3.6V) under different loading conditions (0A to 2A) to the TPS22924C. Output, input and switching waveforms can be monitored on the EVM.
The TAS5611/13PHD2EVM PurePath™ Premier Pro customer evaluation module demonstrates the integrated circuit TAS5611 or TAS5613PHD from Texas Instruments (TI). The TAS5611 and TAS5613PHD is high-performance, integrated Stereo Feedback Analog-Input Digital Amplifier Power Stages designed to drive 4Ω speakers at up to 150W per channel for TAS5613PHD and 125W per channel for TAS5611PHD. This amplifier requires only a simple passive demodulation filter to deliver high-quality, high-efficiency audio amplification.
The user’s guide describes the bq24090/1/2/3 evaluation module (EVM), how to perform a stand-alone evaluation or interface with a host or system. The charger is designed to deliver up to 1000mA of continuous current to the battery output when programmed with a resistor on the ISET pin and is programmed at the factory for ~540mA. The USB current limit modes are selected by the ISET2 pin and limits current to a maximum of 500mA (logic high) or 100mA (float or high impedance).