ADP150

PRODUCTION

Ultralow Noise, 150 mA CMOS Linear Regulator

Part Models
27
1ku List Price
Starting From $0.37
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Part Details

  • Chinese data sheet available
  • Ultralow noise: 9 μV rms, independent of VOUT
  • No additional noise bypass capacitor required
  • Stable with 1 μF ceramic input and output capacitors
  • Maximum output current: 150 mA
  • Input voltage range: 2.2 V to 5.5 V
  • Low quiescent current
    • IGND = 10 μA with zero load
  • Low shutdown current: <1 μA
  • Low dropout voltage: 105 mV at 150 mA load
  • Initial output voltage accuracy: ±1%
  • Up to 14 fixed output voltage options: 1.8 V to 3.3 V
  • PSRR performance of 70 dB at 10 kHz
  • Current limit and thermal overload protection
  • Logic-controlled enable
  • 5-lead TSOT package
  • 4-ball, 0.8 mm × 0.8 mm, 0.4 mm pitch WLCSP
  • AEC-Q100 qualified for automotive applications

ADP150
Ultralow Noise, 150 mA CMOS Linear Regulator
ADP150 Application Circuit ADP150 Application Circuit ADP150 Pin Configuration ADP150 Pin Configuration
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Documentation

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Software Resources


Tools & Simulations

LTspice 1


Models for the following parts are available in LTspice:

  • ADP150-1.8
  • ADP150-2.5
  • ADP150-2.6
  • ADP150-2.75
  • ADP150-2.8
  • ADP150-2.85
  • ADP150-3.0
  • ADP150-3.3

ADI Linear Regulator Design Tool and Parametric Search

Microsoft Excel download tool from ADIsimPower to generate a power supply design complete with a schematic, bill of materials, and performance specifications.

Open Tool
LTspice

LTspice® is a powerful, fast and free simulation software, schematic capture and waveform viewer with enhancements and models for improving the simulation of analog circuits.


Evaluation Kits

eval board
EVAL-FMCDAQ3-EBZ

High speed data acquisition FMC board

Features and Benefits

  • Provides two channels of ADC and two channels of DAC with full synchronization capabilities
  • FMC-compatible form factor
  • Powered from single FMC connector

Product Details

The AD-FMCDAQ3-EBZ module is comprised of the AD9680 dual, 14-bit, 1.25 GSPS, JESD204B ADC, the AD9152 dual, 16-bit, 2.5 GSPS, JESD204B DAC, the AD9528 clock, and power management components. It is clocked by an internally generated carrier platform via the FMC connector, comprising a completely self-contained data acquisition and signal synthesis prototyping platform. In an FMC footprint (84 mm × 69 mm), the module’s combination of wideband data conversion, clocking, and power closely approximates real-world hardware and software for system prototyping and design, with no compromise in signal chain performance.


Applications

  • Electronic test and measurement equipment
  • General-purpose software radios
  • Radar systems
  • Ultra-wideband satellite receivers
  • Signals intelligence (SIGINT)
  • Point to point communication systems
  • DOCSIS 3.0 CMTS and HFC networks
  • Multiple input/multiple output (MIMO) radios
  • Automated test equipment

eval board
AD-FMCDAQ2-EBZ

AD-FMCDAQ2-EBZ Evaluation Board

Features and Benefits

  • Includes schematics, layout, BOM, Gerber files, HDL, Linux® drivers, IIO Oscilloscope, VisualANALOG
  • FMC-compatible form factor
  • Powered from FMC connector
  • Provides two channels of ADC and two channels of DAC with full synchronization capabilities

Product Details

The AD-FMCDAQ2-EBZ module is comprised of the AD9680 dual, 14-bit, 1.0 GSPS, JESD204B ADC, the AD9144 quad, 16-bit, 2.8 GSPS, JESD204B DAC, the AD9523-1 14-output, 1GHz clock, and power management components. It is clocked by an internally generated carrier platform via the FMC connector, comprising a completely self-contained data acquisition and signal synthesis prototyping platform. In an FMC footprint (84 mm × 69 mm), the module’s combination of wideband data conversion, clocking, and power closely approximates real-world hardware and software for system prototyping and design, with no compromise in signal chain performance.

