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LTM4612

11

4612fc

For more information 

www.linear.com/LTM4612

APPLICATIONS INFORMATION

Output Voltage Programming and Margining

The PWM controller has an internal 0.6V reference voltage. 

As shown in the Block Diagram, a 100k internal feedback 

resistor connects the V

OUT

 and V

FB

 pins together. Adding a 

resistor, R

FB

, from the V

FB

 pin to the SGND pin programs 

the output voltage.

 

 

V

OUT

=

0.6V • 100k

+

R

FB

R

FB

or equivalently,

   

R

FB

=

100k

V

OUT

0.6V

1

Table 1. R

FB

 Standard 1% Resistor Values vs V

OUT

V

OUT 

(V)

3.3

5

6

8

10

12

14

15

R

FB

 (k

W

)

22.1

13.7

11

8.06

6.34

5.23

4.42

4.12

The MPGM pin programs a current that when multiplied 

by an internal 10k resistor sets up the 0.6V reference ± 

offset for margining. A 1.18V reference divided by the 

Table 2. Output Voltage Response vs Component Matrix (Refer to Figure 20)

TYPICAL MEASURED VALUES
VENDORS

PART NUMBER

VENDORS

PART NUMBER

Murata

GRM32ER61C476KEI5L (47µF, 16V)

Murata

GRM32ER71H106K (10µF, 50V)

Murata

GRM32ER61C226KE20L (22µF, 16V)

TDK

C3225X5RIC226M (22µF, 16V)

V

OUT

 

(V)

C

IN

 

(CERAMIC)

C

IN

 

(BULK)

C

OUT1

 

(CERAMIC)

C

OUT2

 

(BULK)

V

IN

 

(V)

DROOP 

(mV)

PEAK-TO-

PEAK (mV)

RECOVERY  

TIME (µs)

LOAD STEP 

(A/µs)

R

FB

 

(kΩ)

5

×

 10µF 50V

100µF 50V

×

 22µF 16V

150µF 25V

12

86

156

26

3

13.7

5

×

 10µF 50V

100µF 50V

×

 47µF 16V

None

12

86

178

14.8

3

13.7

5

×

 10µF 50V

100µF 50V

×

 22µF 16V

150µF 25V

24

83

166

27

3

13.7

5

×

 10µF 50V

100µF 50V

×

 47µF 16V

None

24

86

169

14.8

3

13.7

5

×

 10µF 50V

100µF 50V

×

 22µF 16V

150µF 25V

36

86

178

25

3

13.7

5

×

 10µF 50V

100µF 50V

×

 47µF 16V

None

36

86

172

15.2

3

13.7

10

×

 10µF 50V

100µF 50V

×

 22µF 16V

150µF 25V

24

111

209

30

3

6.34

10

×

 10µF 50V

100µF 50V

×

 47µF 16V

None

24

171

325

35

3

6.34

10

×

 10µF 50V

100µF 50V

×

 22µF 16V

150µF 25V

36

108

197

35

3

6.34

10

×

 10µF 50V

100µF 50V

×

 47µF 16V

None

36

153

288

39

3

6.34

12

×

 10µF 50V

100µF 50V

×

 22µF 16V

150µF 25V

24

153

281

37

3

5.23

12

×

 10µF 50V

100µF 50V

×

 47µF 16V

None

36

184

375

34.4

3

5.23

15

×

 10µF 50V

100µF 50V

×

 22µF 16V

150µF 25V

28

178

338

70

3

4.12

15

×

 10µF 50V

100µF 50V

×

 47µF 16V

None

36

134

250

70

3

4.12

R

PGM

 resistor on the MPGM pin programs the current. 

Calculate V

OUT(MARGIN)

:

 

 

V

OUT(MARGIN)

=

%V

OUT

100

• V

OUT

Where %V

OUT

 is the percentage of V

OUT

 to be margined, 

and V

OUT(MARGIN)

 is the margin quantity in volts:

 

 

R

PGM

=

V

OUT

0.6V

1.18V

V

OUT(MARGIN)

• 10k

Where R

PGM

 is the resistor value to place on the MPGM 

pin to ground.
The output margining will be ± margining of the value. 

