参数资料
型号: MAX8727ETB+T
厂商: Maxim Integrated Products
文件页数: 8/13页
文件大小: 0K
描述: IC DC/DC CONV TFT-LCD 10-TDFN
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
应用: 转换器,TFT,LCD
输入电压: 2.6 V ~ 5.5 V
输出数: 1
输出电压: 2.6 V ~ 24 V
工作温度: 0°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 10-WFDFN 裸露焊盘
供应商设备封装: 10-TDFN-EP(3x3)
包装: 带卷 (TR)
TFT-LCD Step-Up DC-DC Converter
Soft-Start
The MAX8727 can be programmed for soft-start upon
power-up with an external capacitor. When the shutdown
pin is taken high, the soft-start capacitor (C SS ) is immedi-
ately charged to 0.4V. Then the capacitor is charged at a
constant current of 4.5μA (typ). During this time, the SS
voltage directly controls the peak inductor current, allow-
ing 0A at V SS = 0.4V to the full current limit at V SS = 1.5V.
The maximum load current is available after the soft-start
is completed. When the SHDN pin is taken low, the soft-
start capacitor is discharged to ground.
Frequency Selection
The MAX8727 ’s frequency can be user selected to
operate at either 640kHz or 1.2MHz. Connect FREQ to
GND for 640kHz operation. For a 1.2MHz switching fre-
quency, connect FREQ to IN. This allows the use of
small, minimum-height external components while
maintaining low output noise. FREQ has an internal
pulldown, allowing the user the option of leaving FREQ
unconnected for 640kHz operation.
Table 1. Component List
Shutdown
The MAX8727 shuts down to reduce the supply current
to 0.1μA when SHDN is low. In this mode, the internal
reference, error amplifier, comparators, and biasing cir-
cuitry turn off, and the n-channel MOSFET is turned off.
The step-up regulator’s output is connected to IN by
the external inductor and rectifier diode.
Applications Information
Step-up regulators using the MAX8727 can be
designed by performing simple calculations for a first
iteration. All designs should be prototyped and tested
prior to production. Table 1 provides a list of power
components for the typical applications circuit. Table 2
lists component suppliers.
External-component-value choice is primarily dictated
by the output voltage and the maximum load current,
as well as maximum and minimum input voltages.
Begin by selecting an inductor value. Once L is known,
choose the diode and capacitors.
Inductor Selection
The minimum inductance value, peak current rating, and
series resistance are factors to consider when selecting
the inductor. These factors influence the converter’s effi-
ciency, maximum output load capability, transient-
DESIGNATION
C1
C2, C7, C8
D1
L1
DESCRIPTION
10μF ±10%, 6.3V X5R ceramic capacitor
(0805)
Murata GRM21BR60J106K
Taiyo Yuden JMK212BJ106KD
4.7μF±20%, 25V X7R ceramic capacitors
(1206)
Murata GRM31CR71E475M
3A, 30V Schottky diode (M-Flat)
Toshiba CMS02
3.6μH ±30% power inductor
Sumida CDRH6D26-3R6NC
response time, and output voltage ripple. Physical size
and cost are also important factors to be considered.
The maximum output current, input voltage, output volt-
age, and switching frequency determine the inductor
value. Very high inductance values minimize the cur-
rent ripple and therefore reduce the peak current,
which decreases core losses in the inductor and I 2 R
losses in the entire power path. However, large induc-
tor values also require more energy storage and more
turns of wire, which increase physical size and can
increase I 2 R losses in the inductor. Low inductance val-
ues decrease the physical size but increase the current
ripple and peak current. Finding the best inductor
involves choosing the best compromise between circuit
efficiency, inductor size and cost.
Table 2. Component Suppliers
SUPPLIER
Murata
Sanyo
Sumida
Taiyo Yuden
Toshiba
PHONE
770-436-1300
619-661-4143
847-545-6700
800-348-2496
949-455-2000
FAX
770-436-3030
619-661-1055
847-545-6720
847-925-0899
949-859-3963
WEBSITE
www.murata.com
www.sanyovideo.com
www.sumida.com
www.t-yuden.com
www.toshiba.com/taec
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