参数资料
型号: MAX17083ETG+T
厂商: Maxim Integrated Products
文件页数: 13/15页
文件大小: 0K
描述: IC REG BUCK ADJ 5A 24TQFN
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
类型: 降压(降压)
输出类型: 可调式
输出数: 1
输出电压: 0.75 V ~ 2.7 V
输入电压: 2.4 V ~ 5.5 V
PWM 型: 电流模式,混合
频率 - 开关: 500kHz
电流 - 输出: 5A
同步整流器:
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 24-WFQFN 裸露焊盘
包装: 带卷 (TR)
供应商设备封装: 24-TQFN-EP(4x4)
Low-Voltage, Internal Switch,
Step-Down Regulator
Additionally, an additional feedback pole—capacitor
from FB to analog ground (C FB )—might be necessary to
cancel the unwanted ESR zero of the output capacitor.
In general, if the ESR zero occurs before the Nyquist
pole, then canceling the ESR zero is recommended.
where V STEP is the allowed voltage drop, Δ I LOAD(MAX) is
the maximum load step, and R PCB is the parasitic board
resistance between the load and output capacitor.
The capacitance value dominates the midfrequency
output impedance and continues to dominate the load-
ESR > ?
? 4 π f SW OUT ?
?
If:
? 1 + D ?
C
transient response as long as the load transient’s slew
rate is fewer than two switching cycles. Under these
conditions, the sag and soar voltages depend on the
output capacitance, inductance value, and delays in
C FB > ? OUT
L ( Δ I LOAD ( MAX ) ) 2 Δ I L OAD ( MAX ) ( T - Δ T )
2 C OUT IN MAX OUT )
( V × D
? ? ( V IN OUT OUT ? ?
) V
R ESR ≤ ? ? V RIPPLE
≈ ( Δ I LOAD ( MAX ) ) 2 L
I RMS = ? LOAD ? V OUT IN OUT )
( V - V
Then:
? C   ESR ?
?
? R FB ?
where R FB is the parallel impedance of the FB resistive
divider.
SMPS Output Ripple Voltage
With polymer capacitors, the effective series resistance
(ESR) dominates and determines the output ripple volt-
age. The step-down regulator’s output ripple voltage
(V RIPPLE ) equals the total inductor ripple current
( Δ I INDUCTOR ) multiplied by the output capacitor’s ESR.
Therefore, the maximum ESR to meet the output ripple
voltage requirement is:
? V IN f SW L ?
- V
where f SW is the switching frequency. The actual capa-
citance value required relates to the physical case size
needed to achieve the ESR requirement, as well as to
the capacitor chemistry. Thus, polymer capacitor selec-
tion is usually limited by ESR and voltage rating rather
than by capacitance value. Alternatively, combining
ceramics (for the low ESR) and polymers (for the bulk
capacitance) helps balance the output capacitance vs.
output ripple voltage requirements.
Internal SMPS Transient Response
The load-transient response depends on the overall out-
put impedance over frequency, and the overall amplitude
and slew rate of the load step. In applications with large,
fast load transients (load step > 80% of full load and slew
rate > 10A/μs), the output capacitor’s high-frequency
response—ESL and ESR—needs to be considered. To
prevent the output voltage from spiking too low under a
load-transient event, the ESR is limited by the following
equation (ignoring the sag due to finite capacitance):
the transient response. Low inductor values allow the
inductor current to slew faster, replenishing charge
removed from or added to the output filter capacitors
by a sudden load step, especially with low differential
voltages across the inductor. The sag voltage (V SAG )
that occurs after applying the load current can be esti-
mated by the following:
V SAG = +
- V C OUT
where D MAX is the maximum duty factor (see the
Electrical Characteristics table), T is the switching period
(1/f OSC ), and Δ T equals V OUT /V IN x T when in PWM
mode, or L x I IDLE /(V IN - V OUT ) when in pulse-skipping
mode. The amount of overshoot voltage (V SOAR ) that
occurs after load removal (due to stored inductor energy)
can be calculated as:
V SOAR
2 C OUT V OUT
When using low-capacity ceramic filter capacitors,
capacitor size is usually determined by the capacity
needed to prevent V SOAR from causing problems during
load transients. Generally, once enough capacitance is
added to meet the overshoot requirement, undershoot at
the rising load edge is no longer a problem.
Input-Capacitor Selection
The input capacitor must meet the ripple current
requirement (I RMS ) imposed by the switching currents.
The I RMS requirements of the regulator can be deter-
mined by the following equation:
? I ?
? V IN ?
The worst-case RMS current requirement occurs when
operating with V IN = 2V OUT . At this point, the above
?
R ESR ≤ ?
V STEP
? Δ I LOAD ( MAX )
?
- R PCB ?
?
equation simplifies to I RMS = 0.5 x I LOAD.
______________________________________________________________________________________
13
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MAX17083EVKIT+ 功能描述:电源管理IC开发工具 Low-Voltage Internal Switch Step-Down RoHS:否 制造商:Maxim Integrated 产品:Evaluation Kits 类型:Battery Management 工具用于评估:MAX17710GB 输入电压: 输出电压:1.8 V
MAX17085BETL+ 功能描述:电池管理 Dual Main Step-Down Controller RoHS:否 制造商:Texas Instruments 电池类型:Li-Ion 输出电压:5 V 输出电流:4.5 A 工作电源电压:3.9 V to 17 V 最大工作温度:+ 85 C 最小工作温度:- 40 C 封装 / 箱体:VQFN-24 封装:Reel
MAX17085BETL+T 功能描述:电池管理 Dual Main Step-Down Controller RoHS:否 制造商:Texas Instruments 电池类型:Li-Ion 输出电压:5 V 输出电流:4.5 A 工作电源电压:3.9 V to 17 V 最大工作温度:+ 85 C 最小工作温度:- 40 C 封装 / 箱体:VQFN-24 封装:Reel
MAX17085BEVKIT+ 制造商:Maxim Integrated Products 功能描述:STEP-DOWN REGULATOR - Boxed Product (Development Kits)
MAX17085GTL+ 功能描述:电池管理 Dual Main Step-Down Controller RoHS:否 制造商:Texas Instruments 电池类型:Li-Ion 输出电压:5 V 输出电流:4.5 A 工作电源电压:3.9 V to 17 V 最大工作温度:+ 85 C 最小工作温度:- 40 C 封装 / 箱体:VQFN-24 封装:Reel