.................................................-0.3V to (V
IN
+ 0.3V)
HOLD
to GND
........................................ -0.3V to (V
OUT
+ 0.3V)
SET, WDI, OUT to GND
.....................................-0.3V to +13.2V
RESET
to GND (Open Drain)
............................-0.3V to +13.2V
Short-Circuit Duration (V
IN
≤ +14V)
..........................Continuous
Maximum Current to Any Pin (Except IN, OUT)
..............±20mA
Continuous Power Dissipation (T
A
= +70°C)
8-Pin SO-EP (derate 19.2mW/°C above +70°C)
.......1538mW
Operating Temperature Range
......................... -40°C to +125°C
Junction Temperature ......................................................+150°C
Storage Temperature Range
............................ -65°C to +150°C
Lead Temperature (soldering, 10s)
................................. +300°C
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these
or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect
device reliability.
Package Thermal Characteristics
(Note 1)
SO-EP
Junction-to-Ambient Thermal Resistance (θ
JA
)
...........41°C/W
Junction-to-Case Thermal Resistance (θ
JC
)..................2°C/W
Note 1:
Package thermal resistances were obtained using the method described in JEDEC specification JESD51-7, using a four-layer
board. For detailed information on package thermal considerations, refer to
www.maximintegrated.com/thermal-tutorial.
Electrical Characteristics
(V
IN
= +14V, I
OUT
= 1mA, C
IN
= 10μF, C
OUT
= 15μF, V
EN
= +2.4V,
HOLD
= open, 10kΩ from
RESET
to OUT, T
A
= -40°C to +125°C,
unless otherwise noted. Typical specifications are at T
A
= +25°C.) (Note 2)
PARAMETER
Input Voltage Range
Reverse Input Current
Supply Current
Shutdown Supply Current
REGULATOR
Guaranteed Output Current
I
OUT
V
OUT
= +5V
SET = GND, I
OUT
= 1mA to 150mA,
5V version
Output Voltage
V
OUT
SET = GND, I
OUT
= 1mA to 150mA,
3.3V version
I
OUT
= 5mA, adjustable version (MAX5024)
Dropout Voltage
Startup Response Time
Line Regulation
ΔV
OUT
/
ΔV
IN
ΔV
DO
I
LOAD
= 150mA, V
OUT
= +5V (Note 3)
Rising edge of V
IN
to V
OUT
, R
L
= 500Ω,
SET = GND
+8V ≤ V
IN
≤ +65V
+5V version
+3.3V version
-1
-0.5
150
4.8
3.168
2.5
0.9
400
+1
0.5
5
3.3
5.2
3.432
11
1.5
V
µs
mV/V
V
mA
SYMBOL
V
IN
I
REVERSE
I
Q
I
SHDN
V
IN
= -60V
Measured at GND
V
EN
≤ +0.4V
I
OUT
= 0mA
I
OUT
= 150mA
CONDITIONS
V
IN
must be at least 1.5V greater than V
OUT
MIN
6.5
0.1
58
2000
6
16
TYP
MAX
65
10
140
UNITS
V
µA
µA
µA
www.maximintegrated.com
Maxim Integrated │
2
MAX5023/MAX5024
65V, Low-Quiescent-Current, High-Voltage Linear
Regulators with μP Reset and Watchdog Timer
Electrical Characteristics (continued)
(V
IN
= +14V, I
OUT
= 1mA, C
IN
= 10μF, C
OUT
= 15μF, V
EN
= +2.4V,
HOLD
= open, 10kΩ from
RESET
to OUT, T
A
= -40°C to +125°C,
unless otherwise noted. Typical specifications are at T
A
= +25°C.) (Note 2)
PARAMETER
Enable Voltage
Enable Input Current
HOLD
Voltage
HOLD
Release Voltage
HOLD
Pullup Current
SET Reference Voltage
SET Input Leakage Current
Load Regulation
Power-Supply Rejection Ratio
Short-Circuit Current
Thermal-Shutdown
Temperature
Thermal-Shutdown Hysteresis
RESET CIRCUIT
MAX502_L, SET = GND
MAX502_M, SET = GND
MAX502_T, SET = GND
Reset Threshold
V
TH
MAX502_S, SET = GND
MAX5024L/T, SET = Divider
(Figure 1) (Note 4)
MAX5024M/S, SET = Divider
(Figure 1) (Note 4)
Reset Timeout Period
V
OUT
to Reset Delay
t
RP
t
RD
V
OUT
falling
140
4.50
4.25
2.970
2.805
4.625
4.375
3.052
2.887
4.75
4.50
3.135
2.970
V
SYMBOL
V
EN
I
EN
V
IL
V
IH
I
HOLD
V
SET
I
SET
ΔV
OUT
/
ΔI
OUT
PSRR
I
SC
T
J(SHDN)
ΔT
J(SHDN)
I
OUT
= 1mA to 150mA
I
OUT
= 10mA, f = 100Hz, 500mV
P-P
,
V
OUT
= +5V
V
IN
= +8V
175
CONDITIONS
EN = high, regulator on
EN = low, regulator off
V
EN
= +2.4V
V
EN
= +14V
Regulator on, EN transition from high to low
EN = low, regulator shuts off
Internally connected to OUT
I
OUT
= 10mA
1.223
V
OUT
- 0.4V
4
1.248
0.5
1
54
300
150
20
1.273
100
0.5
4
0.4
MIN
2.4
0.4
TYP
MAX
UNITS
V
µA
V
V
µA
V
nA
mV/mA
dB
mA
°C
°C
0.925 x V
OUT
0.875 x V
OUT
200
5
260
ms
µs
www.maximintegrated.com
Maxim Integrated │
3
MAX5023/MAX5024
65V, Low-Quiescent-Current, High-Voltage Linear
Regulators with μP Reset and Watchdog Timer
Electrical Characteristics (continued)
PARAMETER
SYMBOL
(V
IN
= +14V, I
OUT
= 1mA, C
IN
= 10μF, C
OUT
= 15μF, V
EN
= +2.4V,
HOLD
= open, 10kΩ from
RESET
to OUT, T
A
= -40°C to +125°C,
unless otherwise noted. Typical specifications are at T
A
= +25°C.) (Note 2)
CONDITIONS
V
OUT
≥ +1.0V, I
SINK
= 50µA,
RESET
asserted
Open-Drain
RESET
Output
Voltage (Note 5)
V
OL
V
OUT ≥ +2.85V, I
SINK
= 1.2mA,
RESET
asserted
V
OUT ≥ +4.25V, I
SINK
= 3.2mA,
RESET
asserted
Open-Drain
RESET
Output-
Leakage Current
WATCHDOG FUNCTION
Watchdog Timeout Period
