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부품번호 FAN1585AM18X 기능
기능 5A Adjustable/Fixed Low Dropout Linear Regulator
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FAN1585AM18X 데이터시트, 핀배열, 회로
www.fairchildsemi.com
FAN1585A
5A Adjustable/Fixed Low Dropout Linear Regulator
Features
• Fast transient response
• Low dropout voltage at up to 5A
• Load regulation: 0.05% typical
• Trimmed current limit
• On-chip thermal limiting
• Standard TO-220, TO-263 and TO-263 center cut packages
Applications
• AGTL+ bus supply for FC-PGA
• Low voltage logic supply
• Post regulator for switching supply
• 3.3V to 1.5V linear regulator
• 5V to 1.8V linear regulator
Description
The FAN1585A, FAN1585A-1.5, and FAN1585A-1.8 are
low dropout three-terminal regulators with 5A output current
capability. These devices have been optimized for low volt-
age applications including VTT bus termination for FC-PGA,
where transient response and minimum input voltage are
critical. The FAN1585A-1.5 offers fixed 1.5V with 5A
current capabilities for AGTL+ bus VTT termination for
FC-PGA. The FAN1585A is ideal for low voltage micro-
processor applications requiring a regulated output from
1.5V to 3.6V with an input supply of 5V or less, or for
FC-PGA applications with significant trace resistance.
Current limit is trimmed to ensure specified output current
and controlled short-circuit current. On-chip thermal limit-
ing provides protection against any combination of overload
and ambient temperature that would create excessive junc-
tion temperatures.
The FAN1585A series regulators are available in the industry-
standard TO-220, TO-263 and TO-263 center cut power
packages.
Typical Applications
VIN = 3.3V
22µF
+
FAN1585A
VIN VOUT
ADJ
VOUT = VREF(1 + R2/R1) + IAdj • R2
R1
124
1.5V at 5A
+
22µF
R2
24.9
VIN = 3.3V
22µF
+
FAN1585A-1.5
VIN VOUT
GND
1.5V at 5A
+
22µF
REV. 1.1.5 11/7/03




FAN1585AM18X pdf, 반도체, 판매, 대치품
FAN1585A
Typical Performance Characteristics
1.5
1.4
1.3
1.2
1.1
1.0 T=0°C
0.9
T=25°C
0.8
T=125°C
0.7
0.6
0.5
0
12345
OUTPUT CURRENT (A)
6
Figure 1. Dropout Voltage vs. Output Current
1.275
1.270
1.265
1.260
1.255
1.250
1.245
1.240
1.235
1.230
1.225
-75 -50 -25 0 25 50 75 100 125 150 175
JUNCTION TEMPERATURE (°C)
Figure 3. Reference Voltage vs. Temperature
5
4
3
2
1
0
-75 -50 -25 0 25 50 75 100 125 150 175
JUNCTION TEMPERATURE (°C)
Figure 5. Minimum Load Current vs. Temperature
4
PRODUCT SPECIFICATION
0.10
I = 5A
0.05
0
-0.05
-0.10
-0.15
-0.20
-75 -50 -25 0 25 50 75 100 125 150 175
JUNCTION TEMPERATURE (°C)
Figure 2. Load Regulation vs. Temperature
3.70
3.65
3.60
VOUT set with 1% Resistors
VOUT = 3.6V1
3.55
3.50
3.45
3.40
3.35
3.30
3.25
3.20
-75 -50 -25
VOUT = 3.3V1
Note:
1. FAN1585A Only
0 25 50 75 100 125 150 175
JUNCTION TEMPERATURE (°C)
Figure 4. Output Voltage vs. Temperature
100
Note:
90 1. FAN1585A Only
80
70
60
50
40
30
20
10
0
-75 -50 -25 0 25 50 75 100 125 150 175
JUNCTION TEMPERATURE (°C)
Figure 6. Adjust Pin Current vs. Temperature
REV. 1.1.5 11/7/03

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FAN1585AM18X 전자부품, 판매, 대치품
PRODUCT SPECIFICATION
FAN1585A
VIN +
FAN1585A
IN
C1
22µF
OUT
ADJ
IADJ
35µA
VREF
+
R1
VOUT
C2
22µF
R2
VOUT = VREF (1 + R2/R1) + IADJ (R2)
Figure 11. Basic Regulator Circuit
Load Regulation
It is not possible to provide true remote load sensing because
the FAN1585A series are three-terminal devices. Load regu-
lation is limited by the resistance of the wire connecting the
regulators to the load. Load regulation per the data sheet
specification is measured at the bottom of the package.
For fixed voltage devices, negative side sensing is a true
Kelvin connection with the ground pin of the device returned
to the negative side of the load. This is illustrated in Figure 12.
RP
FAN1585A-1.5
PARASITIC
LINE RESISTANCE
VIN IN
OUT
GND
RL
RP
FAN1585A
PARASITIC
LINE RESISTANCE
VIN IN
OUT
ADJ
R1*
* CONNECT R1 TO CASE
CONNECT R2 TO LOAD
R2*
RL
Figure 13. Connection for Best Load Regulation
Thermal Considerations
The FAN1585A series protect themselves under overload
conditions with internal power and thermal limiting circuitry.
However, for normal continuous load conditions, do not
exceed maximum junction temperature ratings. It is impor-
tant to consider all sources of thermal resistance from junc-
tion-to-ambient. These sources include the junction-to-case
resistance, the case-to-heat sink interface resistance, and the
heat sink resistance. Thermal resistance specifications have
been developed to more accurately reflect device tempera-
ture and ensure safe operating temperatures.
For example, look at using an FAN1585AT to generate 5A
@ 1.5V ± 2% from a 3.3V source (3.2V to 3.6V).
Figure 12. Connection for Best Load Regulation
For adjustable voltage devices, negative side sensing is a true
Kelvin connection with the bottom of the output divider
returned to the negative side of the load. The best load regu-
lation is obtained when the top of the resistor divider R1 con-
nects directly to the regulator output and not to the load.
Figure 13 illustrates this point.
If R1 connects to the load, then the effective resistance
between the regulator and the load would be:
RP x (1 + R2/R1), RP = Parasitic Line Resistance
The connection shown in Figure 13 does not multiply RP by
the divider ratio. As an example, RP is about four milliohms
per foot with 16-gauge wire. This translates to 4mV per foot
at 1A load current. At higher load currents, this drop repre-
sents a significant percentage of the overall regulation. It is
important to keep the positive lead between the regulator and
the load as short as possible and to use large wire or PC
board traces.
Assumptions:
• VIN = 3.6V worst case
• VOUT = 1.46V worst case
• IOUT = 5A continuous
• TA = 50°C
θCase-to-Ambient = 3°C/W (assuming both a heatsink and
a thermally conductive material)
The power dissipation in this application is:
PD = (VIN – VOUT) * (IOUT) = (3.6 – 1.46) * (5) = 10.7W
From the specification table:
TJ = TA + (PD) * (θCase-to-Ambient + θJC)
= 50 + (10.7) * (3 + 3) = 115°C
The junction temperature is below the maximum rating.
REV. 1.1.5 11/7/03
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FAN1585AM18X

5A Adjustable/Fixed Low Dropout Linear Regulator

Fairchild Semiconductor
Fairchild Semiconductor

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