ADP165

PRODUCTION

Very Low Quiescent Current, 150 mA, with Output Discharge LDO Regulator

Part Models
19
1ku List Price
Starting From $0.42
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Part Details

  • Very low quiescent current
    IQ = 590 nA with 0 µA load
    IQ = 890 nA with 1 µA load
  • Maintains very low quiescent current in dropout (pass through mode):
    IQ_DROP = 720 nA with 0 µA load
    IQ_DROP = 1200 nA with 1 µA load
  • Stable with 1 µF ± 30% ceramic input and output capacitors
  • Maximum load current: ILOAD_MAX: 150 mA
  • Input voltage range: 2.2 V to 5.5 V
  • Low shutdown current: 50 nA typical
  • Low dropout voltage: 120 mV at 150 mA load
  • Initial output voltage accuracy: ±1%
  • Accuracy over line, load, and temperature: ±3.5%
  • 7 fixed output voltage options: 1.2 V to 3.3 V
  • Adjustable output option can be set from 1.2 V to 4.2 V
  • PSRR: 72 dB at 100 Hz, VOUT = 1.2 V
  • Current-limit and thermal overload protection
  • Logic control enable
  • Integrated output discharge resistor
  • Three package options
    5-lead TSOT package
    6-lead, 2 mm × 2 mm LFCSP
    4-ball, 0.5 mm pitch WLCSP

ADP165
Very Low Quiescent Current, 150 mA, with Output Discharge LDO Regulator
ADP165 Typical Application Circuit Diagram ADP165 Pin Diagram
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Tools & Simulations

LTspice 1


Models for the following parts are available in LTspice:

  • ADP165-1.2
  • ADP165-1.8
  • ADP165-2.2
  • ADP165-2.3
  • ADP165-2.85
  • ADP165-3.0
  • ADP165-3.3
  • ADP165-ADJ

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Evaluation Kits

eval board
EVAL-ADMX1002

Ultra-low Distortion Signal Generator Measurement Module

Features and Benefits

  • Ultra-low distortion, high-resolution source
    • DC, 50Hz to 40kHz Frequency Range
    • Proprietary digital pre-distortion (DPD) algorithm
    • –130dBc THD @ 1kHz (typ.)
    • Arbitrary waveform generation (AWG) with on-board pattern memory
    • Differential (balanced) output up to 3.6VRMS
  • Fast pattern switching between multiple stored waveforms
  • Small form-factor (60mm x 40mm)
  • Low power, 1W typ. (quiescent)
  • SPI interface for integration into test and measurement systems

Product Details

The ADMX1002 is an ultra-low distortion sinewave and high-resolution arbitrary waveform generator. This high-performance module demonstrates a proprietary digital pre-distortion algorithm that reduces signal distortion below levels that can be achieved with high-performance digital-to-analog converters (DAC) and amplifiers alone. Its differential output can be set to common-mode levels often required to test high-performance analog-to-digital converters (ADC), audio codecs, and other audio ICs and systems. With an easy-to-use SPI interface and small-form factor, the ADMX1002 can be easily embedded into test systems, or simply used on the bench for measurement and characterization.

APPLICATIONS

  • High-end audio test
  • Analog-to-digital converter characterization and test
  • Sensor and transducer test
  • Frequency response and network analysis
  • ATE

eval board
EVAL-ADP165-166

ADP165Z-REDYKIT/ADP166Z-REDYKIT

Features and Benefits

  • Input voltage range: 2.2 V to 5.5 V
  • Output current range: 0 mA to 150 mA
  • Output voltage accuracy: ±1%
  • Operating temperature range: −40°C to +125°C

Product Details

The ADP165/ADP166 evaluation boards are used to demonstrate the functionality of the ADP165/ADP166 series of linear regulators.


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


Complete specifications for the ADP165/ADP166 linear regulators are available in the ADP165/ADP166 data sheet available from Analog Devices, Inc., and should be consulted in conjunction with this user guide when using the evaluation boards.

eval board
EVAL-ADMX1001

Ultra-low Distortion Signal Generator Measurement Module with Fully Differential Input Acquisition Channel

Features and Benefits

  • Ultra-low distortion, high-resolution source
    • DC, 50Hz to 40kHz Frequency Range
    • Proprietary digital pre-distortion (DPD) algorithm
    • –130dBc THD @ 1kHz (typ.)
    • Arbitrary waveform generation (AWG) with on-board pattern memory
    • Differential (balanced) output up to 3.5VRMS
    • Fast pattern switching between multiple stored waveforms
  • Fully Differential input Acquisition Channel
  • Small form-factor (60mm x 40mm)
  • Low power, 1W typ. (quiescent)
  • SPI interface for integration into test and measurement systems

Product Details

The ADMX1001 is an ultra-low distortion sinewave and high-resolution arbitrary waveform generator with an acquisition channel. This high-performance module demonstrates a proprietary digital pre-distortion algorithm that reduces signal distortion below levels that can be achieved with high-performance digital-to-analog converters (DAC) and amplifiers alone. Its differential output can be set to common-mode levels often required to test high-performance analog-to-digital converters (ADC), audio codecs, and other audio ICs and systems. The signal generator and the acquisition channel can be individually controlled using separate, easy to use, SPI interfaces - combined with the module's small-form factor, the ADMX1001 can be easily embedded into test systems, or simply used on the bench for measurement and characterization.

APPLICATIONS

  • High-end audio test
  • Analog-to-digital converter characterization and test
  • Sensor and transducer test
  • Frequency response and network analysis
  • ATE

EVAL-ADMX1002
Ultra-low Distortion Signal Generator Measurement Module
EVAL-ADMX100X-FMCZKIT - Angle View EVAL-ADMX100X-FMCZKIT - Top View ADMX1002 - Angle View ADMX1002 - Top View ADMX1002 - Bottom View
EVAL-ADP165-166
ADP165Z-REDYKIT/ADP166Z-REDYKIT
ADP165Z-REDYKIT
EVAL-ADMX1001
Ultra-low Distortion Signal Generator Measurement Module with Fully Differential Input Acquisition Channel
ADMX1001 - Top View ADMX1001 - Bottom View ADMX1001 - Angle View ADMX1001FMCZ - Top View ADMX1001FMCZ - Bottom View ADMX1001FMCZ - Angle View EVAL-ADMX100X-FMCZKIT - Angle View EVAL-ADMX100X-FMCZKIT - Top View

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