SBAA672 April 2025 AMC0330D-Q1 , AMC131M03 , AMC131M03-Q1 , AMC1350 , AMC1350-Q1
Voltage Source | AMC1350 Input Voltage | AMC1350 Output Voltage VDD2 / 2 Common Mode (VOUTP – VOUTN) | Power Supplies | ||||
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VMAX | VMIN | VIN, MAX | VIN, MIN | VOUT, MAX | VOUT, MIN | VDD1 | VDD2 |
480V | –480V | 5V | 5V | 4V | –4V | 3V–5.5V | 3V–5.5V |
This circuit performs three-phase line-to-neutral, isolated, voltage-sensing measurements utilizing the AMC1350 isolated amplifier and a voltage-divider circuit. The voltage-divider circuit reduces the voltage from ±480V to ±5V which matches the input range of the AMC1350. The AMC1350 is powered from both a high- and low-side power supply. Typically, the high-side supply is generated using a floating supply or from the low-side using an isolated transformer or isolated DC/DC converter. The AMC1350 can measure differential signals of ±5V with a fixed gain of 0.4V/V. The AMC1350 has a differential input impedance of 1.25MΩ which supports low gain-error and low offset-error signal-sensing in high-voltage applications.
The following graph shows the simulated output of the AMC1350 for a ±480V input. The output voltage is about 2.02V for an input voltage of 480V, as calculated in step 7.
The simulated gain is –47.52dB (or 0.0041V/V) which closely matches the expected gain for the voltage divider and AMC1350.
The following simulation shows the input and output signals of the AMC1350.
AMC0330D | |
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VDD1 | 3V to 5.5V |
VDD2 | 3V to5.5V |
Input Voltage Range | ±1V |
Nominal Gain | 2 |
Input Resistance | 1GΩ (typical) |
Output Bandwidth | 110kHz (typical) |
Input Offset Voltage and Drift | ±1.5mV (maximum), ±10µV/°C (maximum) |
Gain Error and Drift | ±0.25% (maximum), ±40ppm/°C (maximum) |
Nonlinearity | 0.05% (maximum) |
Isolation Transient Overvoltage | 7kVPEAK |
Working Voltage | 1kVRMS |
Common-Mode Transient Immunity, CMTI | 50V/ns (minimum) |
AMC0330D, AMC0330R, AMC0330S |
The AMC131M03 is a precision, low-power, isolated, three-channel delta-sigma (ΔΣ) analog-to-digital converter (ADC) with reinforced isolation that, in conjunction with a voltage divider, can also be used to perform three-phase, line-to-neutral, isolated, voltage-sensing measurements. Each channel of the AMC131M03 needs to connect to one of the three-phase voltages through a resistor divider to scale down to the input voltage range of the ADC. This device features a fully integrated isolated DC/DC converter that allows single-supply operation of 3.3V or 5V from the low-side of the device. When the measurements are conducted by the device, the ADC converts the three-phase measurements into digital data. The digitized data can be output by the device through serial peripheral interface (SPI) communication, allowing for direct communication to a microcontroller. The dynamic range, size, feature set, and power consumption are optimized for cost-sensitive applications requiring simultaneous sampling.
AMC131M03 | |
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VDVDD | 3V to 5.5V |
Input Voltage Range | Vref / Gain |
Gain | Programmable gain up to 128 |
Input Offset Error and Drift (Channel 0,1) | ±100µV (typical), ±0.5µV/°C (maximum) |
Input Offset Error and Drift (Channel 2) | ±120µV (typical), ±0.5µV/°C (maximum) |
Gain Error and Drift (Channel 0) | ±0.2% (maximum), ±25ppm/°C (maximum) |
Gain Error and Drift (Channel 1,2) | ±1% (maximum), ±25ppm/°C (maximum) |
Nonlinearity | 6ppm of FSR |
Isolation Transient Overvoltage | 7070VPEAK |
Working Voltage | 1.2kVRMS |
Common-Mode Transient Immunity, CMTI | 100V/ns (minimum) |
AMC131M03 |