DSD1793 TI | Alldatasheet
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Technical content
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 /C0050/C0052/C0262/C0066/C0073/C0084/C0044 /C0049/C0057/C0050/C0262/C0107/C0072/C0122 /C0083/C0065/C0077/C0080/C0076/C0073/C0078/C0071/C0044 /C0065/C0068/C0086/C0065/C0078/C0067/C0069/C0068 /C0083/C0069/C0071/C0077/C0069/C0078/C0084/C0044 /C0065/C0085/C0068/C0073/C0079 /C0083/C0084/C0069/C0082/C0069/C0079 /C0068/C0073/C0071/C0073/C0084/C0065/C0076/C0262/C0084/C0079/C0262/C0065/C0078/C0065/C0076/C0079/C0071 /C0067/C0079/C0078/C0086/C0069/C0082/C0084/C0069/C0082
FEATURES
/C0068Supports Both DSD and PCM Formats /C006824-Bit Resolution /C0068Analog Performance: − Dynamic Range: 113 dB − THD+N: 0.001% − Full-Scale Output: 2.1 V rms (at Postamplifier) /C0068Differential Voltage Output: 3.2 V p-p /C00688× Oversampling Digital Filter: − Stop-Band Attenuation: –82 dB − Pass-Band Ripple: ±0.002 dB /C0068Sampling Frequency: 10 kHz to 200 kHz /C0068System Clock: 128, 192, 256, 384, 512, or 768 fS With Autodetect /C0068Accepts 16-, 20-, and 24-Bit Audio Data /C0068PCM Data Formats: Standard, I2S, and Left-Justified /C0068DSD Format Interface Available /C0068Optional Interface to External Digital Filter or DSP Available /C0068I2C-Compatible Serial Port /C0068User-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 Flags for Each Output in PCM and DSD Formats /C0068Dual Supply Operation: − 5-V Analog, 3.3-V Digital /C00685-V Tolerant Digital Inputs /C0068Small 28-Lead SSOP Package
APPLICATIONS
/C0068A/V Receivers /C0068SACD Players /C0068DVD Players /C0068HDTV Receivers /C0068Car Audio Systems /C0068Digital Multitrack Recorders /C0068Other Applications Requiring 24-Bit Audio
DESCRIPTION
The DSD1793 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 DSD1793 provides balanced voltage outputs, allowing the user to optimize analog performance externally. The DSD1793 accepts the PCM and DSD audio data formats, providing easy interfacing to audio DSP and decoder chips. The DSD1793 also accepts interfaces to 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 I 2C-compatible serial control port. 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. /C0080/C0082/C0079/C0068/C0085/C0067/C0084/C0073/C0079/C0078 /C0068/C0065/C0084/C0065 /C0105/C0110/C0102/C0111/C0114/C0109/C0097/C0116/C0105/C0111/C0110 /C0105/C0115 /C0099/C0117/C0114/C0114/C0101/C0110/C0116 /C0097/C0115 /C0111/C0102 /C0112/C0117/C0098/C0108/C0105/C0099/C0097/C0116/C0105/C0111/C0110 /C0100/C0097/C0116/C0101/C0046 /C0080/C0114/C0111/C0100/C0117/C0099/C0116/C0115 /C0099/C0111/C0110/C0102/C0111/C0114/C0109 /C0116/C0111 /C0115/C0112/C0101/C0099/C0105/C0102/C0105/C0099/C0097/C0116/C0105/C0111/C0110/C0115 /C0112/C0101/C0114 /C0116/C0104/C0101 /C0116/C0101/C0114/C0109/C0115 /C0111/C0102 /C0084/C0101/C0120/C0097/C0115 /C0073/C0110/C0115/C0116/C0114/C0117/C0109/C0101/C0110/C0116/C0115 /C0115/C0116/C0097/C0110/C0100/C0097/C0114/C0100 /C0119/C0097/C0114/C0114/C0097/C0110/C0116/C0121/C0046 /C0080/C0114/C0111/C0100/C0117/C0099/C0116/C0105/C0111/C0110 /C0112/C0114/C0111/C0099/C0101/C0115/C0115/C0105/C0110/C0103 /C0100/C0111/C0101/C0115 /C0110/C0111/C0116 /C0110/C0101/C0099/C0101/C0115/C0115/C0097/C0114/C0105/C0108/C0121 /C0105/C0110/C0099/C0108/C0117/C0100/C0101 /C0116/C0101/C0115/C0116/C0105/C0110/C0103 /C0111/C0102 /C0097/C0108/C0108 /C0112/C0097/C0114/C0097/C0109/C0101/C0116/C0101/C0114/C0115/C0046 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. /C0066/C0117/C0114/C0114/C0262/C0066/C0114/C0111/C0119/C0110 /C0080/C0114/C0111/C0100/C0117/C0099/C0116/C0115 /C0102/C0114/C0111/C0109 /C0084/C0101/C0120/C0097/C0115 /C0073/C0110/C0115/C0116/C0114/C0117/C0109/C0101/C0110/C0116/C0115 Copyright 2006, Texas Instruments Incorporated
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com
ORDERING INFORMATION
