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4.2

Bill of Materials

5

Related Documentation From Texas Instruments

Related Documentation From Texas Instruments

Table 2. HPA141A Bill of Materials

COUNT

Ref Des

Value

Description

Size

Part Number

MFR

4

C1, C2, C3, C11

22

µ

F

Capacitor, Ceramic, 6.3V, X5R, 20%

0805

C2012X5R0J226MTJ

TDK

1

C10

0.1

µ

F

Capacitor, Ceramic, 25V, X5R, 10%

0402

C1005X5R1E104K

TDK

1

C15

0.056

µ

F

Capacitor, Ceramic, 16V, X7R, 10%

0603

GRM188R71C563KC01

Murata

1

C18

0.33

µ

F

Capacitor, Ceramic, 10V, X5R, 10%

0603

C1608X5R1A334KB

TDK

1

C4

1000 pF

Capacitor, Ceramic, 25V, C0G, 5%

0402

C1005C0G1E102K

TDK

1

C5

22

µ

F

Capacitor, Ceramic, 10V, X5R, 10%

1206

C3216X5R1A226K

TDK

1

C6

1.0

µ

F

Capacitor, Ceramic, 25V, X5R, 10%

0603

C1608X5R1E105K

TDK

1

C7

0.1

µ

F

Capacitor, Ceramic, 50V, X7R, 15%

0603

C1608X7R1H104K

TDK

6

C8, C12, C13,

0.01

µ

F

Capacitor, Ceramic, 25V, C0G, 5%

0603

C1608C0G1E103K

TDK

C14, C16, C17

1

C9

0.56

µ

F

Capacitor, Ceramic, 10V, X5R, 10%

0603

C0603C564K8PACTU

Kemet

1

D1

Diode, Flash, 1amp, Vfwd 3.9V

0.065

×

0.080

LXCL-PWF1

Lumileds
Lighting

0

D2

Open

Diode, LED

1210

0

D3

Open

Diode, Flash, 1amp, Vfwd 3.9V

0.065

×

0.080

2

J1, J2

Header, 2 pin, 100mil spacing, (36-pin strip)

0.100

×

2

PTC36SAAN

Sullins

1

J3

Header, 4 pin, 100mil spacing, (36-pin strip)

0.100

×

4

PTC36SAAN

Sullins

1

JP1

Header, 2 pin, 100mil spacing, (36-pin strip)

0.100

×

2

PTC36SAAN

Sullins

1

L1

4.7

µ

H

Inductor, SMT, 1.1A, 120 m

0.177

×

0.185

VLF5014AT-4R7M1R1

TDK

1

R1

22.1k

Resistor, Chip, 1/16W, 1%

0402

Std

Std

2

R11, R12

0

Resistor, Chip, 1/16W, 1%

0603

Std

Std

1

R13

10k

Resistor, Chip, 1/16W, 1%

0603

Std

Std

0

R17

Open

Resistor, Chip, 1/10W, 1%

0805

0

R18

Open

Resistor, Chip, 1/16W, 1%

0402

1

R2

68.1k

Resistor, Chip, 1/16W, 1%

0402

Std

Std

1

R3

100k

Resistor, Chip, 1/16W, 1%

0402

Std

Std

1

R4

3.65k

Resistor, Chip, 1/16W, 1%

0402

Std

Std

1

R5

6.81k

Resistor, Chip, 1/16W, 1%

0402

Std

Std

1

R6

7.5k

Resistor, Chip, 1/16W, 1%

0402

Std

Std

1

R7

1.2

Resistor, Chip, 1/10W, 1%

0805

Std

Std

7

R8, R9, R10,

100k

Resistor, Chip, 1/16W, 1%

0603

Std

Std

R14, R15, R16,
R19

1

S1

Switch, SPST, PB Momentary, Sealed Washable

0.245

×

0.251

KT11P2JM

C & K

1

U1

IC, Synchronous Boost Converter With Down

SON-10

TPS61059DRC

TI

Mode High Power White LED Driver

1

U2

IC, Regulator, LDO, Micropower, 1.1

µ

A at 10mA.

SOP-5 (DCK)

TPS79718DCK

TI

Vin 0.30–5.5V

1

U3

IC, Dual 2-Input Positive-OR Gates

WCSP-8

SN74LVC2G32YEPR

TI

1

U4

IC, Single D-Type Flip-Flop With Asynchronous

WCSP-6

SN74LVC1G175YZPR

TI

Clear

2

U5, U6

IC, Low Quiescent Current, Programmable 1.5V,

SOT23-6

TPS3808G15DBVR

TI

Delay Time: 1.25ms to 10s

1

U7

IC, Dual Schmitt-Trigger Inverter

WCSP-6

SN74LVC2G14YZPR

TI

1

PCB, 2 In x 1.9 In x 0.062 In

HPA141

Any

1

Shunt, 100-mil, Black

0.100

929950-00

3M

TPS61058/9 data sheet (

SLVS572

)

TPS61059EVM-141

14

SLVU150 – January 2006

Содержание TPS61059EVM-141

Страница 1: ...ing Between Flashes Using Pushbutton 8 6 LED Flash Interrupted With FLASH OFF Input 9 7 Efficiency 9 8 Assembly Layer 10 9 Top Layer Routing 11 10 Bottom Layer Routing 12 11 TPS6105xEVM 141 Schematic 13 List of Tables 1 J3 Pin Functions 2 2 HPA141A Bill of Materials 14 The Texas Instruments TPS6105xEVM 141 evaluation module EVM helps designers evaluate the operation and performance of the TPS61058...

