WM8352GEB/V Wolfson Microelectronics, WM8352GEB/V Datasheet - Page 188

Audio CODECs Audio CODEC plus pwr management

WM8352GEB/V

Manufacturer Part Number
WM8352GEB/V
Description
Audio CODECs Audio CODEC plus pwr management
Manufacturer
Wolfson Microelectronics
Datasheet

Specifications of WM8352GEB/V

Number Of Adc Inputs
2
Number Of Dac Outputs
2
Conversion Rate
48 KSPS
Interface Type
Serial (2-Wire, 3-Wire, 4-Wire)
Resolution
12 bit
Operating Supply Voltage
3.7 V
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
BGA
Minimum Operating Temperature
- 25 C
Number Of Channels
2 ADC/2 DAC
Supply Current
260 uA
Thd Plus Noise
- 83 dB
Audio Codec Type
Stereo
No. Of Adcs
2
No. Of Dacs
2
No. Of Input Channels
8
No. Of Output Channels
6
Adc / Dac Resolution
24bit
Adcs / Dacs Signal To Noise Ratio
95dB
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
WM8352
21 VOLTAGE REFERENCES
21.1 MAIN REFERENCE (VREF)
21.2 LOW-POWER REFERENCE
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The WM8352 generates several reference voltages used for different purposes.
The main reference voltage VREF, and additional internal references derived from it, are used in the
DC-DC converters, the LDO regulators and the auxiliary ADC. VREF is highly stable, accurate, and
independent of the supply voltage. It can be trimmed for improved accuracy.
The VRTC regulator (see Section 17.6) uses a separate, low-power reference at start-up.
The mid-rail reference VMID is used in the audio CODEC. It is generated from AVDD.
Each reference voltage is internally provided to those parts of the WM8352 where it is needed.
The main reference generates a highly accurate reference voltage VREF. It requires a decoupling
capacitor on the C_REF pin; a 2.2uF X5R capacitor is recommended, as noted in Section 29.2; and
an accurate resistor on the R_REF pin; a 100kΩ (1%) resistor is recommended, as noted in
Section 29.2.
The WM8352 will malfunction if those components are omitted.
The accuracy of supply voltages generated by the WM8352 depends on VREF, and can be improved
by trimming. This scales VREF by up to +15/-16% in 1% steps, to compensate for deviations from
the nominal value.
The main reference can be overdriven with an externally generated reference voltage, if desired.
The low-power reference determines the accuracy of VRTC on start-up. Once the main bandgap has
been trimmed and has settled VRTC switches across to the main bandgap for greater accuracy.
PD, March 2010, Rev 4.2
Production Data
188

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