
Allicdata Part #: | DS3184-ND |
Manufacturer Part#: |
DS3184 |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Maxim Integrated |
Short Description: | IC FRAMER 400PBGA |
More Detail: | Framer IC Data Transport 400-PBGA (27x27) |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | Tray |
Part Status: | Obsolete |
Type: | Framer |
Applications: | Data Transport |
Mounting Type: | Surface Mount |
Package / Case: | 400-BBGA |
Supplier Device Package: | 400-PBGA (27x27) |
Base Part Number: | DS3184 |
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The Dual-Slope A/D converter Digital Storage Oscilloscope (DS3184) is a versatile integrated circuit (IC) designed for use in electrical, automation and related engineering fields. It is often used as an input device for many types of test and measurement instruments. This article will discuss the application field and working principle of a DS3184.
Types of DS3184
The DS3184 is available in two different types: a single-channel DS3184S and a dual-channel DS3184D. Both models provide 8-bit resolution, up to 1000 Hz sampling rate, 10 MHz bandwidth and on-chip oscilloscope trigger capabilities. The single-channel model is designed for applications that require the measurement of one signal at a time, while the dual-channel model is suitable for applications that require simultaneous signal recording and tracking of two signals.
Application Field of DS3184
The DS3184 is a highly versatile IC, which can be used in a variety of engineering fields. In electrical engineering, it can be used to measure low power analog signals such as temperature, pressure, current and voltage. It is also suitable for use in industrial automation applications, where it is used for signal acquisition and monitoring. In addition, it is also used in environmental measurement and analysis, where it can be used to measure light, sound, and gas concentrations. Other application fields include medical, automotive, and aerospace engineering.
Working Principle of DS3184
The DS3184 is a dual-slope analog-to-digital converter (ADC). An ADC converts analog signals into digital signals. The basic operation of the DS3184 consists of two parts: the first part is the time-base generation, and the second part is the converging stage. A time-base generator is used to produce a fixed time interval, and the converging stage is used to measure the input signal during this fixed time interval.
The time-base generation part of the DS3184 uses an internal crystal oscillator to generate a stable clock signal. The signal is then used to generate a sequence of fixed length time intervals. The input signal is applied to the DS3184 during one of these time intervals. During this time interval, the input signal is converted into a sequence of digital values and these values are stored in the DS3184’s internal memory. At the end of the time interval, the stored digital values are outputted from the DS3184.
After the input signal has been converted into a sequence of digital values, a re-convergence stage is used to generate an accurate output signal. In this stage, the stored digital values are multiplied by a weighting factor, and the resulting values are summed together to calculate the average value of the input signal. Thisaverage value is then used as the output signal from the DS3184.
Conclusion
In conclusion, the DS3184 is an advanced integrated circuit designed for use in electrical, automation and related engineering fields. It is available in single- and dual-channel versions and provides 8-bit resolution, up to 1000 Hz sampling rate, and 10 MHz bandwidth. The core operation of the DS3184 is a dual-slope analog-to-digital conversion, which uses an internal crystal oscillator to generate a time base and a converging stage to measure and store the input signal. This output signal can then be used in many different applications, including industrial automation, environmental measurement, medical, automotive and aerospace engineering.
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