FX5545G0081V3B1E2
更新时间:2024-09-18 02:41:59
品牌:VISHAY
描述:Low Profile 3mm DC/DC Buck Converter 0.8V to 4.5V, 3A with 380W/in3 Power Density Efficiency up to 95%
FX5545G0081V3B1E2 概述
Low Profile 3mm DC/DC Buck Converter 0.8V to 4.5V, 3A with 380W/in3 Power Density Efficiency up to 95% 扁平3mm DC / DC降压转换器0.8V至4.5V , 3A与380W / in3的功率密度转换效率高达95 %
FX5545G0081V3B1E2 数据手册
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PDF下载FX5545G008
Vishay
Low Profile 3mm DC/DC Buck Converter
0.8V to 4.5V*, 3A with 380W/in3 Power Density
Efficiency up to 95%
FEATURES
• Fully integrated DC/DC converter
• Advanced development of FX5545G305
• High efficiency over large load range
• 100% duty cycle
• Power density - more than 380W/inch3
• 1µA shutdown current
• 2.5V to 6V input range (1Li+ and 3-cell NiCd or NiMH cells)
• 0.8V to 4.5V* output voltage
• Programmable PWM/PSM controls
• Low output ripple
• BGA construction
• Temperature range: - 40°C to + 85°C
• No external components required
• Output power 10W
• Maximum current 3A
• Low profile
*Note: For higher putput voltage please consult factory at
FunctionPAK@Vishay.com
The DC/DC converter is available in 20-ports BGA package.
In order to satisfy the stringent ambient temperature
requirements, the DC/DC converter is designed to handle
the industrial temperature range of - 40°C to + 85°C.
The DC/DC converter is
a programmable topology
synchronized Buck converter for today’s continuous
changing portable electronic market. The DC/DC converter
provides flexibility of utilizing various battery configurations
and chemistries such as NiCd, NiMH, or Li+ with an input
voltage range of 2.5V to 6V. An additional flexibility is
provided with topology programmability to power multiple
loads such as power amplifiers, microcontrollers, or
baseband logic IC’s. For ultra-high efficiency, converters are
designed to operate in synchronous rectified PWM mode
under full load while transforming into externally controlled
pulse-skipping mode (PSM) under light load.
APPLICATION
• Cordless phones, PDAs and others
• Supply voltage source for low-voltage chip sets
• Point of Load (POL) applications such as drivers for
FPGA’s, microprocessors, DSP’s amplifiers, etc.
• Portable computers
• Battery back-up supplies
• Cameras
ORDERING INFORMATION
FX
5545
G008
FUNCTION
SIZE
CIRCUIT IDENTIFIER - G008 or G018
OUTPUT VOLTAGE - Example: 1.2V should be written as 1V2 as the V indicates the decimal point or ADJ
for adjustable version - self selectable output voltage. G018ADJ is only available in the adjustable version
for Vout = 0.9V - 1.3V. For design considerations please see ANF110
PACKAGING - B1 = 10pcs in bulk; B5 = 50pcs in bulk; T1 = 13” reel; T2 = 7” reel.
For lead (Pb)-free solder please add E2 suffix.
www.vishay.com
22
For technical questions, contact FunctionPAK@vishay.com
For marketing questions, contact FunctionPAK.marketing@vishay.com
Document Number: 10126
Revision: 01-Mar-05
FX5545G008
Vishay
W
DIMENSIONS in inches [millimeters]
0.58 0.01
[14.7 0.25]
L
0.48 0.01
[12.2 0.25]
W
0.1 0.01
[2.54 0.25]
A
C
A
0.09 0.01
[2.29 0.25]
B
0.09 0.01
[2.27 0.25]
C
0.126 max
[3.2 max]
T
0.03 0.001
[0.762 0.025]
