UDA1380

Features: 1.1 General` 2.4 to 3.6 V power supply` 5 V tolerant digital inputs (at 2.4 to 3.6 V power supply)` 24-bit data path for Analog-to-Digital Converter (ADC) and Digital-to-Analog Converter (DAC)` Selectable control via L3-bus microcontroller interface or I2C-bus interface; choice of 2 devi...

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SeekIC No. : 004536261 Detail

UDA1380: Features: 1.1 General` 2.4 to 3.6 V power supply` 5 V tolerant digital inputs (at 2.4 to 3.6 V power supply)` 24-bit data path for Analog-to-Digital Converter (ADC) and Digital-to-Analog Converter (...

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Part Number:
UDA1380
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/22

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Product Details

Description



Features:

1.1 General
` 2.4 to 3.6 V power supply
` 5 V tolerant digital inputs (at 2.4 to 3.6 V power supply)
` 24-bit data path for Analog-to-Digital Converter (ADC) and Digital-to-Analog Converter (DAC)
` Selectable control via L3-bus microcontroller interface or I2C-bus interface; choice of 2 device addresses in L3-bus and I2C-bus mode
    Remark: This device does not have a static mode
` Supports sample frequencies from 8 to 55 kHz for the ADC part, and 8 to 100 kHz for the DAC part. The ADC cannot support DVD audio (96 kHz audio), only Mini-Disc (MD), Compact-Disc (CD) and Moving Picture Experts Group Layer-3 Audio (MP3). For playback 8 to 100 kHz is specified. DVD playback is supported
` Power management unit:
    Separate power control for ADC, Automatic Volume Control (AVC), DAC, Phase Locked Loop (PLL) and headphone driver
    Analog blocks like ADC and Programmable Gain Amplifier (PGA) have a block to power-down the bias circuits
    When ADC and/or DAC are powered-down, also the clocks to these blocks are stopped to save power
    Remark: By default, when the IC is powered-up, the complete chip will be in the Power-down mode.
` ADC part and DAC part can run at different frequencies, either system clock or Word Select PLL (WSPLL)
` ADC and PGA plus integrated high-pass filter to cancel DC offset
` The decimation filter is equipped with a digital Automatic Gain Control (AGC)
` Mono microphone input with Low Noise Amplifier (LNA) of 29 dB fixed gain and Variable Gain Control (VGA) from 0 to 30 dB in steps of 2 dB
` Integrated digital filter plus DAC
` Separate single-ended line output and one stereo headphone output, capable of driving a 16 W load. The headphone driver has a built-in short-circuit protection with status bits which can be read out from the L3-bus or I2C-bus interface
` Digital silence detection in the interpolator (playback) with read-out status via L3-bus or I2C-bus interface
` Easy application.
1.2 Multiple format data input interface
` Slave BCK and WS signals
` I2S-bus format
` MSB-justified format compatible
` LSB-justified format compatible.
1.3 Multiple format data output interface
` Select option for digital output interface: either the decimator output (ADC signal) or the output signal of the digital mixer which is in the interpolator DSP
` Selectable master or slave BCK and WS signals for digital ADC output
    Remark: SYSCLK must be applied in WSPLL mode and master mode
` I2S-bus format
` MSB-justified format compatible
` LSB-justified format compatible.
1.4 ADC front-end features
` ADC plus decimator can run at either WSPLL, regenerating the clock from WSI signal, or on SYSCLK
` Stereo line input with PGA: gain range from 0 to 24 dB in steps of 3 dB
` LNA with 29 dB fixed gain for mono microphone input, including VGA with gain from 0 to 30 dB in steps of 2 dB
` Digital left and right independent volume control and mute from +24 to -63.5 dB in steps of 0.5 dB.
1.5 DAC features
` DAC plus interpolator can run at either WSPLL (regenerating the clock from WSI) or at SYSCLK
` Separate digital logarithmic volume control for left and right channels via L3-bus or I2C-bus from 0 to -78 dB in steps of 0.25 dB
` Digital tone control, bass boost and treble via L3-bus or I2C-bus interface
` Digital de-emphasis for sample frequencies of: 32, 44.1, 48 and 96 kHz via L3-bus or I2C-bus interface
` Cosine roll-off soft mute function
` Output signal polarity control via L3-bus or I2C-bus interface
` Digital mixer for mixing ADC output signal and digital serial input signal, if they run at the same sampling frequency.



Application

This audio coder-decoder is suitable for home and portable applications like MD, CD and MP3 players.


Pinout

  Connection Diagram


Specifications

SYMBOL PARAMETER CONDITIONS MIN. MAX.
UNIT
VDD supply voltage note 1 - 4
V
Txtal(max) maximum crystal temperature - 150
Tstg storage temperature -65 +125
Tamb ambient temperature -40 +85
Vesd electrostatic discharge voltage note 2 -1100 +1100
V
note 3 -250 +250
V
Ilu(prot) latch-up protection current Tamb = 125 °C; VDD = 3.6 V - 200
mA
Isc(DAC) short-circuit current of DAC Tamb = 0 °C; VDD = 3 V; note 4
output short-circuited to VSSA(DAC)
output short-circuited to VDDA(DAC)
-
-
450
325
mA
mA

Notes
1. All supply connections must be made to the same power supply.
2. Equivalent to discharging a 100 pF capacitor via a 1.5 k series resistor.
3. Equivalent to discharging a 200 pF capacitor via a 0.75 H series inductor.
4. DAC operation after short-circuiting cannot be warranted.



Description

The UDA1380 is a stereo audio coder-decoder, available in TSSOP32 (UDA1380TT) and HVQFN32 (UDA1380HN) packages. All functions and features are identical for both package versions. The term 'UDA1380' in this document refers to both UDA1380TT and UDA1380HN, unless particularly specified.

The front-end of the UDA1380 is equipped with a stereo line input, which has a PGA control, and a mono microphone input with an LNA and a VGA. The digital decimation filter is equipped with an AGC which can be used in case of voice-recording.

The DAC part is equipped with a stereo line output and a headphone driver output. The headphone driver is capable of driving a 16 load. The headphone driver is also capable of driving a headphone without the need for external DC decoupling capacitors, since the headphone can be connected to a pin VREF(HP) on the chip.

In addition, there is a built-in short-circuit protection for the headphone driver output which, in case of short-circuit, limits the current through the operational amplifiers and signals the event via its L3-bus or I2C-bus register.

The UDA1380 also supports an application mode in which the coder-decoder itself is not running, but an analog signal, for instance coming from an FM tuner, can be controlled in gain, and applied to the output via the headphone driver and line outputs.

The UDA1380 supports the I2S-bus data format with word lengths of up to 24 bits, the MSB-justified data format with word lengths of up to 24 bits and the LSB-justified serial data format with word lengths of 16, 18, 20 or 24 bits (LSB-justified 24 bits is only supported for the output interface).

The UDA1380 has sound processing features in playback mode, de-emphasis, volume, mute, bass boost and treble which can be controlled by the L3-bus or I2C-bus interface.




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