background image

GND

+5.0V

SCL-USB
SDA-USB

GND

GND

GND

IOVDD

10.0k

R38

0

R33

0

R32

0

R31

0

R30

MCLK

SCLK

LRCLK

SDIN

GND

MCLK
SDIN
SCLK
LRCLK

MCLK-USB

I2S-USB

SDOUT-USB
BCLK-USB
LRCLK-USB

MCLK-USB

SDOUT-USB

BCLK-USB

LRCLK-USB

WCLK-from-LB2

SDOUT3-from-LB2

BCLK-from-LB2

SDIN-USB

SDIN-USB

47k

R36

2.2k

R35

GND

47k

R34

2.2k

R37

GND

GND

1

2

3

4

5

6

7

8

9

10

11

12

13

14

15
17
19
21
23
25
27
29
31

16
18
20
22
24
26
28
30
32

33

34

J28

+3.3V

+3.3V

+3.3V

+3.3V

+3.3V

GND

+3.3V

GND

1A

1

GND

2

2A

3

2Y

4

VCC

5

1Y

6

U10

SN74LVC2G34DRLR

GND

+3.3V

A

1

B

2

Y

3

GND

4

Y

5

A/B

6

G

7

VCC

8

U9

SN74LVC2G157DCTR

RESET

1

P0

2

P1

3

P2

4

P3

5

GND

6

P4

7

P5

8

P6

9

P7

10

INT

11

SCL

12

SDA

13

VCCP

14

VCCI

15

ADDR

16

U8

TCA6408ARSVR

GND

GND

I2C

EXPANDER

DECOUPLING

0.1µF

C50

+3.3V

GND

0.1µF

C53

+3.3V

GND

0.1µF

C54

GND

0.1µF

C51

+3.3V

GND

0.1µF

C52

GND

IOVDD

DIR1

15

DIR2

16

A1

1

A2

2

A3

3

A4

4

DIR3

5

DIR4

6

OE

7

GND

8

B4

9

B3

10

B2

11

B1

12

VCCB

13

VCCA

14

U6

SN74AVC4T774RSVR

10.0k

R39

I2S/MIX-MUX

WCLK-DUT

BCLK-DUT

MCLK-DUT

DOUT-MIXMUX

DIN-DUT

I2C-USB

USB_I2CEN

USB_I2CEN

DIR1

15

DIR2

16

A1

1

A2

2

A3

3

A4

4

DIR3

5

DIR4

6

OE

7

GND

8

B4

9

B3

10

B2

11

B1

12

VCCB

13

VCCA

14

U11

SN74AVC4T774RSVR

GND

GND

DIN1
BCLK1
WCLK1

IOVDD

+3.3V

LRCLK-to-LB2

BCLK-to-LB2

LRCLK-to-LB2

BCLK-to-LB2

WCLK-from-LB2

BCLK-from-LB2

MCLK-from-LB2

SDOUT3-from-LB2

IOVDD

J26

P1

J27

P0

S1

2

1B1

6

1B2

5

1A

7

2B4

13

2B3

12

1B4

3

1B3

4

2B1

10

2B2

11

2A

9

GND

8

VCC

16

1OE

1

2OE

15

S0

14

EP

17

U5

SN74CB3Q3253RGYR

S1

2

1B1

6

1B2

5

1A

7

2B4

13

2B3

12

1B4

3

1B3

4

2B1

10

2B2

11

2A

9

GND

8

VCC

16

1OE

1

2OE

15

S0

14

EP

17

U7

SN74CB3Q3253RGYR

10.0k

R43

GND

0.1µF

C55

GND

IOVDD

1

2

3

4

5

U14

SN74LVC1G125DCKR

+3.3V

GND

49.9

R45

SDOUT3-from-LB2

10.0k

R44

+3.3V

MCLKIN-LB2

SDIN0-LB2

BCLKIN-LB2

LRCLKIN-LB2

LRCLK-to-LB2

BCLK-to-LB2

+3.3V

SCL-USB
SDA-USB

I2S

LEARNING

BOARD 2

MCLKIN-LB2

SDIN0-LB2

BCLKIN-LB2
LRCLKIN-LB2

MCLK-from-LB2

SDOUT1-from-LB2
SDIN2-to-LB2

SDOUT1-from-LB2
SDIN2-to-LB2

SDOUT1-from-LB2

49.9

R1

LRCLK-MM

Hardware Documentation

www.ti.com

12

SLOU462A – November 2016 – Revised March 2017

Submit Documentation Feedback

Copyright © 2016–2017, Texas Instruments Incorporated

TAS2559 Evaluation Module

Figure 8. TAS2559EVM Input Muxes and Translators

Summary of Contents for TAS2559

Page 1: ...by other applicable national regulations received from Disclosing party under this Agreement or any direct product of such technology to any destination to which such export or re export is restricted...

