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OPA596DBVT Datasheet(PDF) 23 Page - Texas Instruments |
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OPA596DBVT Datasheet(HTML) 23 Page - Texas Instruments |
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23 / 34 page ![]() 7.3 Power Supply Recommendations The OPAx596 operates from power supplies up to ±42.5V (85V), and as little as ±4V (8V) with excellent performance. Most behavior remains unchanged throughout the full operating voltage range, but Section 5.6 shows parameters that vary with operating voltage. A power-supply bypass capacitor of at least 0.1µF is required for proper operation. Ensure that the capacitor voltage is rated for high voltage across the full operating temperature range. The OPAx596 can be powered with asymmetrical supplies to optimize power dissipation in applications that do not require an equal positive and negative output voltage swing. 7.4 Layout 7.4.1 Layout Guidelines For best operational performance of the device, use good printed circuit board (PCB) layout practices, including the following guidelines: • Noise can propagate into analog circuitry through the power pins of the op amp and the circuit as a whole. Connect low-ESR, 0.1µF ceramic bypass capacitors between each supply pin and ground. Place the capacitors as close to the device as possible. A single bypass capacitor from V+ to ground is sufficient for single supply applications. • Separate grounding for analog and digital portions of circuitry is one of the simplest and most effective methods of noise suppression. One or more layers on multilayer PCBs are usually devoted to ground planes. A ground plane helps distribute heat and reduces EMI noise pickup. Physically separate digital and analog grounds paying attention to the flow of the ground current. • To reduce parasitic coupling, run the input traces as far away from the supply or output traces as possible. If these traces cannot be kept separate, crossing the sensitive trace perpendicular is much better as opposed to in parallel with the noisy trace. • Place the external components as close to the device as possible. • Keep the length of input traces as short as possible. Always remember that the input traces are the most sensitive part of the circuit. • Consider a driven, low-impedance guard ring around the critical traces. A guard ring can significantly reduce leakage currents from nearby traces that are at different potentials. • Clean the PCB following board assembly for best performance. • Any precision integrated circuit can experience performance shifts due to moisture ingress into the plastic package. Following any aqueous PCB cleaning process, bake the PCB assembly to remove moisture introduced into the device packaging during the cleaning process. A low temperature, post cleaning bake at 85°C for 30 minutes is sufficient for most circumstances. 7.4.1.1 Thermal Considerations Through normal operation, the op amps can self-heat. Self-heating is a natural increase in the die junction temperature that occurs in every amplifier. This self-heating is a result of several factors, including quiescent power consumption, package thermal resistance, PCB layout, and device operating conditions. Operate the OPAx596 within the rated junction temperature, TJ, range to avoid thermal shutdown. Use the Equation 3 to determine the estimated TJ TJ=PD × RθJA+TA (3) In a quiescent state, PD is given by the product of the power supply and the quiescent current of the op amp. Equation 4 shows the calculation of TJ for the OPAx596 assuming an 85V power supply is used and an operating temperature of 25°C. TJ= 85V ×490μA ×165.4°CW+25°C (4) TJ=31.89°C (5) www.ti.com OPA596 SBOSA42A – JUNE 2024 – REVISED FEBRUARY 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 23 Product Folder Links: OPA596 |
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