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18

dc2042af

DEMO MANUAL DC2042A

PARTS LIST

ITEM

QTY REFERENCE

PART DESCRIPTION

MANUFACTURER/PART NUMBER

Required Circuit Components

1

3

C1, C7, C18

CAP, CHIP, X5R, 1µF, 10%, 6.3V, 0402

TDK, C1005X5R0J105KT

2

4

C2, C10, C24, C26

CAP, CHIP, X5R, 100µF, 20%, 10V, 1210

TAIYO YUDEN, LMK325ABJ107MM

15

C01-C015 (OPTIONAL 

ENERGY STORAGE)

3

1

C3

CAP, CHIP, X5R, 22µF, 10%, 25V, 1210

AVX, 12103D226KAT2A

4

1

C4

CAP, CHIP, X5R, 4.7µF, 10%, 6.3V, 0603, Height = 0.80mm

TDK, C1608X5R0J475K/0.80

5

3

C6, C27 ,C28

CAP, CHIP, X7R, 0.1µF, 10%, 16V, 0402

MURATA, GRM155R71C104KA88D

6

1

C8

CAP, CHIP, X7R, 330pF, 50V, 10%, 0603

MURATA, GRM188R71H331KA01D

7

1

C11

CAP, CHIP, X7R, 1000pF, 50V, 10%, 0603

MURATA, GRM188R71H102KA01D

9

4

C12, C13, C16, C23 

CAP, POLYMER SMD, 220µF, 6.3V, 18mΩ, 2.8Arms, D2E CASE

SANYO, 6TPE220MI

10

1

C14

CAP, CHIP, X5R, 2.2µF, 16V, 10%, 0603

MURATA, GRM188R61C225KE15D

11

2

C15, C17

CAP, CHIP, X5R, 10µF, 10%, 6.3V, 0805

AVX, 08056D106KAT2A

12

2

C19, C20

CAP, CHIP, NPO, 33pF, 5%, 25V, 0402

AVX, 04023A330JAT2A

13

1

C21

CAP, CHIP, X5R, 4.7µF, 10%, 16V, 0805

TAIYO YUDEN, EMK212BJ475MG-T

14

1

C22

CAP, CHIP, X5R, 1µF, 10%, 16V, 0603

AVX, 0603YD105KAT2A

15

1

C25

CAP, CHIP, NPO, 47pF, 5%, 25V, 0402

AVX, 04023A470JAT2A

16

1

D1

DIODE, STANDARD, 200V, 1.5A, SMP

VISHAY, AS1PD-M3/84A

17

1

L1

INDUCTOR, 22µH, 0.78A, 190mΩ, 4.8mm x 4.8mm

COILCRAFT, LPS5030-223MLB

18

0

L1 (OPT)

INDUCTOR, 22µH, 0.70A, 185mΩ, 4.8mm x 4.8mm

WURTH, 744043220

19

1

L2

INDUCTOR, 10µH, 560mA, 0.205Ω, 3.8mm x 3.8mm

WURTH, 744031100

20

0

L2 (OPT)

INDUCTOR, 10µH, 650mA, 0.205Ω, 3.8mm x 3.8mm

SUMIDA, CDRH3D18NP-100N

21

1

L3

INDUCTOR, 22µH, 185mA, 2.1Ω, 0806

MURATA, LQH2MCN220K02L

22

0

L3 (OPT)

INDUCTOR, 22µH, 270mA, 1.48Ω, 2.8mm x 2.87mm

WURTH, 744028220

23

1

T1

TRANSFORMER, 100:1 TURNS RATIO

COILCRAFT, LPR6235-752SMLC

24

0

T1 (OPT)

