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U
S
B
V
B
A
T
MSP
DRV
USB
VBAT
USB
VBAT
Hardware Configuration
4
Hardware Configuration
The DRV2605EVM-CT is flexible and can be used to completely evaluate the DRV2605. The following
sections list the various hardware configurations.
4.1
Input and Output Overview
The DRV2605EVM-CT allows complete evaluation of the DRV2605 though test points, jacks, and
connectors.
gives a brief description of the hardware.
Table 5. Hardware Overview
Signal
Description
I/O
PWM
External input to DRV2605 IN/TRIG pin
Input / Observe
EN
External DRV2605 enable control
Input / Observe
Filtered output test points for observation, connect to oscilloscope, or
OUT+ / OUT–
Output
measurement equipment
OUT
Unfiltered output terminal block, connect to actuator
Output
USB
USB power (5 V)
Input
VBAT
External supply power (2.5 to 5.5 V)
Input
SBW
MSP430 programming header
Input / Output
I
2
C
DRV2605 and MSP430 I
2
C bus
Input / Output
The audio jack is connected to the IN/TRIG pin of the DRV2605. When the
Audio
DRV2605 is in audio-to-haptics mode, audio from this jack is converted to
Input
haptics
Hardware configuration details can be found in the following sections.
4.2
Power Supply Selection
The DRV2605EVM-CT can be powered by USB or an external power supply (VBAT). Jumpers “DRV” and
“MSP” are used to select USB or VBAT for the DRV2605 and MSP430G2553, respectively. See the
following table for possible configurations.
Figure 16. Power Jumper Selection
Supply Configuration
DRV
MSP
DRV2605 Supply Voltage
(1)
USB – both
USB
USB
5 V
DRV2605 external supply, MSP430
VBAT
USB
VBAT
USB
External Supply – both
VBAT
VBAT
VBAT
USB with 3.3-V LDO
(2)
– Both
USB
USB
3.3 V (R4 = Short, R5 = Open)
(1)
The DRV2605 supply must be on before operating the MSP430.
(2)
If a 3.3-V DRV2605 supply voltage is preferred while using the USB as the power source, remove R5 and add a 0-
Ω
resistor
across R4.
16
DRV2605EVM-CT ERM and LRA Haptic Driver Evaluation Kit
SLOU348B – January 2013 – Revised March 2014
Copyright © 2013–2014, Texas Instruments Incorporated