参数资料
型号: ADP2138ACBZ-2.5-R7
厂商: Analog Devices Inc
文件页数: 13/20页
文件大小: 0K
描述: IC REG BUCK SYNC 2.5V .8A 6WLCSP
产品变化通告: 8mm Carrier Tape Changes 28/Feb/2012
标准包装: 3,000
类型: 降压(降压)
输出类型: 固定
输出数: 1
输出电压: 2.5V
输入电压: 2.3 V ~ 5.5 V
PWM 型: 电流模式
频率 - 开关: 3MHz
电流 - 输出: 800mA
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: 6-UFBGA,WLCSP
包装: 带卷 (TR)
供应商设备封装: 6-WLCSP(1.03x1.50)

Data Sheet
APPLICATIONS INFORMATION
ADP2138/ADP2139
ADIsimPower DESIGN TOOL
The ADP2138/ADP2139 is supported by ADIsimPower design
tool set. ADIsimPower is a collection of tools that produce
Table 6. Suggested 1.0 μH Inductors
Dimensions
Vendor Model (mm)
I SAT
(mA)
DCR
(mΩ)
complete power designs optimized for a specific design goal.
The tools enable the user to generate a full schematic, bill of
materials, and calculate performance in minutes. ADIsimPower
can optimize designs for cost, area, efficiency, and parts count
while taking into consideration the operating conditions and
limitations of the IC and all real external components. For
more information about ADIsimPower design tools, refer to
www.analog.com/ADIsimPower . The tool set is available from
Murata
Taiyo Yuden
Coilcraft TDK
Coilcraft
Toko
LQM2MPN1R0NG0B
LQM18PN1R0
CBMF1608T1R0M
EPL2014-102ML
GLFR1608T1R0M-LR
0603LS-102
MDT2520-CN
2.0 × 1.6 × 0.9
1.6 × 0.8 × 0.33
1.6 × 0.8 × 0.8
2.0 × 2.0 × 1.4
1.6 × 0.8 × 0.8
1.8 × 1.27 × 1.1
2.5 × 2.0 × 1.2
1400
700
290
900
360
400
1800
85
52
90
59
80
81
100
V × ( V IN ? V OUT )
I PEAK = I LOAD ( MAX ) +
this website, and users can also request an unpopulated board
through the tool.
EXTERNAL COMPONENT SELECTION
Trade-offs between performance parameters such as efficiency
and transient response can be made by varying the choice of
external components in the applications circuit, as shown in
Inductor
The high switching frequency of the ADP2138/ADP2139 allows
for the selection of small chip inductors. For best performance,
use inductor values between 0.7 μH and 3 μH. Recommended
inductors are shown in Table 6.
The peak-to-peak inductor current ripple is calculated using
the following equation:
I RIPPLE = OUT
V IN × f SW × L
where:
f SW is the switching frequency.
L is the inductor value.
The minimum dc current rating of the inductor must be greater
than the inductor peak current. The inductor peak current is
calculated using the following equation:
I RIPPLE
2
Inductor conduction losses are caused by the flow of current
through the inductor, which has an associated internal DCR.
Larger sized inductors have smaller DCR, which may decrease
inductor conduction losses. Inductor core losses are related to
the magnetic permeability of the core material. Because the
ADP2138/ADP2139 are high switching frequency dc-to-dc
converters, shielded ferrite core material is recommended for its
Output Capacitor
Higher output capacitor values reduce the output voltage ripple
and improve load transient response. When choosing this value,
it is also important to account for the loss of capacitance due to
output voltage dc bias.
Ceramic capacitors are manufactured with a variety of dielectrics,
each with different behavior over temperature and applied voltage.
Capacitors must have a dielectric adequate to ensure the
minimum capacitance over the necessary temperature range
and dc bias conditions. X5R or X7R dielectrics with a voltage
rating of 6.3 V or 10 V are recommended for best performance.
Y5V and Z5U dielectrics are not recommended for use with any
dc-to-dc converter because of their poor temperature and dc bias
characteristics.
The worst-case capacitance accounting for capacitor variation
over temperature, component tolerance, and voltage is calcu-
lated using the following equation:
C EFF = C OUT × (1 ? TEMPCO ) × (1 ? TOL )
where:
C EFF is the effective capacitance at the operating voltage.
TEMPCO is the worst-case capacitor temperature coefficient.
TOL is the worst-case component tolerance.
In this example, the worst-case temperature coefficient (TEMPCO)
over ?40°C to +85°C is assumed to be 15% for an X5R dielectric.
The tolerance of the capacitor (TOL) is assumed to be 10%, and
C OUT is 4.0466 μF at 1.8 V, as shown in Figure 35.
Substituting these values in the equation yields
C EFF = 4.0466 μF × (1 ? 0.15) × (1 ? 0.1) = 3.0956 μF
To guarantee the performance of the ADP2138/ADP2139, it is
imperative that the effects of dc bias, temperature, and tolerances
on the behavior of the capacitors be evaluated for each application.
low core losses and low electromagnetic interference (EMI).
Rev. C | Page 13 of 20
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ADP2138ACBZ-3.3-R7 功能描述:IC REG BUCK SYNC 3.3V .8A 6WLCSP RoHS:是 类别:集成电路 (IC) >> PMIC - 稳压器 - DC DC 开关稳压器 系列:- 标准包装:500 系列:- 类型:切换式电容器(充电泵),反相 输出类型:固定 输出数:1 输出电压:-3V 输入电压:2.3 V ~ 5.5 V PWM 型:Burst Mode? 频率 - 开关:900kHz 电流 - 输出:100mA 同步整流器:无 工作温度:-40°C ~ 85°C 安装类型:表面贴装 封装/外壳:SOT-23-6 细型,TSOT-23-6 包装:带卷 (TR) 供应商设备封装:TSOT-23-6 其它名称:LTC1983ES6-3#TRMTR
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