PRODUCT PACKAGE PACKAGE CODE OPERATION TEMPERATURE RANGE PACKAGE MARKING ORDERING NUMBER TRANSPORT MEDIA DSD1793DB 28-lead SSOP 28DB –25°C to 85°C DSD1793 DSD1793DB Tube DSD1793DB 28-lead SSOP 28DB –25°C to 85°C DSD1793 DSD1793DBR Tape and reel ABSOLUTE MAXIMUM RATINGS over operating free-air temperature range unless otherwise noted(1) DSD1791 Supply voltage VCC F, VCC L, VCC C, VCC R –0.3 V to 6.5 V Supply voltage VDD –0.3 V to 4 V Supply voltage differences: VCC F, VCC L, VCC C, VCC R ±0.1 V Ground voltage differences: AGNDF, AGNDL, AGNDC, AGNDR, DGND ±0.1 V Digital input voltage PLRCK, PDATA, PBCK, DSDL, DSDR, DBCK, ADR0, ADR1, SCK, SCL, SDA –0.3 V to 6.5 V Digital input voltageZEROL, ZEROR –0.3 V to (VDD + 0.3 V) < 4 V Analog input voltage –0.3 V to (VCC + 0.3 V) < 6.5 V Input current (any pins except supplies) ±10 mA Ambient temperature under bias –40°C to 125°C Storage temperature –55°C to 150°C Junction temperature 150°C Lead temperature (soldering) 260°C, 5 s Package temperature (IR reflow, peak) 260°C (1)Stresses beyond those listed under “absolute maximum ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under “recommended operating conditions” is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS
all specifications at TA = 25°C, VCC = 5 V, VDD = 3.3 V, fS = 44.1 kHz, system clock = 256 fS, and 24-bit data, unless otherwise noted PARAMETER DSD1793DB UNITPARAMETER MIN TYP MAX UNIT RESOLUTION 24 Bits DATA FORMAT (PCM Mode) Audio data interface format Standard, I2S, left justified Audio data bit length 16-, 20-, 24-bit selectable Audio data format MSB first, 2s complement fS Sampling frequency 10 200 kHz System clock frequency 128, 192, 256, 384, 512, 768 fS DATA FORMAT (DSD Mode) Audio data interface format DSD (direct stream digital) Audio data bit length 1 Bit fS Sampling frequency 2.8224 MHz System clock frequency 2.8224 11.2896 MHz
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com ELECTRICAL CHARACTERISTICS (Continued) all specifications at TA = 25°C, VCC = 5 V, VDD = 3.3 V, fS = 44.1 kHz, system clock = 256 fS, and 24-bit data, unless otherwise noted PARAMETER TEST CONDITIONS DSD1793DB UNITPARAMETER TEST CONDITIONS MIN TYP MAX UNIT DIGITAL INPUT/OUTPUT Logic family TTL compatible VIH Input logic level VDCVIL Input logic level 0.8 VDC IIH Input logic current VIN = VDD 10 µAIIL Input logic current VIN = 0 V –10 µA VOH Output logic level IOH = –2 mA 2.4 VDCVOL Output logic level IOL = 2 mA 0.4 VDC DYNAMIC PERFORMANCE (PCM MODE) (1) fS = 44.1 kHz 0.001% 0.002% THD+N at VOUT = 0 dB fS = 96 kHz 0.0015%THD+N at VOUT = 0 dB fS = 192 kHz 0.003% EIAJ, A-weighted, fS = 44.1 kHz 110 113 Dynamic range EIAJ, A-weighted, fS = 96 kHz 113 dBDynamic range EIAJ, A-weighted, fS = 192 kHz 113 dB EIAJ, A-weighted, fS = 44.1 kHz 110 113 Signal-to-noise ratio EIAJ, A-weighted, fS = 96 kHz 113 dBSignal-to-noise ratio EIAJ, A-weighted, fS = 192 kHz 113 dB fS = 44.1 kHz 106 110 Channel separation fS = 96 kHz 110 dBChannel separation fS = 192 kHz 109 dB Level linearity error VOUT = –120 dB ±1 dB DYNAMIC PERFORMANCE (DSD MODE) (1) (2) THD+N at VOUT = 0 dB 2.1 V rms 0.001% Dynamic range –60 dB, EIAJ, A-weighted 113 dB Signal-to-noise ratio EIAJ, A-weighted 113 dB ANALOG OUTPUT Gain error –8 ±3 8 % of FSR Gain mismatch, channel-to-channel –3 ±0.5 3 % of FSR Bipolar zero error At BPZ –2 ±0.5 2 % of FSR Differential output voltage (3) Full scale (0 dB) 3.2 V p-p Bipolar zero voltage (3) At BPZ 1.4 V Load impedance (3) R 1 = R2 1.7 kΩ (1)Dynamic performance and dc accuracy are specified at the output of the postamplifier as shown in Figure 32. Analog performance specifications are measured using the System Two/C0116 Cascade audio measurement system by Audio Precision/C0116 in the averaging mode. For all sampling-frequency operations, measurement bandwidth is limited with a 20-kHz AES17 filter. (2)Analog performance in the DSD mode is specified as the DSD modulation index of 100%. This is equilvalent to PCM mode performance at 44.1 kHz and 64 fS. (3)These parameters are defined at the DSD1793 output pins. Load impedances, R1 and R2, are input resistors of the postamplifier. They are defined as dc-coupled loads. Audio Precision and System Two are trademarks of Audio Precision, Inc. Other trademarks are the property of their respective owners.
