background image

MMBT4401
NPN

Controller Power

SPI Solution

Device Communication

I2C Solution

CLK

MOSI

MISO

LE

SPI Mode

Level Translation

SWITCH ON TO UPLOAD
TUSB3210 FIRMWARE

Device Power

Control Pins
Group 1

Control Pins
Group 2 - Pin Modes

NOTE: (Leave these pins open if setting
SW1, SW2, or SW3 to SPI or I2C Modes)

DEVICE RESET

PLL Lock

Retain option to use native I2C
from controller if needed.

1) Pin Control - Use Pin jumpers (Group 2)
2) SPI - Set SW1 to On position
3) I2C - Set SW2 to On position
4) Bootloader - Set SW3 to On position (page 7)

(Select only one control mode at a time - Turn switches

off or remove jumpers for non-selected modes)

CDCM6208 EVM Control Modes

1

2

3

PUR

S2

pull-up power

+3V3

+5V

+5V

+3V3

+3V3

+3V3

+3V3

+3V3

+3V3

+3V3

+3V3

+3V3

+3V3

DVDD

+3V3

+3V3

DVDD

+3V3

DVDD

DVDD

DVDD

DVDD

DVDD

DVDD

DVDD

+3V3

+3V3

DVDD

DVDD

DVDD

+3V3

SDA

SCL

SDA SCL

DVDD

POR

POR

SCL_PIN4

2

SCS_AD1_PIN3 2

SDI_SDA_PIN1 2

SDO_AD0_PIN2 2

SDI_SDA_PIN1

2

REF_SEL

2

PDN

2

SI_MODE0 2

SI_MODE1 2

STATUS1_PIN0

2

SDI_SDA_PIN1 2

SCL_PIN4

2

SDO_AD0_PIN2

2

SCL_PIN4 2

SDO_AD0_PIN2 2

SCS_AD1_PIN3 2

SCS_AD1_PIN3 2

RESET_PWR

2

STATUS0

2

R52
2k

R52
2k

1

2

C43

1uF

C43

1uF

4.7k

R9

4.7k

1

4.7k

R13

4.7k

1

2

4.7k

R17

4.7k

1

R30 1.5k

R30 1.5k

1

2

4.7k

R19

4.7k

1

2

4.7k

R11

4.7k

1

U1

TUSB3210

U1

TUSB3210

DM0

19

DP0

18

SDA

11

X1

61

X2

60

GND2

24

GND1

5

SCL

12

PUR

17

TEST1

15

TEST0

14

GND3

42

RST

13

GND4

59

VCC1

10

VCC2

39

P3.0/RxD/S0

58

P3.1/TxD/S1

57

P3.2

56

P3.4/T0

54

P0.0

43

P0.1

44

P0.2

45

P0.3

46

P0.4

47

P0.5

48

P0.6

49

P0.7

50

VCC3

62

SUSP

16

P1.0

31

P1.1

32

P1.2

33

P1.3

34

P1.4

35

P1.5

36

P1.6

40

P1.7

41

P2.0

22

P2.1

23

P2.2

25

P2.3

26

P2.4

27

P2.5

28

P2.6

29

P2.7

30

VREN

38

VDDOUT

37

S2

8

S3

9

P3.3/INT1#

55

P3.5

53

P3.6

52

P3.7

51

SELF/BUS

21

TEST2

20

1

1

2

2

3

3

4

4

6

6

7

7

6

3

6

3

64

64

+5V

DM

DP

GND

J1

Type B USB-Shield

+5V

DM

DP

GND

J1

Type B USB-Shield

3

1

2

4

5

6

R25

301

1

2

J

P

_

3

_

1

JP

_3_1

1

3

2

-NP

R44

-NP

1

2

-NP

R47

-NP

1

2

R5

15k R5

15k

1

2

C41

0.1uF

C40

0.1uF

R23

4.7k

C45

33pF

C45

33pF

1

2

SW10

SW10

1

2

4

3

5

J

P

_

3

_

3

JP

_3_3

1

3

2

J

P

_

3

_

1

3

JP

_3_13

1

3

2

-NP

R48

-NP

1

2

R79

10k

R79

10k

1

2

4.7k

R14

4.7k

1

R20

0

R20

0

1

2

J

P

_

3

_

6

JP

_3_6

1

3

2

R28

10k

R28

10k

1

2

C55

0.1uF C55

0.1uF

4.7k

R71

4.7k

1

C42

0.1uF

SW1

TDA04H0SK1

SW1

TDA04H0SK1

1

2

8

7

3

4

6

5

R34
10k

1

2

R53
2k

R53
2k

1

2

4.7k

R15

4.7k

1

R22

4.7k

1

2

12MHZ1

SE3409-ND

12MHZ1

SE3409-ND

1

2

SW4

SDA01H0SBR

SW4

SDA01H0SBR

1

2

R29
10k

R29
10k

1

2

R49
1.5k

R49
1.5k

1

2

4.7k

R18

4.7k

1

2

D4

LED GREEN

D4

LED GREEN

2

1

R51
1.5k

R51
1.5k

1

2

C70

10uF/6.3V

C70

10uF/6.3V

R21

15K

R21

15K

1

2

J

P

_

3

_

2

JP

_3_2

1

