TL072ACD Linear - Amplifiers - Instrumentation, Operational Amplifiers, Buffer Amplifiers от Texas Instruments
TL072ACD — это компонент категории Linear - Amplifiers - Instrumentation, Operational Amplifiers, Buffer Amplifiers от Texas Instruments в упаковке 8SOIC. Его обычно проверяют для IC OPAMP JFET 3MHZ 8SOIC. На этой странице указаны текущие остатки TrustCompo, уровни цен, данные по корпусу, доступ к datasheet, compliance-атрибуты, варианты отгрузки со склада Hong Kong, подтверждение оплаты и RFQ-варианты для покупателей, которым нужно подтвердить именно этот ordering code.
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4 сертификата
ISO 9001
Процессы менеджмента качества для более стабильной закупки и обращения с продукцией.
AS9120B
Контроль дистрибуции авиационного уровня для прослеживаемости и надежности.
ISO 14001
Экологическая дисциплина в операционных и складских процессах.
ESD Control
Стандарты защиты от электростатического разряда для чувствительных компонентов.
RFQ checklist
Процесс заказа
Подтвердите ключевые данные закупки для TL072ACD до RFQ, выпуска PO и планирования отгрузки.
1
Подтвердить MPN
Укажите точный part number, производителя, package и approval constraints в RFQ.
2
Проверить склад и цену
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3
Согласовать документы
Подтвердите datasheet, CoC, traceability, lifecycle notes и scope инспекции, если требуется.
4
Организовать отгрузку
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Перед выпуском PO
Проверка детали
Точный MPN подтвержден: TL072ACD
Корпус для проверки: 8SOIC
Коммерческие условия
Live stock и срок поставки подтверждены через RFQ
Финальная цена и налоговые условия подтверждены до выпуска PO
Отгрузка и документы
Ship-from location: склад Hong Kong
Способ доставки: DHL, FedEx, UPS или аккаунт экспедитора покупателя
Обзор продукта
Обзор
Проверьте sourcing context для TL072ACD от Texas Instruments, включая идентификацию товара, применимость, package notes и закупочные детали.
Description The TL071, TL071A and TL071B are high-speed JFET input single operational amplifiers. Each of these JFET input operational amplifiers incorporates well matched, high-voltage JFET and bipolar transistors in a monolithic integrated circuit. The devices feature high slew rates, low input bias and offset currents, and low offset voltage temperature coefficient. Features • Wide common-mode (up to VCC+) and differential voltage range • Low input bias and offset currenT • Low noise en= 15 nV/ √Hz (typ) • Output short-circuit protection • High input impedance JFET input stage • Low harmonic distortion: 0.01% (typ) • Internal frequency compensation • Latch-up free operation • High slew rate: 16 V /µs (typ)
Технические параметры
Параметры
Сравните сгруппированные параметры TL072ACD от Texas Instruments, включая package, series, key attributes и technical values для engineering и sourcing review.
Product Parameter
Max I/O Voltage
6mV
Product Parameter
Unity Gain Bandwidth (Nominal)
3000 kHz
Product Parameter
Amplifier Type
J-FET
Product Parameter
Voltage Gain
106.02dB
Product Parameter
Frequency Compensation Method
YES
Product Parameter
Low-Bias
YES
TL072ACD Product Parameter
Параметр
Значение
Max I/O Voltage
Specifies the highest voltage that can be safely applied to input/output pins without damaging the device. Check this limit against your logic levels and supply rails to ensure reliable operation and avoid overvoltage stress.
6mV
Unity Gain Bandwidth (Nominal)
Nominal frequency at which the open-loop gain drops to unity (0 dB). This indicates the useful bandwidth for unity-gain buffers and speed of the amplifier. Compare this value when selecting op-amps for high-frequency signal processing. Verify it against your required closed-loop bandwidth.
3000 kHz
Amplifier Type
Specifies the amplifier topology or functional class, such as operational, instrumentation, or differential. This determines circuit behavior, gain characteristics, and suitable applications. Verify the exact type against the datasheet to ensure compatibility with your design requirements.
