background image

GND

47.0k

R22

GND

1.0V

0.1uF
16V

C24

GND

1.0V

0.1uF
16V

C23

GND

1.0V

0.1uF
16V

C15

GND

1.0V

0.1uF
16V

C16

GND

1.0V

0.1uF
16V

C17

GND

1.0V

0.1uF
16V

C18

GND

1.0V

0.1uF
16V

C19

GND

1.0V

0.1uF
16V

C20

GND

1.0V

0.1uF
16V

C21

GND

1.0V

0.1uF
16V

C22

GND

1.0V

0.1uF
16V

C25

GND

1.0V

0.1uF
16V

C26

GND

1.0V

0.1uF
16V

C27

GND

1.0V

0.1uF
16V

C28

3.3V

SN74LVC2G07DSFR

1A

1

GND

2

2A

3

2Y

4

VCC

5

1Y

6

U4

3.3V

VDDIOL

6

VDD

11

VDDIOL

14

VDD

16

VDD

17

VDDIOL

19

VDD

24

VDDIOL

29

VDD

36

VDD

41

VDDIOL

42

VDDIOR

52

VDD

56

VDD

60

NC

65

VDDIOR

67

VDD

73

VDDIOR

78

VDD

80

VDD

81

VDDIOR

83

VDD

87

VDDIOR

92

VDD

101

VDD

102

PLL_AVDD

103

PLL_AGND

104

OTP_VCC

105

VDDIOT

110

VDDIOT

111

VDD

120

USB_VDD33

44

USB_VDD

49

NC

50

VDD

126

PAD

129

U1E

XE216-512

3.3V

1.0V

1.0V

4.75

R8

0.1uF
16V

C29

GND

X0D36

3

X0D37

4

X0D38

5

X0D39

7

X0D40

8

X0D41

9

X0D42

10

X0D43

12

X0D01

27

X0D10

28

X0D00

30

X0D04

31

X0D11

32

X0D05

33

X0D06

34

X0D07

35

X0D02

37

X0D03

38

X0D08

39

X0D09

40

X0D14

57

X0D15

58

X0D20

59

X0D21

61

X0D12

62

X0D13

63

X0D22

64

X0D23

66

X0D16

68

X0D17

69

X0D18

70

X0D19

71

X0D24

88

X0D25

89

X0D34

90

X0D35

91

X0D26

93

X0D27

94

X0D32

95

X0D28

96

X0D33

97

X0D29

98

X0D30

99

X0D31

100

U1A

XE216-512

1.00k

R1

GND

0.1uF
16V

C11

3.3V

GND

0.1uF
16V

C12

3.3V

GND

3.3V

GND

0.1uF
16V

C7

3.3V

GND

0.1uF
16V

C1

3.3V

GND

0.1uF
16V

C8

3.3V

GND

0.1uF
16V

C9

3.3V

GND

0.1uF
16V

C5

3.3V

GND

0.1uF
16V

C6

3.3V

GND

0.1uF
16V

C4

3.3V

GND

0.1uF
16V

C3

3.3V

GND

0.1uF
16V

C2

3.3V

GND

0.1uF
16V

C10

3.3V

SCL
SDA

USB_D_P

USB_D_M

USB_ID

VBUS_IN

X1D35

13

X1D36

15

X1D37

18

X1D38

20

X1D18

25

X1D19

26

X1D14

51

X1D15

53

X1D20

54

X1D21

55

X1D02

72

X1D03

74

X1D04

75

X1D05

76

X1D06

77

X1D07

79

X1D08

82

X1D09

84

X1D00

85

X1D01

86

X1D41

107

X1D42

108

X1D43

109

X1D40

106

X1D26

112

X1D27

113

X1D28

114

X1D29

115

X1D30

116

X1D31

117

X1D32

118

X1D33

119

X1D39

21

X1D16

22

X1D17

23

X1D10

121

X1D11

122

U1B

XE216-512

3.3V

25.5k

R18

1.0V

51.0k

R21

10.0k

R19

3.3V

470pF
25V

C34

GND

GND

GND

10.0k

R14

10.0k

R15

X-24M

2.2uF
10V

C33

GND

USB I/O

G

N

D

-U

S

B

USB_ID

43

USB_VBUS

45

USB_DP

46

USB_DM

47

USB_RTUNE

48

U1C

XE216-512

43.2

R13

0.1uF
16V

C30

GND

GND

X-TCK
X-TMS

X-TDO

X-TDI

X-TRSTN

X-RSTN

TRST

123

RST

124

CLK

125

TMS

127

TCK

128

TDO

1

TDI

2

U1D

XE216-512

X-24M

X-TCK
X-TMS

X-TDO

X-TDI

X-RSTN

TRST

