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Evaluation Kits

DC1407A

Analog Devices Inc.
The LT3011 is a high voltage, micropower, low dropout linear regulator. The device is capable of supplying 50mA of output current with a dropout voltage of 300mV. Designed for use in battery-powered high voltage systems, the low quiescent current (46?A operating and 1?A in shutdown) is well controlled in dropout, making the LT3011 an ideal choice.The LT3011 includes a PWRGD flag to indicate output regulation. The delay between regulated output level and flag indication is programmable with a single capacitor. The LT3011 also has the ability to operate with very small output capacitors; it is stable with only 1?F on the output. Small ceramic capacitors can be used without the addition of any series resistance (ESR) as is common with other regulators. Internal protection circuitry includes reverse battery protection, current limiting, thermal limiting, and reverse current protection.The LT3011 features an adjustable output with a 1.24V reference voltage. The device is available in the thermally enhanced 12-lead MSOP and the low profile (0.75mm) 10-pin (3mm ? 3mm) DFN package, both providing excellent thermal characteristics.Applications Low Current High Voltage Regulators Regulator for Battery-Powered Systems Telecom Applications Automotive Applications

DC1408A

Analog Devices Inc.
The LT3029 is a dual, micropower, low noise, low dropout linear regulator. The device operates either with a common input supply or independent input supplies for each channel, over an input voltage range of 1.8V to 20V. Each output supplies up to 500mA of output current with a typical dropout voltage of 300mV. Quiescent current is well controlled in dropout. With an external 10nF bypass capacitor, output noise is only 20?VRMS over a 10Hz to 100kHz bandwidth. Designed for use in battery-powered systems, the low 55?A quiescent current per channel makes it an ideal choice. In shutdown, quiescent current drops to less than 1?A. Shutdown control is independent for each channel, allowing for flexible power management.The LT3029 optimizes stability and transient response with low ESR ceramic output capacitors, requiring a minimum of only 3.3?F. The regulator does not require the addition of ESR, as is common with other regulators.Internal circuitry provides reverse-battery protection, reverse-current protection, current limiting with foldback and thermal shutdown. The device is available as an adjustable output voltage device with a 1.215V reference voltage. The LT3029 is offered in the thermally enhanced 16-lead MSOP and 16-lead, low profile (4mm ? 3mm ? 0.75mm) DFN packages.Applications General Purpose Linear Regulator Battery-Powered Systems Microprocessor Core/Logic Supplies Post Regulator for Switching Supplies Tracking/Sequencing Power Supplies

DC1410A-A

Analog Devices Inc.
The LTC2498 is a 16-channel (8-differential) 24-bit No Latency ??? ADC with Easy Drive technology. The patented sampling scheme eliminates dynamic input current errors and the shortcomings of on-chip buffering through automatic cancellation of differential input current. This allows large external source impedances, and rail-to-rail input signals to be directly digitized while maintaining exceptional DC accuracy. The LTC2498 includes a high accuracy temperature sensor and an integrated oscillator. This device can be configured to measure an external signal (from combinations of 16 analog input channels operating in single ended or differential modes) or its internal temperature sensor. The integrated temperature sensor offers 1/30th ?C resolution and 2?C absolute accuracy. The LTC2498 allows a wide common mode input range (0V to VCC), independent of the reference voltage. Any combination of single-ended or differential inputs can be selected and the first conversion after a new channel is selected is valid. Access to the multiplexer output enables optional external amplifiers to be shared between all analog inputs and auto calibration continuously removes their associated offset and drift.Applications Direct Sensor Digitizer Direct Temperature Measurement Instrumentation Industrial Process Control

DC1412A

Analog Devices Inc.
The LT3758/LT3758A are wide input range, current mode, DC/DC controllers which are capable of generating either positive or negative output voltages. They can be configured as either a boost, flyback, SEPIC or inverting converter. The LT3758/LT3758A drive a low side external N-channel power MOSFET from an internal regulated 7.2V supply. The fixed frequency, current-mode architecture results in stable operation over a wide range of supply and output voltages.The operating frequency of LT3758/LT3758A can be set with an external resistor over a 100kHz to 1MHz range, and can be synchronized to an external clock using the SYNC pin. A minimum operating supply voltage of 5.5V, and a low shutdown quiescent current of less than 1?A, make the LT3758/LT3758A ideally suited for batterypowered systems.The LT3758/LT3758A feature soft-start and frequency foldback functions to limit inductor current during start-up and output short-circuit. The LT3758A has improved load transient performance compared to the LT3758.APPLICATIONS Automotive Telecom Industrial

LTM4601AHVEV Demo Board | 28V, 12A DC/DC µModule Regulator with Remote Sense

Analog Devices Inc.
DC1414B-B: Demo Board for the LTM4601AHV 12A, 28VIN DC/DC µModule Regulator with PLL, Output Tracking and Margining.

