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The ADS1254 is a 24-bit resolution analog-to-digital converter with wide dynamic range and low power consumption. It is designed for high-resolution measurement applications such as cardiac diagnostics, smart transmitters, industrial process control, weight scales, chromatography, and portable instrumentation. The converter includes a flexible, two-wire synchronous serial interface for low-cost isolation. The ADS1254 is a multi-channel converter and is offered in an SSOP-20 package.
ADS1253 is a 24-bit high-precision, wide dynamic range analog-to-digital converter (ADC) from Texas Instruments. It features a single +5V supply and delivers 24 bits of no missing codes performance. ADS1253 is designed for high-resolution measurement applications in cardiac diagnostics, smart transmitters, industrial process control, weight scales, chromatography, and portable instrumentation.
ADS1252 is a 24-bit precision, wide dynamic range, delta-sigma, analog-to-digital converter. 24 bits of no missing code performance. An effective resolution of 19 bits (2.5ppm of rms noise) is achieved for conversion rates up to 40kHz. Designed for high-resolution measurement applications in cardiac diagnostics, smart transmitters, industrial process control, weigh scales, chromatography, and portable instrumentation.
The ADS1251 is a 24-bit, 20kHz, low-power analog-to-digital converter with features including 24-bit no missing codes, 19-bit effective resolution, low noise, differential inputs, etc. It is designed for high-resolution measurement applications in cardiac diagnostics, smart transmitters, industrial process control, weigh scales, chromatography, and portable instrumentation.
The ADS1250 is a 20-bit data acquisition system analog-to-digital converter with 18-bit effective resolution and low noise. It operates from a single +5V supply and is designed for high-resolution measurement applications.
The ADS1245 is a 24-bit, delta-sigma analog-to-digital converter (ADC). It offers excellent performance and very low power in an MSOP-10 package and is well suited for demanding high-resolution measurements, especially in portable and other space- and power-constrained systems.
The ADS1244 is a 24-bit, delta-sigma Analog-to-Digital (A/D) converter. It offers excellent performance and very low power in an MSOP-10 package and is well suited for demanding high-resolution measurements, especially in portable and other space- and power-constrained systems.
ADS1242 and ADS1243 are precision, wide dynamic range, delta-sigma, analog-to-digital (A/D) converters with 24-bit resolution operating from 2.7V to 5.25V supplies. These delta-sigma, A/D converters provide up to 24 bits of no missing code performance and effective resolution of 21 bits. The input channels are multiplexed. Internal buffering can be selected to provide a very high input impedance for direct connection to transducers or low-level voltage signals. Burn- out current sources are provided that allow for the detection of an open or shorted sensor. An 8-bit digital-to-analog converter (DAC) provides an offset correction with a range of 50% of the FSR (Full-Scale Range). The Programmable Gain Amplifier (PGA) provides selectable gains of 1 to 128 with an effective bandwidth of 500kHz. The converter has a single-cycle settling time and can be programmed from a single SPI™ interface.
The ADS1240 and ADS1241 are precision, wide dynamic range, delta-sigma, Analog-to-Digital (A/D) converters with 24-bit resolution operating from 2.7V to 5.25V power supplies. The delta-sigma A/D converter provides up to 24 bits of no missing code performance and effective resolution of 21 bits. The input channels are multiplexed. Internal buffering can be selected to provide very high input impedance for direct connection to transducers or low-level voltage signals. Burnout current sources are provided that allow for detection of an open or shorted sensor. An 8-bit Digital-to-Analog (D/A) converter provides an offset cor- rection with a range of 50% of the Full-Scale Range (FSR). The Programmable Gain Amplifier (PGA) provides selectable gains of 1 to 128, with an effective resolution of 19 bits at a gain of 128. The A/D conversion is accomplished with a 2nd-order delta-sigma modu- lator and programmable Finite-Impulse Response (FIR) filter that provides a simultaneous 50Hz and 60Hz notch.
This document describes the data sheet of Harris Semiconductor's SCHS251D. The product features include buffered inputs, ESD protection exceeding 2kV, SCR-latchup-resistant CMOS process and circuit design, fast addition with reduced power consumption, balanced propagation delays, etc.
Harris Semiconductor SCHS250A is a 9-bit odd/even parity generator/checker that utilizes Advanced CMOS Logic technology. It features balanced propagation delays, high speed, and reduced power consumption. It can be used to check or generate odd/even parity for words up to nine bits long. Even parity is indicated when an even number of data inputs is HIGH, and odd parity is indicated when an odd number of data inputs is HIGH.
CD54AC280, CD54ACT280 are 9-bit odd/even parity generator/checkers that utilize Advanced CMOS Logic technology. Both even and odd parity outputs are available for checking or generating parity for words up to nine bits long. Even par- ity is indicated (∑E output is HIGH) when an even number of data inputs is HIGH. Odd parity is indicated (∑O output is HIGH) when an odd number of data inputs is HIGH. Parity checking for words larger than nine bits can be accom- plished by tying the ∑E output to any input of an additional 'AC280, 'ACT280 parity checker.
The document describes the features and characteristics of Harris Semiconductor SCHS250, including buffered inputs, propagation delay, ESD protection, CMOS process and circuit design, power consumption, noise immunity, etc.
CD54AC273 / CD74AC273 are high performance CMOS logic D-type flip-flops with reset. Information at the D input is transferred to the Q output on the positive-going edge of the clock pulse. All eight flip-flops are controlled by a common clock (CP) and a common reset (MR). Resetting is accomplished by a low voltage level independent of the clock.
The CD74AC253 and CD74ACT253 are dual 4-input multiplexers that utilize Advanced CMOS Logic technology. One of the four sources for each section is selected by the common Select inputs, S0 and S1. When the Output Enable (1OE or 2OE) is HIGH, the output is in the high-impedance state.