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Daudzums | |
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1+ | 35,510 € |
10+ | 26,270 € |
25+ | 26,050 € |
100+ | 25,820 € |
250+ | 24,980 € |
Informācija par produktiem
Produktu pārskats
LTC2348CLX-16#PBF is a 16bit, low noise 8-channel simultaneous sampling successive approximation register (SAR) ADC with differential, wide common mode range inputs. Operating from a 5V low voltage supply, flexible high voltage supplies, and using the internal reference and buffer, each channel of this SoftSpan™ ADC can be independently configured on a conversion-by-conversion basis to accept ±10.24V, 0V to 10.24V, ±5.12V, or 0V to 5.12V signals. Individual channels may also be disabled to increase throughput on the remaining channels. The wide input common mode range and 118dB CMRR of the LTC2348-16 analogue inputs allow the ADC to directly digitize a variety of signals, simplifying signal chain design. Applications include programmable logic controllers, industrial process control, power line monitoring, test and measurement.
- Eight simultaneous sampling channels, guaranteed 16bit, no missing codes
- Internal conversion clock, no cycle latency, SPI CMOS (1.8V to 5V) and LVDS serial I/O
- Integrated reference and buffer (4.096V), 200ksps maximum sampling frequency
- Signal-to-noise ratio is 94.4dB typ at (SoftSpans 7 and 6: ±10.24V and ±10V Ranges, fIN = 2KHz)
- Total harmonic distortion is -109dB typ at (SoftSpans 7 and 6: ±10.24V and ±10V ranges, fIN = 2KHz)
- Input common mode rejection ratio is 118dB typ at (VIN+ = VIN- = 18VP-P 200Hz sine)
- Integral linearity error is ±0.3LSB typ at (TA = 25°C)
- 7MHz typical -3dB input bandwidth at (TA = 25°C, AIN = -1dBFS)
- Zero-scale error is ±160μV typical at (TA = 25°C)
- Operating temperature range from 0°C to 70°C, 48-lead plastic LQFP package
Piezīmes
ADI products are only authorized (and sold) for use by the customer and are not to be resold or otherwise passed on to any third party
Tehniskie parametri
16bit
Differential, Pseudo Differential
Single
5.25V
48Pins
70°C
-
200kSPS
SPI
4.75V
LQFP
0°C
Octal 16-Bit SAR ADCs
No SVHC (21-Jan-2025)
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