| Motore di ricerca datesheet componenti elettronici |
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TSV6392ILT Scheda tecnica(PDF) 15 Page - STMicroelectronics |
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TSV6392ILT Scheda tecnica(HTML) 15 Page - STMicroelectronics |
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15 / 25 page ![]() TSV639x, TSV639xA Application information Doc ID 16883 Rev 1 15/25 4.5 Optimization of DC and AC parameters These devices use an innovative approach to reduce the spread of the main DC and AC parameters. An internal adjustment achieves a very narrow spread of the current consumption (60 µA typical, min/max at ±17 %). Parameters linked to the current consumption value, such as GBP, SR and Avd, benefit from this narrow dispersion. 4.6 Driving resistive and capacitive loads These products are micropower, low-voltage operational amplifiers optimized to drive rather large resistive loads, above 2 k Ω.. For lower resistive loads, the THD level may significantly increase. The amplifiers have a relatively low internal compensation capacitor, making them very fast while consuming very little. They are ideal when used in a non-inverting configuration or in an inverting configuration in the following conditions. ● IGainI ≥ 3 in an inverting configuration (CL = 20 pF, RL = 100 kΩ) or IgainI ≥10 (CL = 100 pF, RL = 100 kΩ) ● Gain ≥ +4 in a non-inverting configuration (CL = 20 pF, RL = 100 kΩ) or gain ≥ +11 (CL = 100 pF, RL= 100 kΩ) As these operational amplifiers are not unity gain stable, for a low closed-loop gain, it is recommended to use the TSV63x (60 µA, 880 kHz) which is unity gain stable. 4.7 PCB layouts For correct operation, it is advised to add 10 nF decoupling capacitors as close as possible to the power supply pins. 4.8 Macromodel Two accurate macromodels (with or without shutdown feature) of the TSV639x are available on STMicroelectronics’ web site at www.st.com. This model is a trade-off between accuracy and complexity (that is, time simulation) of the TSV639x operational amplifiers. It emulates the nominal performances of a typical device within the specified operating conditions mentioned in the datasheet. It also helps to validate a design approach and to select the right operational amplifier, but it does not replace on-board measurements. Table 9. Related products Part # Icc (µA) at 5 V GBP (MHz) SR (V/µs) Minimum gain for stability (CLoad =100 pF) TSV62-2-3-4-5 29 0.42 0.14 1 TSV629-2-3-4-5 29 1.3 0.5 +11 TSV63-2-3-4-5 60 0.88 0.34 1 TSV639-2-3-4-5 60 2.4 1.1 +11 |
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