3

2

4.7k

R12

4.7k

1

R37

0.0

1

2

R24

4.7k

1

2

R50

1M

1

2

C47

0.1uF

D1

LED GREEN

D1

LED GREEN

2

1

D2

D2

M

B

R

S

2

0

4

0

L

T

3

2

1

R4

1.5k

R4

1.5k

1

2

J

P

_

3

_

7

JP

_3_7

1

3

2

R8

0.0

R8

0.0

1

2

C46

1uF

C46

1uF

R45

-NP

R45

-NP

1

2

R35

NP

1

2

SW2

TDA04H0SK1

SW2

TDA04H0SK1

1

2

8

7

3

4

6

5

-NP

R42

-NP

1

2

4.7k

R10

4.7k

1

U9

TXB0102

U9

TXB0102

VB+

7

GND

2

VA+

3

A1

5

A2

4

OE

6

B2

1

B1

8

4.7k

R16

4.7k

1

2

R26

301

1

2

R36

301

1

2

R7

33

R7

33

1

2

R27

301

1

2

J

P

_

3

_

5

JP

_3_5

1

3

2

R39
DNI

R39
DNI

1

2

R6

33

R6

33

1

2

J

P

_

3

_

4

JP

_3_4

1

3

2

D5

LED GREEN

D5

LED GREEN

2

1

R57

-NP

R57

-NP

1

2

-NP

R43

-NP

1

2

U4

24LC512

U4

24LC512

Vcc

8

SDA

5

A0

1

A1

2

A3

3

Vss

4

SCL

6

WP

7

U2

TPS77333DGK

U2

TPS77333DGK

EN#

3

IN1

5

OUT1

7

SENSE

1

OUT2

8

IN2

6

GND

4

RESET#

2

D3

LED GREEN

D3

LED GREEN

2

1

JMP9

Header 5x1

1

JMP9

Header 5x1

-NP

R46

-NP

1

2

Q1

2N2222A
Q1

2N2222A

3

1

2

J

P

_

3

_

8

JP

_3_8

1

3

C44

33pF

C44

33pF

1

2

R31 1.5k

R31 1.5k

1

2

R38
DNI

R38
DNI

1

2

J

P

_

3

_

9

JP

_3_9

1

3

2

www.ti.com

CDCM6208V2 EVM Board Schematic

8

CDCM6208V2 EVM Board Schematic

Figure 4. CDCM6208V1/CDCM6208V2 EVM Control Modes

11

SCAU049 – May 2012

CDCM6208 Evaluation Board

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Copyright © 2012, Texas Instruments Incorporated

Summary of Contents for CDCM6208

Page 1: ...put Signal Type Selection 6 6 13 Additional Features 6 7 Configuring the Board 6 7 1 Selecting the Interface Connection 6 7 2 Configuring the Power Supply 6 7 3 Configuring the Reference Inputs 8 7 4...

Page 2: ...wered USB port or control pins Rapid configuration with provided EVM Control Software Powered from the USB port or by an external 3 3 2 5 or 1 8 V power supply Single ended or differential input exter...

Page 3: ...so be populated with a 0 resistor for a differential input signal The device does not have any internal termination or biasing therefore proper biasing and termination options are available on the EVM...

Page 4: ...ial screen of the GUI Figure 2 Initial GUI Screen 6 Using the EVM Control Software The graphical layout of the programming software is based on the functional structure of the CDCM6208 The following s...

Page 5: ...internal to the device with R3 and C3 register selectable Appropriate C3 and R3 values are selected using the pull down menu 6 7 Feedback Divider Selection The feedback divider N is made up of a casca...

Page 6: ...ed mode 7 1 Selecting the Interface Connection The CDCM6208 is configurable via the serial interface or control pins Both SPI and I2 C interface options are available for configuring the device Switch...

Page 7: ...om the USB with 1 8 V and 3 3 V supplies Jumpers for the header JP_3_10 are set to 3 3 V regulator and for JP_3_3_12 header to 1 8 V regulator DVDD JMP5 VDD_PLL JMP1 VDD_IN JMP4 and VDD_OUTB JMP3 supp...

