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TLV8544

ACTIVO

Amplificador operacional RRIO cuádruple de 3.6 V y 8 kHz, corriente quiescente ultrabaja (500 nA)

Detalles del producto

Number of channels 4 Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V) 3.6 Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V) 1.7 Rail-to-rail In, Out GBW (typ) (MHz) 0.008 Slew rate (typ) (V/µs) 0.0035 Vos (offset voltage at 25°C) (max) (mV) 3.1 Iq per channel (typ) (mA) 0.0005 Vn at 1 kHz (typ) (nV√Hz) 264 Rating Catalog Operating temperature range (°C) -40 to 125 Offset drift (typ) (µV/°C) 0.8 Features Cost Optimized, EMI Hardened CMRR (typ) (dB) 75 Iout (typ) (A) 0.015 Architecture CMOS Input common mode headroom (to negative supply) (typ) (V) 0.00064 Input common mode headroom (to positive supply) (typ) (V) 0.0005 Output swing headroom (to negative supply) (typ) (V) 0.012 Output swing headroom (to positive supply) (typ) (V) -0.012
Number of channels 4 Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V) 3.6 Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V) 1.7 Rail-to-rail In, Out GBW (typ) (MHz) 0.008 Slew rate (typ) (V/µs) 0.0035 Vos (offset voltage at 25°C) (max) (mV) 3.1 Iq per channel (typ) (mA) 0.0005 Vn at 1 kHz (typ) (nV√Hz) 264 Rating Catalog Operating temperature range (°C) -40 to 125 Offset drift (typ) (µV/°C) 0.8 Features Cost Optimized, EMI Hardened CMRR (typ) (dB) 75 Iout (typ) (A) 0.015 Architecture CMOS Input common mode headroom (to negative supply) (typ) (V) 0.00064 Input common mode headroom (to positive supply) (typ) (V) 0.0005 Output swing headroom (to negative supply) (typ) (V) 0.012 Output swing headroom (to positive supply) (typ) (V) -0.012
SOIC (D) 14 51.9 mm² 8.65 x 6 TSSOP (PW) 14 32 mm² 5 x 6.4
  • For Cost-Optimized Systems
  • Nanopower Supply Current: 500 nA per Channel
  • Offset Voltage: 3.1 mV (maximum)
  • TcVos: 0.8 µV/°C
  • Gain Bandwidth: 8 kHz
  • Unity-Gain Stable
  • Low Input-Bias Current: 100 fA
  • Wide Supply Range: 1.7 V to 3.6 V
  • Rail-to-Rail Input and Output (RRIO)
  • Temperature Range –40°C to +125°C
  • Industry Standard Package
    • Quad in 14-pin TSSOP and SOIC
    • Dual in 8-pin SOIC
    • Single in 5-pin SOT-23
  • Leadless Package
    • Dual in 8-Pin X2QFN
  • For Cost-Optimized Systems
  • Nanopower Supply Current: 500 nA per Channel
  • Offset Voltage: 3.1 mV (maximum)
  • TcVos: 0.8 µV/°C
  • Gain Bandwidth: 8 kHz
  • Unity-Gain Stable
  • Low Input-Bias Current: 100 fA
  • Wide Supply Range: 1.7 V to 3.6 V
  • Rail-to-Rail Input and Output (RRIO)
  • Temperature Range –40°C to +125°C
  • Industry Standard Package
    • Quad in 14-pin TSSOP and SOIC
    • Dual in 8-pin SOIC
    • Single in 5-pin SOT-23
  • Leadless Package
    • Dual in 8-Pin X2QFN

The TLV854x ultra-low-power operational amplifiers (op amps) are intended for cost-optimized sensing applications in wireless and low-power wired equipment. The TLV854x family of op amps minimize power consumption in equipment such as motion detecting security systems (like microwave and PIR motion sensing) where operational battery life is critical. They also have a carefully designed CMOS input stage, enabling very low, femto-ampere bias currents, thereby reducing IBIAS and IOS errors that would otherwise impact sensitive applications. Examples of these include transimpedance amplifier (TIA) configurations with megaohm feedback resistors, and high source impedance sensing applications. Additionally, built-in EMI protection reduces sensitivity to unwanted RF signals from sources such as mobile phones, WiFi, radio transmitters and tab readers.

The TLV854x op amps operates with a single supply voltage down to 1.7 V supply, providing continuous performance in low battery situations over the extended temperature range of –40°C to +125°C. All versions are specified for operation from –40°C to 125°C. The TLV8541 (single version) is available in the 5-pin SOT-23 while the TLV8542 (dual version) is available in the 8-pin SOIC package. The 4-channel TLV8544 (quad version) is available in the industry standard 14-pin TSSOP package.

The TLV854x ultra-low-power operational amplifiers (op amps) are intended for cost-optimized sensing applications in wireless and low-power wired equipment. The TLV854x family of op amps minimize power consumption in equipment such as motion detecting security systems (like microwave and PIR motion sensing) where operational battery life is critical. They also have a carefully designed CMOS input stage, enabling very low, femto-ampere bias currents, thereby reducing IBIAS and IOS errors that would otherwise impact sensitive applications. Examples of these include transimpedance amplifier (TIA) configurations with megaohm feedback resistors, and high source impedance sensing applications. Additionally, built-in EMI protection reduces sensitivity to unwanted RF signals from sources such as mobile phones, WiFi, radio transmitters and tab readers.

The TLV854x op amps operates with a single supply voltage down to 1.7 V supply, providing continuous performance in low battery situations over the extended temperature range of –40°C to +125°C. All versions are specified for operation from –40°C to 125°C. The TLV8541 (single version) is available in the 5-pin SOT-23 while the TLV8542 (dual version) is available in the 8-pin SOIC package. The 4-channel TLV8544 (quad version) is available in the industry standard 14-pin TSSOP package.

