Allicdata Part #: | THS5671AIPWRG4-ND |
Manufacturer Part#: |
THS5671AIPWRG4 |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Texas Instruments |
Short Description: | IC DAC 14BIT 125MSPS 28-TSSOP |
More Detail: | 14 Bit Digital to Analog Converter 1 28-TSSOP |
DataSheet: | THS5671AIPWRG4 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | CommsDAC™ |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Number of Bits: | 14 |
Number of D/A Converters: | 1 |
Settling Time: | 35ns (Typ) |
Output Type: | Current - Unbuffered |
Differential Output: | Yes |
Data Interface: | Parallel |
Reference Type: | External, Internal |
Voltage - Supply, Analog: | 5V |
Voltage - Supply, Digital: | 3 V ~ 5.5 V |
INL/DNL (LSB): | ±2.5, ±2 |
Architecture: | Current Source |
Operating Temperature: | -40°C ~ 85°C |
Package / Case: | 28-TSSOP (0.173", 4.40mm Width) |
Supplier Device Package: | 28-TSSOP |
Base Part Number: | THS5671 |
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Data Acquisition - Digital to Analog Converters (DAC)
THS5671AIPWRG4 is a high-accuracy, low-power, low-area, low-voltage precision analog-to-digital converter designed especially for industrial and automotive applications. It offers an efficient integrated solution for sensing and converting high-precision and accurate analog signals into digital information for data acquisition and control systems. The THS5671AIPWRG4 offers sample rates up to 30MHz, allowing for high-speed signal processing.
TheTHS5671AIPWRG4 has wide range of application fields and great potential in both Industry and Automotive applications. The primary application can be found in pressure and force sensors, flow rate measurement systems, position and height sensors, and medical sensor application. It also provides excellent performance to measure and convert temperature, strain, and acceleration signals in Industrial and Automotive applications.
The working principle of the THS5671AIPWRG4 is quite straightforward. It has two main components, the amplifier and the A/D converter. The amplifier amplifies the provided input signal and the A/D converter then converts this amplified signal into digital data. The THS5671AIPWRG4 is designed to work with a wide variety of input signals, ranging from ±2.5V to ± 1V, with a programmable gain of up to 8, allowing it to operate with low-level inputs. It can also be used with higher-voltage signals, such as those found in automotive and industrial applications.
TheTHS5671AIPWRG4 utilizes power-conversion technologies such as pulse-width modulation (PWM) and sigma-delta modulation (SDM), in order to ensure high resolution, power efficiency, and low noise operation. PWM technique enables the output of the digital data from the device at high speed and with high accuracy. On the other hand, SDM technique enables the analog-to-digital conversion of a signal with a low resolution (1 bit) and high speed (with high sample rates). Together, these two methods of conversion enable the THS5671AIPWRG4 to provide quality performance for a wide variety of applications.
The THS5671AIPWRG4 features integrated features such as on-chip ramp compensation, onboard temperature compensation, internal calibration circuitry, and programmable offsets. These features together work to provide accurate and reliable analog-to-digital conversion and allow the device to achieve its high accuracy performance.
The THS5671AIPWRG4 has an excellent power-consumption efficiency, with a typical power consumption of 3.8 mW. This low-power device is ideal for battery-powered applications and helps to reduce the overall environmental impact.
In conclusion, the THS5671AIPWRG4 is a highly accurate, low-power, low-area, low-voltage precision analog-to-digital converter designed especially for industrial and automotive applications. It offers an efficient solution for sensing and converting high-precision and accurate analog signals into digital information for data acquisition and control systems. With its integrated features, the THS5671AIPWRG4 provides excellent performance for a wide range of application fields and offers a power-consumption efficiency that helps to reduce the overall environmental impact.
The specific data is subject to PDF, and the above content is for reference
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