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  • Products (Click on + Signs to Expand)

  • Wearables, IoT, Sensor Power & Interface Component Short Form
  • PHYSIOsensiics
    • LNDINA333 - nanoPOWER High Precision TI Compatible but 50% Less Current Instrumentation Amplifier
    • LNDINA334 - nanoPOWER High Precision Instrumentation Amplifier
    • LNDINA336 - nanoPOWER Six Lead Instrumentation Amplifier with 5:1 Multiplexer Input
      • LNDINA336 - INA336 Six Lead Instrumentation Amplifier with 5:1 Mux and Reference Input
      • The LNDINA336 are precision instrumentation amplifiers with a 5:1 mux, simple digital control, and a reference input channel. The LNDINA336 offer similar performance to the TI compatible INA333 with a 50% reduction in power consumption (25uA typical and 30uA maximum vs. 50uA typical and 80uA maximum for the INA333 vs. the TI part), but reduce part count by allow up to five additional inputs to the instrumentation amplifier through a simple digitally controlled mux.
    • AccuXtract - Physiological Solution Extracts Even During Vigorous Exercise
      • AccuXtract - Physiological Extractor with Motion Artifact Rejection
      • Extract a number of Physiological data while overcoming motion artifacts and noise. Optional modules include ECG, HRV, GSR, Skin, etc. The AccuXtract module supports numerous PEAL algorithmic modules utilizing on board Neurological Processors residing on power efficient ARM Cortex processors. These modules allow extraction of multipoint physiological data (such as ECG and derived quantities such as HRV, as well as EEG, skin impedance, GSR, etc.) from various parts of the body including wrist, arm, chest, leg and head.
    • AudioXtract - Audio Streaming Combined with Physiological Extraction
    • LNDAQ2 - nanoPOWER Complete SoC IP Block for Physiological Extraction
      • LNDAQ2 - nanoPOWER Complete SoC for Physiological Extraction
      • The LNDAQ2 is a complete signal interface, acquisition, extraction and interrogation IC using the latest low power sub-threshold instrumentation amplifiers, automatic gain control systems, high order switched capacitor filters, and low OSR data converters.
    • LNDADC14 - nanoPOWER <4uA 14 Bit Pipeline ADC
      • LNDADC14 - <4uA Bit Pipeline ADC.
      • The LNDADC14 is a very low current (typical 3.5uA in 14 bit mode and 2.7uA in 10 bit mode) analog to digital converter developed for low bandwidth battery operated portable electronics applications. The LNDADC14 uses the latest techniques in low current data converter design. These newly derived techniques obsolete many of the existing low current implementations with respect to their power per conversation figure of merit (FOM).
    • LNDADC18 - nanoPOWER <10uA 18 Bit Delta Sigma Low OSR ADC
      • LNDADC18 - nanoPOWER <10uA 18 Bit Delta Sigma Low OSR ADC
      • LNDADC18 is the lowest power consumption 18 bit (>16 bit ENOB) ADC available on the market for low bandwidth portable applications. The LNDADC18 may be programmed from an OSR (over sample rate) of 4x to 32x. At 4x and 2.5kHz clocking frequency, a 312.5Hz signal may be reliably acquired using only 7.23uA in the ADC. Alternatively, a higher clocking rate such as 32x will allow acquisition of signals up to 2.5kHz with 16 bits of accuracy or lower bandwidth signals to greater than 16 bits ENOB.
    • LNDFIL8 - nanoPOWER High Pass and Low Pass Up to 8th Order Filter IC
      • LNDFIL8 - nanoPOWER High Pass and Low Pass Up to 8th Order Filter IC
      • The LNDFILB8A/B is a very low current (3.4uA 8th order, 2.4uA, 6th order) filter block for low bandwidth signal processing applications. The LNDFILB8A/B utilizes the latest technology in low current switched capacitor filter design to minimize power consumption for portable devices.
    • LNDA003 - PEAL Signal Extraction & Manipulation System including Cloud Hosted, uC & PC Solutions
    • LNDSP17 - Full Physiological Extraction PCB Based Solution including Hardware & Software
      • LNDSP17 - Full Physiological Extraction PCB Based Solution including Hardware & Software
      • The LNDSP17 is complete fitness targeted physiological diagnostic & acquisition solution. It includes all the hardware & software components required to quickly implement a stand-alone commercial physiological monitoring product. Linear Dimensions supplies all the electronics, software, algorithms, and support in a development kit to quickly implement a full solution.