XMOS AND I/Os

0

R12

JTAG

CLOCK GENERATION

GND

0.1uF
16V

C35

3.3V

GND

0.1uF
16V

C32

3.3V

1
2
3
4
5
6

J1

JTAG

GND

X-TDI

X-TMS

X-TCK

X-TDO
X-TRSTN

VBUS-XMOS

GND

24MHz

VDD

4

OE/STANDBY

1

GND

2

OUT

3

Y1

3.3V

GND

33.2

R17

680

R10

3.3V

X-HS-EN

GND

3.3V

SN74AVC2T244DQMR

VCCA

1

A1

2

A2

3

GND

5

B2

6

B1

7

OE

4

VCCB

8

U3

GND

GND

3.3V

X-MCLK

33.2

R16

X-SCL

X-SDA

GND

X-MCLK

X-MCLK

XIN/CLK

GND

0.1uF
16V

C36

3.3V

GND

0.1uF
16V

C37

3.3V

GND

0.1uF
16V

C38

GND

0.1uF
16V

C39

TPS3897ADRYR

ENABLE

1

GND

2

SENSE

3

SENSE_OUT

4

CT

5

VCC

6

U5

X-24M

10.0k

R11

GND

FB1

10.0k

R9

XIN/CLK

1

S0

2

VDD

3

VCTR

4

GND

5

VDDOUT

6

VDDOUT

7

Y3

8

Y2

9

GND

10

Y1

11

SCL/S2

12

SDA/S1

13

XOUT

14

CDCE913PWR

U2

Blue

D3
USB READY

VBUS

1

D-

2

D+

3

ID

4

GND

5

6

7

8

1

1

1

0

9

J3

10.0k

R20

3.3V

3.3V

3.3V

GND

0.1uF
16V

C14

3.3V

X-SPI-SS0
X-SPI-SS1
X-SPI-SS2
X-SPI-SS3

47.0k

R4

3.3V

47.0k

R5

3.3V

47.0k

R6

3.3V

47.0k

R7

3.3V

I2C

1.8V

1.8V

0

R2

X-SCL
X-SDA

0

R3

X-SCL

X-SDA

1.8V

1.8V

MCLK-CDC

www.ti.com

Board Layouts, Bill of Materials, and Schematics

11

SLOU528B – April 2020 – Revised June 2020

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Copyright © 2020, Texas Instruments Incorporated

TAS5441-Q1EVM User's Guide

6.2

TAS5441Q1Schematics

Figure 9. Schematic XMOS Control

Summary of Contents for TAS5441-Q1EVM

Page 1: ...rks of Texas Instruments All other trademarks are the property of their respective owners 1 Introduction TheTAS5441 Q1 evaluation module EVM is intended to demonstrate the capabilities of the TAS5441...

Page 2: ...Introduction www ti com 2 SLOU528B April 2020 Revised June 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated TAS5441 Q1EVM User s Guide Figure 1 TAS5441 Q1 EVM...

Page 3: ...1 Q1PWM Switching Frequencies The PWM switching frequency is I2C programmable The two f SW options are 400 kHz and 500 kHz Programming the frequency in control register 0x03 is via the GUI By default...

Page 4: ...on The PPC3 is a server based tool Access can be requested on http www ti com tool PUREPATHCONSOLE Once approval is given go to www ti com mysecuresoftware to download the install file After login the...

Page 5: ...ed June 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated TAS5441 Q1EVM User s Guide The TAS5431 and TAS5441 box moves to the Installed Apps section Click on the box and...

Page 6: ...ser s Guide 4 2 Using the PPC3 Plugin When the TAS5431 and TAS5441 PPC3 is launched the Home Window is shown If the EVM is powered on and the USB is connected to the PC the Home Window displays Connec...

