MAX9700BEBC-T Maxim Integrated, MAX9700BEBC-T Datasheet - Page 9

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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
Figure 1. MAX9700 Outputs with an Input Signal Applied
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
spread over a bandwidth that increases with frequency.
Above a few megahertz, the wideband spectrum looks
like white noise for EMI purposes (Figure 3).
Table 1. Operating Modes
UNCONNECTED
SYNC INPUT
Clocked
GND
V
DD
V
V
V
IN+
OUT+
IN-
- V
OUT-
_______________________________________________________________________________________
OUT+
OUT-
FFM with f
FFM with f
SSM with f
FFM with f
t
ON(MIN)
S
S
S
S
= 1100kHz
= 1450kHz
= external clock frequency
= 1220kHz ±120kHz
MODE
t
SW
1.2W, Low-EMI, Filterless,
Class D Audio Amplifier
The SYNC input allows the MAX9700 to be synchro-
nized to a system clock (allowing a fully synchronous
system), or allocating the spectral components of the
switching harmonics to insensitive frequency bands.
Applying an external TTL clock of 800kHz to 2MHz to
SYNC synchronizes the switching frequency of the
MAX9700. The period of the SYNC clock can be ran-
domized, enabling the MAX9700 to be synchronized to
another MAX9700 operating in SSM mode.
The MAX9700 uses Maxim’s modulation scheme
that eliminates the LC filter required by traditional
class D amplifiers, improving efficiency, reducing
component count, and conserving board space
and system cost. Conventional class D amplifiers
Filterless Modulation/Common-Mode Idle
External Clock Mode
9

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