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com ELECTRICAL CHARACTERISTICS (Continued) all specifications at TA = 25°C, VCC = 5 V, VDD = 3.3 V, fS = 44.1 kHz, system clock = 256 fS, and 24-bit data, unless otherwise noted PARAMETER TEST CONDITIONS DSD1793DB UNITPARAMETER TEST CONDITIONS MIN TYP MAX UNIT DIGITAL FILTER PERFORMANCE De-emphasis error ±0.1 dB FILTER CHARACTERISTICS-1: SHARP ROLLOFF Pass band ±0.002 dB 0.454 fSPass band –3 dB 0.49 fS Stop band 0.546 fS Pass-band ripple ±0.002 dB Stop-band attenuation Stop band = 0.546 fS –75 dBStop-band attenuation Stop band = 0.567 fS –82 dB Delay time 29/fS s FILTER CHARACTERISTICS-2: SLOW ROLLOFF Pass band ±0.04 dB 0.274 fSPass band –3 dB 0.454 fS Stop band 0.732 fS Pass-band ripple ±0.002 dB Stop-band attenuation Stop band = 0.732 fS –82 dB Delay time 29/fS s POWER SUPPLY REQUIREMENTS VDD Voltage range 3 3.3 3.6 VDC VCC Voltage range 4.5 5 5.5 VDC (1) fS = 44.1 kHz 6.5 8 IDD (1) fS = 96 kHz 13.5 mAIDD Supply current (1) fS = 192 kHz 28 mA Supply current (1) fS = 44.1 kHz 14 16 ICC fS = 96 kHz 15 mAICC fS = 192 kHz 16 mA (1) fS = 44.1 kHz 90 110 Power dissipation (1) fS = 96 kHz 120 mWPower dissipation (1) fS = 192 kHz 170 mW TEMPERATURE RANGE Operation temperature –25 85 °C θJA Thermal resistance 28-pin SSOP 100 °C/W (1)Input is BPZ data.
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com PIN ASSIGNMENTS PLRCK PBCK PDATA DBCK SCK ADR1 VDD DGND AGNDF VCC R AGNDR VOUT R– VOUT R+ VCOM ADR0 SCL SDA DSDL DSDR ZEROL ZEROR V CC F VCC L AGNDL V OUT L– VOUT L+ AGNDC V CC C DSD1793 (TOP VIEW)
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com Terminal Functions TERMINAL I/O DESCRIPTIONSNAME PIN I/O DESCRIPTIONS ADR0 28 I I2C address 0 (1) ADR1 6 I I2C address 1 (1) AGNDC 16 – Analog ground (internal bias and current DAC) AGNDF 9 – Analog ground (DACFF) AGNDL 19 – Analog ground (L-channel I/V) AGNDR 11 – Analog ground (R-channel I/V) DBCK 4 I Bit clock input for DSD mode (1) DGND 8 – Digital ground DSDL 25 I L-channel audio data input for DSD mode (1) DSDR 24 I R-channel audio data input for DSD mode (1) PBCK 2 I Bit clock input for PCM mode (1) PDATA 3 I Serial audio data input for PCM mode (1) PLRCK 1 I Left and right clock (fS) input for PCM mode (1) SCK 5 I System clock input (1) SCL 27 I I2C clock (1) SDA 26 I/O I2C data (2) VCC C 15 – Analog power supply (internal bias and current DAC), 5 V VCC F 21 – Analog power supply (DACFF), 5 V VCC L 20 – Analog power supply (L-channel I/V), 5 V VCC R 10 – Analog power supply (R-channel I/V), 5 V VCOM 14 – Internal bias decoupling pin VDD 7 – Digital power supply, 3.3 V VOUT L+ 17 O L-channel analog voltage output + VOUT L– 18 O L-channel analog voltage output – VOUT R+ 13 O R-channel analog voltage output + VOUT R– 12 O R-channel analog voltage output – ZEROL 23 O Zero flag for L-channel ZEROR 22 O Zero flag for R-channel (1)Schmitt-trigger input, 5-V tolerant (2)Schmitt-trigger input and output. 5-V tolerant input, and open-drain, 3-state output
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com FUNCTIONAL BLOCK DIAGRAM Power Supply DSDL SCK Advanced Segment DAC Modulator VOUT L+ VOUT L– Bias and Vref VCC F VDD AGNDR VCC R AGNDL AGNDF D/S and Filter/C00328 Oversampling Digital Filter and Function Control Audio Data Input I/F PLRCK PBCK PDATA SDA SCL ADR0 ADR1 AGNDC VCC C DGND Current Segment DAC and I/V Buffer VCOM Function Control I/F Zero Detect ZEROL ZEROR System Clock Manager DSDR DBCK VCC L VOUT R– VOUT R+ D/S and Filter Current Segment DAC and I/V Buffer
1024 System Clocks
2.4 V (Max)
2 V (Typ)
1.6 V (Min)
Figure 25. Power-On Reset Timing
relation between PLRCK and the system clock. The DSD1793 supports industry-standard audio data formats, including standard right-justified, I2S, and left-justified.