Page 7: ...th the TAS5431 and TAS5441 PPC3 Home Window Register Map Window and Device Monitor and Control Window The Register Map window will indicate the current settings off all the registers in the TAS5441 Q1...

Page 8: ...dynamic Live In Live mode the I2C registers are being read continuously to refresh the panes Figure 6 Device Monitor and Control Window 5 TAS5441Q1EVM Start Up This section describes the start up proc...

Page 9: ...Schematics 9 SLOU528B April 2020 Revised June 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated TAS5441 Q1EVM User s Guide 6 Board Layouts Bill of Materials and Schemat...

Page 10: ...ts Bill of Materials and Schematics www ti com 10 SLOU528B April 2020 Revised June 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated TAS5441 Q1EVM User s Guide Figure 8...

Page 11: ...5 76 X1D06 77 X1D07 79 X1D08 82 X1D09 84 X1D00 85 X1D01 86 X1D41 107 X1D42 108 X1D43 109 X1D40 106 X1D26 112 X1D27 113 X1D28 114 X1D29 115 X1D30 116 X1D31 117 X1D32 118 X1D33 119 X1D39 21 X1D16 22 X1D...

Page 12: ...OUT OUT GND VIN IN_P IN_N SCL SDA STANDBY MUTE FAULT BSTP OUTP OUTN BSTN 5 4 1 2 3 6 7 J2 4 70k R29 4 70k R31 3 3V 1 F C42 1 F C47 IN IN 2 1 3 S2 MUTE PVDD 15 IN_N 7 IN_P 6 FAULT 14 STANDBY 2 BSTN 10...

Page 13: ...LDO for XMOS OUTPUT 1 0V 1A 1 0V GND GND GND GND 50V 0 1uF C63 10V 22uF C61 GND 10V 22uF C62 2 2uH L3 GND 10V 22uF C60 66 5k R33 100k R34 EN 1 GND 2 SW 3 VIN 4 FB 5 TLV62568DBVR U8 SW 3 3V 3 3V VIN IN...

Page 14: ...03 0603 CGA3E1X7R1V105K080AC TDK C43 1 330uF CAP AL 330 uF 25 V 20 0 075 ohm TH CAP 10x16mm UBT1E331MPD1TD Nichicon C44 C58 C59 3 0 1uF CAP CERM 0 1 uF 25 V 10 X7R 0603 0603 GCJ188R71E104KA12D MuRata...

Page 15: ...R7 R22 5 47 0k RES 47 0 k 1 0 0625 W 0402 0402 RC0402FR 0747KL Yageo America R8 1 4 75k RES 4 75 1 0 1 W 0603 0603 RC0603FR 074R75L Yageo America R9 R11 2 10 0k RES 10 0 k 1 0 1 W 0402 0402 ERJ 2RKF10...

Page 16: ...Output DCK0006A SOT SC70 6 DSF0006A SN74LVC2G07DSFR Texas Instruments U5 1 Single Channel Ultra Small Adjustable Supervisory Circuit With Active High Open Drain Output DRY0006A USON 6 DRY0006A TPS3897...

Page 17: ...20 to B Revision Page Changed the document From Advanced Information To Production data 1 Changes from Original April 2020 to A Revision Page Changed the title From TAS5441 PWM Switching Frequencies T...

Page 18: ...ther than TI b the nonconformity resulted from User s design specifications or instructions for such EVMs or improper system design or c User has not paid on time Testing and other quality control tec...

Page 19: ...These limits are designed to provide reasonable protection against harmful interference in a residential installation This equipment generates uses and can radiate radio frequency energy and if not in...

Page 20: ...instructions set forth by Radio Law of Japan which includes but is not limited to the instructions below with respect to EVMs which for the avoidance of doubt are stated strictly for convenience and s...

Page 21: ...any interfaces electronic and or mechanical between the EVM and any human body are designed with suitable isolation and means to safely limit accessible leakage currents to minimize the risk of electr...

Page 22: ...R DAMAGES ARE CLAIMED THE EXISTENCE OF MORE THAN ONE CLAIM SHALL NOT ENLARGE OR EXTEND THIS LIMIT 9 Return Policy Except as otherwise provided TI does not offer any refunds returns or exchanges Furthe...

Page 23: ...e resources are subject to change without notice TI grants you permission to use these resources only for development of an application that uses the TI products described in the resource Other reprod...

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