Texas Instruments DRV2624EVM-CT User Manual Download Page 17

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Bill of Materials

17

SLOU435B – December 2015 – Revised February 2019

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DRV2624 ERM, LRA haptic driver evaluation kit

9

Bill of Materials

Item #

Designator

Quantity

Value

Part Number

Manufacturer

Description

Package Reference

1

!PCB1

1

AIP044

Any

Printed Circuit Board

2

ANT1, ANT4, L2, L3

4

2.4nH

LQG15HS2N4S02D

MuRata

Inductor, Multilayer, Air Core, 2.4 nH, 0.3 A, 0.15 ohm, SMD

0402 polarized

3

ANT3, C15, C18

3

1pF

GRM1555C1H1R0CA01D

MuRata

CAP, CERM, 1 pF, 50 V, +/- 5%, C0G/NP0, 0402

0402

4

ANT5, R3, R4, R6, R7, R9,
R39, R40, R46, R47, R48

11

0

CRCW04020000Z0ED

Vishay-Dale

RES, 0, 5%, 0.063 W, 0402

0402

5

ANT6

1

0.5pF

GRM1555C1HR50BA01D

MuRata

CAP, CERM, 0.5 pF, 50 V, +/- 20%, C0G, 0402

0402

6

BSL1, MSPRST1

2

TL1015AF160QG

E-Switch

Switch, Tactile, SPST-NO, 0.05A, 12V, SMT

Switch, 4.4x2x2.9 mm

7

C1, C2

2

470pF

C1005C0G1H471J

TDK

CAP, CERM, 470 pF, 50 V, +/- 5%, C0G/NP0, 0402

0402

8

C3, C4, C19, C38, C39, C40,
C41, C42, C43, C44, C45

11

0.1uF

GRM155R71C104KA88D

MuRata

CAP, CERM, 0.1 µF, 16 V, +/- 10%, X7R, 0402

0402

9

C5

1

0.27uF

GRM155R61A274KE15D

MuRata

CAP, CERM, 0.27 µF, 10 V, +/- 10%, X5R, 0402

0402

10

C6, C7, C8, C28, C29

5

0.1uF

GRM155R61C104KA88D

MuRata

CAP, CERM, 0.1uF, 16V, +/-10%, X5R, 0402

0402

11

C9, C30

2

10uF

GRM155R61A106ME44

MuRata

CAP, CERM, 10 µF, 10 V, +/- 20%, X5R, 0402

0402

12

C10, C33, C36

3

1uF

GRM155R61A105KE15D

MuRata

CAP, CERM, 1 µF, 10 V, +/- 10%, X5R, 0402, CAP, CERM,
1uF, 10V, +/-10%, X5R, 0402, CAP, CERM, 1 µF, 10 V, +/-
10%, X5R, 0402

0402

13

C11, C12, C13, C14, C22,
C23

6

12pF

GRM1555C1H120JA01D

MuRata

CAP, CERM, 12 pF, 50 V, +/- 5%, C0G/NP0, 0402, CAP,
CERM, 12 pF, 50 V, +/- 5%, C0G/NP0, 0402, CAP, CERM, 12
pF, 50 V, +/- 5%, C0G/NP0, 0402, CAP, CERM, 12 pF, 50 V,
+/- 5%, C0G/NP0, 0402, CAP, CERM, 12pF, 50V, +/-5%,
C0G/NP0, 0402, CAP, CERM, 12pF, 50V, +/-5%, C0G/NP0,
0402

0402

14

C16, C17

2

15pF

GRM1555C1H150JA01D

MuRata

CAP, CERM, 15 pF, 50 V, +/- 5%, C0G/NP0, 0402

0402

15

C20, C21

2

18pF

GRM1555C1H180JA01D

MuRata

CAP, CERM, 18pF, 50V, +/-5%, C0G/NP0, 0402

0402

16

C24, C25

2

10pF

GRM1555C1H100JA01D

MuRata

CAP, CERM, 10pF, 50V, +/-5%, C0G/NP0, 0402

0402

17

C26, C32

2

0.22uF

GRM155R71C224KA12D

MuRata

CAP, CERM, 0.22uF, 16V, +/-10%, X7R, 0402

0402

18

C27

1

0.47uF

GRM155R61C474KE01

MuRata

CAP, CERM, 0.47uF, 16V, +/-10%, X5R, 0402

0402

19

C31

1

4.7uF

GRM155R61A475M

MuRata

CAP, CERM, 4.7uF, 10V, +/-20%, X5R, 0402

0402

20

C34, C35

2

22uF

GRM21BR61C226ME44

MuRata

CAP, CERM, 22 µF, 16 V, +/- 20%, X5R, 0805

0805

21

C37

1

47pF

GRM1555C1E470JA01D

MuRata

CAP, CERM, 47pF, 25V, +/-5%, C0G/NP0, 0402

0402

22

C46

1

10uF

GRM155R61A106ME21D

MuRata

CAP, CERM, 10 µF, 10 V, +/- 20%, X5R, 0402

0402

23

D1, D13, D18

3

Green

LTST-C190GKT

Lite-On

LED, Green, SMD

1.6x0.8x0.8mm

24

D2, D3, D4, D5, D6, D7, D8,
D9, D10, D11, D12

11

SML312WBCW1

Rohm

LED, White, SMD

LED, 0603

25

D14

1

5.6V

MMSZ5232B-7-F

Diodes Inc.

