参数资料
型号: KIT33701DWBEVB
厂商: Freescale Semiconductor
文件页数: 18/39页
文件大小: 0K
描述: KIT FOR 33701 POWER SUPPLY
标准包装: 1
主要目的: DC/DC,LDO 步降
输出及类型: 2,非隔离
输入电压: 2.8 ~ 6V
稳压器拓扑结构: 降压
频率 - 开关: 300kHz
板类型: 完全填充
已供物品: 板,软件
已用 IC / 零件: MC34701
相关产品: MC34701EKR2CT-ND - IC POWER SUPPLY MCU 1A 32-SOIC
MC34701EKR2TR-ND - IC POWER SUPPLY MCU 1A 32-SOIC
MC34701EK-ND - IC POWER SUPPLY MCU 1A 32-SOIC
FUNCTIONAL DESCRIPTION
FUNCTIONAL INTERNAL BLOCK DESCRIPTION
FUNCTIONAL INTERNAL BLOCK DESCRIPTION
INTRODUCTION
The 34701 incorporates a high performance synchronous
buck regulator, supplying the microprocessor’s core, and a
low dropout (LDO) linear regulator providing the
microprocessor I / O and bus voltages. This device
incorporates many advanced features; e.g., precisely
maintained up / down power sequencing, ensuring the proper
operation and protection of the CPU and power system.
Bandgap
Voltage
Reference
Boost Regulator
Buck Control Logic
Buck HS and
LS Driver
Switcher
Oscillator
300kHz
Power Sequencing
Voltage Margining
Watchdog Timer
I 2 C Interface
VDDI
Internal
Supply
Linear Regulator
Control
I LIM
UVLO
Reset Control
POR Timer
Bandgap
Voltage
Reference
Thermal Shutdown
Figure 11. 34701 Functional Internal Block Diagram
BOOST REGULATOR
A boost regulator provides a high-voltage necessary to
properly drive the buck regulator power MOSFETs,
especially during the low input voltage condition. The LDO
regulator external N-channel MOSFET gate is also powered
from the boost regulator. In order to properly enhance the
high side MOSFETs when only a +3.3V supply rail powers
the integrated circuit, the boost regulator provides an output
voltage of 7.75V nominal value.
The 34701 boost regulator uses a simple hysteretic
current control technique, which allows fast power-up and
does not require any compensation. When the boost
regulator main power switch (low side) is turned on, the
current in the inductor starts to ramp up. After the inductor
current reaches the upper current limit (nominally set at
1.0A), the low-side switch is turned off and the current
When the inductor current falls below the valley current limit
value (nominally 600mA), the low side switch is turned on
again, starting the next switching cycle. After the boost
regulator output capacitor reaches approximately 6.0 volts,
the peak and valley current limit levels are proportionally
scaled down to approximately one fifth of their original values.
When the boost regulator reaches its regulation limit (7.75V
typical), the low side switch is turned off until the output
voltage falls below the regulation limit again.
The higher current limit values in the beginning of the
boost regulator start-up sequence allow fast power up of the
whole IC, while the normal operation with reduced current
limit greatly reduces the switching noise and therefore
improves the overall EMC performance. See Figure 12 for
the boost regulator output voltage and inductor current
waveforms (picture not to scale).
charges the output capacitor through the internal rectifier.
34701
Analog Integrated Circuit Device Data ?
18
Freescale Semiconductor
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