Texas Instruments DS90UB934-Q1 Скачать руководство пользователя страница 21

OPEN: I2C Address = 0x30 (7'b)

GND

IDX

GND

40.2k

R27

0

R19

DNP

GND

0.1µF

C6

DNP

0.01µF

C7

DNP

GND

VDDIO

OEN/XIN/REFCLK

MODE

GND

1

2

3

4

5

6

7

8

9

10

11

12

13

14

15

16

J2

TSW-108-07-G-D

GND

GPIO0
GPIO1
GPIO2
GPIO3/INTB

HSYNC/GPIO4
VSYNC/GPIO5
PCLK/GPIO6

GND

10k

R16

10k

R17

PDB

GND

10k

R5

DNP

4

1
2
3

J4

0022112042

GND

0

R25

0

R26

I2C_SDA

I2C_SCL

0.1µF

C34

GND

4.7k

R21

4.7k

R20

I2C_SCL
I2C_SDA

VDDIO

S2

10µF

C3

VDD1V8

VDD3V3

1
2
3

J1

TSW-103-07-G-S

OEN/XIN/REFCLK

MODE

IDX

1

2

J3

DNP

GND

GND

10.0k

R28

DNP

12pF

C37

DNP

12pF

C38

DNP

10.0k

R24

DNP

OSS_SEL/XOUT

OEN/XIN/REFCLK

0

R29

DNP

i

LABEL "REF_CLK

470

R4

GND

100k

R6

VDD3V3

Green

2

1

D1

1
2

J34

SHORTED: I2C Address = 0x3D (7'b)

VDD1V8

VDDIO

C

SI

(953

)

