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dc2564af

DEMO MANUAL DC2564A

QUICK START PROCEDURE

DC2564A is easy to set up to evaluate the performance 

of the LT8606. Refer to Figure 4 for proper measurement 

equipment setup and follow the procedure below:
NOTE: When measuring the input or output voltage ripple, 

care must be taken to avoid a long ground lead on the 

oscilloscope probe. See Figure 5 for the proper scope 

technique.
1.  Set an input power supply that is capable of 42V/0.35A. 

Then turn off the supply.

2.  With power off, connect the supply to the input terminals 

V

IN

 and GND.

3.  Turn on the power at the input.
  NOTE: Make sure that the input voltage never exceeds 

42V.

4.  Check for the proper output voltage of 5V. Turn off the 

power at the input.

5.  Once the proper output voltage is established, connect 

a variable load capable of sinking 0.35A at 5V to the 

output terminals V

OUT

 and GND. Set the current for 0A.

a. If efficiency measurements are desired, an ammeter 

can be put in series with the output load in order 

to measure the DC2564A’s output current.

b. A voltmeter can be placed across the output ter-

minals in order to get an accurate output voltage 

measurement.

6.  Turn on the power at the input.
  NOTE: If there is no output, temporarily disconnect the 

load to make sure that the load is not set too high.

7.  Once the proper output voltage is established again, 

adjust the load and/or input within the operating range 

and observe the output voltage regulation, ripple volt-

age, efficiency and other desired parameters.

8.  An external clock can be added to the SYNC terminal 

when SYNC function is used (JP1 on the SYNC posi-

tion). Please ensure that the chosen RT sets the LT8606 

switching frequency to equal or below the lowest SYNC 

frequency. See the data sheet section, Synchronization.

Figure 1. Efficiency vs Load Current at 2MHz Switching Frequency

I

OUT

 (A)

0

EFFICIENCY (%)

100

55

95

85

75

65

90

80

70

60

50

0.10

0.30

0.20

dn2564 F01

0.35

0.05

0.25

0.15

12V

IN

24V

IN

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Summary of Contents for Analog Devices DC2564A

Page 1: ...move JP1 to SYNC and apply the external L LT LTC LTM Linear Technology the Linear logo and Burst Mode are registered trademarks of Analog Devices Inc All other trademarks are the property of their respective owners PERFORMANCE SUMMARY clock to the SYNC turret Figure 1 shows the efficiency of the circuit The demo board has an EMI filter installed The radiated EMI performances of the board with EMI ...

Page 2: ...encymeasurementsaredesired anammeter can be put in series with the output load in order to measure the DC2564A s output current b A voltmeter can be placed across the output ter minals in order to get an accurate output voltage measurement 6 Turn on the power at the input NOTE If there is no output temporarily disconnect the load to make sure that the load is not set too high 7 Once the proper out...

Page 3: ... Figure 2 LT8606 Demo Circuit EMI Performance in CISPR25 Radiated Emission Test Antenna Polarization Vertical Peak Detector VIN 14V VOUT 5V IOUT 0 35A 2MHz Switching Frequency Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com ...

Page 4: ...06 Demo Circuit EMI Performance in CISPR25 Radiated Emission Test Antenna Polarization Vertical Average Detector VIN 14V VOUT 5V IOUT 0 35A 2MHz Switching Frequency Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com ...

Page 5: ...ICK START PROCEDURE Figure 4 Proper Measurement Equipment Setup Figure 5 Measuring Output Ripple VOUT GND Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com Downloaded from Arrow com ...

Page 6: ... CRCW0603187KFKEA 12 1 U1 IC REGULATOR MSE10 LINEAR TECH LT8606EMSE PBF Additional Demo Board Circuit Components 1 1 C1 CAP ALUM 22µF 63V SUN ELECT 63CE22BS 2 3 C3 C10 C11 CAP X7R 1µF 50V 10 0805 MURATA GRM21BR71H105KA12L 3 1 C9 CAP X7R 4 7µF 16V 10 0805 MURATA GRM21BR71C475K73L 4 2 C12 C13 CAP X7R 0 1µF 50V 10 0603 MURATA GRM188R71H104KA93D 5 1 FB1 FERRITE BEAD 0805 TDK MPZ2012S331AT000 6 1 L2 RE...

Page 7: ...ECTRUM PULSE SKIPPING BURST VOUT VCC VCC E7 TR SS C12 0 1µF 50V R6 Opt C5 10pF R5 187k C10 1µF 50V 0805 C6 10µF 10V 0805 JP1 1 2 3 5 7 4 6 8 R1 1 00M R4 1 00M E6 EN UV U1 LT8606EMSE VIN 9 EN UV 10 SYNC 5 VCC 3 TR SS 7 RT 4 FB 6 PG 8 SW 2 BST 1 GND 11 C1 22µF 63V C13 0 1µF 50V C7 1µF C3 1µF 50V 0805 E4 GND E5 SYNC C11 1µF 50V 0805 L1 4 7µH 74438336047 E10 VIN 5 5V 42V R2 18 2k FB1 MPZ2012S331AT000 ...

Page 8: ...HER FOR ANY INDIRECT SPECIAL INCIDENTAL OR CONSEQUENTIAL DAMAGES The user assumes all responsibility and liability for proper and safe handling of the goods Further the user releases LTC from all claims arising from the handling or use of the goods Due to the open construction of the product it is the user s responsibility to take any and all appropriate precautions with regard to electrostatic di...

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