The LM741-MIL device is a general-purpose operational amplifier which features improved performance over industry standards such as the LM709. It is intended for a wide range of analog applications.
LM741 data sheet, product information and support | TI.com
The LM741 series are general-purpose operational amplifiers which feature improved performance over industry standards like the LM709. They are direct, plug-in replacements for the 709C, LM201, MC1439, and 748 in most applications.
• Integrator or Differentiators The LM741C is identical to the LM741 and LM741A except that the LM741C has their performance • Active Filters ensured over a 0°C to +70°C temperature range,
LM741: Amplifying square pulse - Amplifiers forum - TI E2E …
Part Number: LM741. Hi Experts, Do you guys have any suggestion on how to amplify an AC square wave (from +/-5V to +/-20V) without any slope. Or do we need to change a circuit and component? Thank you. Regards, Archie A.
The LM741 is a general purpose operational amplifier 2The amplifier offers many features which make their application nearly foolproof: overload which features improved performance over industry protection on the input and output, no latch-up …
LM741: Generation of Triangular Waveforms with 1MHz frequency
I have seen the datasheet of LM741 and i can also supply 15V voltage or 5V. The desired amplitude is 0.5*LSB or LSB, namely 3e-6 V or 6e-4 V. But the most important is, the frequency of triangular waveform with 1MHz.
Hoja de datos de LM741, información de producto y soporte
Hoja de datos de LM741, información de producto y soporte | TI.com
Schematic Diagram (Each Amplifier) TL/H/11479–1 Note: Numbers in parentheses are pin numbers for amplifier B. DIP only. 3
The LM148 series are quad low power LM741 op amps. In the proliferation of quad op amps, these are the first to offer the convenience of familiar, easy to use operating characteristics of the LM741 op amp.
Like the LM741, these amplifiers can easily drive a 100 pF capacitive load throughout the entire dynamic output voltage and current range. However, if very large capacitive loads must be driven by a non-invertingunity gain