Linear LT1317 Скачать руководство пользователя страница 6

6

DEMO MANUAL DC194

MICROPOWER BOOST REGULATOR

voltage. Normally, the high resistance of the ammeter will
not be present, so its negative effect on efficiency mea-
surements is misleading. This measurement problem can
be avoided by adding a large (1000

µ

F to 10,000

µ

F) bypass

capacitor across V

IN

 between the ammeter and the DC194.

Comments on Layout

The layout used for this demonstration circuit may be
transferred to your circuit board (Gerber files are avail-
able). Also, the data sheet includes layout guidelines.

A boost regulator contains a high frequency current loop
that includes the power switch (between the SW and GND
pins of the LT1317), the diode (D1) and the output
capacitor (C2). This loop should be kept small and an
unbroken ground plane should be placed below it. Con-
nect this local ground plane to the LT1317 near its ground
pin and to the system ground at just one point. The
feedback resistors and the components on the V

C

 pin

should be as close as possible to the LT1317 and should
be returned to the LT1317’s ground pin.

Testing in Your System

You may want to paste this circuit into your system to test
compatibility. This should be done with care, since long
hookup wires and ground loops can introduce noise
sources and regulation problems that would not be present
if the LT1317 DC/DC converter was properly designed into
your PCB.

Treat the DC194 as a 3-terminal device with V

IN

, V

OUT

 and

GND terminals. Wire the DC194 to your circuit board with
wires as short as practical, to points on the circuit board
that are close to each other. Also, add high frequency
bypass capacitors (0.1

µ

F ceramics) from V

IN

 and V

OUT

 to

ground on your circuit board.

If you are bringing power directly to the DC194, use two
wires from the input source to the V

IN

 and GND terminals

of the DC194. The output power should be applied to your
system as described above, and either the input supply or
your circuit should be floating in order to avoid ground
loops.

 OPERATIO

U

DESIGN ALTERNATIVES

Component Selection

The components used for the DC194 represent a compro-
mise in cost, performance and size. They are well matched
for the power capabilities of the LT1317 but there are many
options for the designer to optimize the circuit for his or
her application.

Diode D1 (Motorola MBR0520LT1) is a 0.5A, 20V Schot-
tky diode. It is a good choice for nearly any LT1317
application, unless the output voltage or the circuit topol-
ogy requires a diode rated for higher reverse voltages.
Motorola also offers 30V and 40V versions. Most 0.5A and
1A Schottky diodes are suitable and they are available
from many manufacturers. If you use a silicon diode, it
must be an ultrafast recovery type. Efficiency will be lower
due to the silicon diode’s higher forward voltage drop.

L1 is a 10

µ

H inductor rated for 1A of operating current. The

value of the inductor should be matched to the power
requirements and operating voltages of your application.
In most cases a value of 10

µ

H is suitable. The inductor

should be rated for ~0.75A peak without excessive satu-
ration—the current limit of the LT1317 internal power
switch allows the part to tolerate moderate inductance
loss. The Sumida CD43-100 used on the DC194 has a
relatively small footprint with low losses. The DO1608
series from Coilcraft offers a similar inductor. A smaller,
less expensive choice is the Murata LQH3C100K24, which
fits in a tiny 1210 footprint. Efficiency will be slightly lower
at higher operating currents. Finally, Coiltronics’ CTX10-1
is a surface mount toroidal inductor with good perfor-
mance; it will generate lower stray magnetic fields than the
drum-type inductors listed above.

Lower Ripple

The quality of the output capacitor is the greatest determi-
nant of the boost converter’s output voltage ripple. The
output capacitor performs two major functions. It must
have enough capacitance to satisfy the load under tran-
sient conditions, and it must shunt the AC component of
the current coming through the diode from the inductor.
The ripple on the output results when this AC current

Содержание LT1317

Страница 1: ...of logic supplies such as 3 3V to 5V conversion in PC card devices The LT1317 and LT1317B are 600kHz PWM DC DC con verters Theirhighoperatingfrequencyandsmallpackage DESCRIPTIO U PARAMETER CONDITIONS...

Страница 2: ...1 2 0 2 5 3 0 600 500 400 300 200 100 VOUT 3 3V TYPICAL MINIMUM LT1317B Efficiency Load Current vs Input Voltage Load Current vs Input Voltage Figure 1 Demo Board Schematic 1 2 3 4 VC FB SHDN GND 8 7...

Страница 3: ...onal 3 CR18 XXXJ T XXX 1 8W 5 1206 Resistor TAD 714 255 9123 JP1 1 3801S 03 G1 3 Pin Header 0 1 Center Comm 626 301 4200 1 CCIJ230 G SHUNT FOR JP1 Comm 626 301 4200 U1 1 LT1317CMS8 MSOP LTHA DC DC Con...

Страница 4: ...and GND terminals of the DC194 using a bench top supply with a 1A current limit Because the SHDN pin of the LT1317 has been left floating the LT1317 will begin operating as soon as VIN is above 1 5V...

Страница 5: ...down mode is typically 25 A How ever the load can draw additional current through the inductor and catch diode raising the power consumption in shutdown The LT1317 s low battery detector remains activ...

Страница 6: ...be floating in order to avoid ground loops OPERATIO U DESIGN ALTERNATIVES Component Selection The components used for the DC194 represent a compro miseincost performanceandsize Theyarewellmatched for...

Страница 7: ...e output voltage and output capacitor types However the loop response can be optimized further once the power components have been chosen Figure 4 shows the tran sientresponseoftheDC194 theuppertracei...

Страница 8: ...rally suffers with reduced output capacitance This is especially true with the LT1317 in Burst Mode operation when the load changes from a very low current 100 A to a higher current Low Battery Detect...

Страница 9: ...BO SHDN 1M 1 00M 86 6k 10M b Figure 7 Here Are Two Applications of the Low Battery Detector In a It Is Used to Sense the Battery Voltage and Trips when VIN Falls Below 1 75V In b It Is Used as an Unde...

Страница 10: ...10 DEMO MANUAL DC194 MICROPOWER BOOST REGULATOR PCB LAYOUT A D FIL U W DC194 TSLK DC194 TSP DC194 TSM DC194 BSM Solder Mask Top Solder Mask Bottom Solder Paste Top Silkscreen Top...

Страница 11: ...ar Technology Corporation is believed to be accurate and reliable However no responsibility is assumed for its use Linear Technology Corporation makes no represen tationthattheinterconnectionofitscirc...

Страница 12: ...IED 1 MATERIAL FR4 OR EQUIVALENT EPOXY 2 OZ COPPER CLAD THICKNESS 0 062 0 006 TOTAL OF 2 LAYERS 2 FINISH ALL PLATED HOLES 0 001 MIN 0 0015 MAX COPPER PLATE ELECTRODEPOSITED TIN LEAD COMPOSTION BEFORE...

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