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REF4132 Scheda tecnica(PDF) 12 Page - Texas Instruments |
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REF4132 Scheda tecnica(HTML) 12 Page - Texas Instruments |
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12 / 26 page ![]() J A D JA T T P R T u REF(MAX) REF(MIN) 6 REF V V Drift = 10 V Temperature Range · § u ¸ ¨ u © ¹ Enable Blocks Bandgap Core EN GND N/C VIN VREF Buffer Digital 12 REF4132 SNAS794A – JUNE 2020 – REVISED JUNE 2020 www.ti.com Product Folder Links: REF4132 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated 9 Detailed Description 9.1 Overview The REF4132 is family of low-noise, precision bandgap voltage references that are specifically designed for excellent initial voltage accuracy and drift. The Functional Block Diagram is a simplified block diagram of the REF4132 showing basic band-gap topology. 9.2 Functional Block Diagram 9.3 Feature Description 9.3.1 Supply Voltage The REF4132 family of references features an extremely low dropout voltage. For loaded conditions, a typical dropout voltage versus load is shown on Dropout vs. Current Load Over Temperature. The REF4132 features a low quiescent current that is extremely stable over changes in both temperature and supply. The typical room temperature quiescent current is 80 μA, and the maximum quiescent current over temperature is 100 μA. Supply voltages below the specified levels can cause the REF4132 to momentarily draw currents greater than the typical quiescent current. Use a power supply with a low output impedance. 9.3.2 Low Temperature Drift The REF4132 is designed for minimal drift error, which is defined as the change in output voltage over temperature. The drift is calculated using the box method, as described by Equation 3: (3) 9.3.3 Load Current The REF4132 family is specified to deliver a current load of ±10 mA per output. The VREF output of the device are protected from short circuits by limiting the output short-circuit current to 18 mA. The device temperature increases according to Equation 4: where • TJ = junction temperature (°C), • TA = ambient temperature (°C), • PD = power dissipated (W), and • RθJA = junction-to-ambient thermal resistance (°C/W) (4) The REF4132 maximum junction temperature must not exceed 150°C. |
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