參數(shù)資料
型號: MIC5219-3.1BM5
廠商: MICREL INC
元件分類: 基準電壓源/電流源
英文描述: Zener Diode; Application: General; Pd (mW): 400; Vz (V): 5.8 to 6.1; Condition Iz at Vz (mA): 5; C (pF) max: -; Condition VR at C (V):   ESD (kV) min: -; Package: MHD
中文描述: 3.1 V FIXED POSITIVE LDO REGULATOR, 0.6 V DROPOUT, PDSO5
封裝: SOT-23, 5 PIN
文件頁數(shù): 9/13頁
文件大?。?/td> 98K
代理商: MIC5219-3.1BM5
April 2001
9
MIC5219
MIC5219
Applications Information
The MIC5219 is designed for 150mA to 200mA output current
applications where a high current spike (500mA) is needed
for short, startup conditions. Basic application of the device
will be discussed initially followed by a more detailed discus-
sion of higher current applications.
Enable/Shutdown
Forcing EN (enable/shutdown) high (> 2V) enables the regu-
lator. EN is compatible with CMOS logic. If the enable/
shutdown feature is not required, connect EN to IN (supply
input). See Figure 5.
Input Capacitor
A 1
μ
F capacitor should be placed from IN to GND if there is
more than 10 inches of wire between the input and the ac filter
capacitor or if a battery is used as the input.
Output Capacitor
An output capacitor is required between OUT and GND to
prevent oscillation. The minimum size of the output capacitor
is dependent upon whether a reference bypass capacitor is
used. 1
μ
F minimum is recommended when C
BYP
is not used
(see Figure 5). 2.2
μ
F minimum is recommended when C
BYP
is 470pF (see Figure 6). For applications <3V, the output
capacitor should be increased to 22
μ
F minimum to reduce
start-up overshoot. Larger values improve the regulator
s
transient response. The output capacitor value may be in-
creased without limit.
The output capacitor should have an ESR (equivalent series
resistance) of about 5
or less and a resonant frequency
above 1MHz. Ultra-low-ESR capacitors could cause oscilla-
tion and/or underdamped transient response. Most tantalum
or aluminum electrolytic capacitors are adequate; film types
will work, but are more expensive. Many aluminum electrolyt-
ics have electrolytes that freeze at about
30
°
C, so solid
tantalums are recommended for operation below
25
°
C.
At lower values of output current, less output capacitance is
needed for stability. The capacitor can be reduced to 0.47
μ
F
for current below 10mA or 0.33
μ
F for currents below 1mA.
No-Load Stability
The MIC5219 will remain stable and in regulation with no load
(other than the internal voltage divider) unlike many other
voltage regulators. This is especially important in CMOS
RAM keep-alive applications.
Reference Bypass Capacitor
BYP is connected to the internal voltage reference. A 470pF
capacitor (C
BYP
) connected from BYP to GND quiets this
reference, providing a significant reduction in output noise
(ultra-low-noise performance). C
BYP
reduces the regulator
phase margin; when using C
BYP
, output capacitors of 2.2
μ
F
or greater are generally required to maintain stability.
The start-up speed of the MIC5219 is inversely proportional
to the size of the reference bypass capacitor. Applications
requiring a slow ramp-up of output voltage should consider
larger values of C
BYP
. Likewise, if rapid turn-on is necessary,
consider omitting C
BYP
.
Micrel
Thermal Considerations
The MIC5219 is designed to provide 200mA of continuous
current in two very small profile packages. Maximum power
dissipation can be calculated based on the output current and
the voltage drop across the part. To determine the maximum
power dissipation of the package, use the thermal resistance,
junction-to-ambient, of the device and the following basic
equation.
(
θ
P
=
T
T
D(max)
J(max)
A
JA
)
T
J(MAX)
is the maximum junction temperature of the die,
125
°
C, and T
A
is the ambient operating temperature.
θ
JA
is
layout dependent; table 1 shows examples of thermal resis-
tance, junction-to-ambient, for the MIC5219.
Package
θ
JA
Recommended
Minimum Footprint
θ
JA
1" Square
2 oz. Copper
θ
JC
MM8
(MM)
160
°
C/W
70
°
C/W
30
°
C/W
SOT-23-5 (M5)
220
°
C/W
170
°
C/W
130
°
C/W
Table 1. MIC5219 Thermal Resistance
The actual power dissipation of the regulator circuit can be
determined using one simple equation.
P
D
= (V
IN
V
OUT
) I
OUT
+ V
IN
I
GND
Substituting P
D(MAX)
for P
D
and solving for the operating
conditions that are critical to the application will give the
maximum operating conditions for the regulator circuit. For
example, if we are operating the MIC5219-3.3BM5 at room
temperature, with a minimum footprint layout, we can deter-
mine the maximum input voltage for a set output current.
°
220
P
D(max)
= 455mW
The thermal resistance, junction-to-ambient, for the mini-
mum footprint is 220
°
C/W, taken from table 1. The maximum
power dissipation number cannot be exceeded for proper
operation of the device. Using the output voltage of 3.3V, and
an output current of 150mA, we can determine the maximum
input voltage. Ground current, maximum of 3mA for 150mA
of output current, can be taken from the Electrical Character-
istics section of the data sheet.
