MAX9700BEBC-T Maxim Integrated, MAX9700BEBC-T Datasheet - Page 8

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MAX9700BEBC-T

Manufacturer Part Number
MAX9700BEBC-T
Description
Audio Amplifiers
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX9700BEBC-T

Output Type
1-Channel Mono
Output Power
1.6 W x 1 at 6 Ohms
Thd Plus Noise
0.01 % at 8 Ohms at 125 mW
Operating Supply Voltage
3 V, 5 V
Maximum Power Dissipation
484 mW
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
UCSP
Audio Load Resistance
16 Ohms
Common Mode Rejection Ratio (min)
72 dB (Typ)
Input Signal Type
Differential
Minimum Operating Temperature
- 40 C
Output Signal Type
Differential
Supply Type
Single
Supply Voltage - Max
5.5 V
Supply Voltage - Min
2.5 V
1.2W, Low-EMI, Filterless,
Class D Audio Amplifier
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-
ating a minimum-width pulse t
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
other output pulse duration remains at t
causes the net voltage across the speaker (V
V
8
OUT-
TDFN/µMAX
_______________________________________________________________________________________
PIN
) to change.
10
1
2
3
4
5
6
7
8
9
BUMP
UCSP
C1
C2
C4
A1
B1
B2
A3
B3
A4
B4
Detailed Description
ON(MIN)
NAME
SHDN
PGND
OUT+
SYNC
OUT-
PV
GND
V
IN+
IN-
EP
DD
DD
at the output of
ON(MIN)
Analog Power Supply. Connect to an external power supply. Bypass to GND with a
1µF capacitor.
Noninverting Audio Input
Inverting Audio Input
Analog Ground
Active-Low Shutdown Input. Connect to V
Frequency Select and External Clock Input.
SYNC = GND: Fixed-frequency mode with f
SYNC = Unconnected: Fixed-frequency mode with f
SYNC = V
SYNC = Clocked: Fixed-frequency mode with f
Power Ground
Amplifier-Output Positive Phase
Amplifier-Output Negative Phase
H-Bridge Power Supply. Connect to V
Exposed Pad. Internallly connected to GND. Connect to a large ground plane to
maximize thermal performance. Not intended as an electrical connection point.
(TDFN package only.)
OUT+
. This
DD
: Spread-spectrum mode with f
-
The MAX9700 features two FFM modes. The FFM modes
are selected by setting SYNC = GND for a 1.1MHz
switching frequency, and SYNC = UNCONNECTED 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 features a unique spread-spectrum
mode that flattens the wideband spectral components,
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
SSM mode by setting SYNC = V
switching frequency varies randomly by ±120kHz
around the center frequency (1.22MHz). The modulation
Spread-Spectrum Modulation (SSM) Mode
Fixed-Frequency Modulation (FFM) Mode
FUNCTION
DD
.
DD
S
S
for normal operation.
= 1100kHz.
= 1220kHz ±120kHz.
S
= external clock frequency.
S
= 1450kHz.
Pin Description
DD
Operating Modes
. In SSM mode, the

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