- Co

a

x

R

A

W

12 Lo

w

-F

req

(9

13) - Co

a

x

R

A

W

12 H

ig

h

-F

re

q

(91

3) -

C

o

a

x

R

A

W1

0 (

9

13) -

C

o

a

x

GPIO3/INTB

10k

R37

10k

R38

BISTEN

SEL

TESTEN

GND

VDDIO

120 ohm

L8

1µF

C30

0.1µF

C31

0.01µF

C32

0.01µF

C33

GND

VDD1V1

VDDFPD_1V1

GND

VDDCSI_1V1

VDDD_1V1

GND

0.01µF

C10

1µF

C8

0.1µF

C9

0.01µF

C13

1µF

C11

0.1µF

C12

0.01µF

C16

0.01µF

C17

1µF

C14

0.1µF

C15

0

R23

DNP

GND

VDD_1P8_CSI

VDD1V8

120 ohm

L1

1µF

C18

0.1µF

C19

0.01µF

C20

VDDFPD_1V8

0.01µF

C24

0.01µF

C25

1µF

C22

0.1µF

C23

1µF

C26

0.1µF

C27

0.01µF

C28

0.01µF

C29

10µF

C21

GND

VDDP_1V8

ROUT_8/CSI_D0_P
ROUT_9/CSI_D0_N

ROUT_6/CSI_D1_P
ROUT_7/CSI_D1_N

ROUT_2/CSI_D2_P
ROUT_3/CSI_D2_N

ROUT_0/CSI_D3_P
ROUT_1/CSI_D3_N

ROUT_1/CSI_D3_N

ROUT_0/CSI_D3_P

ROUT_8/CSI_D0_P
ROUT_9/CSI_D0_N

ROUT_6/CSI_D1_P
ROUT_7/CSI_D1_N

ROUT_3/CSI_D2_N

ROUT_2/CSI_D2_P

ROUT_10/CSI_CLK0_P
ROUT_11/CSI_CLK0_N

ROUT_4/CSI_CLK1_P
ROUT_5/CSI_CLK1_N

I2C_SCL
I2C_SDA

GPIO3/INTB

ROUT_10/CSI_CLK0_P
ROUT_11/CSI_CLK0_N

ROUT_4/CSI_CLK1_P
ROUT_5/CSI_CLK1_N

GPIO0
GPIO1
GPIO2

HSYNC/GPIO4
VSYNC/GPIO5
PCLK/GPIO6

GPIO0
GPIO1
GPIO2

HSYNC/GPIO4
VSYNC/GPIO5
PCLK/GPIO6

RIN0_P
RIN0_N

RIN1_P
RIN1_N

RIN0_P
RIN0_N

RIN1_P
RIN1_N

VDDIO

VDD_1P8_CSI

VDDFPD_1V8

VDDP_1V8

VDDFPD_1V1

VDDCSI_1V1

VDDD_1V1

GND

CMLOUT_P
CMLOUT_N

0.1µF

C1

0.1µF

C2

LOCK

PASS

TESTEN

BISTEN

MODE

IDX

GPIO3/INTB

VDDIO

4.7k

R22

I2C_SCL
I2C_SDA

OEN/XIN/REFCLK
OSS_SEL/XOUT

10µF

C39

10µF

C40

10µF

C41

10µF

C36

DNP

10µF

C35

DNP

PDB

PDB

MODE

BISTEN

TESTEN

IDX

OEN/XIN/REFCLK

OSS_SEL/XOUT

VDD1V8

GPIO3/INTB

SEL

SEL

MIPI_SEL

MIPI_SEL

LOCK

PASS

1
2

J36

5-146261-1

1
2

J37

5-146261-1

GND

GND

LOCK

PASS

6

3

1

8

2

7

5

4

SW1

219-4LPST

6

3

1

8

2

7

5

4

S1
219-4LPST

GND

10k

R85

10k

R84

VDDIO

OEN/XIN/REFCLK
OSS_SEL/XOUT

REMOVE R84 and R85 in CSI Mode

GND

13.3k

R14

210k

R35

56.2k

R13

68.1k

R154

137k

R34

82.5k

R153

102k

R33

0

R36

DNP

VDDFPD_1V1

0

R155

DNP

10k

R156

VDDIO

GND

0

R157

MIPI_SEL

DO NOT POPULATE CRYSTAL

1

2

3

Q1

1

2

25MHz

Y2

DNP

120 ohm

L2

DNP

120 ohm

L3

120 ohm

L4

DNP

120 ohm

L5

120 ohm

L6

DNP

22µF

C500

DNP

22µF

C501

DNP

22µF

C502

DNP

22µF

C503

DNP

22µF

C504

DNP

22µF

C505

DNP

22µF

C506

DNP

22µF

C507

DNP

22µF

C508

DNP

22µF

C509

DNP

22µF

C510

DNP

22µF

C511

DNP

22µF

C512

DNP

22µF

C513

DNP

22µF

C514

DNP

22µF

C515

DNP

22µF

C516

DNP

22µF

C517

DNP

22µF

C518

DNP

22µF

C519

DNP

22µF

C520

DNP

1

H1

BMI-S-201-F

DNP

DESERIALIZER EMI/EMC SHIELD

GND

TP16

TP17

100

R182

GND

0

R187

DNP

0

R188

DNP

0

R189

DNP

GPIO4

GPIO6

PCLK needs to be 50 ohm

GPIO4

GPIO5

GPIO5

GPIO6

i

LABEL "GPIO3/INTB"

2

3

S3B

1

4

S3A

VCC

4

E/D

1

GND

2

OUT

3

25MHz

Y1

7C-25.000MCB-T

DNP

BISTEN

6

ROUT_10/C

12

ROUT_11/CSI_CLK0-

11

ROUT_4/C

19

ROUT_5/CSI_CLK1-

18

ROUT_8/

14

ROUT_9/CSI_D0-

13

ROUT_6/

16

ROUT_7/CSI_D1-

15

ROUT_2/

22

ROUT_3/CSI_D2-

21

ROUT_0/

24

ROUT_1/CSI_D3-

23

GPIO_0

28

GPIO_1

27

GPIO_2

26

GPIO_3/INTB

25

HSYNC/GPIO_4

10

VSYNC/GPIO_5

9

PCLK/GPIO_6

8

I2C_SCL

2

I2C_SDA

1

IDX

35

LOCK

48

CMLOUTN

39

CMLOUTP

38

MODE

37

PAD

49

PASS

47

PDB

30

RIN0+

41

RIN0-

42

RIN1+

32

RIN1-

33

TESTEN

44

VDDIO

29

VDDIO

7

VDD_1P1_CSI

20

VDD_1P1_D

3

VDD_1P1_FPD

34

MIPI_SEL

43

VDD_1P8

17

VDD_1P8_FPD0

40

VDD_1P8_FPD1

31

VDD_1P8_P0

45

VDD_1P8_P1

36

SEL

46

OEN/XIN/REFCLK

5

OSS_SEL/XOUT

4

U1

DS90UB934TRGZRQ1

i VDDIO
i SCL
i SDA
i GND

0.1µF

C4

0.1µF

C5

0

R11

DNP

0

R12

DNP

0

R18

DNP

SH-J1

Assembly Note

ZZ12

Place Jumper on pins 1 and 2 for J1

MODE and IDX Resistors
are +/-1% tolerance.

Place 10uF, 1uF, 0.1uF
and 0.01uF bypass caps on
bottom of board, close to
U1 VDD pins

Layout note: For all differential pairs(CSI-2 and FPD) in this
design follow the guidelines decribed below: Route together
with controlled differential 100ohm impedance and controlled
single ended 50ohm impedance for all single ended signals
(ROUT, HS, VS, PCLK,), route with controlled single ended 50
ohm impedance. Keep away from other high speed signals.
Keep lengths within 10mil of each other. Keep traces on layers
adjacent to the ground plane. Keep the number of VIAS to
minimum. If VIAS are used, make it symetrical through all
signals. Keep diff pairs separated at least by x3 of the trace
width. NO STUBS on the signal path, components should be
placed such that the signals can be routed in pass-through
manner.