Diode, Zener, 5.6V, 500 mW, SOD-123

SOD-123

26

D15

1

Green

150060VS75000

Wurth Elektronik eiSos

LED, Green, SMD

LED_0603

27

D16

1

Blue

LB Q39G-L2N2-35-1

OSRAM

LED, Blue, SMD

BLUE 0603 LED

28

D17

1

Yellow/gree
n

SML-P12MTT86

Rohm

LED, Yellow/green, SMD

0402 LED

29

H1

1

ELV1036A

AAC

AAC1036 LRA Actuator

Used in PnP output

30

H2

1

TI-EVACASE-BLACK

Royal Case

TI Black EVA Case

Used in PnP output

31

H3

1

3-5-468MP

3M

TAPE TRANSFER ADHESIVE 3" X 5YD

Used in PnP output

32

H4

1

2-5-4466W

3M

TAPE POLY FOAM 2" x 5YD

Used in PnP output

Summary of Contents for DRV2624EVM-CT

Page 1: ...aveform storage and auto resonance frequency tracking The DRV2624EVM CT Evaluation Module EVM is a complete demo and evaluation platform for the DRV2624 The kit includes a microcontroller linear actua...

Page 2: ...13 8 Layout 15 9 Bill of Materials 17 List of Figures 1 DRV2624EVM CT Board 1 2 Board Diagram 3 3 LRA Sharp Click Closed Loop Waveform 6 4 LRA Sharp Click Open Loop Waveform 6 5 ERM Sharp Click Closed...

Page 3: ...tic driver evaluation kit 1 Getting Started The DRV2624 can be used as a demonstration or evaluation tool When the DRV2624EVM CT evaluation module is powered on for the first time a demo application a...

Page 4: ...below to begin the demo 1 Out of the box the jumpers are set to begin demo mode using USB power The default jumper settings are found in the table below Jumper Default Position Description J3 Short p...

Page 5: ...and change based on the selected mode Table 1 Mode and Effects Table Mode Button Description Actuator Waveform Location Interface Mode 0 LEDs Off B1 Sharp Click ERM RAM Internal Trigger I2 C B2 Sharp...

Page 6: ...both ERM and LRA In closed loop operation for ERM s the driver automatically overdrives and brakes the actuator In open loop the waveform must be predefined with overdrive and braking For LRA s in clo...

Page 7: ...fference in acceleration between LRA auto resonance ON and LRA auto resonance OFF Notice that the acceleration is higher when driven at the resonant frequency The auto resonance ON waveform has 1 32 G...

Page 8: ...in GUI Mode 3 2 Haptics Control Console GUI Haptics Control Console HCC allows the user to have control over the DRV2624 driver through a number of controls and features To control the DRV2624EVM CT...

Page 9: ...sole The DRV2624 Console is divided into three sections Initialization Work Mode and Board Status as seen below in Figure 13 Each section allows the user to control the device on the EVM through I2C w...

Page 10: ...2624 and MSP430 I2 C bus Input Output Hardware configuration details can be found in the following sections 4 2 Power Supply Selection The DRV2624EVM CT can be powered by USB and an external power sup...

Page 11: ...ints OUT and OUT Figure 14 Terminal Block and Test Points The DRV2624 drives LRA and ERM actuators using a 20 kHz PWM modulated waveform but only the frequencies around the LRA resonant frequency or t...

Page 12: ...r IAR Embedded Workbench IDE 3 Download the DRV2624EVM CT source code and binaries from ti com 4 Connect the programmer to an available USB port 5 Connect the programmer to the J6 header on the DRV262...

Page 13: ...ic 13 SLOU435B December 2015 Revised February 2019 Submit Documentation Feedback Copyright 2015 2019 Texas Instruments Incorporated DRV2624 ERM LRA haptic driver evaluation kit 7 Schematic Figure 18 D...

Page 14: ...om 14 SLOU435B December 2015 Revised February 2019 Submit Documentation Feedback Copyright 2015 2019 Texas Instruments Incorporated DRV2624 ERM LRA haptic driver evaluation kit Figure 19 DRV2624EVM CT...

Page 15: ...OU435B December 2015 Revised February 2019 Submit Documentation Feedback Copyright 2015 2019 Texas Instruments Incorporated DRV2624 ERM LRA haptic driver evaluation kit 8 Layout Figure 20 Top Layer Fi...

Page 16: ...SLOU435B December 2015 Revised February 2019 Submit Documentation Feedback Copyright 2015 2019 Texas Instruments Incorporated DRV2624 ERM LRA haptic driver evaluation kit Figure 22 Layout Layer 3 Figu...

Page 17: ...1H120JA01D MuRata CAP CERM 12 pF 50 V 5 C0G NP0 0402 CAP CERM 12 pF 50 V 5 C0G NP0 0402 CAP CERM 12 pF 50 V 5 C0G NP0 0402 CAP CERM 12 pF 50 V 5 C0G NP0 0402 CAP CERM 12pF 50V 5 C0G NP0 0402 CAP CERM...

Page 18: ...2 RES 100k ohm 5 0 063W 0402 RES 100k ohm 5 0 063W 0402 0402 45 R5 1 0 18 ERJ 3RSFR18V Panasonic RES 0 18 1 0 1 W 0603 0603 46 R10 R38 R45 R49 4 1 5k CRCW04021K50JNED Vishay Dale RES 1 5k ohm 5 0 063W...

Page 19: ...Free NMOS 400mA Low Dropout Regulator with Reverse Current Protection DBV0005A DBV0005A 69 U9 1 TPD2E001IDRLRQ1 Texas Instruments Automotive Catalog Low Capacitance 15 kV ESD Protection Array for High...

Page 20: ...evisions may differ from page numbers in the current version Changes from Original December 2016 to A Revision Page Changed ROM to RAM in Waveform Location column in the Table 1 table 5 Deleted ROM Li...

Page 21: ...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 22: ...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 23: ...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 24: ...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 25: ...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 26: ...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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