TRANSFORMER, 100:1 TURNS RATIO

WURTH, 74488540070

25

1

Q3

N-CHANNEL MOSFET, 20V, SOT23

DIODES/ZETEX, ZXMN2F30FHTA

27

11

R1, R3, R5, R6, R8, R16, 

R17, R26, R27, R28, R35

RES, CHIP, 0Ω JUMPER, 1/16W, 0402

VISHAY, CRCW04020000Z0ED

28

2

R13, R21

RES, CHIP, 499k, ±1%, 1/16W, 0402, ±100ppm/°C

VISHAY, CRCW0402499KFKED

29

1

R19

RES, CHIP, 392KΩ, ±1%, 1/16W, 0402, ±100ppm/°C

VISHAY, CRCW0402392KFKED

30

1

R20

RES, CHIP, 750k, ±1%, 1/16W, 0402, ±100ppm/°C

VISHAY, CRCW0402750KFKED

31

1

R23

RES, CHIP, 200k, ±1%, 1/16W, 0402, ±100ppm/°C

VISHAY, CRCW0402200KFKED

32

1

R24

RES, CHIP, 1.10M, ±1%, 1/16W, 0402, ±100ppm/°C

VISHAY, CRCW04021M10FKED

33

1

R25

RES, CHIP, 549k, ±1%, 1/16W, 0402, ±100ppm/°C

VISHAY, CRCW0402549KFKED

34

1

R29

RES, CHIP, 1.96M, ±1%, 1/16W, 0402, ±100ppm/°C

VISHAY, CRCW04021M96FKED

35

1

R30

RES, CHIP, 1.15M, ±1%, 1/16W, 0402, ±100ppm/°C

VISHAY, CRCW04021M15FKED

36

1

R34

RES, CHIP, 40.2k, ±1%, 1/16W, 0402, ±100ppm/°C

VISHAY, CRCW040240K2FKED

37

1

U1

PIEZOELECTRIC ENERGY HARVESTING POWER SUPPLY,  

DFN 3mm x 3mm

LINEAR TECH., LTC3588EMSE-1

38

1

U2

IC, ULTRALOW POWER SUPERVISOR WITH POWER-FAIL 

OUTPUT, TSOT-23, 8-PIN

LINEAR TECH., LTC2935CTS8-2

Summary of Contents for LTC2935-2

Page 1: ...on a chip Energy Micro STK development kit L LT LTC LTM Linear Technology and the Linear logo are registered trademarks of Linear Technology Corporation All other trademarks are the property of their...

Page 2: ...EY locations that guarantee proper interconnect of compatible adaptor boards J1 Energy Micro STK Header does not have a KEY J2 Dust Mote Header has a KEY in position 5 J3 Horizontal Transducer Header...

Page 3: ...serve the voltage on VM1 and VM2 The voltage on VM1 should be approximately 5 77V and on VM2 should be 3 3V 12 UseVM3toobservethevoltageonJP5 2 Thevoltage should be equal to the same level observed on...

Page 4: ...NUAL DC2042A QUICK START PROCEDURE Figure 2 VMCU Power Switchover Test Setup Test Steps 2 to 5 Figure 3 Solar Circuitry Test Setup Test Steps 6 to 9 Proper Measurement Equipment Setup for DC2042A Sola...

Page 5: ...ctric Circuitry Test Setup Test Steps 10 to 13 Proper Measurement Equipment Setup for DC2042A Piezoelectric Circuit Testing Figure 5 4mA to 20mA Loop Circuitry Test Setup Test Steps 14 to 17 Proper Me...

Page 6: ...6 dc2042af DEMO MANUAL DC2042A QUICK START PROCEDURE Figure 6 TEG Powered Circuitry Test Setup Test Steps 18 to 22 Proper Measurement Equipment Setup for DC2042A TEG Circuit Testing...

Page 7: ...2af DEMO MANUAL DC2042A QUICK START PROCEDURE Figure 7a DC2042A Top Assembly Drawing Figure 7b DC2042A Bottom Assembly Drawings J3 HORIZONTAL TRANSDUCER HEADER J4 VERTICAL TRANSDUCER HEADER J2 DUST EH...