Applications

  • Electronic test and measurement equipment
  • General-purpose software radios
  • Radar systems
  • Ultra wideband satellite receivers
  • Point-to-point communication systems

EVAL-ADP150

ADP150 Evaluation Board

Features and Benefits

  • Two fully assembled and tested evaluation boards per kit
  • Full set of IC voltage options in each kit
  • 3 samples of each IC voltage option packed in separate antistatic bags
  • Kit allows the user to quickly evaluate all IC voltage options
  • Only need to order one kit per product family

Product Details


This product has individual evaluations boards at specific voltages or with specific features as well as the RedyKit&tm;. The RedyKit simplifies product evaluation by providing two assembled and tested evaluation boards, plus a full set of product (voltage) options for an IC regulator. All the IC options come sorted and stored in the kit with the Analog Devices part number clearly printed on each antistatic zip-top bag.


Simple device measurements such as line and load regulation, dropout, and ground current can be demonstrated with just a single voltage supply, a voltmeter, a current meter, and load resistors.

eval board
SCP-1X2BKOUT-EVALZ

Signal Chain Power Connection Hardware | 1 Input-2 Output Parallel Breakout Board

Product Details

Demonstration circuit SCP-1X2BKOUT-EVALZ is a companion hardware tool designed to expand an existing rail into two segments in a Signal Chain Power hardware evaluation matrix. It features one (1) input port and two (2) output ports, along with passive filtering options.

Like all boards in the Signal Chain Power series, this board is designed to be easily plugged into other SCP boards to form a complete signal chain power system, enabling fast evaluation of low power signal chains. To evaluate this board, some universal SCP hardware is required, namely:

  • SCP-INPUT-EVALZ
  • SCP-OUTPUT-EVALZ
  • SCP-5X1-EVALZ
  • SCP-FILTER-EVALZ
  • SCP-1X5BKOUT-EVALZ
  • SCP-THRUBRD-EVALZ

To properly evaluate SCP series demo boards, you will need the SCP Configurator companion software. SCP Configurator can help you choose the right board and topology for your design.

eval board
SCP-ADP150-EVALZ

ADP150 Signal Chain Evaluation Board | Dual Boost/Inverting Converter

Product Details

Demonstration circuit SCP-ADP150-EVALZ features the ADP150, an ultralow noise (9μV), low dropout, linear regulator that operates from 2.2V to 5.5V and provides up to 150mA of output current. ADP150AUJZ-3.3-R7 fixed volt-age IC is installed on this board.

Like all boards in the Signal Chain Power series, this board is designed to be easily plugged into other SCP boards to form a complete signal chain power system, enabling fast evaluation of low power signal chains. To evaluate this board, some universal SCP hardware is required, namely:

  • SCP-INPUT-EVALZ
  • SCP-OUTPUT-EVALZ
  • SCP-FILTER-EVALZ
  • SCP-THRUBRD-EVALZ
  • SCP-1X2BKOUT-EVALZ
  • SCP-1X5BKOUT-EVALZ
  • SCP-5X1-EVALZ

 

To properly evaluate SCP series demo boards, you will need the SCP Configurator companion software. SCP Configurator can help you choose the right board and topology for your design.

Note that the Demo Manual does not cover details important to the operation and configuration regarding the ADP150. Please refer to the ADP150 datasheet for a complete description of the part.

eval board
ADSKPMB10-EV-FMCZ

Single-Channel, Fully Isolated, Low Latency Data Acquisition System (DAQ)

Features and Benefits

  • Fully Isolated PMOD-to-FMC interposer board
  • Software programmable bipolar input ranges (±1.1 V to ±11.0 V)
    • Allows single-ended and differential signals
  • GΩ input impedance allows direct interface with sensors
  • On-board 5 V reference and buffer
  • Complete power management solution
  • SPI-/QSPI-/MICROWIRE-/DSP-compatible serial interface
  • PC software for control and data analysis of time and frequency domain

Product Details

The ADSKPMB10-EV-FMCZ signal chain kit is a two-board solution, which consists of a Precision Medium Bandwidth Data Acquisition Solution on a PMOD form factor and a Fully Isolated PMOD-to-FMC interposer board.