Ball Diameter
PIN CONFIGURATION*
BOTTOM SIDE
PIN
CONNECTION
20 19 18 17
16 15 14 13
1, 2
3, 7
SD
SYNC**
Vref***
Vin
Marked on Upper Side
12 11 10
9
5
1
4, 8
8
4
7
3
6
2
5, 9
*Note: Pin Description application note is available at
www.vishay.com/doc?10119
6, 10
11, 12
13, 17
14, 18
15, 19
16, 20
PWM/PSM
N/C
For adjustable version please refer to Self Selectable Output Voltage
application note which is available at www.vishay.com/doc?10116
GND
Vout
**Note: if not used must be connected ti Vin.
N/C
***Note: N/C - If the output voltage is 0.9V and higher. For output
voltage of 0.8V connect Vref to MCL4448 (Vishay RF PIN Diode).
GND
Pin Configuration for Vo = 0.8V
Pin Configuration for Vo = 0.9V - 4.5V
D
RECOMMENDED PAD PATTERN in inches [millimeters]
A
D
F
A
0.1 0.01
[2.54 0.25]
0.03 0.001
[0.8 0.02]
0.02 0.001
[0.5 0.02]
F
1
A
TAPE AND REEL
See Tape and Reel Information - Type B
Document Number: 10126
Revision: 01-Mar-05
For technical questions, contact FunctionPAK@vishay.com
For marketing questions, contact FunctionPAK.marketing@vishay.com
www.vishay.com
23
FX5545G008
Vishay
STANDARD ELECTRICAL SPECIFICATIONS
PARAMETER
UNIT
CONDITION
MIN
TYP
MAX
Input
Voltage Range
Quiescent Current
Soft Start Time
VDC
µA
ms
2.5
6
PSM mode
SS for Vout = 3.3V
SS for Vout = 1.2V
200
4
2.6
T
T
SD, PWM/PSM,SYNC
Logic High
Logic Low
V
V
VH
VL
2.4
0.8
750
250
1
Normal Mode
PSM Mode
Shutdown Mode
Shutdown Time
µA
µA
µA
ms
IDD
IDD
IDD
T
T
SS for Vout = 3.3V
SS for Vout = 1.2V
4
0.6
Insulation
Test Voltage
Resistance
Leakage Current
Output
VAC
Ω
nA
60Hz 60sec
ISO = 500 VDC
VISO = 500 VDC
750
V
1 x 1011
5
Power
W
10
Voltage
VDC
0.8 to 4.5
For Vout = 0.9V and above (using external diode BAR065V for
Vout = 0.9V up to 1.3V) at 25°C Ambient Temp.
Voltage Tolerance
%
- 3
- 5
+3
For Vout = 0.8V up to 1.3V using external diode MCL4448 at
%
+5
25°C Ambient Temp.
Temp. Coefficient
Ripple and Noise
General
%/°C
mVpp
0.15
DC to 20 MHz
80
Package Weight
Oscillator
Frequency
SYNC Range
Temperature
Operation
gr.
1.4
1.5
KHz
400
F
SYNC/FOSC
1.2
°C
°C
- 40
- 55
+ 85
+ 125
Storage
Operating Junction Temp.