WDI Pulse Width
WDI Input Voltage
WDI Input Current
Note
Note
Note
Note
Note
2:
3:
4:
5:
6:
t
WD
t
WDI
V
IL
V
IH
I
WDI
WDI = GND
2.4
-1
+1
(Note 6)
1.12
1.6
50
0.4
2.08
s
ns
V
µA
I
LKG
RESET
not asserted, V
RESET
= +11V
MIN
TYP
MAX
0.3
0.3
0.4
1.0
µA
V
UNITS
Limits at -40°C are guaranteed by characterization and not production tested.
Dropout voltage is defined as V
IN
- V
OUT
when V
OUT
is 100mV below the value of V
OUT
for V
IN
= V
OUT
+ 3V.
V
OUT
= V
SET
(1 + R1/R2) = 1.248V (1 + R1/R2).
RESET
is guaranteed to be in the correct logic state for V
[i=s]This post was last edited by paulhyde on 2014-9-15 09:14[/i] Nowadays, some agents tend to translate a lot of information into Chinese, so that they can promote it better. However, the bottleneck...
Hello everyone, I wonder if you have encountered this problem before. Why can't pin 0 be hidden? I tried to click pin 0 alone and hide it in the properties, but it didn't work. Then I drew a new packa...
[align=left]When loading the LINUX kernel, the kernel must be cross-compiled. This process requires a long wait. After porting the kernel, if the kernel is too large, it will take a long time to boot ...
[i=s]This post was last edited by jameswangsynnex on 2015-3-3 19:57[/i] The most critical component of a full-color LED display is the LED device. There are three reasons for this: First, LED is the m...
depth =256; %The number of memory cells widths = 8;%The data width is 8 bits N = 0:255; s =sin(2*pi *N/256);%Calculate the sin value between 0 ~2*pi fidc = fopen('sine.mif','wt') fprintf(fidc , 'depth...
The core of a machine vision system is image acquisition and processing. All information comes from images, and image quality is crucial to the entire vision system. A good image can improve the st...[Details]
1. Introduction
Electronic scales are gradually replacing traditional measuring tools like springs and balances in everyday life, such as electronic price computing scales and electronic weigh...[Details]
Have you ever heard stories about "crazy appliances"? Think of microwaves that turn on automatically or ovens that preheat without any human input? With radios and electromagnetic interfaces ubiqui...[Details]
According to Nikkei, Japan has performed poorly in responding to China's power semiconductor challenges.
There are five major companies in Japan's power chip market: Mitsubishi Electric,...[Details]
Wearable technology is taking off, with applications evolving rapidly, from smartwatches to fitness trackers and even smart wigs! Bluetooth Smart is at the center of this revolution. This is the se...[Details]
When we pick up an unfamiliar object, the first thing we want to know is what it actually does. A drive shaft, as the name suggests, is a shaft that transmits power. It's the transmission medium th...[Details]
The drive shaft is the shaft in a universal joint that transmits power. As a high-speed, low-support rotating body, its dynamic balance is crucial. Generally, drive shafts undergo dynamic balancing...[Details]
Today, the voltage of electronic products continues to rise to 400V, 600V and even 1000V, so there are few electronic load models that can handle such high voltages. Many people consider connecting...[Details]
With rapid economic development, the types of pollution sources are increasing, especially in chemical and industrial zones and their surroundings. The patterns of pollution and the types of ecolog...[Details]
Which is better, copper braided wire flexible connector or copper stranded wire flexible connector? When choosing copper wire flexible connector, people always struggle with whether to use copper b...[Details]
With the global number of new energy vehicles expected to exceed 45 million by 2025, the performance boundaries of battery management systems are being reshaped.
Infineon Technologies
'
...[Details]
The assisted driving industry in 2025 stands at the dual crossroads of "large-scale implementation" and "safety upgrades." Cities like Beijing and Wuhan have already issued regulations de...[Details]
Relying on Zena CSS and Arm's complete partner ecosystem, we will accelerate the implementation of autonomous driving.
Close your eyes and imagine yourself getting into your car, rea...[Details]
1. Static Balance
Static balancing is performed on one correction surface of the rotor. The remaining unbalance after correction is used to ensure that the rotor is within the specified range ...[Details]
The number of new energy vehicles in use is increasing, and there are multiple choices available. New energy vehicles can be divided into hybrid and pure electric, and the types of hybrid include m...[Details]