DC1418A-D

Analog Devices Inc.
The LT6604-15 consists of two matched, fully differential amplifiers, each with a 4th order, 15MHz lowpass ?lter. The ?xed frequency lowpass ?lter approximates a Chebyshev response. By integrating a ?lter and a differential amplifier, distortion and noise are made exceptionally low. At unity gain, the measured in band signal-to-noise ratio is an impressive 76dB. At higher gains, the input referred noise decreases, allowing the part to process smaller input differential signals without significantly degrading the signal-to-noise ratio.Gain and phase are highly matched between the two channels. Gain for each channel is independently programmed using two external resistors. The LT6604-15 enables level shifting by providing an adjustable output common mode voltage, making it ideal for directly interfacing to ADCs.The LT6604-15 is fully specified for 3V operation. The differential design enables outstanding performance at a 2VP-P signal level for a single 3V supply. See the back page of this datasheet for a complete list of related single and dual differential amplifiers with integrated 2.5MHz to 20MHz lowpass ?lters.Applications Dual Differential ADC Driver Plus Filter Single-Ended to Differential Converter Matched, Dual, Differential Filter Stage Common Mode Translation of Differential Signals High Speed ADC Antialiasing and DAC Smoothing in Wireless Infrastructure or Networking Applications High Speed Test and Measurement Equipment Medical Imaging

LT3663EDCB Demo Board | Adjustable Current Limit, 7.5V ≤ VIN ≤ 36/60V, VOUT = 3.3V or 5V @ 0.6A to 1.2A

Analog Devices Inc.
Demonstration Circuit 1419 is a 1.5MHz current mode step-down switching regulator with programmable output current limit featuring the LT3663. The current limit accurately controls the system power dissipation and reduces the size of the power path components. The demo board operates with a 7.5V to 36V (60 transients) input voltage range. The output can be set to 3.3V or 5V using jumper J4, and the current limit can be set to 0.6V, 0.8V, 1V or 1.2V using jumpers J2 and J3.

DC1422A-A

Analog Devices Inc.
The LTC6605-7 contains two independent, fully differential amplifiers configured as matched 2nd order lowpass filters. The f?3dB of the filters is adjustable in the range of 6.5MHz to 10MHz.The internal op amps are fully differential, feature very low noise and distortion, and are compatible with 16-bit dynamic range systems. The inputs can accept single ended or differential signals. An input pin is provided for each amplifier to set the common mode level of the differential outputs.Internal laser-trimmed resistors and capacitors determine a precise, very well matched (in gain and phase) 7MHz 2nd order filter response. A single optional external resistor per channel can tailor the frequency response for each amplifier.Three-state BIAS pins determine each amplifier?s power consumption, allowing a choice between shutdown, medium power or full power.The LTC6605-7 is available in a compact 6mm ? 3mm 22-pin leadless DFN package and operates over a ?40?C to 85?C temperature range.Applications WCDMA ADC Driver/Filter Antialiasing Filter Single-Ended to Differential Conversion DAC Smoothing Filter Zero-IF Direct Conversion Receivers

LTC6605-14 | Dual Matched 14 MHz Low Noise, Low Distortion 2nd Order LP Filter

Analog Devices Inc.
DC1422A-C: Demo Board for the LTC6605-14 Dual Matched 14MHz Filter with Low Noise, Low Distortion Differential Amplifier.

LT3571EUD Demo Board | 75V DC/DC Converter for APD Bias

Analog Devices Inc.
DC1423A: Demo Board for the LT3571 75V DC/DC Converter for APD Bias.

LTC5543IUH Demo Board | Optimized for RF = 2.3GHz to 4.0GHz, LO = 2.4GHz to 3.6GHz

Analog Devices Inc.
DC1431A-D: Demo Board for the LTC5543 2.3GHz to 4GHz High Dynamic Range Downconverting Mixer.

ADIS16507-1/PCBZ

Analog Devices Inc.
The ADIS16507 is a precision, miniature microelectromechanical?system (MEMS) inertial measurement unit (IMU) that includes?a triaxial gyroscope and a triaxial accelerometer. Each inertial?sensor in the ADIS16507 combines with signal conditioning?that optimizes dynamic performance. The factory calibration?characterizes each sensor for sensitivity, bias, alignment,?linear acceleration (gyroscope bias), and point of percussion?(accelerometer location). As a result, each sensor has dynamic?compensation formulas that provide accurate sensor?measurements over a broad set of conditions.The ADIS16507 provides a simplified, cost effective method for?integrating accurate, multiaxis inertial sensing into industrial?systems, especially when compared with the complexity and?investment associated with discrete designs. All necessary motion?testing and calibration are part of the production process at the?factory, greatly reducing system integration time. Tight orthogonal?alignment simplifies inertial frame alignment in navigation?systems. The serial peripheral interface (SPI) and register?structure provide a simple interface for data collection and?configuration control.The ADIS16507 is available in a 100-ball, ball grid array (BGA)?package that is approximately 15 mm ? 15 mm ? 5 mm.Applications Navigation, stabilization, and instrumentation Unmanned and autonomous vehicles Smart agriculture and construction machinery Factory/industrial automation, robotics Virtual/augmented reality Internet of Moving Things