- The default data format is 24-bit I
shows a detailed timing diagram for the serial audio interface. Figure 26. Timing of Audio Interface
Figure 27. Audio Data Input Formats
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com External Digital Filter Interface and Timing The DSD1793 supports an external digital filter interface with a 3- or 4-wire synchronous serial port, which allows the use of an external digital filter. External filters include the Texas Instruments DF1704 and DF1706, the Pacific Microsonics PMD200, or a programmable digital signal processor. In the external DF mode, PLRCK (pin 1), PBCK (pin 2) and PDATA (pin 3) are defined as WDCK, the word clock; BCK, the bit clock; and DATA, the monaural data, respectively. The external digital filter interface is selected by using the DFTH bit of control register 20, which functions to bypass the internal digital filter of the DSD1793. When the DFMS bit of control register 19 is set, the DSD1793 can process stereo data. In this case, DSDL (pin 25) and DSDR (pin 24) are defined as L-channel data and R-channel data input, respectively. Detailed information for the external digital filter interface mode is provided in the APPLICATION FOR EXTERNAL DIGITAL FILTER INTERFACE section of this data sheet. Direct Stream Digital (DSD) Format Interface and Timing The DSD1793 supports the DSD format interface operation, which includes out-of-band noise filtering using an internal analog FIR filter. The DSD format interface consists of a 3-wire synchronous serial port, which includes DBCK (pin 4), DSDL (pin 25), and DSDR (pin 24). DBCK is the serial bit clock. DSDL and DSDR are L-channel and R-channel DSD data input, respectively. They are clocked into the DSD1793 on the rising edge of DBCK. PLRCK (pin 1) and PBCK (pin 2) must be connected to GND in the DSD mode. The DSD format (DSD mode) interface is activated by setting the DSD bit of control register 20. Detailed information for the DSD mode is provided in the APPLICATION FOR DSD FORMAT (DSD MODE) INTERFACE section of this data sheet.
DSD1793 sets ZEROL (pin 23) and ZEROR (pin 22) to HIGH. Table 2. Zero Conditions PCM DATA is continuously LOW for 1024 LRCKs. External DF modeDATA is continuously LOW for 1024 WDCKs. DZ0 There are an equal number of 1s and 0s in every 8 bits of DSD input data for 23 ms. DSD DZ1 The input data is 1001 0110 continuously for 23 ms. device. This protocol is explained in I2C specification 2.0. responds when it receives its own slave address. Figure 28. Basic I2C Framework
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com Case 2: 1. t(SCK) > 120 ns 2. t(S-HD) or t(RS-HD) < t(SCK) × 5 3. Spike noise exists on both SCL and SDA during the hold time. SCL SDA Noise When these conditions occur at the same time, the DSD1793 fails to detect a start condition. Case 3: 1. t(SCK) < 50 ns 2. t(SP) > t(SCK) 3. Spike noise exists on SCL just after SCL goes LOW. 4. Spike noise exists on SDA just before SCL goes LOW. SCL SDA Noise When these conditions occur at the same time, the DSD1793 erroneously detects a start or stop condition.
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com TIMING DIAGRAM SDA SCL t(BUF) t(D-SU) t(D-HD) Start t(LOW) t(S-HD) t(SCL-F) t(SCL-R) t(HI) Repeated Start t(RS-SU) t(RS-HD) t(SDA-F) t(SDA-R) t(P-SU) Stop t(SP) TIMING CHARACTERISTICS PARAMETER CONDITIONS MIN MAX UNIT f(SCL) SCL clock frequency Standard 100 kHzf(SCL) SCL clock frequency Fast 400 kHz t(BUF) Bus free time between stop and start conditions Standard 4.7 µst(BUF) Bus free time between stop and start conditions Fast 1.3 µs t(LOW) Low period of the SCL clock Standard 4.7 µst(LOW) Low period of the SCL clock Fast 1.3 µs t(HI) High period of the SCL clock Standard 4 µs t(HI) High period of the SCL clock Fast 600 ns t(RS-SU) Setup time for (repeated) start condition Standard 4.7 µs t(RS-SU) Setup time for (repeated) start condition Fast 600 ns t(S-HD) Hold time for (repeated) start condition Standard 4 µs t(RS-HD) Hold time for (repeated) start condition Fast 600 ns t(D-SU) Data setup time Standard 250 nst(D-SU) Data setup time Fast 100 ns t(D-HD) Data hold time Standard 0 900 nst(D-HD) Data hold time Fast 0 900 ns t(SCL-R) Rise time of SCL signal Standard 20 + 0.1 CB 1000 nst(SCL-R) Rise time of SCL signal Fast 20 + 0.1 CB 300 ns t(SCL-R1) Rise time of SCL signal after a repeated start condition and after anStandard 20 + 0.1 CB 1000 nst(SCL-R1) Rise time of SCL signal after a repeated start condition and after an acknowledge bit Fast 20 + 0.1 CB 300 ns t(SCL-F) Fall time of SCL signal Standard 20 + 0.1 CB 1000 nst(SCL-F) Fall time of SCL signal Fast 20 + 0.1 CB 300 ns t(SDA-R) Rise time of SDA signal Standard 20 + 0.1 CB 1000 nst(SDA-R ) Rise time of SDA signal Fast 20 + 0.1 CB 300 ns t(SDA-F) Fall time of SDA signal Standard 20 + 0.1 CB 1000 nst(SDA-F) Fall time of SDA signal Fast 20 + 0.1 CB 300 ns t(P-SU) Setup time for stop condition Standard 4 µs t(P-SU) Setup time for stop condition Fast 600 ns C (B) Capacitive load for SDA and SCL line 400 pF t(SP) Pulse duration of suppressed spike Fast 50 ns VNH Noise margin at high level for each connected device (including hysteresis) 0.2 VDD V
The DSD1793 includes a number of user-programmable functions which are accessed via mode control registers. The registers are programmed using the serial control interface, which was previously discussed in this data sheet. Table 3. User-Programmable Function Controls (1)When in DSD mode, DMF[1:0] is defined as DSD filter (analog FIR) performance selection. (2)When in DSD mode, OS[1:0] is defined as DSD filter (analog FIR) operation rate selection.
a register read (R/W = 1) or write (R/W = 0) operation is performed. Register 22 is read-only. Table 4. Mode Control Register Map When R/W = 0, a write operation is performed. When R/W = 1, a read operation is performed. These bits are available for read and write. steps. Alternatively, the attenuator can be set to infinite attenuation (or mute).
