Texas Instruments ADC3441IRTQ25
- ADC3441IRTQ25
- Texas Instruments
- IC ADC 14BIT PIPELINED 56QFN
- Data Acquisition - Analog to Digital Converters (ADC)
- ADC3441IRTQ25 Datasheet
- 56-VFQFN Exposed Pad
- Cut Tape (CT)
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What is ADC3441IRTQ25
Texas Instruments Part Number ADC3441IRTQ25(Data Acquisition - Analog to Digital Converters (ADC)), developed and manufactured by Texas Instruments, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
ADC3441IRTQ25 is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
ADC3441IRTQ25 Specifications
- Part NumberADC3441IRTQ25
- CategoryData Acquisition - Analog to Digital Converters (ADC)
- ManufacturerTexas Instruments
- DescriptionIC ADC 14BIT PIPELINED 56QFN
- PackageCut Tape (CT)
- Series-
- FeaturesSimultaneous Sampling
- Operating Temperature-40°C ~ 85°C
- Mounting TypeSurface Mount
- Package / Case56-VFQFN Exposed Pad
- Supplier Device Package56-QFN (8x8)
- Reference TypeExternal, Internal
- Sampling Rate (Per Second)25M
- Data InterfaceLVDS - Serial
- Number of Bits14
- Voltage - Supply, Analog1.7V ~ 1.9V
- Voltage - Supply, Digital1.7V ~ 1.9V
- Number of Inputs4
- Input TypeDifferential
- ConfigurationADC
- Ratio - S/H:ADC-
- Number of A/D Converters4
- ArchitecturePipelined
Application of ADC3441IRTQ25
ADC3441IRTQ25 Datasheet
ADC3441IRTQ25 Datasheet , Cut Tape (CT),Simultaneous Sampling,-40°C ~ 85°C,Surface Mount,56-VFQFN Exposed Pad,56-QFN (8x8),External, Internal,25M,LVDS - Serial,14,1.7V ~ 1.9V,1.7V ~ 1.9V,4,Differential,ADC,4,Pipelined
ADC3441IRTQ25 Classification
Data Acquisition - Analog to Digital Converters (ADC)
FAQ about Data Acquisition - Analog to Digital Converters (ADC)
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1. What are DAC and ADC?
ADC and DAC are two important concepts in digital electronics. ADC stands for "analog-to-digital converter", which can convert analog signals into digital signals. DAC stands for "digital-to-analog converter", which can convert digital signals into analog signals. Both converters play an important role in many electronic products, such as mobile phones, televisions, stereos, etc.
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2. How to convert analog to digital without ADC?
Analog to digital conversion without ADC can be achieved through PWM circuit. This method is suitable for those main control chips without built-in ADC, which needs to be solved by two GPIOs and an operational amplifier. The basic principle is to use an integral circuit to convert the PWM wave into a smooth DC voltage, and then continuously adjust the PWM duty cycle by comparing it with the voltage to be measured until the output of the comparator changes from 0 to 1, and record the current PWM duty cycle, thereby realizing the measurement of the analog voltage.
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3. What is the difference between the input and output of an ADC?
The input of ADC (Analog-to-Digital Converter) is analog quantity and the output is digital quantity.
The main function of ADC is to convert continuous analog signal into discrete digital signal. In electronic systems, analog signal usually refers to continuously changing voltage or current, such as the signal obtained from microphone or sensor. The amplitude and frequency of these analog signals can change continuously, while digital signals are composed of a series of discrete values, usually expressed in binary form.
Input: The input of ADC receives analog signals, which can be in the form of continuously changing physical quantities such as voltage and current. The amplitude and frequency of analog signals can change continuously, such as the voltage range from 0V to 5V.
Output: The output of ADC is digital signal, which is composed of a series of discrete values, usually expressed in binary form. The advantage of digital signals is that they can be calculated and processed quic
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