MAX9759ETE+ Maxim Integrated Products, MAX9759ETE+ Datasheet - Page 15

IC AMP AUDIO PWR 3.2W D 16TQFN

MAX9759ETE+

Manufacturer Part Number
MAX9759ETE+
Description
IC AMP AUDIO PWR 3.2W D 16TQFN
Manufacturer
Maxim Integrated Products
Type
Class Dr
Datasheet

Specifications of MAX9759ETE+

Output Type
1-Channel (Mono)
Max Output Power X Channels @ Load
4.3W x 1 @ 3 Ohm
Voltage - Supply
3 V ~ 5.5 V
Features
Depop, Differential Inputs, Mute, Short-Circuit and Thermal Protection, Shutdown
Mounting Type
Surface Mount
Package / Case
16-TQFN Exposed Pad
Product
Class-D
Output Power
3.2 W
Common Mode Rejection Ratio (min)
67 dB
Thd Plus Noise
0.03 %
Operating Supply Voltage
3 V to 5.5 V
Supply Current
8.4 mA
Maximum Power Dissipation
1.8 W
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
Supply Voltage (max)
5.5 V
Supply Voltage (min)
3 V
Amplifier Class
D
No. Of Channels
1
Supply Voltage Range
3V To 5.5V
Load Impedance
4ohm
Operating Temperature Range
-40°C To +85°C
Amplifier Case Style
TQFN
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
An input capacitor, C
impedance of the MAX9759 forms a highpass filter that
removes the DC bias from an incoming signal. The AC-
coupling capacitor allows the amplifier to bias the sig-
nal to an optimum DC level. Assuming zero source
impedance, the -3dB point of the highpass filter is
given by:
Figure 7. Master-Slave Configuration
RIGHT-CHANNEL
LEFT-CHANNEL
DIFFERENTIAL
DIFFERENTIAL
DIFFERENTIAL
AUDIO INPUT
AUDIO INPUT
AUDIO INPUT
3.2W, High-Efficiency, Low-EMI, Filterless,
V
DD
______________________________________________________________________________________
V
IN+
IN-
V
IN+
IN-
V
IN+
IN-
DD
DD
DD
IN
, in conjunction with the input
MAX9759
MAX9759
MAX9759
Component Selection
U1
U2
SYNC_OUT
SYNC_OUT
SYNC_OUT
SYNC
SYNC
SYNC
OUT+
OUT+
OUT+
PV
PV
PV
OUT-
DD
DD
DD
Input Filter
Class D Audio Amplifier
Choose C
quency of interest. Setting f
low-frequency response of the amplifier. Use capaci-
tors whose dielectrics have low-voltage coefficients,
such as tantalum or aluminum electrolytic. Capacitors
with high-voltage coefficients, such as ceramics, may
result in increased distortion at low frequencies.
Figure 8. Total Harmonic Distortion Plus Noise vs. Output
Voltage
Figure 9. Crosstalk vs. Frequency
0.001
IN
-110
-130
-150
0.01
100
-30
-50
-70
-90
0.1
10
1
such that f
TOTAL HARMONIC DISTORTION PLUS NOISE
10
0
V
R
f = 1kHz
V
f = 1kHz
R
SLAVE DEVICE
DD
L
DD
L
f
MASTER TO SLAVE
-3dB
= 8Ω
= 8Ω
CROSSTALK vs. FREQUENCY
= 5V
= 5.0V
0.5
100
vs. OUTPUT POWER
= 1/(2πR
-3dB
OUTPUT POWER (W)
SLAVE TO MASTER
FREQUENCY (Hz)
is well below the lowest fre-
1.0
1k
-3dB
IN
C
too high affects the
IN
1.5
10k
)
100k
2.0
15

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