ADIS16507-3/PCBZ

Analog Devices Inc.
The ADIS16507 is a precision, miniature microelectromechanical?system (MEMS) inertial measurement unit (IMU) that includes?a triaxial gyroscope and a triaxial accelerometer. Each inertial?sensor in the ADIS16507 combines with signal conditioning?that optimizes dynamic performance. The factory calibration?characterizes each sensor for sensitivity, bias, alignment,?linear acceleration (gyroscope bias), and point of percussion?(accelerometer location). As a result, each sensor has dynamic?compensation formulas that provide accurate sensor?measurements over a broad set of conditions.The ADIS16507 provides a simplified, cost effective method for?integrating accurate, multiaxis inertial sensing into industrial?systems, especially when compared with the complexity and?investment associated with discrete designs. All necessary motion?testing and calibration are part of the production process at the?factory, greatly reducing system integration time. Tight orthogonal?alignment simplifies inertial frame alignment in navigation?systems. The serial peripheral interface (SPI) and register?structure provide a simple interface for data collection and?configuration control.The ADIS16507 is available in a 100-ball, ball grid array (BGA)?package that is approximately 15 mm ? 15 mm ? 5 mm.Applications Navigation, stabilization, and instrumentation Unmanned and autonomous vehicles Smart agriculture and construction machinery Factory/industrial automation, robotics Virtual/augmented reality Internet of Moving Things

ADL5306-EVALZ

Analog Devices Inc.
The ADL5306 is a low cost micro-miniature logarithmic converter optimized for the determination of optical power in fiber-optic systems. It uses an advanced implementation of a classic translinear (junction-based) technique to provide a large dynamic range in a versatile and easily-used form. A single supply voltage of between 3 V and 5.5 V is adequate; dual supplies may optionally be used. The low quiescent current (typically 5 mA) permits use in battery-operating applicationsThe input current IPD of 100 nA to 100 ?A applied to the INPT pin is the collector current of an optimally-scaled NPN transistor, which converts this current to a voltage (its VBE) with a precise logarithmic relationship. A second such converter is used to handle the reference current, IREF, applied to pin IREF. These input nodes are biased slightly above ground (0.5 V). This is generally acceptable for photodiode applications where the anode does not need to be grounded. Similarly, this bias voltage is easily accounted for in generating IREF. The output of the logarithmic front-end is available at pin VLOG.

ADL5371-EVALZ

Analog Devices Inc.
The ADL5371 is a member of the fixed-gain quadrature modulator(F-MOD) family designed for use from 500 MHz to 1500 MHz.Its excellent phase accuracy and amplitude balance enable highperformance intermediate frequency or direct radio frequencymodulation for communication systems.The ADL5371 provides a >500 MHz, 3 dB baseband bandwidth,making it ideally suited for use in broadband zero IF or low IF-to-RFapplications and in broadband digital predistortiontransmitters.The ADL5371 accepts two differential baseband inputs anda single-ended local oscillator (LO) and generates a single-endedoutput.The ADL5371 is fabricated using the Analog Devices, Inc.advanced silicon-germanium bipolar process. It is available in a24-lead, exposed-paddle, Pb-free, LFCSP. Performance is specifiedover a ?40?C to +85?C temperature range. A Pb-free evaluationboard is available.Applications Cellular communication systems at 900 MHz CDMA2000/GSM WiMAX/broadband wireless access systems Cable communication equipment Satellite modems

ADL5375-05-EVALZ

Analog Devices Inc.
The ADL5375 is a broadband quadrature modulator designed for operation from 400 MHz to 6 GHz. Its excellent phase accuracy and amplitude balance enable high performance intermediate frequency or direct radio frequency modulation for communication systems.The ADL5375 features a broad baseband bandwidth, along with an output gain flatness that varies no more than 1 dB from 450 MHz to 3.8 GHz. These features, coupled with a broadband output return loss of