J-FET
Voltage Gain
Voltage gain indicates how much an amplifier increases signal voltage. Compare this parameter when selecting op-amps or audio amplifiers. Verify the specified gain against your circuit requirements and the datasheet's test conditions, as gain can vary with frequency and load.
106.02dB
Frequency Compensation Method
Technique used to ensure amplifier stability and prevent oscillation. Common methods include internal or external compensation. Choose the right method for your gain configuration and bandwidth needs. Verify stability in your circuit with the recommended compensation network from the datasheet.
YES
Low-Bias
Indicates that the amplifier is designed with low input bias current, minimizing errors in high-impedance circuits. This is critical for precision applications like sensor interfaces and integrators. Check the datasheet for typical and maximum bias current values to confirm suitability.
YES
Micropower
Indicates the component is optimized for extremely low power consumption, often in microampere range. Ideal for battery-powered and energy-harvesting devices. Verify quiescent current and supply voltage range in the datasheet to ensure they meet your system's power budget.
NO
Programmable Power
Indicates whether the power supply or converter can be configured via digital interfaces like I2C, PMBus, or SMBus. Useful for dynamic voltage scaling and system optimization. Check supported protocols and programming range in the datasheet.
NO
Low Offset Voltage
Indicates the amplifier's input offset voltage is minimized, reducing DC error in precision circuits. Compare this parameter when designing sensor interfaces or instrumentation amplifiers. Verify the specified value against the datasheet for your operating temperature range.
NO
Nominal Gain Bandwidth Product
Indicates the frequency at which the open-loop gain of an amplifier falls to unity. Compare this value when selecting op-amps for high-speed signal processing. Verify against the datasheet to ensure adequate bandwidth for your application's required gain.
3MHz
Power
Specifies the power rating of the component, either maximum dissipation for passive or active devices, or output power capability for power modules and supplies. Compare this value with your system's power requirements and verify it against the datasheet's thermal conditions.
NO
Maximum Operating Supply Voltage
Highest supply voltage at which the component can operate normally without damage or performance degradation. Exceeding this limit may cause overheating or failure. Always check this parameter against your power supply design to ensure the component operates within its safe voltage range for reliable long-term performance.
260
Triac Type
Specifies the triac construction or series, such as standard, snubberless, or logic-level. This affects switching performance, gate sensitivity, and commutation capability. Verify the exact type against the datasheet to ensure compatibility with your circuit's voltage, current, and triggering requirements.
Active
Nominal Attenuation
Specifies the typical signal loss introduced by the component under standard conditions. Compare this value across similar parts to match your circuit's allowable attenuation. Always verify against the datasheet for frequency and temperature dependencies.
e4
Drain to Source Resistance
This is the on-state resistance between the drain and source terminals of a MOSFET. It affects power dissipation and efficiency. Lower values are preferred for high-current switching. Always check the datasheet for the specified test conditions, as RDS(on) varies with gate voltage and temperature.
EAR99
Total Resistance
Total resistance is the end-to-end resistance of a component, such as a potentiometer or resistor network. It defines the maximum resistance available and is critical for circuit design. Verify this value against the datasheet to ensure proper operation.
Tube
Transformer Type
Indicates the construction or configuration of the transformer, such as flyback, forward, or planar. Affects performance, size, and application suitability. Refer to datasheet for detailed specifications and recommended usage.
yes
Accessory Type
Specifies the category of accessory or add-on part for electronic components. Use this to filter compatible mounting hardware, connectors, or protective covers. Verify the accessory type against the component datasheet to ensure proper fit and function in your application.
DUAL
Minimum Operating Supply Voltage
Specifies the lowest supply voltage at which the component remains fully functional. Compare this value with your system's power rail tolerance and verify it against the datasheet's recommended operating conditions to ensure reliable startup and operation.
GULL WING
Maximum Data Rate Range (Kbps)
Range of maximum data transfer rates supported by the component, expressed in kilobits per second. This indicates the span of possible speeds the device can handle. Compare this range with your system's required throughput to ensure the component can support the necessary communication bandwidth without data loss.
2
Number of Turns
Number of turns in a coil or winding. Affects inductance, transformer ratio, and impedance. Critical for designing transformers, inductors, and magnetic components. Check datasheet for tolerance.
