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SSM3582ACPZ-R7 数据表(PDF) 35 Page - Analog Devices

部件名 SSM3582ACPZ-R7
功能描述  2×, 31.76 W, Digital Input, Filterless Stereo Class D Audio Amplifier
PDF  58 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

SSM3582ACPZ-R7 数据表(HTML) 35 Page - Analog Devices

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Data Sheet
SSM3582A
Rev. A | Page 35 of 58
HIGH FREQUENCY CLIPPER
The high frequency clipper can be controlled via the
DAC_CLIP_L bits (Register 0x14, Bits[7:0]) and the
DACL_CLIP_R bits (Register 0x15, Bits[7:0]).
These bits determine the clipper threshold, relative to full scale.
When enabled, the clipper digitally clips the signal after the
DAC interpolation.
EMI NOISE
The SSM3582A uses a proprietary modulation and spread
spectrum technology to minimize EMI emissions from the
device. The SSM3582A passes FCC Class-B emissions testing
with an unshielded 20 inch cable using ferrite bead-based
filtering. For applications that have difficulty passing FCC
Class-B emission tests, the SSM3582A includes an ultralow
EMI emissions mode that significantly reduces the radiated
emissions at the Class-D outputs, particularly above 100 MHz.
Note that reducing the supply voltage greatly reduces radiated
emissions.
OUTPUT MODULATION DESCRIPTION
The SSM3582A uses three-level, Σ-Δ output modulation. Each
output can swing from ground to PVDD, and vice versa. Ideally,
when no input signal is present, the output differential voltage
is 0 V because there is no need to generate a pulse. In a real-
world situation, noise sources are always present.
Due to this constant presence of noise, a differential pulse is
occasionally generated in response to this stimulus. A small
amount of current flows into the inductive load when the
differential pulse is generated. However, typically, the output
differential voltage is 0 V. This feature ensures that the current
flowing through the inductive load is small.
When the user sends an input signal, an output pulse is generated
to follow the input voltage. The differential pulse density is
increased by raising the input signal level. Figure 84 depicts
three-level, Σ-Δ output modulation with and without input
stimulus.
OUTPUT > 0V
+5V
0V
OUTx+
+5V
0V
OUTx–
+5V
0V
VOUT
OUTPUT < 0V
+5V
0V
OUTx+
+5V
0V
OUTx–
0V
–5V
VOUT
OUTPUT = 0V
OUTx+
+5V
0V
+5V
0V
OUTx–
+5V
–5V
0V
VOUT
Figure 84. Three-Level, Σ-Δ Output Modulation With and Without Input Stimulus



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