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5

TPA2013D1EVM Parts List

TPA2013D1EVM Parts List

Table 2. TPA2013D1EVM Parts List

Reference

Description

Size

Qty

MFR/ Part No.

Vendor No.

C1

Capacitor, ceramic, 10

μ

F,

±

10%,

1206

1

Taiyo Yuden

Digi-Key

X7R, 10 V

LMK316BJ106KL-TR

587-1333-2-ND

C2, C3, C9,

Capacitor, ceramic, 1.0

μ

F,

±

10%,

0603

4

TDK

Digi-Key

C10

X7R, 16 V

C1608X7R1C105K

445-1604-2-ND

C4

Capacitor, ceramic, 47

μ

F,

±

10%,

1210

1

Murata

Digi-Key

X5R, 10 V

GRM32ER61A476KE20L

490-3887-1-ND

C5, C6

Capacitor, ceramic, 1 nF,

±

5%, C0G,

0603

DNP

TDK

Digi-Key

50 V

C1608COG1H102J

445-1293-2-ND

C7, C8

Capacitor, ceramic, 15 nF,

±

10%,

0603

DNP

Panasonic

Digi-Key

X7R, 16V

ECJ-1VB1C153K

PCC1752DKR-ND

L1

Inductor, 6.2

μ

H, 1.8 Arms,

6.2mm

1

Sumida

Digi-Key

0.045

DCR

x

CDRH5D28NP-6R2NC

308-1542-1-ND

6.3mm

FB1, FB2

Ferrite Bead, 100

, 4 A

0805

2

TDK

Digi-Key

MPZ2012S101A

445-1567-1-ND

R1

Resistor, chip, 49.9 k

, 100 mW, 1%

0805

1

Panasonic

Digi-Key

ERJ-S06F4992V

ERJ-S06F4992V-ND

R2

Resistor, chip, 499 k

, 100 mW, 1%

0805

1

Panasonic

Digi-Key

ERJ-S06F4993V

ERJ-S06F4993V-ND

R3, R4

Resistor, chip, 330

, 1/10 W, 1%

0603

2

Rohm

Digi-Key

MCR03EZPFX3300

RHM330HCT-ND

R5, R6

Resistor, chip, 270

, 1/16 W, 5%

0603

2

Panasonic

Digi-Key

ERJ-3GEYJ271V

P270GTR-ND

J1, J2, J4,

Banana Jack w/knurled thumbnut,

4

Johnson

Digi-Key

J5

nickle plated

111-2223-001

J587-ND

J3

Header, 3 position, 2 mm, male,

2 mm

1

Norcomp

DIBI-Key

center post removed

26633601RP2, 3-positions

2663S-36-ND

J6, J8,

Header, 3 position, 2 mm, male

2 mm

5

Norcomp

DIBI-Key

J11-J13

26633601RP2, 3-positions

2663S-36-ND

J7

Phono Jack, PC mount, switched

1

Witchcraft

Newark

PJRAN1X1U03

16C1860

J9, J10

Header, 2 position, 2 mm, male

2 mm

2

Norcomp

DIBI-Key

26633601RP2, 2-positions

2663S-36-ND

JS1 - JS6

Shunt

2 mm

6

Taco Electronics/Amp

DIBI-Key

382575-2

A26244-ND

S1, S2

Switch, momentary, SDd, low profile

2

Panasonic

DIBI-key

E.M.-PPBA25

P8086S

D1

LED, Green

0805

1

Lumen

DIBI-Key

S.L.-LXT0805GW

67-1553-1-ND

D2

LED, Yellow

0805

1

Lumen

DIBI-Key

S.L.-LXT0805YW

67-1554-1-ND

U1

TPA2013D1 RGP

1

Texas Instruments
TPA2013D1RGP

MH1-MH4

Standoff, 5/8" length, #4-40,

4

Brass/Zinc plate

MH5-MH8

Screw, 1/2" length, #4-40,

4

Brass/Zinc plate

MH9-MH12

Washer, #4, Brass/Zinc plate

4

Note:

DNP = Do Not Place

8

TPA2013D1EVM

SLOU194 – August 2007

Submit Documentation Feedback

Summary of Contents for TPA2013D1

Page 1: ...brief description of the module and a list of EVM specifications The TPA2013D1 is a 2 7 W Class D amplifier with built in boost converter It drives up to 2 7 W 10 THD N into a 4 Ω speaker from low supply voltages The TPA2013D1 audio power amplifier evaluation module is a complete stand alone audio board It contains the TPA2013D1 QFN RGP Class D audio power amplifier with an integrated boost conver...