Page 2: ...8 TAS2559EVM Input Muxes and Translators 12 9 TAS2559EVM Output Muxes and Translators 13 10 TAS2559EVM Channel 1 Schematic 14 11 TAS2559EVM Channel 2 TAS2560 Schematic 15 12 TAS2559EVM Power Supply 16...

Page 3: ...USB class audio device compatible with Microsoft Windows 7 Digital audio AP and PSIA interface through 100 mil headers TI Learning Board 2 for speaker characterization SPI interface for TAS2559 contro...

Page 4: ...ule 4 Mono Setup 1 Install PurePath Console 3 with the TAS2559EVM plug in 2 Connect a speaker to J8 on the EVM 3 Attach a 5 0 V 2 5 A power supply to connector J29 inner 5V outer GND 4 Remove Jumpers...

Page 5: ...firmware enumerates as a USB AudioEVM that supports 48 kHz sampling rate by default This setting must match the EVM at 2 channel 16 bit 48000 Hz CD Quality Table 2 Default Jumper Settings JUMPER SETT...

Page 6: ...lect 3 3 V 2 J32 Pin 1 2 SDIN on board 2 J33 Pin 1 2 WCLK on board 2 J34 Pin 1 2 BCLK on board 2 J35 Pin 1 2 MCLK on board 2 J36 Pin 1 2 SCL on board 2 J37 Pin 1 2 SDA on board 2 J38 Pin 2 3 ICC 1 int...

Page 7: ...2 Connect speakers to both J44 and J8 on the EVM 3 Attach a 5 0 V 5 0 A power supply to connector J29 inner 5V outer GND 4 Connect the EVM to a Windows 7 PC with a micro USB cable J23 It will enumera...

Page 8: ...e TAS2650 can be used for PDM input if desired J3 has two pins Digital data for example I and V sense data from the TAS2559 device Ground J15 J16 J17 and J18 have three pins Digital audio signals from...

Page 9: ...uments Incorporated TAS2559 Evaluation Module 6 1 Digital Audio Interface Selection 6 1 1 USB The TAS2559EVM contains a microcontroller TAS1020B that acts as a USB HID and USB class audio interface To...

Page 10: ...rporated TAS2559 Evaluation Module 6 1 2 Direct AP PSIA Remove the jumpers from J15 J16 J17 and J18 for Channel 1 or J32 J33 J34 and J35 for Channel 2 and connect the external digital audio source for...

Page 11: ...GND 3 3V 1A 1 GND 2 2A 3 2Y 4 VCC 5 1Y 6 U16 SN74LVC2G34DRLR 1A 1 GND 2 2A 3 2Y 4 VCC 5 1Y 6 U17 SN74LVC2G34DRLR 1A 1 GND 2 2A 3 2Y 4 VCC 5 1Y 6 U18 SN74LVC2G34DRLR MCLKIN LB2 BCLKIN LB2 LRCLKIN LB2...

Page 12: ...XMUX DIN DUT I2C USB USB_I2CEN USB_I2CEN DIR1 15 DIR2 16 A1 1 A2 2 A3 3 A4 4 DIR3 5 DIR4 6 OE 7 GND 8 B4 9 B3 10 B2 11 B1 12 VCCB 13 VCCA 14 U11 SN74AVC4T774RSVR GND GND DIN1 BCLK1 WCLK1 IOVDD 3 3V LR...

Page 13: ...DOUT MIXMUX RESET 3 P0 4 P1 5 P2 6 P3 7 GND 8 P4 9 P5 10 P6 11 P7 12 IRQ 13 SCL 14 SDA 15 VCCP 16 VCC 1 A0 2 U22 XRA1206IG16 F 10k R52 3 3V TO SCL USB GND SDATA MM1 SDATA MM2 DOUT MIXMUX DIR1 15 DIR2...

Page 14: ...3 J51 WCLK2 1 2 3 J47 DOUT2 1 2 3 J40 BCLK2 1 2 3 J38 DIN2 DOUT DUT2 PGND_B A1 PGND_B A2 VBAT A3 ICC_GPIO9 A4 WCLK1_GPIO2 A5 DOUT1_GPIO3 A6 SW B1 SW B2 ICC_GPIO10 B3 ICC_GPI3 B4 DIN1_GPI1 B5 BCLK1_GPI...

Page 15: ...2 J44 OUT2 0 R54 0 R55 DNP DNP 22 1k R56 10 0k R48 ADDR IRQ SCL2 SDA2 GND RESET2 10 0k R49 IOVDD RESET2 J42 RESET2 0 1 F C84 GND DOUT DUT2 MIX MUX SW2 VBAT2 TP27 VBAT2 MCLK B1 BCLK D2 WCLK C1 DIN D1...