The Precision Medium Bandwidth Data Acquisition Solution features a discrete programmable gain instrumentation amplifier (PGIA) that was built using a 30V, High Speed, Low Noise, Low Bias Current, JFET Operational Amplifier, the ADA4627-1, a Precision Quad Matched Resistor Network, the LT5400, a Low Capacitance, 4-Channel, ±15 V/+12 V iCMOS Multiplexer, the ADG1209 and the internal Fully Differential Amplifier (FDA) ADC driver of the ADAQ4003. The PGIA in thru front-end offers high input impedance that allows direct interface with a variety of sensors. A programmable gain is often needed to adapt the circuit to different input signal amplitudes—unipolar or bipolar and single-ended or differential with varying common-mode voltages. The PGIA works with the ADAQ4003, an 18-Bit, 2 MSPS, µModule® Data Acquisition Solution.

The Fully Isolated PMOD-to-FMC interposer board was designed using a Low Noise, 1A, 1MHz Push-Pull DC/DC Driver with Duty Cycle Control, the LT3999, a Robust 3.0kVrms Digital Isolators w/ Fail-Safe for the SPI lines and PGIA gain control pins, the ADuM152N and the ADuM120N, and a Low noise and ultra-low noise LDO regulators the ADP7105 and the ADP150N respectively.

APPLICATIONS

  • Data acquisition and system monitoring
  • Automated test equipment
  • Instrumentation 
  • Medical equipment

EVAL-FMCDAQ3-EBZ
High speed data acquisition FMC board
FMCDAQ3 Block Diagram FMCDAQ3 (top)
AD-FMCDAQ2-EBZ
AD-FMCDAQ2-EBZ Evaluation Board
AD-FMCDAQ2-EBZ Block Diagram AD-FMCDAQ2-EBZ - top view AD-FMCDAQ2-EBZ - bottom view
EVAL-ADP150
ADP150 Evaluation Board
SCP-1X2BKOUT-EVALZ
Signal Chain Power Connection Hardware | 1 Input-2 Output Parallel Breakout Board
Signal Chain Power Connection Hardware Signal Chain Power Connection Hardware - Top View Signal Chain Power Connection Hardware - Bottom View
SCP-ADP150-EVALZ
ADP150 Signal Chain Evaluation Board | Dual Boost/Inverting Converter
ADP150 Evaluation Board ADP150 Evaluation Board - Top View ADP150 Evaluation Board - Bottom View
ADSKPMB10-EV-FMCZ
Single-Channel, Fully Isolated, Low Latency Data Acquisition System (DAQ)
ADSKPMB10-EV-FMCZ ADSKPMB10-EV-FMCZ - Top View ADSKPMB10-EV-FMCZ - Bottom View ADSKPMB10-EV-FMCZ Kit with SDP-H1 ADSKPMB10-EV-FMCZ Kit with SDP-H1 - Top View

Reference Designs

Direct Conversion Transmitter
CN0134 Circuits from the lab

Broadband Low Error Vector Magnitude (EVM) Direct Conversion Transmitter

Features and Benefits

  • Direct conversion broadband transmitter
  • Functions from 500 MHz to 4.4 GHz
  • Excellent phase noise reduces errors
Direct Conversion Transmitter
CN0144 Circuits from the lab

Broadband Low Error Vector Magnitude (EVM) Direct Conversion Transmitter Using LO Divide-by-2 Modulator

Features and Benefits

  • Direct conversion broadband transmitter
  • Functions from 69 MHz to 2.2 GHz
ADF4351 RF Output Filter Schematic
CN0285 Circuits from the lab

Broadband Low Error Vector Magnitude (EVM) Direct Conversion Transmitter

Features and Benefits

  • Broadband direct conversion transmitter
  • 500MHz to 4.4GHz RF
  • Low phase noise
  • Low error vector magnitude (EVM)
Direct Conversion Transmitter
CN0311 Circuits from the lab

Broadband, Low Error Vector Magnitude (EVM) Direct Conversion Transmitter Using LO Divide-by-2 Modulator

Features and Benefits

  • Direct conversion transmitter
  • Low error vector magnitude
  • 30MHz to 2.2GHz RF output
Boost Converter Used for the High Voltage Charge Pump Supply
CN0228 Circuits from the lab