  • MEMsiics - Microelectromechanical Machine Systems Interface ICs
    • LND056 16 Channel, 350V, nanoPower Precision MEMs Interface
      • LND056 - 350V, 16 Channel Precision MEMs Interface
      • The LND-056 is a sixteen (16) channel transconductor block capable of creating up to sixteen precision high voltage outputs (0-350V) from eight (8) high impedance inputs. Simply connect a resistor divider to the output, connect the division point to the inverting terminal of a high precision opamp, and the non-inverting terminal to a desired control voltage (such as an RC filtered PWM signal or DAC output) and the high voltage output will be as accurate as the amplifier/resistor precision combination.
    • LND056-48 96 Channel, 180V, nanoPower Precision MEMs Interface and High Voltage Power Rail Generator
      • LND056-48 - 180V, 96 Channel Precision MEMs Interface
      • The LND056-48 is a complete high voltage driver subsystem capable of driving up to 96 muxed output channels from 48 inputs. Each channel is a high precision, uV offset, nulled opamp with a fixed 50V/V gain capable of achieving 0.03% output accuracy. The LND056-48 also includes all circuitry required to generate three high-voltage rails using a small number of external components. A patents pending high power subsystem makes the LND056-48 the lowest power solution for driving high voltage MEMs, drawing only 47mW of power in a typical application. Separate LND056-48 channels are dieletrically isolated to minimize crosstalk.
    • LND8924 160 Channel, 60V, nanoPower Precision MEMs Interface
      • LND8924 - MEMs Driver, 8 Input Voltages to 160 Outputs, 60V
      • The LND8924 features 160, 0-60V, outputs fed by eight (8) individually addressable voltage levels (V1-V8). The LND8924 is implemented in a sub-micron, high voltage process. The LND8924’s versatile truth table enables both row and column driver functionality for both conventional and Dynamic Drive updating schemes. Dynamic Drive and the low 1 ohm channel resistance allow fast refresh of displays such as Ebooks overcoming the slow, user observable, refresh rates that have restricted use of Ch-LCD displays. The LND8924 may also be used for MEMs, print head or industrial applications.
    • LNDMA32 32 Channel, 300V, Opamp Array with Fixed 50V/V Gain
      • LNDMA32 32 Channel, 300V, Opamp Array with Fixed 50V/V Gain
      • The MA32 is a precision 32 channel high voltage driver for capacitive loads such as micro electromechanical systems (MEMS). The gain of each high voltage driver is internally set for 50 V/V. This allows selection of a 0 to 5V DAC for driving each channel linearly from 0 to approximately 250V. The internal gain setting resistors have a total series resistance >= 2M? to minimize static power dissipation when outputs are at high voltage.
  • SwitchSLAYER - LED Drivers, Offline Power Supplies & LF-MCTs
    • LND060 18W Offline No Inductor LED Driver
      • LND060 18W Offline No Inductor LED Driver
      • The LND060 is designed to drive one or more strings of LEDs directly from an AC source. Using a Linear Dimensions prioprietary (PATENTS PENDING) switch array, LED strings can be segmented with a combination of series and parallel LED combinations and re-combinations. The result is an extremely high efficiency solution with low total harmonic distortion (THD<25%) and high power factor (PF>0.9). The LND060 is compatible with standard phase control lighting dimmers.
    • LND080 Offline Exit Sign and Emergency Light Driver Eliminates AC Capacitors & Lowers Cost
      • LND080 Offline Exit Sign and Emergency Light Driver Eliminates AC Capacitors & Lowers Cost
      • LND080 - The LND080A/B are single wire HV conductor, low cost, solutions for AC offline emergency lighting. The LN080 is capable of operating from 120V, 277V, or 347V without requiring the user to utilize different input wires. This reduces returns typical in the emergency lighting market. The LND080 includes the offline full bridge diodes, battery charger logic, and two resistor programmed current sources which can provides up to 100mA of output each.
    • LND081 Offline 2.7-100VDC Out, AC In Adjustable Power Regulators
    • LND090 LF-MCT Replaces MOSFETs, Bipolars and IGBTs in Offline Switching & High Voltage Applications with Better Efficiency & Cost
  • Power Management
    • LNDOP28 - Dual 44V, 5A, Monolithic Opamps
      • LNDOP28 - Dual 44V, 5A, Monolithic Opamps
      • LNDOP28 - The LND-OP28 are dual 5A, 44V, power operational amplifiers on a shared substrate. Putting two power op amps on one die results in an extremely cost effective solution for applications requiring multiple amplifiers per board or bridge mode configurations.
    • LNDSA55/56 - 1.5A an 5A Full Bridge PWM Amplifiers for Motors & Class D Audio
  • References
  • Reference Design Products