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Documentación técnica

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Tipo Título Fecha
* Data sheet TLV854x 500-nA, RRIO, Nanopower Operational Amplifiers for Cost-Optimized Systems datasheet (Rev. E) PDF | HTML 24 abr 2018
Application brief GPIO Pins Power Signal Chain in Personal Electronics Running on Li-Ion Batteries 12 feb 2018
Application note Nano-Power Battery Monitoring in Personal Electronics 08 dic 2017
Technical article How to bias PIR sensors to prolong battery life in wireless motion detectors PDF | HTML 30 may 2017
Application note Design of Ultra-Low Power Circuits for Battery-Powered Wireless PIR Motion Detec (Rev. A) 12 may 2017
User guide BOOSTXL-TLV8544PIR User's Guide (Rev. A) 17 abr 2017
E-book The Signal e-book: A compendium of blog posts on op amp design topics 28 mar 2017
Application note Cost-Optimized Opamp Window Comparator for Ultra-low Power PIR Motion Detectors 06 mar 2017

Diseño y desarrollo

Para conocer los términos adicionales o los recursos necesarios, haga clic en cualquier título de abajo para ver la página de detalles cuando esté disponible.

Placa de evaluación

AMP-PDK-EVM — Módulo de evaluación del kit de desarrollo del rendimiento del amplificador

El kit de desarrollo del rendimiento (PDK) del amplificador es un kit de módulo de evaluación (EVM) para probar los parámetros comunes del amplificador operacional y es compatible con la mayoría de los amplificadores operacionales y comparadores. El kit del EVM ofrece una placa principal con varias (...)

Guía del usuario: PDF | HTML
Placa de evaluación

BOOSTXL-TLV8544PIR — Módulo de demostración del detector de movimiento PIR del amplificador operacional de nanopotencia c

The BOOSTXL-TLV8544PIR demonstration board is a BoosterPack intended to be used with the LAUNCHXL-CC2650 multi-frequency 2.4GHz wireless LaunchPad. The BOOSTXL-TLV8544PIR demonstrates the quad tiny, nanopower op amp (TLV8544) operating as an analog front end (AFE) in a PIR motion detection system. (...)
Guía del usuario: PDF
Modelo de simulación

TLV8544 TINA-TI Reference Design (Rev. B)

SNOM613B.TSC (54 KB) - TINA-TI Reference Design
Modelo de simulación

TLV8544 TINA-TI Spice Model (Rev. A)

SNOM614A.ZIP (15 KB) - TINA-TI Spice Model
Herramienta de cálculo

ANALOG-ENGINEER-CALC — Calculadora para ingenieros analógicos

The analog engineer’s calculator is designed to speed up many of the repetitive calculations that analog circuit design engineers use on a regular basis. This PC-based tool provides a graphical interface with a list of various common calculations ranging from setting operational-amplifier (...)
Herramienta de diseño

CIRCUIT060013 — Amplificador de inversión con circuito de realimentación de red T.

Este diseño invierte la señal de entrada, VIN, y aplica una ganancia de señal de 1000 V/V o 60 dB. El amplificador inversor con red de realimentación en T se puede utilizar para obtener una alta ganancia sin un valor pequeño para R4 o valores muy grandes para las resistencias de realimentación.
Herramienta de diseño

CIRCUIT060015 — Circuito de tensión de referencia ajustable

Este circuito combina un amplificador inversor y no inversor para ajustar una tensión de referencia desde el negativo de la tensión de entrada hasta la tensión de entrada. Se puede agregar ganancia para aumentar el nivel de referencia negativo máximo.
Herramienta de diseño

CIRCUIT060074 — Detección de corriente de lado alto con circuito comparador

Esta solución de detección de corriente de lado alto utiliza un comparador con un rango de modo común de entrada de carril a carril para crear una señal de alerta de sobrecorriente (OC-Alert) en la salida del comparador (COMP OUT) si la corriente de carga supera 1 A. La señal OC-Alert en esta (...)
Herramienta de simulación

PSPICE-FOR-TI — PSpice® para herramienta de diseño y simulación de TI

PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
Herramienta de simulación

TINA-TI — Programa de simulación analógica basado en SPICE

TINA-TI provides all the conventional DC, transient and frequency domain analysis of SPICE and much more. TINA has extensive post-processing capability that allows you to format results the way you want them. Virtual instruments allow you to select input waveforms and probe circuit nodes voltages (...)
Guía del usuario: PDF
Diseños de referencia

TIDA-01398 — Diseño de referencia de detector de movimiento PIR inalámbrico y de potencia ultrabaja para sistemas

This reference design uses a quad-channel nano-power operational amplifier and the SimpleLink™ ultra-low power 2.4-GHz wireless microcontroller (MCU) platform to demonstrate a low-power cost-optimized wireless motion detector implementation.  These technologies lead to an extremely (...)
Design guide: PDF
Esquema: PDF
Encapsulado Pines Símbolos CAD, huellas y modelos 3D
SOIC (D) 14 Ultra Librarian
TSSOP (PW) 14 Ultra Librarian

Pedidos y calidad

Información incluida:
  • RoHS
  • REACH
  • Marcado del dispositivo
  • Acabado de plomo/material de la bola
  • Clasificación de nivel de sensibilidad a la humedad (MSL) / reflujo máximo
  • Estimaciones de tiempo medio entre fallas (MTBF)/fallas en el tiempo (FIT)
  • Contenido del material
  • Resumen de calificaciones
  • Monitoreo continuo de confiabilidad
Información incluida:
  • Lugar de fabricación
  • Lugar de ensamblaje

Soporte y capacitación

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