This is controlled by the MARG0 and MARG1 pins. See 

the truth table below:

MARG1

MARG0

 

MODE

LOW

LOW

NO MARGIN

LOW

HIGH 

MARGIN UP

HIGH

LOW

MARGIN DOWN

HIGH

HIGH

NO MARGIN

Содержание EN55022B

Страница 1: ...d regulation The LTM4612 is Pb free and RoHS compliant L LT LTC LTM Linear Technology the Linear logo PolyPhase and Module are registered trademarks and LTpowerCAD is a trademark of Linear Technology...

Страница 2: ...15mm 15mm 2 8mm LGA 40 C to 125 C LTM4612MPV PBF LTM4612MPV PBF LTM4612MPV 133 Lead 15mm 15mm 2 8mm LGA 55 C to 125 C Consult LTC Marketing for parts specified with wider operating temperature ranges...

Страница 3: ...X5R Ceramic and 1 100 F Electrolytic 1 10 F X5R Ceramic on VD Pins VIN 24V VOUT 5V VIN 24V VOUT 12V 7 2 3 4 mVP P mVP P VOUT AC Output Ripple Voltage IOUT 0A COUT 2 22 F 2 47 F X5R Ceramic VIN 24V VOU...

Страница 4: ...rence Voltage 1 18 V VMARG0 VMARG1 MARG0 MARG1 Voltage Thresholds 1 4 V PGOOD DVFBH PGOOD Upper Threshold VFB Rising 7 10 13 DVFBL PGOOD Lower Threshold VFB Falling 7 10 13 DVFB HYS PGOOD Hysteresis V...

Страница 5: ...5 50 80 75 4 5 4612 G02 12VIN 5VOUT 24VIN 5VOUT 36VIN 5VOUT LOAD CURRENT A 0 EFFICIENCY 70 95 100 1 2 3 60 85 65 90 55 50 80 75 4 5 4612 G03 20VIN 12VOUT 24VIN 12VOUT 28VIN 12VOUT 36VIN 12VOUT LOAD CU...

Страница 6: ...SCON CAPACITOR 50 s DIV IIN 0 2A DIV VOUT 5V DIV 4612 G11 COUT 2 22 F CERAMIC CAPACITORS AND 2 47 F CERAMIC CAPACITORS 20 s DIV IIN 2A DIV VOUT 5V DIV 4612 G12 COUT 2 22 F CERAMIC CAPACITORS AND 2 47...

Страница 7: ...enable discontinuous mode opera tion at low load or to a resistive divider from a secondary output when using a secondary winding TRACK SS PinA9 OutputVoltageTrackingandSoft Start Pin When the module...

Страница 8: ...ied Thepinshaveaninternalpull downresistor of 50k See the Applications Information section SGND Pins D9 H12 Signal Ground Pins These pins connect to PGND at output capacitor point COMP Pins A11 D11 Cu...

Страница 9: ...or Requirement VIN 20V to 36V VOUT 12V IOUT 4A 100 150 F Specifications are at TA 25 C Use Figure 1 configuration INTERNAL COMP SGND COMP PGOOD RUN 1 9V ON 1V OFF MAX 5V MARG1 MARG0 MPGM FCB PLLIN CSS...

Страница 10: ...and ensure the electromagnetic interference EMI meets the limits of EN55022 Class B Pulling the RUN pin below 1V forces the controller into its shutdown state turning off both M1 and M2 At light load...

Страница 11: ...7 5 2 10 F 50V 100 F 50V 4 47 F 16V None 12 86 178 14 8 3 13 7 5 2 10 F 50V 100 F 50V 2 22 F 16V 150 F 25V 24 83 166 27 3 13 7 5 2 10 F 50V 100 F 50V 4 47 F 16V None 24 86 169 14 8 3 13 7 5 2 10 F 50...

Страница 12: ...equency vs Output Voltage Figure 3 Inductor Current Ripple vs Output Voltage VOUT V 2 600 800 1200 8 12 4612 F02 400 4 6 10 14 16 200 1000 FREQUENCY kHz 2 2 5 3 0 2 0 1 5 6 10 4 8 12 14 16 1 0 0 5 3 5...

Страница 13: ...t advisable to properly derate the input capacitor or choose a capacitor rated at a higher temperature than required Always contact the capacitor manufacturer for derating requirements In a typical 5A...

Страница 14: ...pple current versus the duty cycle Figure 5 provides a ratio of peak to peak output ripple current to the inductor ripple current as functions of duty cycle and the number of paralleled phases Pick th...

Страница 15: ...ce continuous mode are disabled during the soft start process The soft start function can also be used to control the output ramp rising time so that another regulator can be easily tracked Output Vol...

Страница 16: ...acks with margining COMP Pin The pin is the external compensation pin The module has alreadybeeninternallycompensatedformostoutputvolt ages LTpowerCAD from Linear Technology is available for more cont...

Страница 17: ...al Considerations and Output Current Derating In different applications LTM4612 operates in a variety of thermal environments The maximum output current is limited by the environment thermal condition...

Страница 18: ...3 5 4 5 105 4612 F11 0LFM 400LFM 200 LFM AMBIENT TEMPERATURE C 25 0 LOAD CURRENT A 1 0 2 0 3 0 35 45 55 65 85 75 95 4 0 5 0 0 5 1 5 2 5 3 5 4 5 105 4612 F12 0LFM 400LFM 200 LFM AMBIENT TEMPERATURE C...

Страница 19: ...ure 9 0 BGA Heat Sink 12 2 Figures 12 14 16 24 36 Figure 9 200 BGA Heat Sink 8 6 Figures 12 14 16 24 36 Figure 9 400 BGA Heat Sink 7 7 Table 4 5V Output DERATING CURVE VIN V POWER LOSS CURVE AIR FLOW...

Страница 20: ...Place high frequency ceramic input and output capaci tors next to the VD PGND and VOUT pins to minimize high frequency noise Place a dedicated power ground layer underneath the unit Useroundcornersfo...

Страница 21: ...TO 36V CLOCK SYNC REFER TO TABLE 2 EXTERNAL 5V SUPPLY IMPROVES EFFICIENCY ESPECIALLY FOR HIGH INPUT VOLTAGES ON OFF LTM4612 SGND PGND MARGIN CONTROL R4 100k RfSET 191k 1 RFB 22 1k R1 392k 5 MARGIN 461...

Страница 22: ...F20 VD VIN PLLIN C1 10 F 50V VOUT 15V 4A APPLICATIONS INFORMATION PGOOD RUN COMP INTVCC DRVCC fSET TRACK SS VOUT VFB FCB MARG0 MARG1 MPGM PULL UP SUPPLY 5V R2 100k C7 0 33 F C6 47pF C3 22 F 16V 4612 F...

Страница 23: ...5 100 F 50V C2 10 F 50V C8 10 F 50V VIN 22V TO 36V LTC6908 1 2 PHASE OSCILLATOR CLOCK SYNC 0 PHASE CLOCK SYNC 180 PHASE LTM4612 SGND PGND PGOOD RUN COMP INTVCC DRVCC fSET TRACK SS LTM4612 SGND 12V TRA...

Страница 24: ...CLOCK SYNC 0 PHASE CLOCK SYNC 180 PHASE SGND PGND PGOOD RUN COMP INTVCC DRVCC fSET TRACK SS VIN VD PLLIN SGND 5V TRACK PGND MARGIN CONTROL R4 100k RfSET1 150k RFB1 13 7k R1 392k R8 100k R9 22 1k RfSET...

Страница 25: ...5 H6 H7 H8 H9 H10 H11 PGND PGND PGND PGND PGND PGND PGND PGND PGND PGND PGND PIN NAME J1 J2 J3 J4 J5 J6 J7 J8 J9 J10 J11 VOUT VOUT VOUT VOUT VOUT VOUT VOUT VOUT VOUT VOUT VOUT K1 K2 K3 K4 K5 K6 K7 K8...

Страница 26: ...BSC 4 PAD 1 CORNER X Y aaa Z aaa Z DETAIL A 13 97 BSC 1 27 BSC 13 97 BSC 0 12 0 28 PACKAGE BOTTOM VIEW C 0 30 PAD 1 3 PADS SEE NOTES 1 2 3 4 5 6 7 8 10 9 11 12 DETAIL A 0 630 0 025 SQ 133x S Y X eee...

Страница 27: ...ation sections Changes to The l denotes statement and Note 2 Changes to the Pin Functions Changes to the Block Diagram Text changes to the Operation section Text changes to the Applications Informatio...

Страница 28: ...ator with PLL Output Tracking 4 5V VIN 26 5V 0 8V VOUT 5V Synchronizable 9mm 15mm 4 3mm LGA Package LTM8033 EN55022B Compliant 36VIN 3A DC DC Step Down Module Regulator 3 6V VIN 36V 0 8V VOUT 24V Sync...

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