ADA4522-2ARZ-R7

Fabricante: Dispositivos analógicos
Células lógicas: Dual zero-drift operational amplifier
Rebanadas lógicas: Ultra-low offset and drift architecture
RAM integrada (eRAM): Internal precision bias and compensation circuitry
Paquete: SOIC-8
Temperatura de funcionamiento: Industrial (de -40 °C a +125 °C)

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    Especificaciones

    Referencia Ficha de datos Serie Fabricante Paquete Topología Estado del producto Tipo de montaje Frecuencia de conmutación Función Tensión de entrada Tensión de salida Número de salidas Temperatura de funcionamiento Tipo de salida Corriente de salida
    ADA4522-2ARZ-R7 ADA4522-2 Dispositivos analógicos 8-MSOP Optoamplificador de precisión Activo Montaje en superficie Amplificador operacional de bajo ruido De ±4,5 V a ±18 V Ferrocarril a ferrocarril 2 -40°C a +125°C Analógico

    Part Number Definition

    ADA4522-2 is a dual-channel zero-drift, low-noise rail-to-rail input/output operational amplifier. ARZ stands for 8-lead narrow SOIC surface mount package. The suffix R7 refers to 7-inch lead-free tape-and-reel packaging intended for large-scale automated SMT assembly production.

    Core Electrical Performance Parameters

    This dual operational amplifier adopts auto-zero zero-drift architecture, delivering ultra-low DC offset and near-zero temperature drift, which perfectly fits precision DC signal amplification and low-frequency measurement scenarios. It supports both single supply and dual bipolar supply operation, with single supply ranging from 2.2 V to 5.5 V and dual supply spanning ±1.1 V to ±2.75 V.

    The maximum input offset voltage is only 5 μV, and offset drift is less than 0.015 μV/°C across the entire temperature range. Input voltage noise reaches 8 nV/√Hz at 1 kHz, achieving an excellent balance between low noise and DC precision. The device features rail-to-rail input and output swing, making full use of the power supply voltage range and maximizing dynamic signal range under low-voltage working conditions.

    Each channel consumes low quiescent current, which helps extend battery life for portable battery-powered devices. High common-mode rejection ratio and power supply rejection ratio effectively suppress power ripple and industrial common-mode interference. Internal integrated compensation circuitry ensures stable operation at unity gain without extra external compensation components. Channel crosstalk is extremely low to avoid mutual interference between two independent signal paths. The output stage can drive capacitive loads stably without oscillation.

    Packaging and Assembly Specifications

    Encapsulated in compact 8-pin narrow SOIC plastic surface mount package with small footprint, greatly saving PCB layout space for miniaturized analog front-end modules. Moisture Sensitivity Level is MSL3; all reflow soldering processes must be completed within 168 hours after the original vacuum packaging is opened. Continuous tape reel feeding mode is fully compatible with automatic pick-and-place equipment for mass electronic manufacturing lines.

    Environmental and Compliance Standards

    Industrial operating temperature range covers -40 °C to +125 °C, enabling long-term stable operation in industrial transmitters, portable precision measuring instruments, medical testing equipment and environmental monitoring sensors under severe temperature variation environments. Manufactured by lead-free processes, the component complies with global RoHS environmental directives. The dual-channel integrated design reduces the total number of components on PCB, simplifies multi-channel precision signal conditioning circuit layout and shortens hardware development cycles.

    Campos de aplicación típicos

    Bridge sensor signal amplification for pressure, temperature and weighing measurement systems

    Low-frequency tiny signal pre-amplification for portable data acquisition equipment

    Precision voltage buffer and reference driving circuits for high-resolution ADC modules

    Battery-powered handheld meters and field environmental monitoring instruments

    Medical wearable device physiological signal conditioning and amplification circuits