参数资料
型号: MAX1836EUT50#TG16
厂商: Maxim Integrated Products
文件页数: 7/15页
文件大小: 0K
描述: IC REG BUCK 5V 125MA SOT23-6
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 1
类型: 降压(降压)
输出类型: 固定
输出数: 1
输出电压: 5V
输入电压: 4.5 V ~ 24 V
电流 - 输出: 125mA
同步整流器:
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: SOT-23-6
包装: 标准包装
供应商设备封装: SOT-6
其它名称: MAX1836EUT50#TG16DKR
24V Internal Switch, 100% Duty Cycle,
Step-Down Converters
Pin Description
PIN
1
2
3
4
5
6
NAME
FB
GND
IN
LX
SHDN
OUT
EP
FUNCTION
Dual-Mode Feedback Input. Connect to GND for the preset 3.3V (MAX183_EUT33) or 5.0V (MAX183_EUT50)
output. Connect to a resistive divider between the output and FB to adjust the output voltage between 1.25V
and V IN , and connect the OUT pin to GND. When setting output voltages above 5.5V, permanently connect
SHDN to IN.
Ground
Input Voltage. 4.5V to 24V input range. Connected to the internal p-channel power MOSFET’s source.
Inductor Connection. Connected to the internal p-channel power MOSFET’s drain.
Shutdown Input. A logic low shuts down the MAX1836/MAX1837 and reduces supply current to 3μA. LX is
high impedance in shutdown. Connect to IN for normal operation. When setting output voltages above 5.5V,
permanently connect SHDN to IN.
Regulated Output Voltage High-Impedance Sense Input. Internally connected to a resistive divider. Connect
to the output when using the preset output voltage. Connect to GND when using an external resistive divider
to adjust the output voltage.
Exposed M etal P ad. Connect to GND. This pad is internally connected to GND through a soft connect. For
proper grounding and good thermal dissipation , c onnect the exposed pad to GND.
INPUT
4.5V OR 12V
C IN
10 μ F
25V
IN
SHDN
LX
D1
L1
47 μ H
OUTPUT
3.3V OR 5V
C OUT
100 μ F
6.3V
INPUT
4.5V OR 12V
C IN
10 μ F
25V
IN
SHDN
LX
D1
L1
22 μ H
OUTPUT
3.3V OR 5V
C OUT
150 μ F
6.3V
MAX1836
OUT
MAX1837
OUT
GND
FB
GND
FB
C IN = TAIYO YUDEN TMK432BJ106KM
L1 = SUMIDA CDRH5D28-470
C OUT = SANYO POSCAP 6TPC100M (SMALLER CAPACITORS CAN BE USED FOR 5V)
D1 = NIHON EP05Q03L
NOTE: HIGH-CURRENT PATHS SHOWN WITH BOLD LINES.
Figure 1. Typical MAX1836 Application Circuit
Detailed Description
The MAX1836/MAX1837 step-down converters are
designed primarily for battery-powered devices, note-
book computers, and industrial control applications. A
unique current-limited control scheme provides high
efficiency over a wide load range. Operation up to
100% duty cycle allows the lowest possible dropout
voltage, increasing the useable supply voltage range.
Under no-load, the MAX1836/MAX1837 draw only
12μA, and in shutdown mode, they draw only 3μA to
further reduce power consumption and extend battery
life. Additionally, an internal 24V switching MOSFET,
C IN = TAIYO YUDEN TMK432BJ106KM
L1 = SUMIDA CDRH5D28-220
C OUT = SANYO OS-CON 6SA150M (SMALLER CAPACITORS CAN BE USED FOR 5V)
D1 = NIHON ED05Q03L
NOTE: HIGH-CURRENT PATHS SHOWN WITH BOLD LINES.
Figure 2. Typical MAX1837 Application Circuit
internal current sensing, and a high switching frequen-
cy minimize PC board space and component cost.
Current-Limited Control Architecture
The MAX1836/MAX1837 use a proprietary current-limit-
ed control scheme that operates with duty cycles up to
100%. These DC-DC converters pulse as needed to
maintain regulation, resulting in a variable switching fre-
quency that increases with the load. This eliminates the
high supply currents associated with conventional con-
stant-frequency pulse-width-modulation (PWM) con-
trollers that switch the MOSFET unnecessarily.
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7
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