参数资料
型号: LSM2-T/16-D12N-C
厂商: Murata Power Solutions Inc
文件页数: 6/17页
文件大小: 0K
描述: CONV DC/DC 80W 16A 12V SMD
标准包装: 1
系列: LSM2
类型: 非隔离(POL)
输出数: 1
电压 - 输入(最小): 8.3V
电压 - 输入(最大): 13.2V
Voltage - Output 1: 0.75 ~ 5 V
电流 - 输出(最大): 16A
电源(瓦) - 制造商系列: 80W
安装类型: 表面贴装
封装/外壳: 8-DIP SMD 模块
尺寸/尺寸: 1.30" L x 0.53" W x 0.34" H(33.0mm x 13.5mm x 8.6mm)
包装: 标准包装
工作温度: -40°C ~ 85°C
效率: 94%
电源(瓦特)- 最大: 80W
其它名称: 811-1791-6
LSM2 Series
Single Output, Non-Isolated
Selectable-Output POL DC/DC Converters
Output Reverse Conduction
Many DC/DCs using synchronous recti?cation suffer from Output Reverse
Conduction. If those devices have a voltage applied across their output before a
voltage is applied to their input (this typically occurs when another power sup-
ply starts before them in a power-sequenced application), they will either fail to
start or self destruct. In both cases, the cause is the "freewheeling" or "catch"
FET biasing itself on and effectively becoming a short circuit.
LSM2 SMT DC/DC converters do not suffer from Output Reverse Conduc-
tion. They employ proprietary gate drive circuitry that makes them immune to
moderate applied output overvoltages.
Thermal Considerations and Thermal Protection
Figure 4. On/Off Control Using An External Open Collector Driver
Applying an external voltage to the On/Off Control pin when no input power
is applied to the converter can cause permanent damage to the converter. The
on/off control function, however, is designed such that the converter can be
disabled (control pin pulled low) while input voltage is ramping up and then
"released" once the input has stabilized (see also power-up sequencing).
Power-up sequencing
If a controlled start-up of one or more LSM2 Series DC/DC converters is
required, or if several output voltages need to be powered-up in a given
sequence, the On/Off control pin can be driven with an external open collector
device as per Figure 4.
Leaving the input of the on/off circuit closed during power-up will have the
output of the DC/DC converter disabled. When the input to the external open
collector is pulled high, the DC/DC converter’s output will be enabled.
Output Overvoltage Protection
LSM2 SMT Series DC/DC converters do not incorporate output overvoltage
protection. In the extremely rare situation in which the device’s feedback loop
is broken, the output voltage may run to excessively high levels (V OUT = V IN ). If it
is absolutely imperative that you protect your load against any and all possible
overvoltage situations, voltage limiting circuitry must be provided external to
the power converter.
Output Overcurrent Detection
Overloading the power converter's output for an extended time will invariably
cause internal component temperatures to exceed their maximum ratings and
eventually lead to component failure. High-current-carrying components such
as inductors, FET's and diodes are at the highest risk. LSM2 SMT Series DC/DC
converters incorporate an output overcurrent detection and shutdown function
that serves to protect both the power converter and its load.
If the output current exceeds it maximum rating by typically 50% or if the
output voltage drops to less than 98% of it original value, the LSM2's internal
overcurrent-detection circuitry immediately turns off the converter, which then
goes into a "hiccup" mode. While hiccupping, the converter will continuously
The typical output-current thermal-derating curves shown below enable
designers to determine how much current they can reliably derive from each
model of the LSM2 SMT's under known ambient-temperature and air-?ow
conditions. Similarly, the curves indicate how much air ?ow is required to reli-
ably deliver a speci?c output current at known temperatures.
Figure 5. Inverting On/Off Control
The highest temperatures in LSM2 SMT's occur at their output inductor,
whose heat is generated primarily by I 2 R losses. The derating curves were de-
veloped using thermocouples to monitor the inductor temperature and varying
the load to keep that temperature below +110°C under the assorted condi-
tions of air ?ow and air temperature. Once the temperature exceeds +115°C
(approx.), the thermal protection will disable the converter. Automatic restart
occurs after the temperature has dropped below +110°C.
As you may deduce from the derating curves and observe in the ef?ciency
curves on the following pages, LSM2 SMT's maintain virtually constant
ef?ciency from half to full load, and consequently deliver very impressive
temperature performance even if operating at full load.
Lastly, when LSM2 SMT's are installed in system boards, they are obviously
subject to numerous factors and tolerances not taken into account here. If you
are attempting to extract the most current out of these units under demanding
temperature conditions, we advise you to monitor the output-inductor tempera-
ture to ensure it remains below +110°C at all times.
attempt to restart itself, go into overcurrent, and then shut down. Once the
output short is removed, the converter will automatically restart itself.
www.murata-ps.com/support
M D C_LSM2 Series.C01 Δ Page 6 of 17
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