Đầu Chuyển Đổi Mcu-6668 Ltc1966 Rms Sang Dc Chuyên Dụng tại Lotte Market
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MCU-6668 LTC1966 Micropower ΔΣ RMS To DC Converter Smaller Converter. Compared with the traditional logarithmic antilog RMS to DC converter, the internal incremental accumulation (ΔΣ) circuit of LTC1966 makes it easier to use, more accurate, weaker and more flexible. Unlike previous RMS to DC converters, the excellent linearity of the LTC1966 allows easy system calibration at any input voltage. High: Còn hàng
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Giới thiệu Đầu Chuyển Đổi Mcu-6668 Ltc1966 Rms Sang Dc Chuyên Dụng tại Lotte Market
MCU-6668 LTC1966 Micropower ΔΣ RMS To DC Converter Smaller ConverterFeatures:
1.LTC1966 is a true RMS to DC converter, which uses innovative patented ΔΣ calculation technology.
2.Compared with the traditional logarithmic antilog RMS to DC converter, the internal incremental accumulation (ΔΣ) circuit of LTC1966 makes it easier to use, more accurate, weaker and more flexible.
3. LTC1966 accepts single-ended or differential input signals (to suppress EMI/RFI) and supports crest factors up to 4. Unlike previous RMS to DC converters, the excellent linearity of the LTC1966 allows easy system calibration at any input voltage.
Description:
The LTC1966's internal delta-piling (&) circuit makes it easier to use, more accurate, smaller and more flexible than traditional logarithmic antilog RMS to DC converters.
Specifications:
High accuracy: 0.1% gain accuracy (from 50Hz to 1 kHz), 0.25% total error (from 50Hz to 1 kHz)
High linearity: 0.02% linearity
Low current: 155μA (typical value), 170μA (maximum)
Ultra-low shutdown current: 0.1 ua
Constant bandwidth: 800 kHz-3dB, 6 kHz ± 1%
Flexible power supply: 2.7 V to 5.5 V single power supply, dual power supply up to ±5.5 volts
Flexible input: up to 1 VPEAK differential voltage
Wide temperature range: -55°C to 125°C
Package Included:
1 * Converter
Notes:
1. Please allow 0-1 inch error due to manual measurement. Thanks for your understanding.
2. Monitors are not calibrated same, item color displayed in photos may be showing slightly different from real object.