参数资料
型号: LTC3876EFE#PBF
厂商: Linear Technology
文件页数: 30/48页
文件大小: 0K
描述: IC CTLR DC/DC DDR DUAL 38-TSSOP
产品培训模块: LTC3876 Dual DC/DC Controller
标准包装: 50
应用: 控制器,DDR,DDR2,DDR3
输入电压: 4.5 V ~ 38 V
输出数: 2
输出电压: 可调
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 38-TFSOP (0.173",4.40mm 宽)裸露焊盘
供应商设备封装: 38-TSSOP 裸露焊盘
包装: 管件
LTC3876
APPLICATIONS INFORMATION
As the on-time is a function of the switching regulator’s
output voltage, this output is measured by the V OUT pin
to set the required on-time. Simply connecting V OUT to
the regulator’s local output point is preferable for most
applications, as the remotely regulated output point could
be significantly different from the local output point due to
line losses, and local output versus local ground is typically
the V OUT required for the calculation of t ON .
However, there could be circumstances where this V OUT
programmed on-time differs significantly different from
the on-time required in order to maintain frequency
and phase lock. For example, lower efficiencies in the
switching regulator can cause the required on-time to be
substantially higher than the internally set on-time (see
Efficiency Considerations). If a regulated V OUT is relatively
low, proportionally there could be significant error caused
by the difference between the local ground and remote
ground, due to other currents flowing through the shared
ground plane.
During dynamic transient conditions either in the line
voltage or load current (e.g., load step or release), the top
switch will turn on more or less frequently in response
to achieve faster transient response. This is the benefit
of the LTC3876’s controlled on-time, valley current mode
I LOAD
CLOCK
INPUT
architecture. However, this process may understandably
lose phase and even frequency lock momentarily. For
relatively slow changes, phase and frequency lock can
still be maintained. For large load current steps with fast
slew rates, phase lock will be lost until the system returns
back to a steady-state condition (see Figure 9). It may
take up to several hundred microseconds to fully resume
the phase lock, but the frequency lock generally recovers
quickly, long before phase lock does.
For light load conditions, the phase and frequency syn-
chronization depends on the MODE/PLLIN pin setting. If
the external clock is applied, synchronization will be active
and switching in continuous mode. If MODE/PLLIN is tied
to INTV CC , it will operate in forced continuous mode at
the R T -programmed frequency. If the MODE/PLLIN pin is
tied to SGND, the LTC3876 will operate in discontinuous
mode at light load and switch into continuous conduction
at the R T programmed frequency as load increases. The TG
on-time during discontinuous conduction is intentionally
slightly extended (approximately 1.2 times the continuous
conduction on-time as calculated from V IN , V OUT and f) to
create hysteresis at the load-current boundary of continu-
ous/discontinuous conduction.
PHASE AND
FREQUENCY
LOCKED
PHASE AND
FREQUENCY
LOCK LOST
FREQUENCY
RESTORED
QUICKLY
PHASE LOCK
RESUMED
PHASE AND
FREQUENCY
LOCK LOST
FREQUENCY
RESTORED
QUICKLY
SW
V OUT
DUE TO FAST
LOAD STEP
DUE TO FAST
LOAD STEP
3876 F09
Figure 9. Phase and Frequency Locking Behavior During Transient Conditions
3876f
30
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