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MIC2546-1BM 参数 Datasheet PDF下载

MIC2546-1BM图片预览
型号: MIC2546-1BM
PDF下载: 下载PDF文件 查看货源
内容描述: 双通道可编程电流限制开关的初步信息 [Dual Programmable Current Limit Switch Preliminary Information]
分类和应用: 外围驱动器驱动程序和接口开关接口集成电路光电二极管
文件页数/大小: 12 页 / 264 K
品牌: MICREL [ MICREL SEMICONDUCTOR ]
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MIC2546/2547
Micrel
P
D
= R
DS(on)
×
(I
OUT
)2
To relate this to junction temperature, the following equation
can be used:
T
j
= P
D
× θ
JA
+ T
A
where:
T
j
= junction temperature
T
A
= ambient temperature
θ
JA
= is the thermal resistance of the package
Transient Overcurrent Filter
The inrush current from the connection of a heavy capacitive
load may cause the fault flag to fall for 10µs to 200µs while the
switch is in a constant-current mode, charging the capaci-
tance.
Adding an optional series resistor-capacitor (R
SET2
) in paral-
lel with R
SET
, as shown in Figure 3, allows the transient
current-limit to be set to a different value than steady state. A
typical USB hot-plug inrush is 2A to 3A for 10µs to 20µs. If
R
SET
is 435Ω (510mA), an R
SET2
of 88Ω (2.5A) and C
SET
of
1µF (RC = 100µs) allows transient surge of 3A to pass for
100µs without tripping the overcurrent flag (FLG).
USB Power Distribution
The MIC2546 is ideal for meeting USB power distribution
requirements. Figure 3 depicts a USB Host application. R
SET
should be set to a value providing a current-limit >500mA.
The accurate current-limit of the MIC2546 will reduce power
supply current requirements. Also, fast reaction to short
circuit faults prevent voltage droop in mobile PC applications.
Printed Circuit Board Hot-Plug
The MIC2546/47 are ideal inrush current-limiters suitable for
hot-plug applications. Due to the integrated charge pump,
the MIC2546/47 presents a high impedance when off and
slowly becomes a low impedance as it turns on. This “soft-
start” feature effectively isolates power supplies from highly
capacitive loads by reducing inrush current during hot-plug
events.
Applications Information
Supply Filtering
A 0.1µF to 1µF bypass capacitor from INX to GND, located
near the MIC2546 and MIC2547, is strongly recommended to
control supply transients. Without a bypass capacitor, an
output short may cause sufficient ringing on the input (from
supply lead inductance) to damage internal control circuitry.
Input transients must not exceed the absolute maximum
supply voltage (V
IN max
= 6V) even for a short duration.
4.0V to 5.5V
MIC2546-1BM
1
0.1 to 1µF
2
3
4
5
6
7
8
INA
OUTA
ENA
NC
FLGA
OUTA
ILIMA
GNDA
FLGB
ENB
16
15
14
13
12
11
10
9
.
GNDB OUTB
ILIMB
OUTB
NC
INB
R
SETA
R
SETB
0.1 to 1µF
Supply Bypassing
Power Dissipation
The device's junction temperature depends on several fac-
tors such as the load, PCB layout, ambient temperature and
package type. Equations that can be used to calculate power
dissipation and junction temperature are found below.
Calculation of power dissipation can be accomplished by the
following equation:
(+)
(–)
5V
4.7µF
1.5k 2%
MIC5203-3.3
LDO Regulator
10k
10k
100k
3.3V USB Controller
V+
ON/OFF
MIC2546-2BM
INA
ENA
NC
FLGA
D+
D–
GND
OUTA
GNDA
FLGB
ENB
NC
INB
120µF
V
BUS
D+
0.01µF
D–
GND
Ferrite Bead
Downstream
USB
Port 2
4.75V min.
500mA max.
Ferrite Bead
V
BUS
OUTA ILIMA
100k
V
BUS
D+
D–
GND
IN
OUT
GND
R
SET
0.01µF
120µF
D+
D–
GND
OVERCURRENT
Downstream
USB
Port 1
4.75V min.
500mA max.
R
SET
GNDB OUTB
ILIMB
OUTB
Bold
lines indicate
0.1" wide, 1-oz. copper
high-current traces.
R
SET(2)
C
SET
(optional)
Figure 3. USB Host Application
June 2000
11
MIC2546/2547