Evaluation Kit Part Num ber: ZLK38000BADA
Document Revision Numb er: 1.0
Issue Date: June 2015
Document Number: 152457
ZLK38000 Evaluation Kit
User Guide
Powered by AcuEdge™ Technology Firmware
ZLK38000
User Guide
Table of Contents
2
Microsemi Corporation Confidential and Proprietary
1.0 Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
1.1 ZLK38000BADA Evaluation Kit Contents . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
1.2 ZLE38000 Evaluation Board Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
1.3 MiTuner™ Lite GUI Software (ZLS38508LITE) Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .4
1.4 Full MiTuner™ GUI Software (ZLS38508) with Auto Tuning Support Features . . . . . . . . . . . . . . . . . . . . .4
1.5 References . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .4
2.0 Getting Acquainted . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
3.0 Hardware Connections and Operation. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
3.1 Microphones . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7
3.2 Speakers and Class D Amplifiers . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
3.3 TRRS Headset Jack . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .9
3.3.1 TRRS Cell Phone Adapter. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
3.4 Control Interfaces . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
3.5 Bootstrap. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .10
3.6 Power . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
3.7 AIB Connection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .11
3.8 Reset . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .11
4.0 Evaluation Board Schematic . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .12
4.1 Evaluation Board BOM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .22
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User Guide
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1.0 Introduction
The ZLK38000 Evaluation Kit includes all the hardware necessary to operate the ZLE38000 Evaluation Board. The
Evaluation Board provides a flexible platform to evaluate a Timberwolf Audio Processor device with AcuEdge™
Technology Firmware.
The ZLE38000 Evaluation Board provides a simple analog interface that can be connected to microphones and
speakers to allow for subjective testing. The miniature size allows for easy mounting in an existing plastic
enclosure.
Firmware Code for the desired Timberwolf device and a Configuration Record for the desired demonstration
platform can be downloaded into the Evaluation Board using the ZLS38000 Firmware Loader software. The
ZLE3800 0 Ev aluati on B oard can then be cont roll ed us in g the MiTuner™ GUI Lite Software (ZLS38508LITE) or the
full MiTuner GUI Softwar e package (ZLS38508 ). Microsemi has develope d automatic tuning ca pability into the full
MiTuner GUI Software to further facilitate and shorten the design process. The ZLS38508 Software package
consists of the MiTuner GUI Software and the Audio Interface Box (AIB) Evaluation Kit (ZLE38470BADA)
hardwar e, togeth er pe r f o rm i n g a u to m a t ic t u ni n g o f th e Timberwol f Audio P rocess or on the Evaluati on Bo ard or i n
a system design.
Figure 1 - ZLE38000 Evaluation Board
1.1 ZLK38000BA DA Eva luation Kit Conte nts
ZLE38000 Evaluation Board
ZLS38000 Firmware Loader Software
Ser ial US B to M i ni U S B Ca ble
Headset (32 Ω), with microphone/headphone splitter adapter
25 foot Headset Extension Cable
Speake r ( u n-p owered, 4 Ω, 2.5 W)
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1.2 ZLE38000 Eva luation Board Features
Mi n ia tu r e s i ze
Easily mounted into existing plastic enclosures
Economical means to evaluate the functionality of the Timberwolf hardware and echo canceller firmware
USB or SPI serial port control
MiTuner Lite GUI software, a Windows based software application
Complete access to all features and registers of both the hardware and firmware
Flexible analog interfaces, accommodating multiple devices and connections
Multiple digital interfaces
1.3 MiTuner™ Lite GUI Software (ZLS38508LITE) Fe atures
MiTuner Lite GUI Software provides the audio engineer with a comprehensive interface into the Microsemi
AcuEdge Technology Firmware running on the Audio Processor. The GUI is designed to interface with the
Timberwolf de vi ce whe the r res i din g o n the ZLE 380 00 E v alu ati on Boa rd or on a c ust o mer- desig ned platform, whe n
properly connected to the Timberwolf communication pins. The MiTuner Lite GUI So ft wa r e provid es:
Control of all functional blocks, e.g., AEC block, Double-Talk Detector, etc.