100 ohm diff pair. +/-5%.
Resistors have to be placed
close to U1.
+/- 10 mil for all inter/intra
pairs.

DS90UB934 cannot receive
external 1.1V supply - Please
keep R23 unpopulated for
DS90UB934 and populated for
DS90UB954.

C1 & C2 should be fitted
as a 0.1uF when
interfacing with
DS90UB913A &
DS90UB933. C1 & C2
fitted with 0.033uF for
interfacing with
DS90UB953.

Copyright © 2016, Texas Instruments Incorporated

www.ti.com

PCB Schematics

21

SNLU220 – December 2016

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Copyright © 2016, Texas Instruments Incorporated

Using the DS90UB934-Q1EVM Evaluation Module

7

PCB Schematics

Содержание DS90UB934-Q1

Страница 1: ...ions as a USB2ANY bridge for connecting a PC This works with the Analog LaunchPAD GUI tool NOTE The demo board is not intended for EMI testing The demo board was designed for easy accessibility to dev...

Страница 2: ...9 Bottom Overlay 31 List of Tables 1 Power Supply 5 2 POC Power Supply Feed Configuration 6 3 Parallel LVCMOS Output Signals J7 Pinout 6 4 FPD Link III Signals 6 5 IDx I2 C Device Address Select J34 7...

Страница 3: ...ss I2 C with Fast mode Plus up to 1 Mbps Flexible GPIOs for camera sync and functional safety Single 12 V power supply for EVM 1 2 System Requirements The major components of the DS90UB934 Q1EVM are D...

Страница 4: ...VFEED power supply for each channel on J14 J16 J32 J33 and J35 headers 5 Plug a sensor into the DS90UB913A DS90UB933 serializer boards to create four camera modules 6 Connect the camera module to cha...

Страница 5: ...ower Over Coax Interface The DS90UB934 Q1EVM offers two power over coax POC interfaces to connect cameras through a coaxial cable with FAKRA connectors Power is delivered on the same conductor that is...

Страница 6: ...EN if using this configuration Short pins 1 2 12 V power supply to VFEED_POC1 Short pins 2 3 12 V power supply to VFEED_POC2 J32 1 VFEED1 Remote power supply connection to CN1 Short J32 1 2 VFEED_POC1...

Страница 7: ...8 b Default Table 6 I2 C Interface Header J4 REFERENCE SIGNAL DESCRIPTION J4 1 VDDIO I2 C bus voltage tied to VDDIO J4 2 I2C_SCL I2 C Clock Interface for primary I2 C bus J4 3 I2C_SDA I2 C Data Inter...

Страница 8: ...if GPIO0 is ON D3 GPIO1 Illuminates if GPIO1 is ON D4 GPIO2 Illuminates if GPIO2 is ON D1 GPIO3 INTB Illuminates if GPIO3 is ON D9 LOCK Illuminates if device is Locked to a serializer D15 PASS Illumi...

Страница 9: ...and then select the Next button 5 There will then be a screen that allows the creation of a desktop icon After selecting the desired choices select the Next button 6 Select the Install button and the...

Страница 10: ...ubmit Documentation Feedback Copyright 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module Figure 5 Initial ALP Screen After selecting the DS90UB934 the following screen sh...

Страница 11: ...n Feedback Copyright 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module 4 5 Information Tab The Information tab is shown in Figure 7 Figure 7 ALP Information Tab 4 6 Regis...

Страница 12: ...dback Copyright 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module 4 7 Registers Tab Address 0x00 Selected Address 0x00 is selected as shown in Figure 9 Note that the Valu...

Страница 13: ...tents by bits Any register address displayed can be expanded Figure 10 ALP Device ID Expanded Any RW Type register can be written into by writing the hex value into the Value box or putting the pointe...

Страница 14: ...the device in an interactive or automated fashion WARNING Directly interacting with devices either through register modifications or calling device support library functions can effect the performanc...

Страница 15: ...0UB934 Q1EVM Evaluation Module 5 Troubleshooting ALP Software 5 1 ALP Loads the Incorrect Profile If ALP opens with the incorrect profile loaded the correct profile can be loaded from the USB2ANY Aard...

Страница 16: ...ht 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module Figure 13 Remove Incorrect Profile Find the correct profile under the Select a Daughter Board list highlight the prof...

Страница 17: ...ti com Troubleshooting ALP Software 17 SNLU220 December 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module Figure 15 Finish Se...

Страница 18: ...up Figure 16 ALP No Devices Error It may also be that the USB2ANY driver is not installed Check the device manager There should be a HID compliant device under the Human Interface Devices as shown bel...

