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AMC131M01DFMR 데이터시트(PDF) 18 Page - Texas Instruments

부품명 AMC131M01DFMR
상세설명  AMC131M01 1-Channel, 64-kSPS, Simultaneous-Sampling, 24-Bit, Reinforced Isolated Delta-Sigma ADC With Integrated DC/DC Converter
PDF  81 Pages
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홈페이지  http://www.ti.com
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AMC131M01DFMR 데이터시트(HTML) 18 Page - Texas Instruments

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8.3 Feature Description
8.3.1 Isolated DC/DC Converter
The AMC131M01 offers a fully integrated isolated DC/DC converter stage that includes the following
components, as illustrated in the Functional Block Diagram:
• Low-dropout regulator (LDO) on the primary side to stabilize the supply voltage that drives the primary side of
the converter
• Primary full-bridge inverter and drivers
• Laminate-based, air-core transformer for high immunity to magnetic fields
• Secondary full-bridge rectifier
• Secondary LDO to stabilize the output voltage of the DC/DC converter for high analog performance of the
signal path
The DC/DC converter uses a spread-spectrum clock generation technique to reduce the spectral density of
the electromagnetic radiation. The resonator frequency is synchronous to the operation of the ΔΣ modulator to
minimize interference with data transmission and support the high analog performance of the device.
8.3.1.1 DC/DC Converter Failure Detection
A failure in the DC/DC converter is indicated by reading a logic high of the SEC_FAIL bit in the STATUS
register. This bit is a latched bit. If any failure of the internal DC/DC converter occurs during device operation,
but the DC/DC converter recovers from the failure and operates normally after this instance, the SEC_FAIL bit
remains in a logic high state until the STATUS register is read. Reading the status register clears the SEC_FAIL
bit. As described in the Start-Up Behavior After Power-Up section, use two consecutive STATUS register read
commands to verify correct operation of the DC/DC converter at a given point in time (for example, at device
power-up).
8.3.2 High-Side Current Drive Capability
The architecture of the DC/DC converter is optimized to drive the high-side circuitry of the AMC131M01
and can source up to IH of additional DC current for external circuitry (such as an active filter, preamplifier,
or comparator). Use the HLDO_OUT pin as a power supply for this external circuit. Because of the output
impedance at the HLDO_OUT pin, the voltage at HLDO_OUT depends on the magnitude of the drive current
and the selected power mode. For operation across all temperatures and power modes, components for the
external circuits must operate at a low supply voltage (such as 2.7 V). See the Clocking and Power Modes
section for details on the available power modes.
8.3.3 Isolation Channel Signal Transmission
The AMC131M01 uses an on-off keying (OOK) modulation scheme to transmit the modulator output bitstream
across the capacitive SiO2-based isolation barrier. After transmission across the isolation barrier, the modulator
output bitstream is decimated using the sinc filter to reconstruct the ADC conversion data, and is then
transferred to the digital control so that the data are accessible through the SPI interface. Figure 8-1 depicts
the block diagram of an isolation channel. The transmitter modulates the bitstream at TX IN with an internally
generated, 480-MHz carrier and sends a burst across the isolation barrier to represent a digital one and
sends a no signal to represent the digital zero. The receiver demodulates the signal after advanced signal
conditioning and produces the output. The symmetrical design of each isolation channel improves the common-
mode transient immunity (CMTI) performance and reduces the radiated emissions caused by the high-frequency
carrier.
AMC131M01
SBASA57 – SEPTEMBER 2023
www.ti.com
18
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Product Folder Links: AMC131M01



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