Gain and equalizer control
Read/write access to all registers
Portal for firmware updates
Configuration Record manipulation
1.4 Full MiTuner™ GUI Software (ZLS38 508) with Auto Tuning Support Fe atures
Available for purchase from http://sds.microsemi.com
Includes all features of the MiTuner Lite GUI
Also includes hardware for automatic tuning:
Microsemi Audio Interface Box (AIB)
Powered portable speaker (for the “mouth” speaker)
Beh ring er mi crop hon e (for th e “ear ” micr opho ne)
1.5 References
Please refer to the appropriate Timberwolf Digital Signal Processor family, powered by AcuEdge™ Technology
Data Sheet and Firmware Manual for the device code downloaded into the ZLE38000 Evaluation Board.
The MiTuner Lite Software User Guide is included in the
ZLS38508LITE
software installation.
The MiTuner™ Software User Guide and the ZLE38470 Audio Interface Box (AIB) Evaluation Kit Automatic Tuning
Guide are provided with the full
MiTuner™ GUI Software (ZLS38508).
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2.0 Getti ng Acqu ainted
Figure 2 highlights the con nec tion i nter fa ces on the ZLE 38 000 Ev alu ati on Boar d. The board measu res 9 7 mm (3. 9
inches) by 47.8 mm (1.88 inches).
Note: As with any circuit board, use an anti-static grounded wrist strap when handling the Evaluation Board.
Figure 2 - ZLE38000 Evaluation Board Interfaces
The Evaluation Board features the following hardware and interfaces:
2 analog microphone jacks
1 TRRS headset jack
2 speaker output jacks
3 di g ital m i c rop ho ne s ( Note, not all Timberwolf devices can accommodate 3 microphones)
A digital microphone and speaker access header
USB receptacle
Power and USB activity indicators
Audio Interface Box (AIB) header
I2S port B header
DAC or Class D ampli fier ou tput jum pers
Hardware reset button
Raspberry Pi connector (not shown above)
Use the ZLS38000 Firmware Loader software to download the desired Timberwolf device firmware and to install
the desired demonstration platform into the Configuration Record.
AIB
Header
Raspberry Pi
DAC2
DAC1
I2S Port
UART
Debug
Analog
MIC1
Spkr1
USB
Digital
MIC1
Digital
MIC4
Spkr2
Analog
MIC2
Reset
USB
LED
Digital
MIC3
Digital
MIC2
TRRS
Headset
Digital MIC &
Spkr Access DAC
Jumpers
Power
LEDs
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3.0 Hardwar e Conne ction s an d Ope ratio n
Figure 3 shows a functional and connection block diagram of the Evaluation Board. User interfaces are colored
gray. Note that not all connectors and jumpers are populated.
A full schematic for the Evaluation Board is provided in Section 4.0.
.
Figure 3 - ZLE38000 Evaluation Board Block Diagram
Digital Mic 1
DAC2
ECM
Preamp
Digital Mic 2
Flash
SPI Slave
TDM/I2SA
GP IO (8)
CrystalXO/XI
DMIC_IN2
DAC2_P
DAC2_M
DMIC_IN1
Cla ss D
Pi
Conn
3.3V
Conv
1.2V
Conv
USB to
UART USB
UART
ZLE38000
JM1
P6
AIB Conn
ZLE38000
Eval uat ion Boar d
Diff
Amp
ECM
Preamp
Diff
Amp
Digital
MIC1
Analog
MIC2
Analog
MIC1
P9
Spkr2
DAC1 DAC1_P
DAC1_M
Cla ss D
Spkr1
Debug
Conn
Mux
5V
3.3V
to all ICs
1.2V
DVDD33/
AVDD33
3.3 or 5V
3.3 or 5V
Master SPI
GPIO
GP IO (4) Bootstrap
DMIC_CLK
J1
P3
I2SA
Conn
P4
P5
P8
Digital
MIC2
JM2
RESET Reset
SW1
JDEBUG1
JAIB1
I2SB
Conn JPCM1
Digital Mic CLK
Digital
MIC3
Digital
MIC4
JM3
JM4
P7
TRRS
Headset
1.2V
Conv
J2
J3
J4
J5
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3.1 Microphones
The Evaluation Board provides hardware connections for 2 analog microphones and 4 digital microphones. The
default setting of the hardware connects the 4 digital microphones to the ZLE38000 device.
Note, not all Timberwolf devices can process 4 digital microphones.
The digital m icropho nes supplied wit h the Evaluati on Board are mount ed on a small dau ghter card that plugs into
the digital micro phone headers . Various digital microphone part num bers can be mount ed on this card. Make su re
power is removed when inserting/removing digital microphone cards.