Page 16: ...GND 5V 1 2 3 J30 IOVDD SEL 3 3V VBAT VBAT1 0 1 F 10V C32 GND 22 F 16V C31 GND GND J31 VBAT1 VBAT2 0 1 F 10V C67 GND 22 F 16V C66 GND GND J21 VBAT2 VBAT1 VBAT2 Hi Current Shunt J1 J50 5V GND 100 F C74...

Page 17: ...OU462A November 2016 Revised March 2017 Submit Documentation Feedback Copyright 2016 2017 Texas Instruments Incorporated TAS2559 Evaluation Module 7 2 TAS2559 EVM Printed Circuit Board Layout Figure 1...

Page 18: ...ntation www ti com 18 SLOU462A November 2016 Revised March 2017 Submit Documentation Feedback Copyright 2016 2017 Texas Instruments Incorporated TAS2559 Evaluation Module Figure 15 Top Layer Figure 16...

Page 19: ...e Documentation 19 SLOU462A November 2016 Revised March 2017 Submit Documentation Feedback Copyright 2016 2017 Texas Instruments Incorporated TAS2559 Evaluation Module Figure 17 Copper Layer 3 Figure...

Page 20: ...ation www ti com 20 SLOU462A November 2016 Revised March 2017 Submit Documentation Feedback Copyright 2016 2017 Texas Instruments Incorporated TAS2559 Evaluation Module Figure 19 Copper Layer 5 Figure...

Page 21: ...Documentation 21 SLOU462A November 2016 Revised March 2017 Submit Documentation Feedback Copyright 2016 2017 Texas Instruments Incorporated TAS2559 Evaluation Module Figure 21 Bottom Solder Mask Figu...

Page 22: ...re Documentation www ti com 22 SLOU462A November 2016 Revised March 2017 Submit Documentation Feedback Copyright 2016 2017 Texas Instruments Incorporated TAS2559 Evaluation Module Figure 23 Board Dime...

Page 23: ...CERM 1000pF 50V 5 C0G NP0 0402 0402 GRM1555C1H102JA0 1D MuRata C23 C24 2 4700pF CAP CERM 4700 pF 50 V 10 X7R 0402 0402 GRM155R71H472KA0 1D MuRata C33 C34 C35 C36 C37 C38 C39 C40 C41 C42 C43 C44 C49 C...

Page 24: ...wer Jack mini 2 5mm OD R A TH Jack 14 5x11x9mm RAPC712X Switchcraft J30 1 Header 2 54 mm 3x1 Tin TH Header 2 54 mm 3x1 TH TSW 103 07 T S Samtec L1 L2 2 2 2uH Inductor Shielded Composite 2 2uH 3 7A 0 0...

Page 25: ...d plated Black Shunt SNT 100 BK G Samtec 969102 0000 DA 3M TP1 TP2 TP3 TP4 TP5 TP8 TP9 TP10 TP11 TP12 TP13 TP14 TP15 TP16 TP17 TP18 TP19 TP20 TP23 TP25 TP26 21 Orange Test Point Miniature Orange TH Or...

Page 26: ...ivalent None U13 1 Single Output Low Noise LDO 400 mA Fixed 1 8 V Output 1 7 to 5 5 V Input with Reverse Current Protection 5 pin SOT 23 DBV 40 to 85 degC Green RoHS no Sb Br DBV0005A TPS73618DBVR Tex...

Page 27: ...yright 2016 2017 Texas Instruments Incorporated Revision History NOTE Page numbers for previous revisions may differ from page numbers in the current version Changes from Original November 2016 to A R...

Page 28: ...set forth above or credit User s account for such EVM TI s liability under this warranty shall be limited to EVMs that are returned during the warranty period to the address designated by TI and that...

Page 29: ...the antenna types listed in the user guide with the maximum permissible gain and required antenna impedance for each antenna type indicated Antenna types not included in this list having a gain great...

Page 30: ...t the EVM user guide prior to connecting any load to the EVM output If there is uncertainty as to the load specification please contact a TI field representative During normal operation even with the...

Page 31: ...OST OF REMOVAL OR REINSTALLATION ANCILLARY COSTS TO THE PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES RETESTING OUTSIDE COMPUTER TIME LABOR COSTS LOSS OF GOODWILL LOSS OF PROFITS LOSS OF SAVINGS LOSS OF...

Page 32: ...TI Resource NO OTHER LICENSE EXPRESS OR IMPLIED BY ESTOPPEL OR OTHERWISE TO ANY OTHER TI INTELLECTUAL PROPERTY RIGHT AND NO LICENSE TO ANY TECHNOLOGY OR INTELLECTUAL PROPERTY RIGHT OF TI OR ANY THIRD...

Page 33: ...Mouser Electronics Authorized Distributor Click to View Pricing Inventory Delivery Lifecycle Information Texas Instruments TAS2559EVM...

Reviews: