background image

LTC1872

2

1872fa

For more information 

www.linear.com/LTC1872

pin conFiguraTion

absoluTe MaxiMuM raTings

Input Supply Voltage (V

IN

) ......................... –0.3V to 10V

SENSE

, NGATE Voltages ............. –0.3V to (V

IN

 + 0.3V)

V

FB

, I

TH

/RUN Voltages .............................. –0.3V to 2.4V

NGATE Peak Output Current (<10µs)  ........................ 1A

Storage Ambient Temperature Range ....–65°C to 150°C

Operating Temperature Range (Note 2)....–40°C to 85°C

Junction Temperature (Note 3)  ............................ 150°C

Lead Temperature (Soldering, 10 sec) ...................300°C

(Note 1)

I

TH

/RUN 1
 GND 2

  V

FB

 3

6 NGATE
5 V

IN

4 SENSE

TOP VIEW

S6 PACKAGE

6-LEAD PLASTIC SOT-23

 

T

JMAX

 = 150°C, 

θ

JA

 = 230°C/W

orDer inForMaTion

elecTrical characTerisTics

Note 1:

 Absolute Maximum Ratings are those values beyond which the life 

of a device may be impaired.

Note 2:

 The LTC1872E is guaranteed to meet performance specifications 

from 0°C to 70°C. Specifications over the –40°C to 85°C operating 

temperature range are assured by design, characterization and correlation 

with statistical process controls.

Note 3:

 T

J

 is calculated from the ambient temperature T

A

 and power 

dissipation P

D

 according to the following formula:

  T

J

 = T

A

 + (P

D

 

 

θ

JA

°C/W)

PARAMETER

CONDITIONS

MIN

TYP

MAX

UNITS

Input DC Supply Current 

  Normal Operation 

  Sleep Mode 

  Shutdown 

  UVLO

Typicals at V

IN

 = 4.2V (Note 4) 

 2.4V ≤ V

IN

 ≤ 9.8V 

 2.4V ≤ V

IN

 ≤ 9.8V 

 2.4V ≤ V

IN

 ≤ 9.8V, V

ITH

/RUN = 0V 

  V

IN

 < UVLO Threshold

 

270 

230 

6

 

420 

370 

22 

10

 

µA 

µA 

µA 

µA

Undervoltage Lockout Threshold

V

IN

 Falling 

V

IN

 Rising

l

1.55 

1.85

2.00 

2.10

2.35 

2.40

V

Shutdown Threshold (at I

TH

/RUN)

l

0.15

0.35

0.55

V

Start-Up Current Source

V

ITH

/RUN = 0V

0.25

0.5

0.85

µA

Regulated Feedback Voltage

0°C to 70°C(Note 5) 

–40°C to 85°C(Note 5)

l

0.780 

0.770

0.800 

0.800

0.820 

0.830

V

V

FB

 Input Current

(Note 5)

10

50

nA

Oscillator Frequency

V

FB

 = 0.8V

500

550

650

kHz

Gate Drive Rise Time

C

LOAD

 = 3000pF

40

ns

Gate Drive Fall Time

C

LOAD

 = 3000pF

40

ns

Peak Current Sense Voltage

(Note 6)

114

120

mV

 

The 

l

 denotes the specifications which apply over the full operating 

temperature range, otherwise specifications are at T

A

 = 25°C. V

IN

 = 4.2V unless otherwise specified. (Note 2)

LEAD FREE FINISH

TAPE AND REEL

PART MARKING

PACKAGE DESCRIPTION

TEMPERATURE RANGE

LTC1872ES6#PBF

LTC1872ES6#TRPBF

LTMK

6-Lead Plastic SOT-23

–40°C to 85°C

Consult LTC Marketing for parts specified with wider operating temperature ranges. 

Consult LTC Marketing for information on nonstandard lead based finish parts.
For more information on lead free part marking, go to: 

http://www.linear.com/leadfree/

  

For more information on tape and reel specifications, go to: 

http://www.linear.com/tapeandreel/

Note 4:

 Dynamic supply current is higher due to the gate charge being 

delivered at the switching frequency. 

Note 5:

 The LTC1872 is tested in a feedback loop that servos V

FB

 to the 

output of the error amplifier.

Note 6:

 Guaranteed by design at duty cycle = 30%. Peak current sense 

voltage is V

REF

/6.67 at duty cycle <40%, and decreases as duty cycle 

increases due to slope compensation as shown in Figure 2.

Summary of Contents for LTC1872

Page 1: ...ieved n n Wide VIN Range 2 5V to 9 8V n n VOUT Limited Only by External Components n n Constant Frequency 550kHz Operation n n Burst Mode Operation at Light Load n n Current Mode Operation for Excelle...

Page 2: ...N Falling VIN Rising l 1 55 1 85 2 00 2 10 2 35 2 40 V V Shutdown Threshold at ITH RUN l 0 15 0 35 0 55 V Start Up Current Source VITH RUN 0V 0 25 0 5 0 85 A Regulated Feedback Voltage 0 C to 70 C Not...

Page 3: ...DUTY CYCLE 20 30 V IN V SENSE mV 100 1872 G04 40 50 60 70 80 90 130 120 110 100 90 80 70 60 50 VIN 4 2V TA 25 C TEMPERATURE C 55 200 I TH RUN VOLTAGE mV 240 320 360 400 600 480 15 25 45 125 1872 G05...

Page 4: ...BLANKING CIRCUIT 0 15V 0 5 A 0 3V SLEEP OVP BURST CMP SHDN 1 2V UV 1872FD VREF 60mV VREF 0 8V VIN RS VOLTAGE REFERENCE SLOPE COMP ICMP R S Q FREQ FOLDBACK OSC SENSE VIN 5 2 4 4 EAMP VFB 3 NGATE VIN 6...

Page 5: ...age drops below approximately 2 0V the N channel MOSFET andallcircuitryisturnedoffexcepttheundervoltageblock which draws only several microamperes Overvoltage Protection The overvoltage comparator in...

Page 6: ...of current Using the scaling factor SF in in Figure 2 the value of RSENSE is RSENSE SF 10 IOUT 100 VIN VOUT VD Applications Information Inductor Value Calculation The operating frequency and inductor...

Page 7: ...ycle of the LTC1872 Output Diode Selection Under normal load conditions the average current con ducted by the diode in a boost converter is equal to the output load current ID avg IOUT It is important...

Page 8: ...d dry tantalum capacitors are both available in surface mount configurations An excellent choice of tantalum capacitors is the AVX TPS and KEMET T510 series of surface mount tantalum capacitors Also c...

Page 9: ...rrents VIN currentresultsinasmallloss which increases with VIN 2 MOSFET gate charge current results from switching the gate capacitance of the power MOSFET Each time a MOSFET gate is switched from low...

Page 10: ...inductor 3 The input decoupling capacitor 0 1 F should be connected closely between VIN Pin 5 and ground Pin 2 4 Connect the end of RSENSE as close to VIN Pin 5 as possible The VIN pin is the SENSE o...

Page 11: ...E C1 10 F 10V VIN 3V TO 9 8V VOUT 12V C2 47 F 16V M1 D1 LTC1872 12V 500mA Boost Converter ITH RUN LTC1872 10k R1 0 27 53 6 L1 150 H 220pF C1 TAIYO YUDEN CERAMIC EMK325BJ106MNT C2 AVX TPSD156M035R0300...

Page 12: ...BSC 0 80 0 90 1 00 MAX 0 01 0 10 0 20 BSC 0 30 0 50 REF PIN ONE ID NOTE 1 DIMENSIONS ARE IN MILLIMETERS 2 DRAWING NOT TO SCALE 3 DIMENSIONS ARE INCLUSIVE OF PLATING 4 DIMENSIONS ARE EXCLUSIVE OF MOLD...

Page 13: ...believed to be accurate and reliable However noresponsibilityisassumedforitsuse LinearTechnologyCorporationmakesnorepresenta tion that the interconnection of its circuits as described herein will not...

Page 14: ...nt Current VIN Down to 1V LTC1700 No RSENSE Synchronous Current Mode DC DC Step Up Controller 95 Efficient 0 9V VIN 5V 550kHz Operation LTC1772 Constant Frequency Current Mode Step Down DC DC Controll...

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