On the Z LE38000 boa rd micr ophone detec tion is built into the anal og microphone jacks. If an analog micr ophone
jack is plugg ed into P5 ( Analo g MIC 1), digital micro phone 1 wil l be disconn ected and a nalog micr ophon e 1 will be
connected to DMIC_IN1. Likewise, if an analog microphone jack is plugged into P6 (Analog MIC 2), digital
microphone 2 will be disconnected and analog microphone 2 will be connected to DMIC_IN1. If an analog
microphone jack is plugged into P7 (Headset), digital microphone 1 will be disconnected and the headset
microp hone (TRRS pin 1, see Figure 4) will be conn ected to DMIC_IN1. Anal og MIC1 and the head set inputs are
mutually exclusive, use one or the other.
The analog microphone inputs are wired to differential amplifiers which convert the microphone signal to
single-ended. The microphone signals are then amplified and digitized through the digital electret microphone
preamplifiers and applied to the ZLE38000 digital microphone input 1. The headset input is wired to the digital
electret microphone preamplifier and applied to the ZLE38000 digital microphone input 1.
Digital microphones 3 and 4 are always connected to DMIC_IN2.
Digital microp hone inputs and the digital micr ophone clock can be acces sed via the J MARRY1 header, not shown
in Figure 3, refer to the schematic for pin designations. Use this header for hard wiring of external microphones.
By default the Evaluation Board provides microphone biasing on the analog microphone inputs. This biasing can be
removed if not necessary, refer to the schematic for bias component values and identification.
Left and right microphone selection is hard-wired on the Evaluation Board.
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3.2 Speakers and Class D Amplifiers
The ZLE38000 device has two differential DAC outputs which can drive 4 single-ended or 2 differential outputs. The
DAC outputs can be accessed directly or the Evaluation Board audio power Class D amplifiers can be used to drive
two speakers differentially.
To wire directly to the DAC outputs, the DAC jumpers should be horizontal, as shown in Figure 2. J2 and J3 conne ct
to DAC1 and J4 and J5 connect to DAC2 with polarity as shown in Figure 3.
To use the Class D amplifiers, move the jumpers to a vertical position (as shown in Figure 8) and verify that the
amplifiers are enabled. When the Class D a mplifiers are enabled a caution sign appears on the Diagram window
(as seen in Figure 5). To en able or disable the Class D amplifiers, select the GPIO Configuration button from the
Diagram window. The Class D amplifier on speaker jack 1 is controlled by GPIO_12; the Class D amplifier on
speaker jack 2 is controlled by GPIO_13. An amplifier is enabled when the respective GPIO is set high. A headset
should not be used with the green speaker jacks when the Class D amplifiers are enabled due to the
potential of very loud volume on the green speaker jacks.
The class D audio power amplifiers can be powered from +3.3 V or +5 V. The default setting is +5 V which can drive
2.1 W into a 4 Ω speaker or 1.4 W into an 8 Ω speaker with low distortion. The speaker supplied with the Evaluation
Kit is rated fo r 2.5 W. The class D audio power amplifiers whe n powered with +3.3 V can drive 0.75 W into a 4 Ω
speaker or 0.5 W into an 8 Ω speaker with low distortion. To change the amplifier power to +3.3 V, move the 0 Ω
resistor from the horizontal R5V1 position to the vertical R3V1 position. The 0 Ω resistor is located to the right of the
Digital MIC 2 header.
The Class D amplifier is configured for a gain of +18 dB. Amplifier gain is set by the input resistance value.
Note: If u sing powe red spea kers with t he Evaluat ion Board, make sur e the speak ers are floating. T his will
prevent potential noise from a ground loop when the Evaluation Board is wired to the PC ground through
the USB connection. Or, if the Evaluation Board is wired into a system, the Evaluation Board can be
powered fro m a floating wall adapter power supply to prevent ground loops.
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3.3 TRRS Heads et Jack
The headset left and right speakers (TRRS pins 2 & 3) are wired to the DAC1 positive output. The speakers can be
split out to DAC1 and DAC2 via a resistor option. Move the 0 Ω RPOP2 resistor to the RPOP1 position. This
resistor is on the back of the board underneath the TRRS headset jack.
The pinout of the headset jack is shown in Figure 4.