3.91mm
Typical Quiescent Current (mA)
Typical current consumed by the component in standby or idle state, measured in milliamperes. This is important for battery-powered or low-power applications. Compare this value with your power budget to ensure the component does not drain excessive current when inactive, affecting overall system efficiency.
BIPOLAR
Typical Switching Frequency (kHz)
Typical switching frequency of a power converter or driver. Compare this value to your application's needs to ensure efficient operation. Verify against the datasheet for exact conditions.
Operational Amplifier
Leakage Current
Current that flows through the component when it is in the off-state or reverse-biased. Important for capacitors, diodes, and transistors to minimize power loss and ensure proper isolation. Compare leakage current values to avoid unintended circuit behavior, especially in battery-powered or high-impedance applications. Verify test conditions in the datasheet.
9V
Minimum Switching Frequency
Specifies the lowest switching frequency at which the power device can operate reliably. Compare this value with your application's required switching speed to ensure proper performance. Verify against the datasheet's recommended operating conditions.
+-15V
Resistance Tolerance
Specifies the allowable deviation from the nominal resistance value, expressed as a percentage. Critical for precision circuits where accurate resistance is required. Check datasheet for tolerance range and temperature coefficient.
3MHz
Transmission Media Type
Specifies the physical medium through which signals travel, such as fiber optic, twisted pair, or coaxial cable. This attribute is critical for ensuring compatibility with your network infrastructure and for meeting performance requirements. Verify the media type against your system's specifications and the component datasheet to avoid signal integrity issues.
15V
Taper
Specifies the resistance change curve of a potentiometer, such as linear or logarithmic. This affects how the output varies with rotation. Verify the taper type against your circuit requirements and the datasheet to ensure proper volume or control response.
1.75mm
Filter Type
Specifies the filter topology used in the component, such as low-pass, high-pass, band-pass, or notch. This determines the frequency response and attenuation characteristics. Engineers must verify the filter type against the datasheet to ensure it meets the required signal conditioning and interference rejection for the application.
8
Connector Support Type
Indicates the mechanical mounting or support method for the connector, such as panel mount, board mount, or free-hanging. This affects installation, vibration resistance, and space requirements. Verify compatibility with your enclosure and PCB layout before ordering.
ACTIVE (Last Updated: 1 day ago)
VSWR-Max
Maximum voltage standing wave ratio, indicating how well the component's input impedance is matched to the transmission line. Lower values mean better matching and less signal reflection. Check this parameter when designing RF circuits to ensure minimal power loss and stable operation across the specified frequency range.
65pA
Typical Turn-On Delay Time
Typical time delay between the input signal and the output activation, usually in nanoseconds or microseconds. This parameter is critical for timing-sensitive circuits. Ensure that the delay meets your system's timing requirements to avoid signal skew or improper switching behavior.
±5V~15V
TL072ACD Product Attribute
Параметр
Значение
Categories
Lists the product categories or classifications assigned to this component, such as connectors, capacitors, or modules. This helps in filtering and comparing similar parts. Review the categories to ensure the component fits your application and to find alternative parts in the same class.
Integrated Circuits (ICs)
Manufacturer
Identifies the company that designed and produced the component. Buyers often filter by manufacturer to ensure brand reliability, quality standards, and supply chain consistency. Verify the manufacturer against the datasheet and official packaging to avoid counterfeit parts.
Texas
Package / Case
Physical package or case type of the component, defining its dimensions, mounting style, and thermal characteristics. Common types include SMD, through-hole, BGA, and QFN. Choose the package that fits your PCB layout and assembly process. Verify the exact package code in the datasheet for footprint compatibility.
8-SOIC (0.154, 3.90mm Width)
Sub-Categories
Indicates the specific product subcategories or classifications within the broader component family. Helps narrow down search results and identify the exact type of component needed for your design. Review the subcategory to ensure compatibility with your application.
Linear - Amplifiers - Instrumentation, OP Amps, Buffer Amps
Architecture
Internal design or topology of the component, such as the arrangement of internal circuits or blocks. This affects performance, power consumption, and functionality. Engineers compare architectures to match application requirements and verify compatibility with the datasheet.
