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5-2

Figure 5–2. Schematic

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64

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47

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51

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49

SUSP

TEST1

TEST0

RST

SCL

SDA

VCC

S3

S2

DP1

DGND

GND

OVCR1

PWR01

PWR02

OCYR2

DP2

PUR

DP0

DM0

GND

SELF/BUS

P2.0

P2.1

GND

P2.2

P2.3

P2.4

P2.5

P2.6

P2.7

P1.0

P1.1

P0.5

P0.4

P0.3

P0.2

P0.1

P0.0

GND

P1.7

P1.6

VCC

VREN

VDDOUT

P1.5

P1.4

P1.3

P1.2

DM2

VCC

X1

X2

GND

P3.0/S0

P3.1/S1

P3.2

P3.3

P3.4

P3.5

P3.6

P3.7

P0.7

P0.6

R16

1.5 K

1.8 V

DVCC_33

DGND

DVCC_33

J3

J4

1

2

3

4

5

6

7

8

9

10

11

12

13

14

1

2

3

4

5

6

7

8

9

10

11

12

13

14

DM1

R22

30

R25

1.5 K

R26

30

Case

Case

Case

Case

R38

0

Power

V–

DP

DM

V+

DGND

J5

4

3

2

1

SUSP

R20

20 k

R21

20 k

33 SUSP

R24

10

S1

1 A

2 A

3 B

4 B

DGND

R35

0

R34

0

R33

0

R32

0

R31

0

R30

0

DGND

P3.0

P3.1

S2

S3

33 SUSP

R27

30.1 k

R23

200 k

DVCC_33

DGND

C1

1

R17

1 k

R15

1 k

DVCC_33

S2

S3

DVCC_33

DGND

GND

8

7

6

5

DGND

33 SUSP

EN1

8

7

6

5

GND

GND

GND

GND

1

2

3

4

DGND

EEPROM

V+

DM

DP

V–

+

C16

J7

1

2

3

4

FB3

DGND

C10

R14

R19

C9

R13

R18

FB4

22 pF

15 k

30

22 pF

15 k

30

Case

Case

V–

DP

DM

V+

+

C15

J6

4

3

2

1

FB2

C8

R11

C7

22 pF

15 k

22 pF

R12

15 k

30

R10

30

R9

DGND

FB1

XU1

1

2

3

4

OUT2

LDO_OUT

VIN

OUT1

EN2

OC

GND

DGND

R36

0

R29

0

R37

0

100

µ

F

C5

0.1

µ

F

C3

Power

DGND

2

GND

3

GND

4

5

NC

DVCC_33

U1

U2

C6

C4

4.7

µ

F

1.8 V

+

DGND

1.8 V

LDO

X1

12 MHz OSC

C1

C2

33 pF

33 pF

DGND

DVCC_33

DGND

P3.0

P3.1

R8

51

1

R6

51

1

R5

51

1

R4

51

1

D2

D3

D4

D5

D6

D7

R3

51

1

J1

P3.1

1

2

R7

51

1

J2

P3.0

1

2

R2

51

1

R1

51

1

D1

SUSP

33 SUSP

DVCC_33

Q1

C12

0.1

µ

F

C13

C14

C17

C18

C19

C20

DVCC_33

DGND

U4

TUSB2136PM

1

0.1

µ

F

0.1

µ

F

0.1

µ

F

0.1

µ

F

0.1

µ

F

0.1

µ

F

0.1

µ

F

0.1

µ

F

0.1

µ

F

0.1

µ

F

100

µ

F

100

µ

F

Summary of Contents for TPS2149

Page 1: ...September 2001 Mixed Signal Products User s Guide SLVU050...

Page 2: ...t that any license either express or implied is granted under any TI patent right copyright mask work right or other TI intellectual property right relating to any combination machine or process in wh...

Page 3: ...handling or use of the goods Please be aware that the products received may not be regulatory compliant or agency certified FCC UL CE etc Due to the open construction of the product it is the user s r...

Page 4: ...here is uncertainty as to the load specification please contact a TI field representative During normal operation some circuit components may have case temperatures greater than 60 C The EVM is design...

Page 5: ...ta sheet literature number SLLS442 FCC Warning This equipment is intended for use in a laboratory test environment only It gen erates uses and can radiate radio frequency energy and has not been teste...

Page 6: ...vi...

Page 7: ...orts 3 2 3 3 Power Supplies 3 2 3 4 Light Emitting Diodes LEDs 3 2 3 5 Jumpers and Test Points 3 3 3 6 EEPROM 3 3 4 Bill of Materials 4 1 5 EVM Layout 5 1 Figures 1 1 USB Keyboard Hub EVM Hardware 1 2...

Page 8: ...viii...

Page 9: ...he USB keyboard hub evaluation module EVM Information and instruction presented throughout this document assumes user familiarity with universal serial bus USB protocol and the use of common lab testi...

Page 10: ...tion compliant If the BIOS is not compliant the system may not boot when USB devices are connected at power up and the EVM may not function in DOS mode Additionally one or more USB devices are needed...

Page 11: ...ontroller made by Texas Instruments to communicate with the host and the downstream devices A USB cable is needed to connect the root hub of the PC to the EVM type B connector J5 The downstream device...

Page 12: ...2 2...

Page 13: ...e USB keyboard hub EVM is summarized in paragraphs 3 1 through 3 6 Topic Page 3 1 TPS2149 Setup 3 2 3 2 Interfaces and USB Ports 3 2 3 3 Power Supplies 3 2 3 4 Light Emitting Diodes LEDs 3 2 3 5 Jumpe...

Page 14: ...ee Section 3 4 3 3 Power Supplies The USB keyboard hub EVM requires no external power supply for operation The EVM receives power via the USB cable The TPS2149 low dropout regulator is used to generat...

Page 15: ...sed for application specific firmware The TUSB2136 will automatically read the EEPROM at power up via the I2C bus A header must be added to the application firmware before loading into the EEPROM This...

Page 16: ...3 4...

Page 17: ...urata GRM39C0G330J050AD Capacitor ceramic 33 pF 16 V 20 9 2 C15 C16 7343D NEMCO LSR100 16DK125 Capacitor tantalum 100 F 16 V 20 10 1 C4 CAP_TANTALUM_B Sprague 293D475X0010B2T Capacitor tantalum 4 7 F...

Page 18: ...26 R0805 Std Std Resistor chip 30 1 10 W 5 25 2 R27 R28 R0805 Std Std Resistor chip 30 1 k 1 10 W 5 26 1 R23 R0805 Std Std Resistor chip 200 k 1 10 W 5 27 8 R1 R8 R0805 Std Std Resistor chip 511 1 10...

Page 19: ...5 1 EVM Layout EVM Layout Figure 5 1 TPS2149 Silk Screen Chapter 5...

Page 20: ...20 k 33 SUSP R24 10 S1 1 A 2 A 3 B 4 B DGND R35 0 R34 0 R33 0 R32 0 R31 0 R30 0 DGND P3 0 P3 1 S2 S3 33 SUSP R27 30 1 k R23 200 k DVCC_33 DGND C11 R17 1 k R15 1 k DVCC_33 S2 S3 DVCC_33 DGND GND 8 7 6...

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