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 Register 18R/W 0 0 1 0 0 1 0 ATLD FMT2 FMT1 FMT0 DMF1 DMF0 DME MUTE R/W : Read/Write Mode Select When R/W = 0, a write operation is performed. When R/W = 1, a read operation is performed. Default value: 0 ATLD: Attenuation Load Control This bit is available for read and write. Default value: 0 ATLD = 0 Attenuation control disabled (default) ATLD = 1 Attenuation control enabled The ATLD bit enables loading of the attenuation data contained in registers 16 and 17. When ATLD = 0, the attenuation settings remain at the previously programmed levels, ignoring new data loaded from registers 16 and 17. When ATLD = 1, attenuation data written to registers 16 and 17 is loaded normally. FMT[2:0]: Audio Interface Data Format These bits are available for read and write. Default value: 101 FMT[2:0] Audio Data Format Selection 000 16-bit standard format, right-justified data 001 20-bit standard format, right-justified data 010 24-bit standard format, right-justified data 011 24-bit MSB-first, left-justified format data 100 16-bit I2S-format data 101 24-bit I2S-format data (default)
110 Reserved
111 Reserved
The FMT[2:0] bits select the data format for the serial audio interface. For the external digital filter interface mode (DFTH mode), this register is operated as shown in the APPLICATION FOR EXTERNAL DIGITAL FILTER INTERFACE section of this data sheet. DMF[1:0]: Sampling Frequency Selection for the De-Emphasis Function These bits are available for read and write. Default value: 00 DMF[1:0] De-Emphasis Sampling Frequency Selection
00 Disabled (default)
10 44.1 kHz 11 32 kHz The DMF[1:0] bits select the sampling frequency used by the digital de-emphasis function when it is enabled by setting the DME bit. The de-emphasis curves are shown in the TYPICAL PERFORMANCE CURVES section of this data sheet. For the DSD mode, analog FIR filter performance can be selected using this register. A register map and filter response plots are shown in the APPLICATION FOR DSD FORMAT (DSD MODE) INTERFACE section of this data sheet.
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com DME: Digital De-Emphasis Control This bit is available for read and write. Default value: 0 DME = 0 De-emphasis disabled (default) DME = 1 De-emphasis enabled The DME bit enables or disables the de-emphasis function for both channels. MUTE: Soft Mute Control This bit is available for read and write. Default value: 0 MUTE = 0 MUTE disabled (default) MUTE = 1 MUTE enabled The MUTE bit enables or disables the soft mute function for both channels. Soft mute is operated as a 256-step attenuator. The speed for each step to –∞ dB (mute) is determined by the attenuation rate selected in the ATS register. B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 Register 19 R/W 0 0 1 0 0 1 1 REV ATS1 ATS0 OPE RSV DFMS FLT INZD R/W : Read/Write Mode Select When R/W = 0, a write operation is performed. When R/W = 1, a read operation is performed. Default value: 0 REV: Output Phase Reversal This bit is available for read and write. Default value: 0 REV = 0 Normal output (default) REV = 1 Inverted output The REV bit inverts the output phase for both channels. ATS[1:0]: Attenuation Rate Select These bits are available for read and write. Default value: 00 ATS[1:0] Attenuation Rate Selection
00 Every PLRCK (default)
01 PLRCK/2
10 PLRCK/4
11 PLRCK/8
The ATS[1:0] bits select the rate at which the attenuator is decremented/incremented during level transitions.
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com OPE: DAC Operation Control This bit is available for read and write. Default value: 0 OPE = 0 DAC operation enabled (default) OPE = 1 DAC operation disabled The OPE bit enables or disables the analog output for both channels. Disabling the analog outputs forces them to the bipolar zero level (BPZ) even if digital audio data is present on the input. DFMS: Stereo DF Bypass Mode Select This bit is available for read and write. Default value: 0 DFMS = 0 Monaural (default) DFMS = 1 Stereo input enabled The DFMS bit enables stereo operation in the DF bypass mode. In the DF bypass mode, when DFMS is set to 0, the pin for the input data is PDATA (pin 3) only, therefore the DSD1793 operates as a monaural DAC. When DFMS is set to 1, the DSD1793 can operate as a stereo DAC with inputs of L-channel and R-channel data on DSDL (pin 25) and DSDR (pin 24), respectively. FLT: Digital Filter Rolloff Control This bit is available for read and write. Default value: 0 FLT = 0 Sharp rolloff (default) FLT = 1 Slow rolloff The FLT bit selects the digital filter rolloff characteristic. The filter responses for these selections are shown in the TYPICAL PERFORMANCE CURVES section of this data sheet. INZD: Infinite Zero Detect Mute Control This bit is available for read and write. Default value: 0 INZD = 0 Infinite zero detect mute disabled (default) INZD = 1 Infinite zero detect mute enabled The INZD bit enables or disables the zero detect mute function. Setting INZD to 1 forces muted analog outputs to hold a bipolar zero level when the DSD1793 detects zero condition in both channels. The infinite zero detect mute function is not available in the DSD mode. B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 Register 20 R/W 0 0 1 0 1 0 0 RSV SRST DSD DFTH MONO CHSL OS1 OS0 R/W : Read/Write Mode Select When R/W = 0, a write operation is performed. When R/W = 1, a read operation is performed. Default value: 0
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com SRST: System Reset Control This bit is available for write only. Default value: 0 SRST = 0 Normal operation (default) SRST = 1 System reset operation (generate one reset pulse) The SRST bit resets the DSD1793 to the initial system condition. DSD: DSD Interface Mode Control This bit is available for read and write. Default value: 0 DSD = 0 DSD interface mode disabled (default) DSD = 1 DSD interface mode enabled The DSD bit enables or disables the DSD interface mode. DFTH: Digital Filter Bypass (or Through Mode) Control This bit is available for read and write. Default value: 0 DFTH = 0 Digital filter enabled (default) DFTH = 1 Digital filter bypassed for the external digital filter The DFTH bit enables or disables the external digital filter interface mode. MONO: Monaural Mode Selection This bit is available for read and write. Default value: 0 MONO = 0 Stereo mode (default) MONO = 1 Monaural mode The MONO function changes the operation mode from the normal stereo mode to the monaural mode. When the monaural mode is selected, both DACs operate in a balanced mode for one channel of audio input data. Channel selection is available for L-channel or R-channel data, determined by the CHSL bit as described immediately following. CHSL: Channel Selection for Monaural Mode This bit is available for read and write. Default value: 0 CHSL = 0 L-channel selected (default) CHSL = 1 R-channel selected This bit is available when MONO = 1. The CHSL bit selects L-channel or R-channel data to be used in monaural mode.
