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SLES100 − DECEMBER 2003
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D
D
5-V Tolerant Digital Inputs
FEATURES
Small 28-Lead SSOP Package, Lead-Free
Product
D
24-Bit Resolution
D
Analog Performance:
− Dynamic Range: 123 dB
− THD+N: 0.0005%
APPLICATIONS
D
D
D
D
D
D
D
A/V Receivers
D
D
Differential Current Output: 4 mA p-p
SACD Players
8× Oversampling Digital Filter:
− Stop-Band Attenuation: –98 dB
− Pass-Band Ripple: 0.0002 dB
DVD Players
HDTV Receivers
D
D
Sampling Frequency: 10 kHz to 200 kHz
System Clock: 128, 192, 256, 384, 512, or
Car Audio Systems
Digital Multitrack Recorders
Other Applications Requiring 24-Bit Audio
768 f With Autodetect
S
D
Accepts 16-, 20-, and 24-Bit Audio Data
2
D
PCM Data Formats: Standard, I S, and
DESCRIPTION
Left-Justified
The PCM1796 is a monolithic CMOS integrated circuit that
includes stereo digital-to-analog converters and support
circuitry in a small 28-lead SSOP package. The data
converters use TI’s advanced segment DAC architecture
to achieve excellent dynamic performance and improved
tolerance to clock jitter. The PCM1796 provides balanced
current outputs, allowing the user to optimize analog
performance externally. The PCM1796 accepts PCM and
DSD audio data formats, providing easy interfacing to
audio DSP and decoder chips. The PCM1796 also
interfaces with external digital filter devices (DF1704,
DF1706, PMD200). Sampling rates up to 200 kHz are
supported. A full set of user-programmable functions is
accessible through an SPI or I2C serial control port, which
supports register write and readback functions. The
PCM1796 also supports the time division multiplexed
command and audio (TDMCA) data format.
D
D
DSD Format Interface Available
Interface Available for Optional External
Digital Filter or DSP
2
D
TDMCA or Serial Port (SPI/I C)
D
User-Programmable Mode Controls:
− Digital Attenuation: 0 dB to –120 dB,
0.5 dB/Step
− Digital De-Emphasis
− Digital Filter Rolloff: Sharp or Slow
− Soft Mute
− Zero Flag for Each Output
D
D
Compatible With PCM1792 (Pins and Mode
Controls)
Dual Supply Operation:
− 5-V Analog, 3.3-V Digital
This integrated circuit can be damaged by ESD. Texas Instruments recommends that all integrated circuits be handled with appropriate
precautions. Failure to observe proper handling and installation procedures can cause damage.
ESD damage can range from subtle performance degradation to complete device failure. Precision integrated circuits may be more susceptible to
damage because very small parametric changes could cause the device not to meet its published specifications.
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments
semiconductor products and disclaimers thereto appears at the end of this data sheet.
ꢀꢛ ꢚ ꢖꢙ ꢁ ꢌꢋ ꢚꢔ ꢖ ꢒꢌꢒ ꢜꢝ ꢞꢟ ꢠ ꢡꢢ ꢣꢜꢟꢝ ꢜꢤ ꢥꢦ ꢠ ꢠ ꢧꢝꢣ ꢢꢤ ꢟꢞ ꢨꢦꢩ ꢪꢜꢥ ꢢꢣꢜ ꢟꢝ ꢫꢢ ꢣꢧꢬ ꢀꢠ ꢟꢫꢦ ꢥꢣꢤ
ꢥ ꢟꢝ ꢞꢟꢠ ꢡ ꢣꢟ ꢤ ꢨꢧ ꢥ ꢜ ꢞꢜ ꢥ ꢢ ꢣꢜ ꢟꢝꢤ ꢨ ꢧꢠ ꢣꢭꢧ ꢣꢧ ꢠ ꢡꢤ ꢟꢞ ꢌꢧꢮ ꢢꢤ ꢋꢝꢤ ꢣꢠ ꢦꢡ ꢧꢝꢣ ꢤ ꢤꢣ ꢢꢝꢫ ꢢꢠ ꢫ ꢯ ꢢꢠ ꢠ ꢢ ꢝꢣꢰꢬ
ꢀꢠ ꢟ ꢫꢦꢥ ꢣ ꢜꢟ ꢝ ꢨꢠ ꢟ ꢥ ꢧ ꢤ ꢤ ꢜꢝ ꢱ ꢫꢟ ꢧ ꢤ ꢝꢟꢣ ꢝꢧ ꢥꢧ ꢤꢤ ꢢꢠ ꢜꢪ ꢰ ꢜꢝꢥ ꢪꢦꢫ ꢧ ꢣꢧ ꢤꢣꢜ ꢝꢱ ꢟꢞ ꢢꢪ ꢪ ꢨꢢ ꢠ ꢢꢡ ꢧꢣꢧ ꢠ ꢤꢬ
Copyright 2003, Texas Instruments Incorporated