max9758etjt Maxim Integrated Products, Inc., max9758etjt Datasheet - Page 5

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max9758etjt

Manufacturer Part Number
max9758etjt
Description
2.3w Stereo Speaker Amplifiers And Directdrive Headphone Amplifiers With Automatic Level Control
Manufacturer
Maxim Integrated Products, Inc.
Datasheet
ELECTRICAL CHARACTERISTICS (continued)
(V
= 1µF, C
terminated between HP_ and GND, GAIN1 = GAIN2 = GAIN3 = VOL = 0 (A
otherwise noted. Typical values are at T
Note 1: All devices are 100% production tested at room temperature. All temperature limits are guaranteed by design.
Note 2: PSRR is specified with the amplifier input connected to GND through R
Note 3: Output power levels are measured with the TQFN’s exposed paddle soldered to the ground plane.
Note 4: Speaker path gain is defined as: A
Note 5: Speaker mode testing performed with 8Ω resistive load connected across BTL output. Headphone mode testing per-
Note 6: Headphone path gain is defined as: A
Note 7: See Table 3 for detains on the mute levels.
Note 8: Attack envelope is exponential. Attack time is defined as the 15 x 10
Note 9: Time for the gain to return to within 10% of nominal gain setting after the input signal has fallen below the PREF threshold.
Note 10: Dropout voltage is defined as (V
LOGIC INPUT HEADPHONE (HPS)
Input High Voltage
Input Low Voltage
HPS Pullup Current
LOW-DROPOUT LINEAR REGULATOR
Input Voltage Range
Supply (Ground) Current
Shutdown Current
Output Current
Fixed Output Voltage Accuracy
Adjustable Output Voltage Range
SET Reference Voltage
SET Dual-Mode Threshold
SET Input Leakage Current
Dropout Voltage (Note 10)
Output Current Limit
Startup Time
Line Regulation
Load Regulation
Ripple Rejection
Output Voltage Noise
Headphone Amplifiers with Automatic Level Control
DD
= PV
PVSS
formed with 32Ω resistive load connected between HP_ and GND. Mode transitions are controlled by SHDN.
Release is linear in dB. Release time is proportional to magnitude of gain compression.
DD
PARAMETER
2.3W Stereo Speaker Amplifiers and DirectDrive
= HPV
= 1µF, C1 = C2 = 1µF, PREF = unconnected, speaker loads terminated between OUT_+ and OUT_-, headphone load
DD
_______________________________________________________________________________________
= CPV
DD
= IN = +5.0V, GND = PGND = CPGND = 0, SHDN = V
SYMBOL
I
∆V
A
SHDN
V
I
I
I
V
V
OUT
V
SET
LIM
I
SET
= +25°C.) (Note 1)
Q
IH
IN
IL
OD
IN
VSPKR
- V
OUT
VHP
Inferred from line regulation
I
I
REGEN = 0V
I
V
output operation)
V
I
V
V
20Hz to 22kHz, C
I
OUT
OUT
OUT
OUT
OUT
OUT
IN
OUT
RIPPLE
= (V
) when V
= V
= 3.5V to 5.5V, V
= 0mA, SHDN = GND
= 150mA
= 1mA
= 1mA
= 150mA, V
OUT+
= 4.65V (fixed
= 4.65V, 1mA < I
HP_
= 200mV
/V
OUT
- V
IN__
OUT-
CONDITIONS
is 2% below the value of V
.
OUT
P-P
OUT
)/V
OUT
= 4.65V
IN__
= 2 x 1µF,
OUT
I
I
OUT
OUT
= 2.5V,
).
V(SP)
< 150mA
= 50mA
= 150mA
3
x C
f = 1kHz
f = 10kHz
IN
= 15dB, A
T
and C
.
DD
IN
OUT
V(HP)
, REGEN = V
.
for V
= 0dB), T
V
MIN
1.19
-0.1
150
3.5
SET
2
IN
= V
DD
A
+0.01
OUT(NOM)
TYP
1.21
±20
, DR = SET = GND, C
100
350
200
100
300
100
0.1
0.5
35
25
20
60
50
= -40°C to +85°C, unless
±500
MAX
±1.5
+0.1
4.85
1.23
+ 1V.
160
150
0.8
5.5
50
3
UNITS
µV
%/V
mA
mV
mV
mA
µA
µA
µA
nA
dB
µs
%
%
V
V
V
V
V
RMS
BIAS
5

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