Figure 4 - TR RS Headset Foo tprint (Bot tom View) and Pinout
3.3.1 TRRS Cell Phon e Adapter
To inte rface a cel l phone to the ZLE38000 Evaluatio n Board, a T RRS Cell Pho ne Adapter board is r equired. Th is
board swaps transmit and receive signals and provides a microphone load to satisfy the cell phone plug-in test.
This board can be requested from Microsemi.
P1 plugs into the ZLE38000 Evaluation Board TRRS jack. Use a 3-pin, 3.5 mm stereo male-male cable from the
cell phone audio output to J1 of the TRRS Cell Phone Adapter board.
Figure 5 - TRR S Cell Phone Adapter Bo ard
1
2
3
4
5
6
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3.4 Control Interfaces
The ZLE380 00 device is contr olled either by a PC throug h the USB interfac e or through a Rasp berry Pi controller
wired to connector P3.
For PC use , pl ug a USB c able te rm in ated in a US B m ini co nnector to J 1. The 5V and 3V 3 LE Ds will i llumi na te an d
the USB LED (DX1) will illuminate when transmitting or receiving data from the USB. This connection appears as a
serial link between the PC and the Evaluation Board allowing the GUI software to directly access the ZLE38000
device throug h its UART port.
The Raspberry Pi controls the ZLE38000 device through the SPI Slave of the Host Bus Interface (connector P3),
and streams audio via the I
2
S TDM-A audio bus (connector P4). The multiplexer between P4 and the ZLE38000
device defaults to I
2
S signalling from the Raspberry Pi. This signal path is only broken when an AIB box is
conne cted to th e AIB c onnector. AIB use is discu ssed in the ZLE38470 Audio Interface Box (AIB) Evaluation Kit
Automatic Tuning Guide document. The ZLE38000 Evaluation Board can be powered by the Raspberry Pi +5 V
supply. Refer to page 21 of this document for the pin-out of the Raspberry Pi connectors.
I
2
S Port B signals are made available on the small header just to the left of the ZLE38000 device, as are UART
signals on the JDEBUG1 via header.
3.5 Bootstrap
The Evaluation Board bootstrap resistors are configured for crystal operation and external flash use.
3.6 Power
The Evaluation Board is powered by +5 V which is supplied either from the PC through the USB interface or by the
Raspberry Pi controller. The Evaluation Board can also be powered by a floating +5 V wall adapter power supply, in
lieu of the USB connection, when the ZLE38000 device is operating off of Flash.
The Evaluation Board converts the +5 V input to +3.3 V for use by the board’s circuitry. The board also has a +3.3 V
to +1.2 V co nv er ter w hich is us ed to po wer the ZLE 3800 0 dev ic e’s co re sup ply. Al terna tiv el y, the ZLE38000 devi ce
has a built-in converter for generating the +1.2 V ZLE38000 core supply. To use the built-in converter, two resistors
need to be moved. Move the 0 Ω R200 resistor to the R201 position. This resistor is on the top of the board
undernea th t he Z L E3 8000 de vi ce ( Figure 6). And move the 0 Ω R202 resis tor to th e R2 03 p o siti on. Thi s resi sto r is
on the bottom of the board to the left of the ZLE38000 via square (Figure 7).
The Power LEDs illuminate when +5 V and +3.3 V voltages are present.
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Figure 6 - R200/R201 Placement Shown Co nfigured for Ex ternal +1.2 V Conve rter
Figure 7 - R202/R203 Placement Shown Co nfigured for Ex ternal +1.2 V Conve rter
3.7 AIB Connection
A 10-pin header is provided in order to connect the AIB box to the ZLE38000 Evaluation Board. Refer to the
ZLE38470 Audio Interface Box (AIB) Evaluation Kit Automatic Tuning Guide for details on connection and
software operat ion .
When a cable from the AIB is present, the USB port on the ZLE38000 is disabled.
3.8 Reset
A hardware reset can be performed by pressing the Reset button SW1. This button provides a reset to the
ZLE38000 device’s RESET pin and momentarily removes power from the ZLE38000 DVDD33_XTAL power pin.
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4.0 Evalu ation Boar d Schem atic
The schematic that corresponds to the ZLE38000 Evaluation Board is shown on the following pages.