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com OS[1:0]: Delta-Sigma Oversampling Rate Selection These bits are available for read and write. Default value: 00 OS[1:0] Operation Speed Select 00 64 times fS (default) 01 32 times fS 10 128 times fS
11 Reserved
The OS bits change the oversampling rate of delta-sigma modulation. Use of this function enables the designer to stabilize the conditions at the post low-pass filter for different sampling rates. As an application example, programming to set 128 times in 44.1-kHz operation, 64 times in 96-kHz operation, and 32 times in 192-kHz operation allows the use of only a single type (cutoff frequency) of post low-pass filter. The 128-f S oversampling rate is not available at sampling rates above 100 kHz. If the 128-fS oversampling rate is selected, a system clock of more than 256 fS is required. In DSD mode, these bits select the speed of the bit clock for DSD data coming into the analog FIR filter. B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 Register 21R/W 0 0 1 0 1 0 1 RSV RSV RSV RSV RSV DZ1 DZ0 PCMZ R/W : Read/Write Mode Select When R/W = 0, a write operation is performed. When R/W = 1, a read operation is performed. Default value: 0 DZ[1:0]: DSD Zero Output Enable These bits are available for read and write. Default value: 00 DZ[1:0] Zero Output Enable
01 Even pattern detect
The DZ bits enable or disable the output zero flags, and select the zero pattern in the DSD mode. PCMZ: PCM Zero Output Enable This bit is available for read and write. Default value: 1 PCMZ = 0 PCM zero output disabled PCMZ = 1 PCM zero output enabled (default) The PCMZ bit enables or disables the output zero flags in the PCM mode and the external DF mode. B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 Register 22 R 0 0 1 0 1 1 0 RSV RSV RSV RSV RSV RSV ZFGR ZFGL R: Read Mode Select Value is always 1, specifying the readback mode.
Where x = L or R, corresponding to the DAC output channel. These bits are available only for readback. (pin 22). See Zero Detect in the FUNCTIONAL DESCRIPTIONS section of this data sheet. Figure 31. Typical Application Circuit
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com
APPLICATION INFORMATION
VOUT R– VOUT R+ VCOM DSDR VOUT L– ZEROL ZEROR VCC F VCC L VOUT L+ AGNDC AGNDL PLRCK1 PBCK PDATA DBCK ADR0 SCL SDA DSDL VCC C 1 µF C 3LR 6L R 4L R 5L C 1L C 2LR 3L R 2L R 1L VOUT L-Channel + 5 V VOUT R-Channel 10 µF 0.1 µF C 3RR 6R R 4R R 5R C 1R C 2RR 3R R 2R R 1R NOTE : Example R and C values for fC = 77 kHz – R1, R2: 1.8 kΩ, R3,R4: 3.3 kΩ, R5,R6: 680 Ω, C1: 1800 pF, C2, C3: 560 pF. Figure 32. Typical Application for Analog Output Stage in the LPF, and R1 = R2 in a typical application circuit. of the operational amplifier should be considered to obtain a 113-dB S/N ratio.