VOLTAGE-FEEDBACK
Thickness
Thickness of the component, a critical dimension for PCB clearance, enclosure fit, and thermal performance. This measurement is especially important for capacitors, inductors, and connectors. Ensure the thickness meets your design constraints and does not interfere with adjacent components. Check the datasheet for tolerance and recommended mounting height.
1.58mm
Housing Material
Specifies the material of the component's outer casing, such as plastic, metal, or ceramic. This affects durability, thermal performance, and environmental resistance. Verify against datasheet for application-specific requirements like flammability or chemical exposure.
ROHS3 Compliant
Number of Contacts
Total number of electrical contacts in the connector, which determines the maximum number of circuits that can be connected. This is a critical parameter for matching the connector to your wire harness requirements. Ensure the contact count aligns with your signal and power needs.
No SVHC
Terminal Position
Position of the terminals on the package, such as dual-in-line, gull-wing, or J-lead. This affects PCB layout, soldering, and thermal performance. Engineers must ensure the terminal position matches the footprint and assembly capabilities of their manufacturing line.
Surface Mount
Locking Feature
Indicates the locking mechanism used to secure the connector or terminal in place. Choose the appropriate type for your application to ensure reliable mating and vibration resistance. Verify compatibility with the mating part and datasheet specifications.
Lead Free
Number of Bits
Bit width of digital data processed by a converter, processor, or memory. Higher bits mean better resolution or precision. Verify against datasheet to match your system's data width and accuracy needs.
No
Input Power-Max (CW)
Indicates the maximum continuous wave input power the component can safely handle without damage or excessive distortion. Exceeding this limit may cause failure. Verify this value against your signal power and consider peak-to-average ratio in modulated systems.
6 Weeks
Flat Flex Type
Specifies the construction style of a flat flexible cable, such as FFC or FPC. This affects flexibility, bend radius, and termination method. Verify the exact type against the datasheet to ensure compatibility with your connector and application requirements.
YES
Current Rating (Amps)
Specifies the maximum continuous current the component can safely carry under specified conditions. Compare this rating with your circuit's expected load to prevent overheating or failure. Always verify against the datasheet for temperature derating and mounting considerations.
1.4mA
Additional Feature
Lists any extra characteristics or capabilities beyond the standard specifications, such as built-in protection, special mounting options, or enhanced performance. Review these features to ensure they meet your application's specific needs and compare them across similar parts.
0.007μA
Radiation Hardening
Indicates if the component is designed to withstand ionizing radiation in space, nuclear, or high-energy physics applications. Compare radiation-tolerant vs. radiation-hardened parts for mission-critical designs. Verify the total ionizing dose (TID) and single-event effect (SEE) ratings in the datasheet.
0°C~70°C
Converter Type
Identifies the conversion architecture, such as ADC, DAC, or DC-DC. This determines the signal path, interface, and performance characteristics. Verify the type matches your system's analog or digital conversion needs before selecting the part.
1 (Unlimited)
REACH Compliance Code
Indicates the component's compliance status with the EU REACH regulation. Buyers should verify this code against the manufacturer's declaration to ensure restricted substances are within allowable limits for their target market.
75 dB
Ihs Manufacturer
Manufacturer name as listed in the IHS database. Use this attribute to identify the original component maker when cross-referencing parts across distributors. Verify the manufacturer to ensure authenticity and traceability, especially for critical or regulated applications.
-15V
Pb-Free Code
Indicates whether the component is lead-free per RoHS or other directives. Buyers use this to verify environmental compliance and avoid restricted substances. Always confirm with the datasheet or certificate of compliance.
13V/μs
Data Rate
Specifies the maximum data transfer rate the component can handle, typically in bits per second. Compare this value with your system's required throughput to ensure adequate bandwidth. Verify against the datasheet for exact conditions and supported protocols.
8
Threshold Voltage
The minimum gate-to-source voltage that makes the device start conducting. Compare this value across parts to ensure your drive circuit can reliably turn the switch on. Always verify against the datasheet for your operating temperature.