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User Guide
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Microsemi Corporation Confidential and Proprietary
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ZLK38000
User Guide
15
Microsemi Corporation Confidential and Proprietary
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ZLK38000
User Guide
16
Microsemi Corporation Confidential and Proprietary
' '
& &
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ZLK38000
User Guide
17
Microsemi Corporation Confidential and Proprietary
' '
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6L]H 'RFXPHQW1XPEHU 5HY
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7LWOH
6L]H 'RFXPHQW1XPEHU 5HY
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ZLK38000
User Guide
18
Microsemi Corporation Confidential and Proprietary
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ZLK38000
User Guide
19
Microsemi Corporation Confidential and Proprietary
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ZLK38000
User Guide
20
Microsemi Corporation Confidential and Proprietary
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ZLK38000
User Guide
21
Microsemi Corporation Confidential and Proprietary
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ZLK38000
User Guide
22
Microsemi Corporation Confidential and Proprietary
4.1 Evaluation Board B OM
The Bill of Materials that corresponds to the ZLE38000 Evaluation Board is shown on the following pages.
8
ZLK38000
User Guide
23
Microsemi Corporation Confidential and Proprietary
Title=EvaluationBoardfortheZLE38000Device
Item Quantity PartReference Value PartNumber Manufacturer Distributor DistPartNumber Current Power Voltage Tolerance Type Note PCBFootprint
50 3 R8,R186,R207 499K ERJ2RKF4993X Panasonic Digikey P499KLCTND 0.063Watt 50V 1% RES0402
51 12
R14,R136,R167,R168,R169,R170,R171,R172,R174,R
EN1,RPOP2,RSH1 0Ohm ERJ2GE0R00X Panasonic Digikey P0.0JCTND 0.063Watt 50V 5% RES0402
52 16
R15,R158,R159,R160,R161,R162,R163,RI2S1,RI2S2,
RI2S3,RI2S4,RI2S5,RI2S6,RI2S7,RI2S8,RSI1 33.2 ERJ2RKF33R2X Panasonic Digikey P3.3JCTND 0.063Watt 50V 1% RES0402
53 7 R62,R144,R189,R198,R209,R210,R211 100K ERJ2GEJ104X Panasonic Digikey P100KJCTND 0.063Watt 50V 1% RES0402
54 16
R81,R137,R138,R141,R142,R147,R148,R151,R164,R
165,R166,R173,R193,R196,R197,R206 10K ERJ2GEJ103X Panasonic Digikey P10KJTRND 0.063Watt 50V 5% RES0402
55 1 R109 2.0K ERJ2RKF2001X Panasonic Digikey P2.00KLCTND 0.063Watt 50V 1% RES0402
56 1 R118 453 ERJ2RKF4530X Panasonic Digikey P453LTRND 0.063Watt 50V 1% RES0402
57 2 R119,R120 274 ERJ2RKF2740X Panasonic Digikey P274LTRND 0.063Watt 50V 1% RES0402
58 2 R122,R123 3.3K ERJ3EKF3301V Panasonic Digikey P3.30KHCTND 0.1Watt 100V 1% DNP RES0603
59 1 R153 100K ERJ2RKF1023X Panasonic Digikey P100KLTRND 0.063Watt 50V 1% RES0402
60 1 R154 10.0 ERJ2GEJ100X Panasonic Digikey P10JCTND 0.063Watt 50V 5% RES0402
61 2 R155,ROSC1 1.0Meg ERJ2RKF1004X Panasonic Digikey P1.00MLDKRND 0.063Watt 50V 1% RES0402
62 1 R176 100 ERJ2RKF1000X Panasonic Digikey P100LCTND 0.063Watt 50V 1% RES0402