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

Features and Benefits

  • High voltage PLL synthesizer
  • Single supply
  • HV boost converter
ADP150 Regulators Connected to ADF4350
CN0147 Circuits from the lab

Powering a Fractional-N Voltage Controlled Oscillator (VCO) with Low Noise LDO Regulators for Reduced Phase Noise

Features and Benefits

  • Frequency range from 140 MHz to 4.4 GHz
  • Ultralow noise regulators for optimal system phase noise
Block Diagram of the EVAL-CN0290-SDPZ
CN0290 Circuits from the lab

Extending the Low Frequency Range of a High Performance Phase Locked Loop

Features and Benefits

  • Phase locked loop with extended low frequency range
  • LO down to 10MHz, RF down to 100MHz
  • Low distortion and phase noise
Figure 1. Simplified Block Diagram of EVAL-CN0534-EBZ
CN0534 Circuits from the lab

USB Powered 5.8 GHz RF LNA Receiver with Output Power Protection

Features and Benefits

  • 23.5 dB Gain
  • 5.8 GHz Optimized LNA
  • ISM Band Operation
  • USB Powered

Part Used


Design & Integration Tools


Videos

  • lazy blur
    VIDEO · 2022-01-24 01:01
    CN0534: USB Powered 5.8 GHz RF LNA w/ Output Power Protection
Figure 1. CN0518 Simplified Block Diagram
CN0518 Circuits from the lab

USB-Powered, 915 MHz RF Low Noise Amplifier Receiver with Overpower Protection Circuit

Features and Benefits

  • +25 dB of Rx Signal Gain
  • 50 ohm Input and Output Impedance
  • Overvoltage Input Protection
  • SMA Input and Output Connectors
  • USB Powered
Thermistor Measurement Block Diagram
CN0545 Circuits from the lab

Completely Integrated, 0.1°C Thermistor Measurement System Using a Low Power, Precision, 24-Bit Sigma-Delta ADC

Features and Benefits

  • 0.1 Degree Accurate Thermistor Measurement System
  • Highly Integrated Solution
  • Up to 4 Thermistors (AD7124-4) or 8 Thermistors(AD7124-8)
CN0134
Broadband Low Error Vector Magnitude (EVM) Direct Conversion Transmitter
Direct Conversion Transmitter
CN0144
Broadband Low Error Vector Magnitude (EVM) Direct Conversion Transmitter Using LO Divide-by-2 Modulator
Direct Conversion Transmitter
CN0285
Broadband Low Error Vector Magnitude (EVM) Direct Conversion Transmitter
ADF4351 RF Output Filter Schematic
Evaluation Board for CN-0285
CN0311
Broadband, Low Error Vector Magnitude (EVM) Direct Conversion Transmitter Using LO Divide-by-2 Modulator
Direct Conversion Transmitter
CN0228
Single Supply Powers a 28 V, High Voltage Phase-Locked Loop (PLL) Synthesizer
Boost Converter Used for the High Voltage Charge Pump Supply
CN0147
Powering a Fractional-N Voltage Controlled Oscillator (VCO) with Low Noise LDO Regulators for Reduced Phase Noise
ADP150 Regulators Connected to ADF4350
EVAL-ADF4350EB1Z Rev. B Evaluation Board
CN0290
Extending the Low Frequency Range of a High Performance Phase Locked Loop
Block Diagram of the EVAL-CN0290-SDPZ
CN0534
USB Powered 5.8 GHz RF LNA Receiver with Output Power Protection
Figure 1. Simplified Block Diagram of EVAL-CN0534-EBZ
EVAL-CN0534-EBZ - Angle View
EVAL-CN0534-EBZ - Top View
EVAL-CN0534-EBZ - Bottom View
CN0518
USB-Powered, 915 MHz RF Low Noise Amplifier Receiver with Overpower Protection Circuit
Figure 1. CN0518 Simplified Block Diagram
EVAL-CN0518-EBZ
EVAL-CN0518-EBZ - Top View
EVAL-CN0518-EBZ - Bottom View
CN0545
Completely Integrated, 0.1°C Thermistor Measurement System Using a Low Power, Precision, 24-Bit Sigma-Delta ADC
Thermistor Measurement Block Diagram

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