4.9mm
Temperature Grade
Defines the operating temperature range classification for the component, such as commercial, industrial, or automotive. This indicates the environmental conditions the device can withstand. Ensure the grade matches your application's ambient temperature requirements.
8
Tolerance
Allowed deviation from the nominal value, expressed as a percentage. Determines precision of resistors, capacitors, and inductors. Choose tighter tolerance for precision circuits, but verify actual performance in the datasheet.
2
Specifications
Review the complete technical specifications for this electronic component, including electrical ratings, mechanical dimensions, and environmental limits. Verify these parameters against your application requirements and the manufacturer's datasheet to ensure compatibility and reliable operation.
Nickel/Palladium/Gold (Ni/Pd/Au)
Resistance
Electrical resistance value in ohms, defining opposition to current flow. Critical for current limiting, voltage division, and signal conditioning. Always check tolerance and power rating in the datasheet for reliable circuit operation.
18V
Part Life Cycle Code
Indicates the current production status of the component, such as active, obsolete, or end-of-life. Buyers should verify this to ensure long-term availability and avoid last-time buy risks. Check the manufacturer datasheet for the most accurate status.
3mV
Technology
Manufacturing technology or process used for the component, such as thin film, thick film, or semiconductor process. Affects performance, stability, and cost. Confirm the technology matches your application requirements and environmental conditions.
TL072
Processor Brand
Identifies the manufacturer of the processor, such as Intel, AMD, or ARM. This attribute helps buyers quickly assess compatibility, performance expectations, and supply chain reliability. Always verify the exact brand and model against the datasheet before designing into your system.
5mA
Manufacturer's Part No.
The unique part number assigned by the original component manufacturer. Use this to cross-reference datasheets, verify specifications, and ensure the exact component matches your design requirements. Always confirm the number against the manufacturer's official documentation.
TL072ACD
FFC, FCB Thickness
This attribute specifies the thickness of a flat flexible cable (FFC) or flat circuit board (FCB). It is important for ensuring proper insertion into connectors and for mechanical fit in tight enclosures. Engineers must verify this dimension against the connector's specifications to guarantee reliable contact and avoid damage during assembly.
5mA
Предпросмотр datasheet
Datasheet PDF viewer
Просмотрите datasheet для TL072ACD от Texas Instruments, чтобы проверить package, electrical characteristics, application notes и document evidence до RFQ.
Для TL072ACD сейчас не показан публичный product notice document. Подтвердите PCN, PDN, EOL, date code и lifecycle status во время RFQ до производственной закупки.
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Точные ответы для покупателей, которые проверяют ordering code TL072ACD, упаковку, наличие, datasheet и путь замены.
Что означает TL072ACD?
TL072ACD — это точный ordering code для компонента категории Linear - Amplifiers - Instrumentation, Operational Amplifiers, Buffer Amplifiers от Texas Instruments. Текущий корпус указан как 8SOIC, а контекст позиции включает IC OPAMP JFET 3MHZ 8SOIC. Используйте полный код при запросе склада, цены, datasheet или compliance-подтверждения.
Как покупателям проверить ordering code TL072ACD?
Рассматривайте TL072ACD как полный ordering code при RFQ и инженерной проверке. Подтвердите указанный корпус 8SOIC, документацию производителя Texas Instruments, ordering table в datasheet, reel или packing details и требования внутреннего утверждения до замены или выпуска PO.
В каком корпусе поставляется TL072ACD?
TL072ACD сейчас указан с корпусом 8SOIC от Texas Instruments. Перед утверждением закупки подтвердите manufacturer package drawing, footprint, pinout, tape-and-reel данные и требования к приемке.
TL072ACD сейчас доступен для заказа?
TL072ACD сейчас помечен на странице как позиция с наличием. Перед заказом подтвердите корпус (8SOIC), указанный склад (111965), доступное количество (54184), нужное количество, срок поставки, финальную цену, compliance-требования и совпадение точного ordering code через RFQ.
Где сравнить альтернативы для TL072ACD?
Для TL072ACD сейчас не опубликован список связанных альтернатив. Отправьте RFQ с количеством, ограничениями по корпусу и требованиями к утверждению, чтобы TrustCompo помогла проверить возможные replacement options.