參數資料
型號: TPS51461RGET
廠商: TEXAS INSTRUMENTS INC
元件分類: 穩(wěn)壓器
英文描述: SWITCHING REGULATOR, 1000 kHz SWITCHING FREQ-MAX, PQCC24
封裝: 4 X 4 MM, GREEN, PLASTIC, QFN-24
文件頁數: 5/31頁
文件大?。?/td> 1627K
代理商: TPS51461RGET
0.73
0.75
0.77
0.79
0.81
0.83
0.85
0.87
0
1
2
3
4
5
6
Output Current (A)
Output
Voltage
(V)
Mode 3
Mode 4
Mode 7
Mode 8
VIN = 5 V
=
CSINT
DROOP
M
A
I(L)
V
R
G
=
\
=
DROOP
CSINT
LOAD _ LINE
DROOP
M
LOAD _ LINE
M
V
A
R
I(L)
R
G
R
G
www.ti.com
SLUSAD9 – DECEMBER 2010
Figure 5. 0.8-V Load Regulation (VIN = 5 V)
Figure 6. Non-Droop Configuration Transient
Non-Droop Configuration
Response
Droop Configuration
The terminology for droop is the same as load line or voltage positioning as defined in the Intel CPU VCORE
specification. Based on the actual tolerance requirement of the application, load-line set points can be defined to
maximize either cost savings (by reducing output capacitors) or power reduction benefits.
Accurate droop voltage response is provided by the finite gain of the droop amplifier. The equation for droop
voltage is shown in Equation 2.
where
low-side on-resistence is used as the current sensing element
ACSINT is a constant, which nominally is 53 mV/A.
I(L) is the DC current of the inductor, or the load current
RDROOP is the value of resistor from the COMP pin to the VREF pin
GM is the transconductance of the droop amplifier with nominal value of 1 mS
(2)
(3)
Therefore, if a 5-m
Ω load line to the system agent rail is desired, the calculated RDROOP is approximately 10 kΩ.
Equation 2 can be used to easily derive RDROOP for any load line slope/droop design target.
Copyright 2010, Texas Instruments Incorporated
13
Product Folder Link(s): TPS51461
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