ADL5501-EVALZ

Analog Devices Inc.
The ADL5501 is a mean-responding power detector for use in high frequency receiver and transmitter signal chains from 50 MHz to 6 GHz. It is easy to apply, requiring only a single supply between 2.7 V and 5.5 V and a power supply decoupling capacitor. The input is internally ac-coupled and has a nominal input impedance of 50 ?. The output is a linear-responding dc voltage with a conversion gain of 6.3 V/V rms at 900 MHz.The ADL5501 is intended for true power measurement of simple and complex waveforms. The device is particularly useful for measuring high crest factor (high peak-to-rms ratio) signals, such as CDMA-, CDMA2000-, W-CDMA-, and QPSK-/QAM-based OFDM waveforms. The on-chip modulation filter provides adequate averaging for most waveforms.The on-chip, 100 ? series resistance at the output, combined with an external shunt capacitor, creates a low-pass filter response that reduces the residual ripple in the dc output voltage. For more complex waveforms, an external capacitor at the FLTR pin can be used for supplementary signal demodulation.The ADL5501 offers excellent temperature stability across a 30 dB range and near 0 dB measurement error across temperature over the top portion of the dynamic range. In addition to its temperature stability, the ADL5501 offers low process variations that further reduce calibration complexity.The ADL5501 operates from ?40?C to +85?C and is available in a small 6-lead SC-70 package. It is fabricated on a proprietary high fT silicon bipolar process.ApplicationsMeasurement of CDMA-, CDMA2000-, W-CDMA-, and QPSK-/ QAM-based OFDM, and other complex modulationwaveforms RF transmitter or receiver power measurement

ADL5545-EVALZ

Analog Devices Inc.
The ADL5545 is a single-ended RF/IF gain block amplifier that provides broadband operation from 30 MHz to 6 GHz. The ADL5545 provides over 36 dBm of OIP3 using only 56 mA from a 5 V supply.The ADL5545 provides a gain of 24 dB, which is stable over frequency, temperature, power supply, and from device to device. The amplifier is offered in the industry-standard SOT-89 package and is internally matched to 50 ? at the input and output, making the ADL5545 very easy to implement in a wide variety of applications. The only external components required are the input/output ac coupling capacitors, power supply decoupling capacitors, and dc bias inductor.The ADL5545 is fabricated on an InGaP HBT process and has a high ESD rating of ?1.5 kV (Class 1C). The ADL5545 is also fully specified for operation across the wide temperature range of ?40?C to +105?C. A fully populated RoHS-compliant evaluation board is available.

ADL5605-EVALZ

Analog Devices Inc.
The ADL5605 is a broadband, two-stage, 1 W RF driver amplifier that operates over a frequency range of 700 MHz to 1000 MHz.The ADL5605 operates on a 5 V supply voltage and a supply current of 307 mA. The driver also incorporates a fast power-up/power-down function for TDD applications, applications that require a power saving mode, and applications that intermittently transmit data.The ADL5605 is fabricated on a GaAs HBT process and is packaged in a compact 4 mm ? 4 mm, 16-lead LFCSP that uses an exposed paddle for excellent thermal impedance. The ADL5605 operates from ?40?C to +85?C. A fully populated evaluation board tuned to 943 MHz is also available.ApplicationsWireless infrastructureAutomated test equipmentISM/AMR applications

ADL5920-EVALZ

Analog Devices Inc.
The ADL5920 is an ultrawideband, bidirectional detector that simultaneously measures forward and reverse rms power levels in a signal path, along with the return loss.The forward and reverse power traveling through the integrated bidirectional bridge is measured using two 50 dB linear in dB rms detectors. The detector output voltages, available at the VRMSF and VRMSR pins, are proportional to the forward and reflected power in dBm. A third, differential, output produces a voltage proportional to the return loss (reflection coefficient) in dB, closely related to the voltage standing wave ratio (VSWR). The common-mode level of this output is externally adjustable through the VOCM pin.The primary transmission line of the bidirectional bridge, from RFIN to RFOUT (or vice versa) is dc-coupled and allows small amounts of dc bias current through the bridge. When dc-coupled to source and load, the positive and negative supply pins of the ADL5920 must be connected to +5 V and ?2.5 V, respectively (relative to the dc voltage at RFIN and RFOUT). The internal detector circuitry is also dc-coupled to the directional bridge to support measurements down to 9 kHz.The maximum input signal on each of the RF ports (RFIN and RFOOUT) is 30 dBm for open and shorted terminations and 33 dBm for a matched termination.The ADL5920 draws 160 mA from a 5 V supply and has a low power, power-down mode controlled through the PWDN/TADJS pin.The device is supplied in a 32-lead, 5 mm ? 5 mm LFCSP and is specified for ambient operating temperatures in the ?40?C to +85?C range.Multifunction pin names may be referenced by their relevant function only.Applications Industrial metering Broadband inline power and return loss measurement Transmit power control and automatic level control in wireless transmitters, signal generators, network analyzers, and wireless communications testers Condition based monitoring of system modules, cables, and connectors

Displaying 1301 - 1320 of 12877

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