output voltage for each channel is 5.9 V p-p, or 2.1 V rms. operation is to provide over 115 dB of dynamic range for high-end audio applications. Figure 33. Connection Diagram for Monaural Mode Interface
and 24-bit audio data, as shown in Figure 35. The audio format is selected by the FMT[2:0] bits of control register 18. Figure 35. Audio Data Input Format for External Digital Filter (Internal DF Bypass Mode) Application
and DATAR is shown in Figure 36. Figure 36. Audio Interface Timing for External Digital Filter (Internal DF Bypass Mode) Application
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com Functions Available in the External Digital Filter Mode The external digital filter mode allows access to the majority of the DSD1793 mode control functions. The following table shows the register mapping available when the external digital filter mode is selected, along with descriptions of functions which are modified when using this mode selection. B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 Register 16 R/W 0 0 1 0 0 0 0 – – – – – – – – Register 17 R/W 0 0 1 0 0 0 1 – – – – – – – – Register 18 R/W 0 0 1 0 0 1 0 – FMT2 FMT1 FMT0 – – – – Register 19 R/W 0 0 1 0 0 1 1 REV – – OPE – DFMS – INZD Register 20 R/W 0 0 1 0 1 0 0 – SRST 0 1 MONO CHSL OS1 OS0 Register 21 R/W 0 0 1 0 1 0 1 – – – – – – – PCMZ Register 22 R 0 0 1 0 1 1 0 – – – – – – ZFGR ZFGL NOTE : –: Function is disabled. No operation even if data bit is set FMT[2:0]: Audio Data Format Selection Default value: 000 FMT[2:0] Audio Data Format Select 000 16-bit right-justified format (default) 001 20-bit right-justified format 010 24-bit right-justified format Other N/A OS[1:0]: Delta-Sigma Modulator Oversampling Rate Selection Default value: 00 OS[1:0] Operation Speed Select 00 8 times WDCK (default) 01 4 times WDCK 10 16 times WDCK The effective oversampling rate is determined by the oversampling performed by both the external digital filter and the delta-sigma modulator. For example, if the external digital filter is 8× oversampling, and the user selects OS[1:0] = 00, then the delta-sigma modulator oversamples by 8×, resulting in an effective oversampling rate of 64×. The 16× WDCK oversampling rate is not available above a 100-kHz sampling rate. If the oversampling rate selected is 16× WDCK, the system clock frequency must be over 256 fS.
5 SCKSystem Clock1
(1) The system clock is necessary for the initialization sequence and the I2C interface operation. Figure 37. Connection Diagram in DSD Mode This mode is used for interfacing directly to a DSD decoder, which is found in Super Audio CD/C0116 (SACD) applications. The DSD mode provides a low-pass filtering function. The filtering is provided using an analog FIR filter structure. Four FIR responses are available, and are selected via DMF[1:0] of control register 18. Super Audio CD is a trademark of Sony Kabushiki Kaisha TA Sony Corporation, Japan.
/C0068/C0083/C0068/C0049/C0055/C0057/C0051 SLES075B − MARCH 2003 − REVISED NOVEMBER 2006 www.ti.com DSD MODE CONFIGURATION AND FUNCTION CONTROLS Configuration for the DSD Interface Mode DSD = 1 (Register 20, B5) B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 Register 16 R/W 0 0 1 0 0 0 0 – – – – – – – – Register 17 R/W 0 0 1 0 0 0 1 – – – – – – – – Register 18 R/W 0 0 1 0 0 1 0 – – – – DMF1 DMF0 – – Register 19 R/W 0 0 1 0 0 1 1 REV – – OPE – – – – Register 20 R/W 0 0 1 0 1 0 0 – SRST 1 – MONO CHSL OS1 OS0 Register 21 R 0 0 1 0 1 0 1 – – – – – DZ1 DZ0 – Register 22 R 0 0 1 0 1 1 0 – – – – – – ZFGR ZFGL NOTE : –: Function is disabled. No operation even if data bit is set DMF[1:0]: Analog FIR Performance Selection Default value: 00 DMF[1:0] Analog FIR Performance Select
00 FIR-1 (default)
01 FIR-2
10 FIR-3
11 FIR-4
Plots for the four analog FIR filter responses are shown in the ANALOG FIR FILTER PERFORMANCE IN DSD MODE section of this data sheet. OS[1:0]: Analog-FIR Operation Speed Selection Default value: 00 OS[1:0] Operation Speed Select 00 fDBCK (default) 01 fDBCK /2
10 Reserved
The OS bits in the DSD mode select the operating rate of the analog FIR. The OS bits must be set before setting the DSD bit to 1.
24 Bits
6 Bits ICOB
Figure 48. Advanced Segment DAC With I/V Converter improved tolerance to clock jitter. The DSD1793 provides balanced voltage outputs. converted to an analog output in the differential-current segment section. excellent dynamic performance.
supply from contaminating the analog power supply and degrading the dynamic performance of the D/A converters. switching noise into the analog circuitry. Figure 50 shows the recommended approach for single-supply applications. Figure 49. Recommended PCB Layout
Figure 50. Single-Supply PCB Layout located as close as possible to the appropriate pins of the DSD1793 to reduce noise pickup from surrounding circuitry. while metal film or monolithic ceramic capacitors are used for smaller values. DSD1793 and the input resistor of the post-LPF circuit must be connected as closely as possible. kHz on CDDA, fS = 96 kHz on DVD-M, fS = 192 kHz on DVD-A, fS = 64 fS on DSD (SACD).