Страница 2: ...EN Output of timing circuit Drives EN pin of the TPS6105x Pin 2 FLASH Output of timing circuit Drives FLASH signal of TPS6105x A low on this pin produces a high current flash Pin 3 FLASH OFF Input to timing circuit A high on this pin immediately forces the TPS6105x to stop a high current flash This pin can be used to interrupt or mask off a high current flash The state of this pin does not effect ...

Страница 3: ...uty cycle can be calculated using Equation 2 with the value of the timing capacitors C15 and C9 The average power dissipated in the sense resistor R7 is calculated using Equation 3 In Equation 3 Iflash is the flash current level and Inoflash is the current when not flashing which is zero or the torch current value depending on the setting of JP1 The average power dissipated in the LED is calculate...

Страница 4: ...dissipation of the LED below the maximum power limitation of the LED The FLASH OFF input on J3 can be used to force the LED flash off during a flash sequence This is intended to turn the flash off in camera phones while the power amplifier is transmitting A logic 1 on pin 3 of J3 extinguishes the flash as long as the input is high This does not reset the timing of the timing circuit 2 2 5 Test Res...

Страница 5: ...i com EN FLASH LED Current Setup NOTE CH1 Enable Signal pin 1 of J3 CH2 Flash Signal Pin 2 of J3 CH4 LED Current Figure 2 Timing From 200 mA Movie Light to 700 mA Flash SLVU150 January 2006 TPS61059EVM 141 5 ...

Страница 6: ...www ti com EN FLASH LED Current Setup NOTE CH1 Enable Signal pin 1 of J3 CH2 Flash Signal Pin 2 of J3 CH4 LED Current Figure 3 Timing From LED Off to 700 mA Flash TPS61059EVM 141 6 SLVU150 January 2006 ...

Страница 7: ...www ti com EN FLASH LED Current Setup NOTE CH1 Enable Signal pin 1 of J3 CH2 Flash Signal Pin 2 of J3 CH4 LED Current Figure 4 Timing Between Flashes SLVU150 January 2006 TPS61059EVM 141 7 ...

Страница 8: ...utton is ignored for approximately 3 2 seconds from end of last flash Setup NOTE CH1 Enable Signal pin 1 of J3 CH2 Flash Signal pin 2 of J3 CH3 Pushbutton Signal pin A1 of U4 Figure 5 Timing Between Flashes Using Pushbutton TPS61059EVM 141 8 SLVU150 January 2006 ...

Страница 9: ...0 30 40 50 60 70 80 90 100 2 5 3 0 3 5 4 0 4 5 5 0 5 5 LED Power Efficiency P LED P IN ILED 700 mA VF 4 1 V Setup NOTE CH1 FLASH pin 2 of J3 CH2 FLASH OFF Pin 3 of J3 LED Current Figure 6 LED Flash Interrupted With FLASH OFF Input Figure 7 Efficiency SLVU150 January 2006 TPS61059EVM 141 9 ...

Страница 10: ... Layout This section provides the TPS6105xEVM 141 board layout and illustrations Figure 8 Figure 9 and Figure 10 show the board layout for the TPS6105xEVM 141 printed circuit board Figure 8 Assembly Layer TPS61059EVM 141 10 SLVU150 January 2006 ...

Страница 11: ...www ti com Board Layout Figure 9 Top Layer Routing SLVU150 January 2006 TPS61059EVM 141 11 ...

Страница 12: ... 4 Schematic and Bill of Materials Schematic and Bill of Materials Figure 10 Bottom Layer Routing This section provides the TPS6105xEVM 141 schematic and bill of materials TPS61059EVM 141 12 SLVU150 January 2006 ...

Страница 13: ...www ti com 4 1 Schematic Schematic and Bill of Materials Figure 11 TPS6105xEVM 141 Schematic SLVU150 January 2006 TPS61059EVM 141 13 ...

Страница 14: ...ader 2 pin 100mil spacing 36 pin strip 0 100 2 PTC36SAAN Sullins 1 L1 4 7 µH Inductor SMT 1 1A 120 mΩ 0 177 0 185 VLF5014AT 4R7M1R1 TDK 1 R1 22 1k Resistor Chip 1 16W 1 0402 Std Std 2 R11 R12 0 Resistor Chip 1 16W 1 0603 Std Std 1 R13 10k Resistor Chip 1 16W 1 0603 Std Std 0 R17 Open Resistor Chip 1 10W 1 0805 0 R18 Open Resistor Chip 1 16W 1 0402 1 R2 68 1k Resistor Chip 1 16W 1 0402 Std Std 1 R3...

Страница 15: ...d TI harmless against any damages liabilities or costs resulting from any claim suit or proceeding arising from user s handling or use of the EVM including but not limited to i claims that the EVM infringes a third party s intellectual property and ii claims arising from the user s use or handling of the EVM TI shall have no responsibility to defend any such claim suit or proceeding User assumes a...

Страница 16: ...ese components include but are not limited to linear regulators switching transistors pass transistors and current sense resistors These types of devices can be identified using the EVM schematic located in the EVM User s Guide When placing measurement probes near these devices during operation please be aware that these devices may be very warm to the touch Mailing Address Texas Instruments Post ...

Страница 17: ...tute a license from TI to use such products or services or a warranty or endorsement thereof Use of such information may require a license from a third party under the patents or other intellectual property of the third party or a license from TI under the patents or other intellectual property of TI Reproduction of information in TI data books or data sheets is permissible only if reproduction is...

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