Page 8: ...with a 0 resistor for PRI_REF and C29 with a 0 resistor for SEC_REF SEC_REF accepts crystal input SEC_REF input is configured for crystal input by default and a 25 MHz crystal is placed in Y1 C27 and...

Page 9: ...S R3 10 Indicates unlock status for PLL 0 PLL locked 1 PLL unlocked In pin mode this becomes an input pin and the header pin STATUS1_PIN0 is controlled by PIN0 which connects to GND or DVDD Device Con...

Page 10: ...the CDCM6208 A separate application note describes how to generate debug and load the needed software for the MSP430 SW1 and SW2 must be in the OFF position while SW3 must be in the ON position for c...

Page 11: ...DP GND J1 Type B USB Shield 5V DM DP GND J1 Type B USB Shield 3 1 2 4 5 6 R25 301 1 2 JP_3_1 JP_3_1 1 3 2 NP R44 NP 1 2 NP R47 NP 1 2 R5 15k R5 15k 1 2 C41 0 1uF C40 0 1uF R23 4 7k C45 33pF C45 33pF 1...

Page 12: ...Y7 34 Y7_P 35 Y7_N 36 VDD_PLL1 37 VDD_PLL2 38 VDD_VCO 39 REG_CAP 40 ELF 41 SYNCN 42 PDN 43 RESETN PWR 44 STATUS1 PIN0 45 STATUS0 46 SI_MODE1 47 DVDD 48 POWER_PAD 49 VDD1_Y0_Y1 13 Y0_P 14 Y0_N 15 Y1_N...

Page 13: ...100 C3 242 5pF DVDD 1p2V 0p9V DVDD 1p2V 0p9V PRI_REFP 2 PRI_REFN 2 SEC_REFP 2 SEC_REFN 2 ELF 2 R89 DNI 1 2 R73 0 0 R73 0 0 1 2 C25 1uF C25 1uF R88 1 3k 1 2 C27 10pF C27 10pF C30 1uF C30 1uF R72 0 0 R...

Page 14: ...4 1uF C4 1uF MS A R V E MS A R V E J7 1 MS A R V E MS A R V E J9 1 C8 1uF C8 1uF C1 1uF C1 1uF MS A R V E MS A R V E J3 1 C5 1uF C5 1uF C2 1uF C2 1uF C6 1uF C6 1uF MS A R V E MS A R V E J4 1 2 3 4 5 2...

Page 15: ...S A R V E MS A R V E J12 1 R229 0 R229 0 1 2 C14 1uF C14 1uF R231 0 R231 0 1 2 R62 DNI_49 9 R62 DNI_49 9 1 2 C9 1uF C9 1uF R225 0 R225 0 1 2 R64 DNI_49 9 R64 DNI_49 9 1 2 C13 1uF C13 1uF R227 0 R227 0...

Page 16: ...R32 0 R41 10k R41 10k 1 2 C37 510pF C37 510pF C62 0 01uF C62 0 01uF R54 10k 1 2 JMP2 Header T 4pin 1 4 Header T 4pin R56 0 R56 0 R55 0 R55 0 R70 R70 17 8k 1 2 C31 10uF 6 3V R68 R68 25 5k 1 2 P3 VDD 2...

Page 17: ...VDD DVDD P1p1 DVDD P1p0 P1p0 P1p1 SCL_PIN4 2 SCS_AD1_PIN3 2 SDI_SDA_PIN1 2 RESETN 2 R77 4 7k 1 R3 R3 47k 1 2 C67 2 2nF P12 TSM 107 01 S DV FET Tool Connector 1 2 4 6 8 10 12 14 3 5 7 9 11 13 0201 X7R...

Page 18: ...ncy energy and has not been tested for compliance with the limits of computing devices pursuant to part 15 of FCC or ICES 003 rules which are designed to provide reasonable protection against radio fr...

Page 19: ...na type and its gain should be so chosen that the equivalent isotropically radiated power e i r p is not more than that necessary for successful communication This radio transmitter has been approved...

Page 20: ...roduct only after you obtained the license of Test Radio Station as provided in Radio Law of Japan with respect to this product or 3 Use of this product only after you obtained the Technical Regulatio...

Page 21: ...property damage personal injury or death If there are questions concerning these ratings please contact a TI field representative prior to connecting interface electronics including input power and in...

Page 22: ...egulatory and safety related requirements concerning its products and any use of TI components in its applications notwithstanding any applications related information or support that may be provided...

Page 23: ...Mouser Electronics Authorized Distributor Click to View Pricing Inventory Delivery Lifecycle Information Texas Instruments CDCM6208V1EVM CDCM6208V2EVM...

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