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MAX9700AEBC+ PDF预览

MAX9700AEBC+

更新时间: 2024-02-14 09:34:19
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美信 - MAXIM 音频放大器
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19页 533K
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MAX9700AEBC+ 数据手册

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1.2W, Low-EMI, Filterless,  
Class D Audio Amplifier  
Pin Description  
PIN  
BUMP  
UCSP  
A1  
NAME  
FUNCTION  
TDFN/µMAX  
1
2
3
4
5
V
Analog Power Supply  
Noninverting Audio Input  
Inverting Audio Input  
Analog Ground  
DD  
B1  
IN+  
IN-  
C1  
C2  
GND  
SHDN  
B2  
Active-Low Shutdown Input. Connect to V  
for normal operation.  
DD  
Frequency Select and External Clock Input.  
SYNC = GND: Fixed-frequency mode with f = 1100kHz.  
S
6
A3  
SYNC  
SYNC = Float: Fixed-frequency mode with f = 1450kHz.  
S
SYNC = V : Spread-spectrum mode with f = 1220kHz 120kHz.  
DD  
S
SYNC = Clocked: Fixed-frequency mode with f = external clock frequency.  
S
7
8
B3  
A4  
C4  
B4  
PGND  
OUT+  
OUT-  
Power Ground  
Amplifier-Output Positive Phase  
Amplifier-Output Negative Phase  
H-Bridge Power Supply  
9
10  
PV  
DD  
Operating Modes  
Detailed Description  
Fixed-Frequency Modulation (FFM) Mode  
The MAX9700 features two FFM modes. The FFM  
modes are selected by setting SYNC = GND for a  
1.1MHz switching frequency, and SYNC = FLOAT for a  
1.45MHz switching frequency. In FFM mode, the fre-  
quency spectrum of the class D output consists of the  
fundamental switching frequency and its associated  
harmonics (see the Wideband FFT graph in the Typical  
Operating Characteristics). The MAX9700 allows the  
switching frequency to be changed by +32%, should  
the frequency of one or more of the harmonics fall in a  
sensitive band. This can be done at any time and does  
not affect audio reproduction.  
The MAX9700 filterless, class D audio power amplifier  
features several improvements to switch-mode amplifier  
technology. The MAX9700 offers class AB performance  
with class D efficiency, while occupying minimal board  
space. A unique filterless modulation scheme, synchro-  
nizable switching frequency, and SSM mode create a  
compact, flexible, low-noise, efficient audio power  
amplifier. The differential input architecture reduces  
common-mode noise pickup, and can be used without  
input-coupling capacitors. The device can also be con-  
figured as a single-ended input amplifier.  
Comparators monitor the MAX9700 inputs and com-  
pare the complementary input voltages to the sawtooth  
waveform. The comparators trip when the input magni-  
tude of the sawtooth exceeds their corresponding input  
voltage. Both comparators reset at a fixed time after the  
rising edge of the second comparator trip point, gener-  
Spread-Spectrum Modulation (SSM) Mode  
The MAX9700 features a unique, patented spread-spec-  
trum mode that flattens the wideband spectral compo-  
nents, improving EMI emissions that may be radiated by  
the speaker and cables by 5dB. Proprietary techniques  
ensure that the cycle-to-cycle variation of the switching  
period does not degrade audio reproduction or efficien-  
cy (see the Typical Operating Characteristics). Select  
ating a minimum-width pulse t  
at the output of  
ON(MIN)  
the second comparator (Figure 1). As the input voltage  
increases or decreases, the duration of the pulse at one  
output increases (the first comparator to trip) while the  
SSM mode by setting SYNC = V . In SSM mode, the  
DD  
other output pulse duration remains at t  
. This  
OUT+  
ON(MIN)  
switching frequency varies randomly by 120kHz  
around the center frequency (1.22MHz). The modulation  
scheme remains the same, but the period of the saw-  
tooth waveform changes from cycle to cycle (Figure 2).  
Instead of a large amount of spectral energy present at  
multiples of the switching frequency, the energy is now  
causes the net voltage across the speaker (V  
-
V
OUT-  
) to change.  
8
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