Page 8: ...is lost It will be charged up to the maximum VAUX clamp voltage typically 5 25V The 100 F capacitors have a voltage coefficient of 0 47 at 5 25V Caution Only JP9 or JP10 may be connected at any one ti...

Page 9: ...tal insert in header to ensure proper in sertion location and orientation No electrical connection Pin 6 VBAT Raw battery voltage from to DUST board Pin 7 RSVD Reserved for future use no connection on...

Page 10: ...ween the 3 15V and 2 25V levels The optional components R1 R4 Q1 and C5 shown on the schematic are not populated for a standard assembly The function of R1 R4 Q1 and C5 is to generate a short PGOOD pu...

Page 11: ...o be changed so the turn on threshold is below the PGOOD_LTC3108 turn on threshold of 3 053V For example by changing R36 to a 0 jumper and R5 to NOPOP the turn on threshold for Q3 will be 2 99V ris in...

Page 12: ...mplete operational description of and how to use the independent PGOOD signal PGOOD_LTC3459 shown in Figure 12 generated by the LTC2935 2 and available on JP8 ThePGOOD_LTC3459signalisalwaysusedtoswitc...

Page 13: ...the LTC2935 2 was used to generate a PGOOD function with an adjustable hysteresis window TheNOPOPand0 resistorsaroundtheLTC2935 2allow forcustomizationofthePGOODthresholdsandhysteresis window By usin...

Page 14: ...14 dc2042af DEMO MANUAL DC2042A APPLICATION INFORMATION Figure 11 Detailed Schematic of LTC3459 Supplied by a Solar Cell Figure 12 Detailed Schematic of PGOOD_LTC3459 Circuit Using LTC2935 2...

Page 15: ...se as needed when the light level is insufficient to power the wireless sensor node continuously The scope photos show in Figures 14 through 17 how the supply voltage on theDC9003A Bisswitchedbetweent...

Page 16: ...6 dc2042af DEMO MANUAL DC2042A APPLICATION INFORMATION Figure 14 DC2042A LTC3459 Operation at 100 lux with Indy4100 Solar Panel Figure 15 DC2042A LTC3459 Operation at 210 lux with Indy4100 Solar Panel...

Page 17: ...7 dc2042af DEMO MANUAL DC2042A APPLICATION INFORMATION Figure 16 DC2042A LTC3459 Operation at 275 lux with Indy4100 Solar Panel Figure 17 DC2042A LTC3459 Operation at 300 lux with Indy4100 Solar Panel...

Page 18: ...L1 OPT INDUCTOR 22 H 0 70A 185m 4 8mm x 4 8mm WURTH 744043220 19 1 L2 INDUCTOR 10 H 560mA 0 205 3 8mm x 3 8mm WURTH 744031100 20 0 L2 OPT INDUCTOR 10 H 650mA 0 205 3 8mm x 3 8mm SUMIDA CDRH3D18NP 100...

Page 19: ...CHIP 4 99k 1 1 16W 0402 100ppm C VISHAY CRCW04024K99FKED 6 0 R2 R7 R9 R10 R11 R12 R14 R15 R18 R31 R32 R33 R36 RES CHIP 0402 NOPOP 7 0 R4 OPT RES CHIP 50 5k 1 1 16W 0402 100ppm C VISHAY CRCW040250K5FKE...

Page 20: ...20 dc2042af DEMO MANUAL DC2042A SCHEMATIC DIAGRAM...

Page 21: ...ogy Corporation is believed to be accurate and reliable However noresponsibilityisassumedforitsuse LinearTechnologyCorporationmakesnorepresenta tion that the interconnection of its circuits as describ...

Page 22: ...DING ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE EXCEPT TO THE EXTENT OF THIS INDEMNITY NEITHER PARTY SHALL BE LIABLE TO THE OTHER FOR ANY INDIRECT SPECIAL INCIDENTAL OR CONS...

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