455mW = (V
IN
3.3V)
×
150mA + V
IN
×
3mA
455mW = (150mA)
×
V
IN
+ 3mA
×
V
IN
495mW
950mW = 153mA
×
V
IN
V
IN
= 6.2V
MAX
Therefore, a 3.3V application at 150mA of output current can
accept a maximum input voltage of 6.2V in a SOT-23-5
package. For a full discussion of heat sinking and thermal
effects on voltage regulators, refer to the Regulator Thermals
section of Micrel
s Designing with Low-Dropout Voltage Regu-
latorshandbook.
P
= 125 C
25 C
C/W
D(max)
)
相關(guān)PDF資料
PDF描述
MIC5231-3.0BM5 Multiconductor Cable; Jacket Material:Polyvinylchloride (PVC); Leaded Process Compatible:Yes RoHS Compliant: Yes
MIC5231 ECONOLINE: RZ - 1kVDC Isolation- SMD Package Styles- 5V, 12V and 15V Output- UL94V-0 Package Material- No Heatsink Required- No Extern. Components- Toroidal Magnetics- Efficiency to 62%
MIC5231-2.75BM5 ECONOLINE: RZ - 1kVDC Isolation- SMD Package Styles- 5V, 12V and 15V Output- UL94V-0 Package Material- No Heatsink Required- No Extern. Components- Toroidal Magnetics- Efficiency to 62%
MIC5231-3.3BM5 ECONOLINE: RZ - 1kVDC Isolation- SMD Package Styles- 5V, 12V and 15V Output- UL94V-0 Package Material- No Heatsink Required- No Extern. Components- Toroidal Magnetics- Efficiency to 62%
MIC5231-5.0BM5 RZ Series - Econoline Regulated DC-DC Converters; Input Voltage (Vdc): 12V; Output Voltage (Vdc): 05V; Power: 0.5W; 1kVDC Isolation; SMD Package Styles; Single Regulated Output(Internal Linear Regulator); UL94V-0 Package Material; Optional Continuous Short Circuit Protected; Fully Encapsulated; Efficiency to 62%
相關(guān)代理商/技術(shù)參數(shù)
參數(shù)描述
MIC5219-5.0BM5 制造商:MICREL 制造商全稱:Micrel Semiconductor 功能描述:500mA-Peak Output LDO Regulator
MIC5219-5.0BM5 TR 功能描述:IC REG LDO 5V .5A SOT23-5 RoHS:否 類別:集成電路 (IC) >> PMIC - 穩(wěn)壓器 - 線性 系列:- 標準包裝:500 系列:- 穩(wěn)壓器拓撲結(jié)構(gòu):正,固定式 輸出電壓:12V 輸入電壓:14.5 V ~ 35 V 電壓 - 壓降(標準):- 穩(wěn)壓器數(shù)量:1 電流 - 輸出:500mA 電流 - 限制(最?。?- 工作溫度:-40°C ~ 125°C 安裝類型:通孔 封裝/外殼:TO-205AD,TO-39-3 金屬罐 供應(yīng)商設(shè)備封裝:TO-39 包裝:散裝 其它名稱:*LM78M12CH*LM78M12CH/NOPBLM78M12CH
MIC5219-5.0BM5TR 制造商:RF Micro Devices Inc 功能描述: 制造商:Micrel Inc 功能描述:
MIC5219-5.0BMM 功能描述:IC REG LDO 5V .5A 8-MSOP RoHS:否 類別:集成電路 (IC) >> PMIC - 穩(wěn)壓器 - 線性 系列:- 標準包裝:500 系列:- 穩(wěn)壓器拓撲結(jié)構(gòu):正,固定式 輸出電壓:12V 輸入電壓:14.5 V ~ 35 V 電壓 - 壓降(標準):- 穩(wěn)壓器數(shù)量:1 電流 - 輸出:500mA 電流 - 限制(最?。?- 工作溫度:-40°C ~ 125°C 安裝類型:通孔 封裝/外殼:TO-205AD,TO-39-3 金屬罐 供應(yīng)商設(shè)備封裝:TO-39 包裝:散裝 其它名稱:*LM78M12CH*LM78M12CH/NOPBLM78M12CH
MIC5219-5.0BMM TR 功能描述:IC REG LDO 5V .5A 8-MSOP RoHS:否 類別:集成電路 (IC) >> PMIC - 穩(wěn)壓器 - 線性 系列:- 標準包裝:500 系列:- 穩(wěn)壓器拓撲結(jié)構(gòu):正,固定式 輸出電壓:12V 輸入電壓:14.5 V ~ 35 V 電壓 - 壓降(標準):- 穩(wěn)壓器數(shù)量:1 電流 - 輸出:500mA 電流 - 限制(最?。?- 工作溫度:-40°C ~ 125°C 安裝類型:通孔 封裝/外殼:TO-205AD,TO-39-3 金屬罐 供應(yīng)商設(shè)備封裝:TO-39 包裝:散裝 其它名稱:*LM78M12CH*LM78M12CH/NOPBLM78M12CH