ADP161

Overview of ADP161 by Analog Devices Inc

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Available Datasheets

Part # Manufacturer Description Datasheet
ADP1613ARMZ-R7 Analog Devices 600kHz/1.2MHz PWM DC-DC Conver
ADP1614ACPZ-650-R7 Analog Devices 4A Boost 650KHz
ADP1612ARMZ-R7 Analog Devices 600kHz/1.2MHz PWM DC-DC Conver

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Part Data Attributes for ADP161 by Analog Devices Inc

ADP161
Analog Devices Inc
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Samacsys Manufacturer
Analog Devices
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Resources and Additional Insights for ADP161

Reference Designs related to ADP161

  • CN0190 - Robust, Multivoltage, High Efficiency, 25 W Universal Power Supply Module with 6 V to 14 V Input

    A functional block diagram of the circuit is shown in Figure 1. Complete schematics of each section are included in the CN0190 Design Support Package. This module supplies most of the typical power rails required for digital and analog circuits and also demonstrates an easy way to realize overvoltage, undervoltage, and overcurrent detection and protection. In addition, this module shows how to implement sequencing and power margining control.

  • CN0228 - Single Supply Powers a 28 V, High Voltage Phase-Locked Loop (PLL) Synthesizer

    This circuit uses the ADF4150HV, a high voltage fractional-N PLL IC, and the ADP1613, a step-up switching converter.

  • CN0343 - Ultrasonic Distance Measurement

    This circuit is a completely self-contained distance sensor that utilizes an ultrasonic transmitter and sensitive analog receiver in conjunction with a precision analog micro-controller to provide distance measurements. Unlike complicated PLL-based receivers, the sensor shown in Figure 1 uses a sensitive window comparator circuit, thereby minimizing real estate and cost.<p>The approximate range is from 50 cm to 10 m with a resolution of about 2 cm. Temperature compensation is provided by the integrated temperature sensor and ADC contained in the microcontroller.<p>In industrial applications, distance measurement is a common requirement, such as fluid level sensing or sensing the distance between solids. Industrial fluids are often corrosive or contain solids and debris, as in wastewater purification or chemical processing. Therefore, ultrasonic techniques are advantageous because the sensor does not contact the liquid or object directly, as in the case of flotation-based sensors.<p>For sensing the levels of thick liquids or foamy water, the ultrasonic level sensor is a better choice than capacitance, reed, or float sensors. In very dusty or corrosive environments, the ultrasonic sensor is the sensor of choice.

  • CN0193 - High Voltage (30 V) DAC Powered from a Low Voltage (3 V) Supply Generates Tuning Signals for Antennas and Filters

    The circuit has a 3 V (VDD) power supply available, and the BST capacitors require voltages in excess of 20 V for full control. The two main circuit blocks are the ADP1613 step-up switching converter and the AD5504 high voltage DAC. The circuit diagram is shown in Figure 1.

  • CN0359 - Fully Automatic High Performance Conductivity Measurement System

    The excitation square wave for the conductivity cell is generated by switching the ADG1419 between the +VEXC and −VEXC voltages using the PWM output of the ADuCM360 microcontroller. It is important that the square wave has a precise 50% duty cycle and a very low dc offset. Even small dc offsets can damage the cell over a period of time.

  • CN0201 - Complete 5 V, Single-Supply, 8-Channel Multiplexed Data Acquisition System with PGIA for Industrial Signal Levels

    The ADAS3022 is the first complete DAS on a single chip that is capable of converting up to 1 MSPS and can accept differential analog input signals up to ±24.576 V. The ADAS3022 requires high voltage bipolar supplies: ±15 V (VDDH and VSSH), +5 V (AVDD and DVDD), and +1.8 V to +5 V (VIO).

  • CN0393 - Bank Isolated, 2-Channel, 16-Bit, 500 kSPS, Simultaneous Sampling Signal Chain Featuring μModule Data Acquisition System

    This system has two bank isolated, simultaneous sampling, data acquisition channels, each utilizing the ADAQ7988, a 16-bit, 500 kSPS, μModule® data acquisition system. The ADAQ7988 provides exceptional performance while reducing board area and simplifying many design challenges associated with data acquisition signal chains.

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