Thermal Impedance
°C
°C/WD*
Tj
θJA
150
82
*Note: WD = Power Dissipated
Rise Time
Fall Time
Rise Time (PWM mode): Vin = 6V; Vout = 3.3V; lout = 3A
Fall Time (PWM mode): Vin = 6V; Vout = 3.3V; lout = 3A
Fall Time (PWM mode): Vin = 6V; Vout = 1.2V; lout = 3A
Rise Time (PWM mode): Vin = 6V; Vout = 1.2V; lout = 3A
www.vishay.com
24
For technical questions, contact FunctionPAK@vishay.com
For marketing questions, contact FunctionPAK.marketing@vishay.com
Document Number: 10126
Revision: 01-Mar-05
FX5545G008
Vishay
PWM MODE
Vout Vs. lout*
Vout Vs. Vin*
Vin = 4.0V
3.5
3.45
3.4
3.5
3.45
3.4
3.35
3.3
3.25
3.2
3.35
3.3
3.25
3.2
lout = 1A
lout = 2A
lout = 3A
3.15
3.1
3.15
3.1
3.05
3
3.05
3
0
0.5
1
1.5
2
2.5
3
3.5
3
3.5
4
4.5
5
5.5
6
6.5
7
Vin (V)
lout (A)
Δ Temp Vs. lout*
Efficiency Vs. Lout*
Above 25°C Ambient Temperature Vin = 6.0V; Vout = 3.3V
Vout = 3.3A
60
50
40
100
95
90
85
80
75
70
30
20
10
0
65
60
0
0.5
1
1.5
2
2.5
3
3.5
0
0.5
1.5
2
2.5
3
3.5
1
lout (A)
lout (A)
Vout Vs. lout*
Vout Vs. Vin*
Vin = 6V
Vin = 4.0V
1.5
1.45
1.4
1.5
1.45
1.4
1.35
1.3
1.25
1.2
1.15
1.1
1.35
1.3
1.25
1.2
1.15
1.1
lout = 1A
lout = 3A
lout = 2A
1.05
1
1.05
1
0
0.5
1
1.5
2
2.5
3
3.5
2
3
4
5
6
7
lout (A)
Vin (V)
Δ Temp Vs. lout*
Above 25°C Ambient Temperature Vin = 6.0V; Vout = 1.2V
Efficiency Vs. lout*
Vin = 4.0V; Vout = 1.2V
60
50
40
100
90
80
70
60
50
40
30
Vin = 4.0V
Vin = 5.0V
30
20
10
0
20
10
0
0
0.5
1
1.5
2
2.5
3
3.5
0
0.5
1.5
2
2.5
3
3.5
1
Iout (A)
lout (A)
* Note: Measurements were taken with Power supply: ZUP 20-40 from Nemic Lambda; Electronic load: 6063B from Agilent; Multimeter Fluke 45
from Fluke and 34401 digital multimeter from Agilent; Scope: Infiniium 54815A from Agilent
Document Number: 10126
Revision: 01-Mar-05
For technical questions, contact FunctionPAK@vishay.com
www.vishay.com
25
FX5545G008
Vishay
PSM MODE
Vout Vs. lout*
Vin = 4.0V
Vout Vs. Vin*
Vin = 6V
3.5
3.45
3.4
3.35
3.3
3.5
3.45
3.4
lout = 0.1A
3.35
3.3
3.25
3.2
3.25
3.2
lout = 0.15A
3.15
3.1
3.15
3.1
3.05
3
3.05
3.0
0
0.05
0.1
lout (A)
0.15
0.2
0.25
3
3.5
4
4.5
5
5.5
6
6.5
Vin (V)
Efficiency Vs. lout*
Vin = 4.0V; Vout = 3.3V
100
90
80
70
60
50
40
30
20
10
0
0
0.05
0.1
0.15
Iout (A)
0.2
0.25
Vout Vs. lout*
Vout Vs. Vin*
Vin = 4.0V
1.5
1.45
1.4
1.35
1.3
1.5
1.45
1.4
1.35
1.3
1.25
1.2
1.25
1.2
1.15
1.1
lout = 0.1A
lout = 0.15A
1.15
1.1
1.05
3.2
1.05
1
0
0.02
0.04
0.06
0.08
0.1
0.12
0.14
0.16
1
2
3
4
5
6
7
Vin (V)
lout (A)
Efficiency Vs. lout*
Vin = 4.0V; Vout = 1.2V
100
90
80
70
60
50
40
30
20
10
0
0
0.02
0.04
0.06
0.08
0.1
0.12
0.14
0.16
Iout (A)
* Note: Measurements were taken with Power supply: ZUP 20-40 from Nemic Lambda; Electronic load: 6063B from Agilent; Multimeter Fluke 45
from Fluke and 34401 digital multimeter from Agilent; Scope: Infiniium 54815A from Agilent
www.vishay.com
26
For technical questions, contact FunctionPAK@vishay.com
For marketing questions, contact FunctionPAK.marketing@vishay.com
Document Number: 10126
Revision: 01-Mar-05
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