MAX5024LASA+ Maxim Integrated Products, MAX5024LASA+ Datasheet - Page 11

IC REG LINEAR W/RESET 8-SOIC

MAX5024LASA+

Manufacturer Part Number
MAX5024LASA+
Description
IC REG LINEAR W/RESET 8-SOIC
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX5024LASA+

Regulator Topology
Positive Fixed or Adjustable
Voltage - Output
5V, 2.5 ~ 11 V
Voltage - Input
6.5 ~ 65 V
Voltage - Dropout (typical)
0.9V @ 150mA
Number Of Regulators
1
Current - Output
150mA (Min)
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Polarity
Positive
Number Of Outputs
1
Output Type
Adjustable, Fixed
Output Voltage
2.5 V to 11 V, 5 V
Output Current
0.15 A
Line Regulation
1 mV / V
Load Regulation
1 mV / mA
Dropout Voltage (max)
900 mV
Input Voltage Max
65 V
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C
Maximum Power Dissipation
1538 mW
Mounting Style
SMD/SMT
Operating Temperature Range
- 40 C to + 125 C
Reference Voltage
1.248 V
Voltage Regulation Accuracy
4 %
Primary Input Voltage
65V
Output Voltage Adjustable Range
2.5V To 11V
Output Voltage Fixed
5V
Dropout Voltage Vdo
900mV
No. Of Outputs
1
No. Of Pins
8
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Limit (min)
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
65V, Low-Quiescent-Current, High-Voltage Linear
Example 1:
T
V
V
Find the maximum allowable output current. First calcu-
late package dissipation at the given temperature as
follows:
Then determine the maximum output current:
Example 2:
T
V
V
Calculate package dissipation at the given temperature
as follows:
And establish the maximum current:
Example 3:
T
V
V
Calculate package dissipation at the given temperature
as follows:
And find the maximum output current:
I
A
A
A
IN
OUT
IN
OUT
IN
OUT
OUT MAX
= +95°C
= +125°C
= +50°C
= +14V
= +14V
= +14V
P
Regulators with µP Reset and Watchdog Timer
(
P
D
= +5V
= +3.3V
= +5V
D
=
I
=
OUT MAX
I
)
OUT MAX
1 538
=
1 538
.
.
(
(
14
(
(
1 538
.
W
V
W
) ( )
)
- 5V
______________________________________________________________________________________
- 0.01923W/ C 1
)
=
W
- 0.01923W/ C 95 C - 70 C
(
=
(
P
)
=
(
14
(
(
D
14
480 4
(
480 4
1 057
=
=
V
= 1.538W
.
170 9
1 057
V
) (
.
.
) ( )
- 3.3V
.
- 5V
mW
.
mW
W
mA
W
)
°
)
°
)
=
)
=
117 4
(
)
I
44 89
OUT MAX
25
(
.
.
°
°
C - 70 C
(
mA
mA
)
°
=
°
150
)
)
mA
In Example 3, the maximum output current is calculated
as 170.9mA, however, the maximum output current
cannot exceed 150mA. Use Figure 6 to quickly deter-
mine allowable maximum output current for selected
ambient temperatures.
For stable operation over the full temperature range
and with load currents up to 150mA, use a 15µF (min)
output capacitor with an ESR < 0.5Ω. To reduce noise
and improve load-transient response, stability, and
power-supply rejection, use larger output capacitor val-
ues such as 22µF.
Some ceramic dielectrics exhibit large capacitance
and ESR variation with temperature. For dielectric
capacitors such as Z5U and Y5V, use 22µF or more to
ensure stability at temperatures below -10°C. With X7R
or X5R dielectrics, 15µF should be sufficient at all oper-
ating temperatures. For high-ESR tantalum capacitors
use 22µF or more to maintain stability. To improve
power-supply rejection and transient response use a
minimum 10µF capacitor between IN and GND.
Figure 6. Maximum Output Current vs. Input Voltage
0.16
0.14
0.12
0.10
0.08
0.06
0.04
0.02
Capacitor Selection and Regulator
0
0
T
A
5 10 15
= +125°C
MAXIMUM OUTPUT CURRENT
vs. INPUT VOLTAGE
20
25 30 35 40 45 50
V
T
A
IN
= +70°C
T
(V)
A
V
DEVICE EXPOSED
PAD SOLDERED TO
1IN
OUT
= +85°C
2
COPPER ISLAND
= +5V
55
60
65
70
Stability
11

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