www.ti.com 23-May-2025 PACKAGING INFORMATION Orderable part number Status (1) Material type (2) Package | Pins Package qty | Carrier RoHS (3) Lead finish/ Ball material (4) MSL rating/ Peak reflow (5) Op temp (°C) Part marking (6) DSD1793DB Active Production SSOP (DB) | 28 47 | TUBE Yes NIPDAU Level-1-260C-UNLIM -25 to 85 DSD1793 DSD1793DB.B Active Production SSOP (DB) | 28 47 | TUBE Yes NIPDAU Level-1-260C-UNLIM -25 to 85 DSD1793 DSD1793DBR Active Production SSOP (DB) | 28 2000 | LARGE T&R Yes NIPDAU Level-1-260C-UNLIM -25 to 85 DSD1793 DSD1793DBR.B Active Production SSOP (DB) | 28 2000 | LARGE T&R Yes NIPDAU Level-1-260C-UNLIM -25 to 85 DSD1793 (1) Status: For more details on status, see our product life cycle. (2) Material type: When designated, preproduction parts are prototypes/experimental devices, and are not yet approved or released for full production. Testing and final process, including without limitation quality assurance, reliability performance testing, and/or process qualification, may not yet be complete, and this item is subject to further changes or possible discontinuation. If available for ordering, purchases will be subject to an additional waiver at checkout, and are intended for early internal evaluation purposes only. These items are sold without warranties of any kind. (3) RoHS values: Yes, No, RoHS Exempt. See the TI RoHS Statement for additional information and value definition. (4) Lead finish/Ball material: Parts may have multiple material finish options. Finish options are separated by a vertical ruled line. Lead finish/Ball material values may wrap to two lines if the finish value exceeds the maximum column width. (5) MSL rating/Peak reflow: The moisture sensitivity level ratings and peak solder (reflow) temperatures. In the event that a part has multiple moisture sensitivity ratings, only the lowest level per JEDEC standards is shown. Refer to the shipping label for the actual reflow temperature that will be used to mount the part to the printed circuit board. (6) Part marking: There may be an additional marking, which relates to the logo, the lot trace code information, or the environmental category of the part. Multiple part markings will be inside parentheses. Only one part marking contained in parentheses and separated by a "~" will appear on a part. If a line is indented then it is a continuation of the previous line and the two combined represent the entire part marking for that device. Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release. In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis. Addendum-Page 1
PACKAGE MATERIALS INFORMATION www.ti.com 23-May-2025 TAPE AND REEL INFORMATION Reel Width (W1) REEL DIMENSIONS A0B0K0WDimension designed to accommodate the component lengthDimension designed to accommodate the component thicknessOverall width of the carrier tapePitch between successive cavity centersDimension designed to accommodate the component width TAPE DIMENSIONSK0 P1B0WA0Cavity QUADRANT ASSIGNMENTS FOR PIN 1 ORIENTATION IN TAPE Pocket QuadrantsSprocket HolesQ1Q1Q2Q2Q3Q3Q4Q4User Direction of Feed P1ReelDiameter *All dimensions are nominal Device Package Type Package Drawing Pins SPQ Reel Diameter (mm) Reel Width W1 (mm) (mm) (mm) (mm) (mm) W (mm) Pin1 Quadrant Pack Materials-Page 1
PACKAGE MATERIALS INFORMATION www.ti.com 23-May-2025 TAPE AND REEL BOX DIMENSIONS Width (mm) W LH *All dimensions are nominal Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) DSD1793DBR SSOP DB 28 2000 336.6 336.6 28.6 Pack Materials-Page 2
PACKAGE MATERIALS INFORMATION www.ti.com 23-May-2025 TUBE L - Tube length T - Tube height W - Tube width B - Alignment groove width *All dimensions are nominal Device Package Name Package Type Pins SPQ L (mm) W (mm) T (µm) B (mm) DSD1793DB DB SSOP 28 47 500 10.6 500 9.6 DSD1793DB.B DB SSOP 28 47 500 10.6 500 9.6 Pack Materials-Page 3
www.ti.com PACKAGE OUTLINE C 26X 0.65 8.45 28X 0.38 0.22 8.2
7.4 TYP
0.05 MIN
0.25 GAGE PLANE 0 -8
2 MAX
B 5.6 5.0 NOTE 4 A 10.5 9.9 NOTE 3 0.95 0.55 (0.15) TYP SSOP - 2 mm max heightDB0028A SMALL OUTLINE PACKAGE 4214853/B 03/2018
0.15 C A B
0.1 C NOTES: 1. All linear dimensions are in millimeters. Any dimensions in parenthesis are for reference only. Dimensioning and tolerancing per ASME Y14.5M. 2. This drawing is subject to change without notice. 3. This dimension does not include mold flash, protrusions, or gate burrs. Mold flash, protrusions, or gate burrs shall not exceed 0.15 mm per side. 4. This dimension does not include interlead flash. Interlead flash shall not exceed 0.25 mm per side. 5. Reference JEDEC registration MO-150. A 15 DETAIL A TYPICAL SCALE 1.500
www.ti.com EXAMPLE BOARD LAYOUT
0.07 MAX
0.07 MIN
28X (1.85) 28X (0.45) 26X (0.65) (7) (R0.05) TYP SSOP - 2 mm max heightDB0028A SMALL OUTLINE PACKAGE 4214853/B 03/2018 NOTES: (continued) 6. Publication IPC-7351 may have alternate designs. 7. Solder mask tolerances between and around signal pads can vary based on board fabrication site. LAND PATTERN EXAMPLE EXPOSED METAL SHOWN SCALE: 10X SYMM SYMM 14 15 15.000 METALSOLDER MASK OPENING METAL UNDER SOLDER MASK SOLDER MASK OPENING EXPOSED METALEXPOSED METAL SOLDER MASK DETAILS NON-SOLDER MASK DEFINED (PREFERRED) SOLDER MASK DEFINED
www.ti.com EXAMPLE STENCIL DESIGN 28X (1.85) 28X (0.45) 26X (0.65) (7) (R0.05) TYP SSOP - 2 mm max heightDB0028A SMALL OUTLINE PACKAGE 4214853/B 03/2018 NOTES: (continued) 8. Laser cutting apertures with trapezoidal walls and rounded corners may offer better paste release. IPC-7525 may have alternate design recommendations. 9. Board assembly site may have different recommendations for stencil design. SOLDER PASTE EXAMPLE BASED ON 0.125 mm THICK STENCIL SCALE: 10X SYMM SYMM 14 15
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