Страница 19: ...g the DS90UB934 Q1EVM Evaluation Module Figure 18 ALP in Demo Mode Disable the demo mode by selecting the Preferences pull down menu and un checking Enable Demo Mode Figure 19 ALP Preferences Menu Aft...

Страница 20: ...plied only as a courtesy to our valued customers It is not intended to be an endorsement of any particular equipment or supplier Logic Analyzer Keysight Technologies www keysight com Aardvark I2 C SPI...

Страница 21: ...ohm L3 120 ohm L4 DNP 120 ohm L5 120 ohm L6 DNP 22 F C500 DNP 22 F C501 DNP 22 F C502 DNP 22 F C503 DNP 22 F C504 DNP 22 F C505 DNP 22 F C506 DNP 22 F C507 DNP 22 F C508 DNP 22 F C509 DNP 22 F C510 DN...

Страница 22: ...T_9 CSI_D0_N ROUT_6 CSI_D1_P ROUT_7 CSI_D1_N ROUT_3 CSI_D2_N ROUT_2 CSI_D2_P ROUT_10 CSI_CLK0_P ROUT_11 CSI_CLK0_N ROUT_4 CSI_CLK1_P ROUT_5 CSI_CLK1_N HSYNC GPIO4 VSYNC GPIO5 PCLK GPIO6 GND 1 3 2 4 5...

Страница 23: ...35 P2 7 UCB0STE UCA0CLK 36 P3 0 UCB0SIMO UCB0SDA 37 P3 1 UCB0SOMI UCB0SCL 38 P3 2 UCB0CLK UCA0STE 39 P3 3 UCA0TXD UCA0SIMO 40 P3 4 UCA0RXD UCA0SOMI 41 P3 5 TB0 5 42 P3 6 TB0 6 43 P3 7 TB0OUTH SVMOUT 4...

Страница 24: ...CN1_P CN1_N CN2_P CN2_N 10 F C73 10 F C75 10 F C77 10 F C79 2 00k R72 DNP 2 00k R77 DNP TP2 100 H L14 100 H L16 10 H L13 10 H L15 2 00k R73 2 00k R74 2 00k R78 2 00k R79 SH J32 1 SH J32 2 Assembly Not...

Страница 25: ...07 G S i LABEL VDD3V3 i LABEL GND VDD_3V3 VDD_1V8 i LABEL EXP_VDD18 i LABEL EXP_VDD33 Orange D13 1 2 4 3 T1 ACM9070 701 2PL 1 2 J20 5 146261 1 VDDIO 220 R127 GND Super Red 2 1 D14 i LABEL 12V 0 R88 0...

Страница 26: ...R112 DNP 1 2 3 J19 TSW 103 07 G S DNP VDD_3V3 i LABEL EXP_VDD33 i LABEL TPS74801 IN i LABEL GND 1 2 J25 5 146261 1 DNP VDD1V1 i LABEL VDD1V1 i LABEL VDD1V1 OUT TP7 DNP TP8 DNP IN 1 IN 2 PG 3 BIAS 4 E...

Страница 27: ...ard Layout 27 SNLU220 December 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module 8 Board Layout Figure 20 Top Overlay Figure...

Страница 28: ...d Layout www ti com 28 SNLU220 December 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module Figure 22 Top Layer 1 Figure 23 Lay...

Страница 29: ...w ti com Board Layout 29 SNLU220 December 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module Figure 24 Layer 3 Figure 25 Layer...

Страница 30: ...Layout www ti com 30 SNLU220 December 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module Figure 26 Layer 5 Figure 27 Bottom La...

Страница 31: ...m Board Layout 31 SNLU220 December 2016 Submit Documentation Feedback Copyright 2016 Texas Instruments Incorporated Using the DS90UB934 Q1EVM Evaluation Module Figure 28 Bottom Solder Figure 29 Bottom...

Страница 32: ...are returned during the warranty period to the address designated by TI and that are determined by TI not to conform to such warranty If TI elects to repair or replace such EVM TI shall have a reasona...

Страница 33: ...transmitter has been approved by Industry Canada to operate with the antenna types listed in the user guide with the maximum permissible gain and required antenna impedance for each antenna type indic...

Страница 34: ...ified allowable ranges some circuit components may have elevated case temperatures These components include but are not limited to linear regulators switching transistors pass transistors current sens...

Страница 35: ...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 USE L...

Страница 36: ...sponsible for compliance with all legal regulatory and safety related requirements concerning its products and any use of TI components in its applications notwithstanding any applications related inf...

Страница 37: ...Mouser Electronics Authorized Distributor Click to View Pricing Inventory Delivery Lifecycle Information Texas Instruments DS90UB934 Q1EVM...

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