63 2 R177,R181 26.7K ERJ3EKF2672V Panasonic Digikey P26.7KHCTND 0.1Watt 100V 1% RES0603
64 4 R191,R192,R194,R195 37.4K ERJ3EKF3742V Panasonic Digikey P37.4KHCTND 0.1Watt 100V 1% RES0603
65 1 R199 5.11K ERJ2RKF5111X Panasonic Digikey P5.11KLCTND 0.063Watt 50V 1% RES0402
66 2 R200,R202 0OHM ERJ3GEY0R00V Panasonic Digikey P0.0GCTND 0.1Watt 100V 5% RES0603
67 2 R201,R203 0OHM ERJ3GEY0R00V Panasonic Digikey P0.0GCTND 0.1Watt 100V 5% DNP RES0603
68 1 R208 10.0 CRCW060310R0FKEAHP Vishay Mouser 71CRCW060310R0FKEAH 0.250Watt 1% RES0603
69 1 R3.3V1 110K ERJ2RKF1103X Panasonic Digikey P110KLCTND 0.063Watt 50V 1% RES0402
70 1 R3.3V2 24.3K ERJ2RKF2432X Panasonic Digikey P24.3KLCTND 0.063Watt 50V 1% RES0402
71 1 R3V1 0Ohm ERJ8GEY0R00V Panasonic Digikey P0.0ECTND 0.25Watt 400V 5% DNP RES1206
72 1 R5V1 0Ohm ERJ8GEY0R00V Panasonic Digikey P0.0ECTND 0.25Watt 400V 5% RES1206
73 1 RBS1 470 ERJ2RKF4700X Panasonic Digikey P470LCTND 0.063Watt 50V 1% RES0402
74 3 RDOWN1,RUP3,RX1 100K ERJ3EKF1003V Panasonic Digikey P100KHCTND 0.1Watt 100V 1% RES0603
75 1 RGND1 0Ohm ERJ6GEY0R00V Panasonic Digikey P0.0ACTND 0.1Watt 150V 1% DNP RES0805
76 1 RPOP1 0Ohm ERJ2GE0R00X Panasonic Digikey P0.0JCTND 0.063Watt 50V 5% DNP RES0402
77 1 RTN1 43.2 ERJ2RKF43R2X Panasonic Digikey P43.2LCTND 0.063Watt 50V 1% DNP RES0402
78 2 RUP1,RUP2 10K ERJ3EKF1002V Panasonic Digikey P10.0KHCTND 0.1Watt 100V 1% RES0603
79 2 RUSB1,RUSB2 27 ERJ3EKF27R0V Panasonic Digikey P27.0HCTND 0.1Watt 100V 1% RES0603
80 2 RUSB3,RUSB4 27 ERJ3EKF27R0V Panasonic Digikey P27.0HCTND 0.1Watt 100V 1% DNP RES0603
81 4 S1,S2,S3,S
4
SNT100BKGH_100mil_Shunt SNT100BKGH Samtec MatingPin90milmin void
82 1 SP1 Short SH2
83 1 SW1 EVQ11L04M EVQ11L04M Panasonic Digikey P8078STBND SW_200
84 3 U1,U31,U40 JBTC94B12AS JBTC94B12AS Toshiba Digikey JBTC94B12AS(EB)CTND BGA_22p4x48
85 1 U2 FT234XD FT234XDR FTDI Digikey 76811781ND DFN12
86 1 U3 LX7172 LX7172ISE Microsemi Digikey LX7172ISETRCTND 1.2Amp 5.5V SOT235
87 1 U4 APX809 APX80931SAG7 DiodesInc Digikey APX80931SAGDITRND 3.08V SOT23
88 1 U5 MX25L4006EM1 MX25L4006EM1I12G Macronix Digikey 10921114ND SOP_8
L
89 1 U15 24LC32AT 24LC32ATI/OT MicrochipTechnology Digikey 24LC32ATI/OTCTND SOT23_5
90 1 U21 PACDN004SR PACDN004SR OnSemi Digikey PACDN004SROSCTND 6V SOT143
91 3 U22,U23,U39 NLASB3157DFT2G NLASB3157DFT2G OnSemiconductor Digikey NLASB3157DFT2GOSCTND 5.5V SOT363
92 3 U26,U30,U32 MCP6021 MCP6021TE/OT MicrochipTechnology Digikey MCP6021TE/OTDKRND SOT235
93 1 U27 LX821312 LX821312ISE Microsemi Digikey LX821312ISECTND 300mA 1.2Vout SOT235
94 1 U28 74LVC1G11 74LVC1G11DW7 DoidesInc. Digikey 74LVC1G11DW7CTND 24mA 1.655.5V SOT363
95 1 U29 74CBTLV3257 74CBTLV3257BQ NXP Digikey 56854231ND 3.6V DHVQFN16
96 2 U35,U36 NCP2820 NCP2820MUTBG OnSemi Digikey NCP2820MUTBGOSCTND 2.65Watt 5.5Volt ClassD DFN8
97 1 U37 NC7SZ125 NC7SZ125M5X Fairchild Digikey 5.5Vdc SOT23_5
98 1 U38 NC7S08 NC7S08M5X Fairchild Digikey NC7S08M5XCTND 2V6V SOT23_5
99 1 U6 ZLE38000 ZLE38000 Microsemi MSCtoProvide QFN64
100 1 Y1 ECS1202046X ECS1202046X ECS Digikey XC1753ND OSC_100_24
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