MAX9776EVKIT+ Maxim Integrated Products, MAX9776EVKIT+ Datasheet - Page 20

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MAX9776EVKIT+

Manufacturer Part Number
MAX9776EVKIT+
Description
EVALUATION KIT FOR MAX9776
Manufacturer
Maxim Integrated Products
Series
DirectDrive™r
Datasheets

Specifications of MAX9776EVKIT+

Amplifier Type
Class D
Output Type
1-Channel (Mono) with Stereo Headphones
Max Output Power X Channels @ Load
1.5W x 1 @ 4 Ohm; 60mW x 2 @ 16 Ohm
Voltage - Supply
2.7 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Board Type
Fully Populated
Utilized Ic / Part
MAX9776
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The MAX9775/MAX9776 feature a fixed-frequency
modulation mode with a 1.1MHz switching frequency,
set through the I
cy modulation mode, the frequency spectrum of the
Class D output consists of the fundamental switching
frequency and its associated harmonics (see the
Wideband Output Spectrum Fixed-Frequency Mode
graph in the Typical Operating Characteristics ).
The MAX9775/MAX9776 feature a unique spread-spec-
trum modulation that flattens the wideband spectral com-
ponents. Proprietary techniques ensure that the
2 x 1.5W, Stereo Class D Audio Subsystem
with DirectDrive Headphone Amplifier
Figure 2. Output with an Input Signal Applied (Spread-Spectrum Modulation Mode)
20
______________________________________________________________________________________
V
V
V
OUT+
IN+
IN-
- V
OUT-
OUT+
OUT-
2
C interface (Table 2). In fixed-frequen-
t
ON(MIN)
Spread-Spectrum Modulation
Fixed-Frequency Modulation
Operating Modes
t
SW
t
SW
cycle-to-cycle variation of the switching period does not
degrade audio reproduction or efficiency (see the
Typical Operating Characteristics ). Select spread-spec-
trum modulation mode through the I
2). In spread-spectrum modulation mode, the switching
frequency varies randomly by ±30kHz around the center
frequency (1.16MHz). The modulation scheme remains
the same, but the period of the sawtooth 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 spread over
a bandwidth that increases with frequency. Above a few
megahertz, the wideband spectrum looks like white
noise for EMI purposes (see Figure 3).
t
SW
t
SW
2
C interface (Table

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