

|
Pin No. |
Name |
Description |
|
1 |
1OUT |
The output of the first op-amp |
|
2 |
1IN- |
Inverting input for the first op-amp |
|
3 |
1IN+ |
Non-inverting input for the first op-amp |
|
4 |
Vcc- |
Ground |
|
5 |
2IN+ |
Non-inverting input for the second op-amp |
|
6 |
2IN- |
Inverting input for the second op-amp |
|
7 |
2OUT |
The output of the second op-amp |
|
8 |
Vcc+ |
Supply voltage |



The TL072 operational amplifier stands out in electronics for its high-speed, low-noise JFET input design, integrating dual op-amps in a compact package. This architecture ensures minimal harmonic distortion, making it ideal for high-accuracy applications such as audio pre-amplification. Its ability to deliver clear and precise signals has made it a staple in professional audio equipment, where fidelity and clarity are basic attributes.
Featuring low input bias and offset currents, the TL072 offers adaptability across diverse circuit designs, from signal amplification to filtering. Its reliability and flexibility make it a preferred choice for you focused on preserving signal integrity in demanding applications. The dual op-amps are mostly effective in stereo setups and integrated audio systems, optimizing space while enhancing functionality. With careful power supply adjustments, distortion can be minimized further, exemplifying its precision and versatility.
The TL072 operational amplifier plays a dominant role in audio pre-amplifiers, mostly in achieving precision and minimizing distortion for a high-quality listening experience. It ensures audio output with low noise and reduced interference, contributing to enhanced clarity and fidelity. This technical finesse satisfies your desire for an immersive experience. Additionally, the TL072 allows for fine-tuning audio parameters such as volume, bass, and treble, offering a tailored sound profile catering to personal preferences.
The applications of the TL072 extend beyond audio systems due to its versatile voltage comparison capabilities. It finds effective use in voltage regulation, signal conditioning, and analog computation. In control systems and instrumentation, the TL072 stands out due to its precision and adaptability. You can favor it for a multitude of specialized functions, with its reliability playing a role in the preference for this component.
In the world of audio pre-amplification, TL072 serves as a robust instrument for augmenting sound quality while remaining budget-friendly. This operational amplifier excels with its top-tier performance, delivering audio with incredibly low noise and negligible distortion once the input is linked to the output. Thanks to its high input impedance, increasing the resistor R4's value can boost performance by lowering noise floor and distortion. On the other hand, resistor R1 is key for impedance balancing, a tactic commonly honed in professional audio configurations to ensure clear signal transmission.
Deliberate attention to negative feedback resistors R2 and R3 is major; their main task involves measuring and fine-tuning output signals. Achieving the perfect equilibrium in their values is a sophisticated challenge: if set excessively high, they can amplify noise; if too low, they exacerbate distortion. This intricate balancing has parallels in fine-tuning musical instruments, where minor tweaks can profoundly improve the overall acoustics.
To combat possible noise concerns, R6 is used to regulate the discharge or stabilize the flow through capacitor C2. The effectiveness of this component can be likened to a sound engineer's masterful adjustments to retain signal purity during live performances.
Application Circuit


|
Feature |
Description |
|
Low Power Consumption |
Efficient operation with minimal power usage. |
|
Input-Bias Currents and Offset Currents |
Optimized for low input-bias and offset currents for
precision applications. |
|
Short Circuit Protection |
Built-in protection against output short circuits. |
|
Latch-Up Free Operation |
Ensures stable operation without latch-up issues. |
|
Dual Op-Amp IC |
Contains two operational amplifiers in one IC package. |
|
High Input Impedance |
Facilitates interfacing with high impedance sources. |
|
Internal Frequency Compensation |
Ensures stable operation over a wide range of conditions. |
|
Wide Voltage Range |
Supports a wide common-mode (up to VCC+) and differential
voltage range. |
• LM358
• NE5532
• OPA827

