参数资料
型号: MAX17080GTL+
厂商: Maxim Integrated Products
文件页数: 25/48页
文件大小: 0K
描述: IC CONTROLLER AMD SVI 40-TQFN
标准包装: 60
应用: 控制器,AMD SVI
输入电压: 2.7 V ~ 5.5 V
输出数: 3
输出电压: 0.013 V ~ 1.55 V
工作温度: -40°C ~ 105°C
安装类型: 表面贴装
封装/外壳: 40-WFQFN 裸露焊盘
供应商设备封装: 40-TQFN-EP(5x5)
包装: 管件
AMD 2-/3-Output Mobile Serial
VID Controller
? I L R SENSE Gm ( FBAC ) R FBDC + ? I L R ESR
≤ 28 mV
( 56 mV - ? I L ESR ) ( R FBAC + R F B )
R FBDC ≤
V OUT ( MAX ) ( V IN ( MAX ) ? V OUT ( MAX ) )
Transient Phase Repeat
When a transient occurs, the output voltage deviation
depends on the controller’s ability to quickly detect the
transient and slew the inductor current. A fixed-frequency
controller typically responds only when a clock edge
occurs, resulting in a delayed transient response. To
minimize this delay time, the MAX17080 includes
enhanced transient detection and transient phase
repeat capabilities. If the controller detects that the out-
put voltage has dropped by 38mV, the transient detec-
tion comparator immediately retriggers the phase that
completed its on-time last. The controller triggers the
subsequent phases as normal, on the appropriate
oscillator edges. This effectively triggers a phase a full
cycle early, increasing the total inductor-current slew
rate and providing an immediate transient response.
Core SMPS Feedback
Adjustment Amplifiers
The MAX17080 provides an FBAC and FBDC pin for
each SMPS to allow for flexible AC and DC droop set-
tings. FBAC is the output of an internal transconduc-
tance amplifier that outputs a current proportional to the
current-sense signal. FBDC is the feedback input that is
compared against the internal target. Place resistors
and capacitors at the FBAC and FBDC pins as shown
in Figure 4. With this configuration, the DC droop is
always less than or equal to the AC droop.
MAX17080
I FBAC = Gm ( FBAC ) V CS
where V CS = V CSP - V CSN is the differential current-sense
voltage, and Gm (FBAC) is typically 2mS as defined in the
Electrical Characteristics table. DC droop is typically used
together with the +12.5mV offset feature to keep within the
DC tolerance window of the application. See the Offset
and Address Change for Core SMPSs (OPTION) section.
The ripple voltage on FBDC must be less than the -28mV
(max) transient phase repeat threshold:
R FBAC
R FBAC + R FBDC + R FB
2
R
R FBAC ? I L R SENSE Gm ( FBAC ) - 56 mV
where ? I L is the inductor ripple current, R ESR is the
effective output ESR at the remote sense point, R SENSE
is the current-sense element, and Gm (FBAC) is 2.06mS
(max) as defined in the Electrical Characteristics table.
The worst-case inductor ripple occurs at the maximum
input-voltage and maximum output-voltage conditions:
? I L ( MAX ) =
V IN ( M A X ) f SW L
To make the DC and AC load-lines the same, directly
short FBAC to FBDC.
To disable DC voltage positioning, remove R FB , which
connects FBAC to FBDC.
Core Transient Voltage-Positioning Amplifier
CSP
CSN
Gm (FBAC)
FBAC
C FB
R FB
R FBAC
(AC Droop)
Each of the MAX17080 core supply SMPSs includes one
transconductance amplifier for voltage positioning. The
ERROR
AMP
FBDC
R FBDC
100 ?
CORE SENSE_H
amplifiers’ inputs are generated by summing their respec-
tive current-sense inputs, which differentially sense the
4700pF
voltage across either current-sense resistor or the induc-
TARGET
AGND
tor’s DCR.
The voltage-positioning amplifier’s output (FBAC) con-
Figure 4. MAX17080 Core SMPS Feedback Connection
Core Steady-State Voltage Positioning (DC Droop)
nects to the remote-sense point of the output through
an R and C network that sets each phase’s AC voltage-
positioning gain:
FBDC is the feedback input to the error amplifier.
Based on the configuration in Figure 4, the core SMPS
output voltage is given by:
V OUT = V TARGET -
R FBDC × R FBAC
R FBAC + R FBDC + R FB Z CF B
I FBAC
V OUT = V TARGET ?
R FBDC × R FBAC
R FBAC + R FBDC + R FB
× I FB A C
where the target voltage (V TARGET ) is defined in the
Nominal Output-Voltage Selection section, Z CFB is the
effective impedance of C FB , and the FBAC amplifier’s
where the target voltage (V TARGET ) is defined in the
Nominal Output-Voltage Selection section, and the
FBAC amplifier’s output current (I FBAC ) is determined
by each phase’s current-sense voltage:
output current (I FBAC ) is determined by each phase’s
current-sense voltage:
I FBAC = Gm ( FBAC ) V CS
______________________________________________________________________________________
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