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TLV320AIC3120IRHBR Datasheet(PDF) 10 Page - Texas Instruments

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Part # TLV320AIC3120IRHBR
Description  TLV320AIC3120 Low-Power Mono Audio Codec With Embedded miniDSP and Mono Class-D Speaker Amplifier
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

TLV320AIC3120IRHBR Datasheet(HTML) 10 Page - Texas Instruments

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10
TLV320AIC3120
SLAS653B – FEBRUARY 2010 – REVISED AUGUST 2016
www.ti.com
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Product Folder Links: TLV320AIC3120
Specifications
Copyright © 2010–2016, Texas Instruments Incorporated
Electrical Characteristics (continued)
At 25°C, AVDD = HPVDD = IOVDD = 3.3 V, SPKVDD = 3.6V, DVDD = 1.8 V, fS (audio) = 48 kHz, CODEC_CLKIN = 256 ×
fS, PLL = Off, VOL/MICDET pin disabled (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
(4)
DAC to speaker-out PSRR is a differential measurement calculated as PSRR = 20 × log(ΔVSPK(P + M) / ΔVSPKVDD).
DAC LINEOUT (HP Driver in Lineout Mode)
SNR
Signal-to-noise ratio
Measured as idle-channel noise, A-weighted
95
dB
THD
Total harmonic distortion
0-dBFS input, 0-dB gain
–86
dB
THD+N
Total harmonic distortion + noise
0-dBFS input, 0-dB gain
–83
dB
DAC Digital Interpolation Filter Characteristics
See Section 7.3.12.1.4 for DAC interpolation filter characteristics.
DAC Output to Class-D SPEAKER OUTPUT; Load = 4 Ω (Differential), 50 pF
Output voltage
SPKVDD = 3.6 V, BTL measurement, DAC input = 0 dBFS, CM = 1.8 V, class-D gain
= 6 dB, THD = –16.5 dB
2.3
VRMS
SPKVDD = 3.6 V, BTL measurement, DAC input = –2 dBFS, CM = 1.8 V, class-D
gain = 6 dB, THD = –20 dB
2.1
Output, common-mode
SPKVDD = 3.6 V, BTL measurement, DAC input = mute, class-D gain = 6 dB
1.8
V
SNR
Signal-to-noise ratio
SPKVDD = 3.6 V, BTL measurement, class-D gain = 6 dB, measured as idle-channel
noise, A-weighted (with respect to full-scale output value of 2.3 VRMS)
(1) (2)
88
dB
THD
Total harmonic distortion
–65
dB
THD+N
Total harmonic distortion + noise
SPKVDD = 3.6 V, BTL measurement, DAC input = –6 dBFS, CM = 1.8 V, class-D
gain = 6 dB
–63
dB
PSRR
Power-supply rejection ratio
(4)
SPKVDD = 3.6 V, BTL measurement, ripple on SPKVDD = 200 mVp-p at 1 kHz
–44
dB
Mute attenuation
110
dB
PO
Maximum output power
SPKVDD = 3.6 V, BTL measurement, CM = 1.8 V, class-D gain = 18 dB, THD = 10%
1
W
SPKVDD = 4.3 V, BTL measurement, CM = 1.8 V, class-D gain = 18 dB, THD = 10%
1.5
W
SPKVDD = 5.5 V, BTL measurement, CM = 1.8 V, class-D gain = 18 dB, THD = 10%
2.5
W
DAC OUTPUT to CLASS-D SPEAKER OUTPUT; Load = 8 Ω (Differential), 50 pF
Output voltage
SPKVDD = 3.6 V, BTL measurement, DAC input = 0 dBFS, CM = 1.8 V, class-D gain
= 6 dB, THD = –16.5 dB
2.2
VRMS
SPKVDD = 3.6 V, BTL measurement, DAC input = –2 dBFS, CM = 1.8 V, class-D
gain = 6 dB, THD = –20 dB
2.1
VRMS
Output, common-mode
SPKVDD = 3.6 V, BTL measurement, DAC input = mute, class-D gain = 6 dB
1.8
V
SNR
Signal-to-noise ratio
SPKVDD = 3.6 V, BTL measurement, class-D gain = 6 dB, measured as idle-channel
noise, A-weighted (with respect to full-scale output value of 2.2 VRMS)
87
dB
THD
Total harmonic distortion
SPKVDD = 3.6 V, BTL measurement, DAC input = –6 dBFS, CM = 1.8 V, class-D
gain = 6 dB
–67
dB
THD+N
Total harmonic distortion + noise
SPKVDD = 3.6 V, BTL measurement, DAC input = –6 dBFS, CM = 1.8 V, class-D
gain = 6 dB
–66
dB
PSRR
Power-supply rejection ratio
(4)
SPKVDD = 3.6 V, BTL measurement, ripple on SPKVDD = 200 mVp-p at 1 kHz
–44
dB
Mute attenuation
110
dB
PO
Maximum output power
SPKVDD = 3.6 V, BTL measurement, CM = 1.8 V, class-D gain = 18 dB, THD = 10%
0.7
W
SPKVDD = 4.3 V, BTL measurement, CM = 1.8 V, class-D gain = 18 dB, THD = 10%
1
SPKVDD = 5.5 V, BTL measurement, CM = 1.8 V, class-D gain = 18 dB, THD = 10%
1.6
Output-stage leakage current for direct
battery connection
SPKVDD = 4.3 V, device is powered down (power-up-reset condition)
80
nA
ADC and DAC POWER CONSUMPTION
For ADC and DAC power consumption based per selected processing block, see Section 7.3.9.
DIGITAL INPUT/OUTPUT
Logic family
CMOS
VIH
Logic Level
IIH = 5 µA, IOVDD = 1.6 V
0.7 ×
IOVDD
V
IIH = 5 µA, IOVDD = 1.6 V
IOVDD
VIL
IIL = 5 µA, IOVDD = 1.6 V
–0.3
0.3 ×
IOVDD
IIL = 5 µA, IOVDD = 1.6 V
0
VOH
IOH = 2 TTL loads
0.8 ×
IOVDD
VOL
IOL = 2 TTL loads
0.1 ×
IOVDD
Capacitive load
10
pF


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