Page 2: ...per J13 to set the gain as 2 V V 6 V V or 10 V V To achieve 2 V V place the jumper between heads 1 and 2 for 10 V V shunt heads 2 and 3 for 6 V V remove the jumper and let the gain pin float 1 The TPA2013D1EVM provides independent shutdown controls for the Class D amplifier and the boost converter Pins SDb and SDd shut down the boost converter and Class D amplifier respectively They are active low...

Page 3: ...t the boost voltage RESR ESR of the boost capacitor VCC Boost voltage Generated by the boost converter Voltage supply for the Class D amplifier VDD Supply voltage to the IC ΔIL Ripple current through the inductor ΔV Ripple voltage on VCC due to capacitance ΔVESR Ripple voltage on VCC due to the ESR of the boost capacitor 1 If a different boost voltage is desired use Equation 1 to determine the new...

Page 4: ...ue to the voltage drop across the inductor The value of the boost capacitor is determined by the minimum value of working capacitance required for stability and the maximum voltage ripple allowed on VCC in the application The minimum value of working capacitance is 10 μF Do not use any component with a working capacitance less than 10 μF For X5R or X7R ceramic capacitors Equation 4 shows the relat...

Page 5: ...um Required Output Max IL L Inductor Vendor ΔV C 2 Capacitor Vendor Load VDD VCC Power A μH Part Numbers mVpp μF Part Numbers Ω V V W 1 3 3 10 Toko DE2812C Kemet C1206C106K8PACTU 1 8 3 4 3 0 70 30 Coilcraft DO3314 Murata GRM32ER61A106KA01B Murata LQH3NPN3R3NG0 Taiyo Yuden LMK316BJ106ML T 4 7 22 Murata LQH43PN4R7NR0 1 6 8 3 5 5 1 13 30 Murata GRM32ER71A226KE20L Toko DE4514C Taiyo Yuden LMK316BJ226M...

Page 6: ...rs Figure 2 TPA2013D1EVM Top Layer Note C4 has two separate pad sizes One is for a 1210 ceramic capacitor and the other is for a size C tantalum capacitor Do not populate more than one at a time 6 TPA2013D1EVM SLOU194 August 2007 Submit Documentation Feedback ...

Page 7: ...www ti com TPA2013D1EVM PCB Layers Figure 3 TPA2013D1EVM Bottom Layer SLOU194 August 2007 TPA2013D1EVM 7 Submit Documentation Feedback ...

Page 8: ... R4 Resistor chip 330 Ω 1 10 W 1 0603 2 Rohm Digi Key MCR03EZPFX3300 RHM330HCT ND R5 R6 Resistor chip 270 Ω 1 16 W 5 0603 2 Panasonic Digi Key ERJ 3GEYJ271V P270GTR ND J1 J2 J4 Banana Jack w knurled thumbnut 4 Johnson Digi Key J5 nickle plated 111 2223 001 J587 ND J3 Header 3 position 2 mm male 2 mm 1 Norcomp DIBI Key center post removed 26633601RP2 3 positions 2663S 36 ND J6 J8 Header 3 position ...

Page 9: ...uct This notice contains important safety information about temperatures and voltages For additional information on TI s environmental and or safety programs please contact the TI application engineer or visit www ti com esh No license is granted under any patent right or other intellectual property right of TI covering or relating to any machine process or combination in which such TI products or...

Page 10: ...ice and is an unfair and deceptive business practice TI is not responsible or liable for any such statements TI products are not authorized for use in safety critical applications such as life support where a failure of the TI product would reasonably be expected to cause severe personal injury or death unless officers of the parties have executed an agreement specifically governing such use Buyer...

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