Ameba-D User Manual
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332
Digital Gain Resolution
0.375
dB
Output Voltage Full-scale Swing
X = 0.8*AVCC/2.828 (V
RMS
)
AVCC=1.70V
509 (1.44)
mV
RMS
(V
PP
)
AVCC=2.8V
800 (2.24)
Maximum Output Power
16Ω load
AVCC=1.70V
16
mW
AVCC=2.8V
40
32Ω load
AVCC=1.70V
8
AVCC=2.8V
20
Allowed Load
Resistive
16
O.C.
Ω
Capacitive
1500
pF
THD+N
100KΩ load
0.005
0.01
%
16Ω load
0.01
0.05
Signal to Noise Ratio
(SNR @ earphone load)
16Ω load, 0dBFS input relative to digital silence
96
dB
L/R output variation
L vs. R, measured at -10dBFS@1kHz input
±0.1 (< 1%)
±0.2
dB
L/R output variation (IC by IC)
±0.2 (< 2%)
dB
Crosstalk between channels
L vs. R, measured at -10dBFS@1kHz input
-80
dB
Power ON pop noise
Cap-less mode
-66
dBV
Single-ended mode
-60 (1mV
RMS
)
dBV
Differential mode
-66
dBV
Analog supply voltage (AVCC)
For earphone: AVCC=1.7V
For earphone/speakers: AVCC=2.8V
1.7
2.8
3.0
V
Digital supply voltage (DVDD)
0.99
1.1
1.21
V
17.4.2
ADC Path
The ADC path electrical characteristics are illustrated in Table 17-4.
Table 17-4 ADC path electrical characteristics
Item
Conditions
Minimum
Typical
Maximum
Unit
Resolution
16
Bits
Input sample rate, F
sample
8/16/32/44.1/48/ 88.2/96kHz
Note
: Better to have 88.2/96kHz
8
96
kHz
Signal to Noise Ratio (SNR @Line-in mode)
f
in
=1kHz
B/W=20~20kHz
THD+N < 0.1%
800mV
RMS
input
(AVCC=2.8V)
8kHz
88
dB
16kHz
88
32kHz
88
44.1kHz
88
48kHz
88
Signal to Noise Ratio (SNR @MIC mode)
fin=1kHz
B/W=20~20kHz
THD+N < 0.5%
800mV
RMS
input
40dB gain
(AVCC=2.8V)
8/16kHz
87
dB
Digital Gain
-17.625
30
dB
Digital Gain Resolution
0.375
dB
MIC Boost Gain
0/20/30/40dB
0
20
40
dB
Input full-scale at maximum gain (differential)
Gain=40dB
2.828*AVCC
mV
RMS
Input full-scale at minimum gain (differential)
Gain=0dB
0.8*AVCC
V
PP
3dB bandwidth
20
kHz
Microphone mode
Input impedance
Input impedance
6
10
kΩ
Input capacitance
20
pF
THD+N (microphone input) @30mV
RMS
input
0.02
%
THD+N (line input) @-3dBFS
0.01
%
ADC channels
2
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2019-05-15 10:08:03