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STMicroelectronics' triumph is intricately tied to its deep-seated command of silicon technology. This profound expertise paves the way for crafting solutions that are both efficient and adept at meeting varied industrial demands. You can recognize the value of precision and dependability, attributes STMicroelectronics consistently upholds. By infusing advanced materials and optimizing manufacturing methodologies, the company not only boosts the functionality of its offerings but also encourages innovation through inter-sector collaboration in technological advancements.
This table provides an organized overview of the TL072CN's specifications and attributes, along with compliance information.
|
Type |
Parameter |
|
Mount |
Through Hole |
|
Mounting Type |
Through Hole |
|
Package / Case |
8-DIP (0.300, 7.62mm) |
|
Number of Pins |
8 |
|
Supplier Device Package |
8-DIP |
|
Weight |
4.535924g |
|
Number of Elements |
2 |
|
Operating Temperature |
0°C ~ 70°C |
|
Packaging |
Tube |
|
Part Status |
Obsolete |
|
Moisture Sensitivity Level (MSL) |
Unlimited |
|
Max Operating Temperature |
70°C |
|
Min Operating Temperature |
0°C |
|
Base Part Number |
TL072 |
|
Operating Supply Voltage |
18V |
|
Number of Channels |
2 |
|
Number of Circuits |
2 |
|
Max Supply Voltage |
36V |
|
Min Supply Voltage |
6V |
|
Operating Supply Current |
4mA |
|
Nominal Supply Current |
5mA |
|
Output Current |
40mA |
|
Current - Supply |
4mA |
|
Min Input Voltage |
12V |
|
Slew Rate |
16V/μs |
|
Amplifier Type |
J-FET |
|
Common Mode Rejection Ratio (CMRR) |
70 dB |
|
Current - Input Bias |
20pA |
|
Max Input Voltage |
15V |
|
Voltage - Supply, Single/Dual (±) |
6V ~ 36V ±3V ~ 18V |
|
Output Current per Channel |
40mA |
|
Input Offset Voltage (Vos) |
3mV |
|
Bandwidth |
3MHz |
|
Gain Bandwidth Product |
4MHz |
|
Voltage Gain |
106.02dB |
|
Voltage - Input Offset |
3mV |
|
Max Dual Supply Voltage |
18V |
|
Min Dual Supply Voltage |
3V |
|
Dual Supply Voltage |
±15V |
|
Number of Amplifiers |
2 |
|
Height |
4.95mm |
|
Length |
10.16mm |
|
Width |
7.11mm |
|
REACH SVHC |
No SVHC |
|
Radiation Hardening |
No |
|
RoHS Status |
RoHS3 Compliant |
|
Lead Free |
Lead Free |
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To execute a complete analysis of the TL072CP, initiate by consulting the data sheets for accurate pin configurations. Properly measuring the DC voltages is dominant; place the black probe on the chassis for grounding and apply the red probe successively on pin 8 (V+ supply) and pin 4 (V- supply). This method lays the groundwork for uncovering any potential anomalies. Moreover, integrating a function generator along with an oscilloscope allows for examining the amplifier's reaction to incoming signals, yielding a deeper understanding of its performance attributes, and catering to the innate curiosity of comprehensively exploring design distinctions.
In the world of analog circuit design, op-amps emerge as a versatile resource, thanks to their adaptability. By leveraging negative feedback, you can adjust factors like gain and impedance through external components, easing dependence on the inherent inconsistencies of the op-amp. This flexibility shines in a multitude of applications, ranging from audio devices to control mechanisms, aligning with the endeavor to maintain high standards of performance across varied conditions.
Standard op-amps generally source or sink currents from 30 to 40 mA, though certain variants support as much as 100 mA or beyond. Those with higher output can furnish upwards of 1000 mA, addressing the needs of applications requiring substantial current, like power amplification. Grasping these specifications assists in aligning op-amps with suitable applications, ensuring neither inadequate power nor excessive drive, and fulfilling the technical and emotional satisfaction derived from optimal design functionality.
These op-amps stand out for their speed, merging high-voltage JFET and bipolar transistors. Shared characteristics, such as high slew rates and low input bias currents, make them appealing for applications demanding precise signal processing. Minor specification differences among models may attract unique preferences, permitting each model to meet specific operational demands and echoing the diversity of your choice in design alternatives.
The TL072 series employs high-speed JFETs, ensuring peak performance with minimal input bias and offset currents, optimizing efficiency across diverse applications. Their inclusion is key in securing superior input impedance and swift switching capabilities, sought after in both audio and instrument amplifiers. The decision to use JFETs represents a balanced approach between engineering needs and production considerations, reflecting the intersection of rationality and creativity in technical decision-making.
The TL07x series attains a remarkably low total harmonic distortion (THD) rate of just 0.003%, maintaining minimal harmonic interference in audio applications. This unparalleled audio clarity, coupled with a slew rate capacity of 13 V/μs, confirms the series' aptness for high-quality audio systems. The dedication to low distortion mirrors the collective industry ambition for achieving superior sound reproduction fidelity, resonating with your expectations for purity and excellence.
Understanding the pin functionalities of the TL072x is a must for efficient circuit integration and reliable design. The inverting inputs (1 IN– and 7 IN–) adjust the signal phase, while the non-inverting inputs (4 IN+ and 6 IN+) accept direct and auxiliary signals, respectively. Outputs (2 OUT and 8 OUT) deliver amplified signals and support alternative signal routing. Pins 5 and 10 are marked as NC (no connection), simplifying the PCB layout. The power supply pins, 9 VCC+, and 10 VCC–, maintain circuit stability and provide the required positive and negative rails. Familiarity with these roles enhances circuit efficiency and ensures reliable operation, reflecting the structured approach needed in engineering designs.
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