参数资料
型号: MCP1631T-E/SS
厂商: Microchip Technology
文件页数: 19/34页
文件大小: 0K
描述: IC REG CTRLR ISO PWM CM 20-SSOP
标准包装: 1,600
PWM 型: 电流模式
输出数: 1
频率 - 最大: 2MHz
占空比: 10%
电源电压: 3.5 V ~ 16 V
降压:
升压:
回扫:
反相:
倍增器:
除法器:
Cuk:
隔离:
工作温度: -40°C ~ 125°C
封装/外壳: 20-SSOP(0.209",5.30mm 宽)
包装: 带卷 (TR)
其它名称: MCP1631T-E/SSTR
MCP1631/HV/MCP1631V/VHV
5.0
5.1
APPLICATION INFORMATION
Typical Applications
inductors has significant advantages in addition to the
size and cost benefits of a single core with multiple
windings.
The MCP1631/MCP1631V can be used to develop
intelligent power management solutions, typical
applications include a multi-chemistry battery charger
used to charge Li-Ion, NiMH or NiCd batteries and
constant current LED drivers.
5.4 Mixed Signal Design
For intelligent battery charger design, a microcontroller
is used to generate the proper charge profile, charge
termination, safety timers and battery charger features.
When using the MCP1631/MCP1631V for Li-Ion
5.2
Battery Charger Design Overview
battery charger applications, the microcontroller is also
used to generate the constant voltage regulation phase
The design approach for developing high current
switching battery chargers using the MCP1631 is
described in this section. Depending on input voltage
range, there are two versions of the device that can be
used to accommodate a very wide range of input
voltages.
For a regulated input voltage range of 5V, the
MCP1631/MCP1631V device is used, for this input
voltage application (regulated ac-dc converter or USB
input), the MCP1631/MCP1631V is powered directly
from the 5V dc input.
For input voltages to +16V steady state with +18V
transients, the MCP1631HV/MCP1631VHV, or high
voltage option can be used. The high voltage devices
integrate a low dropout (LDO) linear regulator with a set
output voltage of +3.3V or +5.0V that internally powers
the MCP1631HV/MCP1631VHV and is also capable of
of the charge cycle. This is accomplished by using the
external reference feature of the MCP1631/MCP1631V
as a programmable current source. The microcontroller
is used to vary the V REF input of the MCP1631/
MCP1631V. The charge current into the battery is
regulated by the MCP1631/MCP1631V, the level that it
is regulated to is set by the programmability of the
microcontroller.
The internal MCP1631/MCP1631V analog compo-
nents are used to regulate the microcontroller
programmed current. The secondary or battery current
is sensed using amplifier A2, the output of A2 is feed
into the input of the error amplifier A1, the output of A1
sets the peak switch current of the SEPIC converter, it
increases or decreases the battery current to match its
(A1) inputs. By increasing the V REF or non-inverting
input of A1, the battery current is increased.
providing 250 mA of bias current for the attached
microcontroller and other circuitry. MCP1631HV/
5.5
Safety Features
MCP1631VHV internal power dissipation must be
considered when loading the internal LDO regulator.
For higher input voltages the MCP1631/MCP1631V
can be biased from an external regulated +3.0V to
+5.5V supply.
The MCP1631/MCP1631V integrates a high-speed
comparator used to protect the charger and battery
from being exposed to high voltages if the battery is
removed or opens. Comparator C2 is used to sense the
SEPIC output voltage. If the divided down output
voltage becomes higher than the 1.2V internal
5.3
Programmable Single Ended
Primary Inductive (SEPIC) Current
Source
MCP1631/MCP1631V reference, the V EXT PWM
output is terminated within 50 ns preventing the build
up of voltage on the SEPIC output.
Peak switch current is limited by the MCP1631/
The MCP1631/MCP1631V family integrates features
that are necessary to develop programmable current
sources. The SEPIC converter is commonly used in
battery charger applications. The primary or input
inductor is used to filter input current and minimize the
switching noise at the converter input. The primary to
secondary capacitive isolation blocks any dc path from
input to output making the SEPIC safer than Buck or
other non-isolated topologies. The SEPIC rectifier
blocks the reverse path preventing battery leakage, in
other topologies an additional diode for blocking is
necessary adding additional components and
efficiency loss.
The input or primary inductor and output or secondary
inductor are typically constructed from a single
magnetic device with two windings, this is commonly
referred to as a coupled inductor. Using coupled
? 2008 Microchip Technology Inc.
MCP1631V comparator C1 and error amplifier A1
output voltage clamp. For the MCP1631, the error
amplifier output is clamped at 2.7V. The A1 output is
divided down by 1/3 and compared with CS (current
sense) input. The V EXT output is turned off if the CS
input reaches a level of 1/3 of 2.7V or 0.9V in 12 ns,
preventing the external switch current from becoming
high enough to damage the SEPIC power train.
Internal overtemperature protection limits the device
junction temperature to 150°C preventing catastrophic
failure for overtemperature conditions. Once the
temperature decreases 10°C, the device will resume
normal operation.
Safety timers are typically used to limit the amount of
energy into a faulted battery or pack. This is
accomplished using the microcontroller and MCP1631/
MCP1631V shutdown feature.
DS22063B-page 19
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MCP1631V 制造商:MICROCHIP 制造商全称:Microchip Technology 功能描述:High-Speed, Pulse Width Modulator
MCP1631V-E/ML 功能描述:开关变换器、稳压器与控制器 Integrated HS PWM V Mode RoHS:否 制造商:Texas Instruments 输出电压:1.2 V to 10 V 输出电流:300 mA 输出功率: 输入电压:3 V to 17 V 开关频率:1 MHz 工作温度范围: 安装风格:SMD/SMT 封装 / 箱体:WSON-8 封装:Reel
MCP1631V-E/SS 功能描述:开关变换器、稳压器与控制器 Integrated HS PWM V Mode RoHS:否 制造商:Texas Instruments 输出电压:1.2 V to 10 V 输出电流:300 mA 输出功率: 输入电压:3 V to 17 V 开关频率:1 MHz 工作温度范围: 安装风格:SMD/SMT 封装 / 箱体:WSON-8 封装:Reel
MCP1631V-E/ST 功能描述:开关变换器、稳压器与控制器 Integrated HS PWM V Mode RoHS:否 制造商:Texas Instruments 输出电压:1.2 V to 10 V 输出电流:300 mA 输出功率: 输入电压:3 V to 17 V 开关频率:1 MHz 工作温度范围: 安装风格:SMD/SMT 封装 / 箱体:WSON-8 封装:Reel
MCP1631VHV 制造商:MICROCHIP 制造商全称:Microchip Technology 功能描述:High-Speed, Pulse Width Modulator