MAX6745XKVD3+T Maxim Integrated, MAX6745XKVD3+T Datasheet - Page 26

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MAX6745XKVD3+T

Manufacturer Part Number
MAX6745XKVD3+T
Description
Supervisory Circuits MCU Supervisor
Manufacturer
Maxim Integrated
Series
MAX6736, MAX6737, MAX6738, MAX6739, MAX6740, MAX6741, MAX6742, MAX6743, MAX6744, MAX6745r
Datasheet

Specifications of MAX6745XKVD3+T

Rohs
yes
Number Of Voltages Monitored
2
Monitored Voltage
1.8 V to 5 V, 0.9 V to 3.3 V
Undervoltage Threshold
1.53 V, 0.765 V
Overvoltage Threshold
1.62 V, 0.81 V
Output Type
Active Low, Push-Pull
Manual Reset
Not Resettable
Watchdog
No Watchdog
Battery Backup Switching
No Backup
Power-up Reset Delay (typ)
225 ms
Supply Voltage - Max
5.5 V
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
SC-70
Chip Enable Signals
No
Maximum Power Dissipation
247 mW
Minimum Operating Temperature
- 40 C
Power Fail Detection
Yes
Supply Current (typ)
5 uA, 10 uA
Supply Voltage - Min
1 V
MAXQ613
16-Bit Microcontroller with Infrared Module
Table 6. Stop Mode Power-Fail Detection States with Power-Fail Monitor Disabled
(continued)
26
The low-power, high-performance RISC architecture of
this device makes it an excellent fit for many portable
or battery-powered applications. It is ideally suited for
applications such as universal remote controls that
require the cost-effective integration of IR transmit/
receive capability.
Careful PCB layout significantly minimizes system-level
digital noise that could interact with the microcontroller
or peripheral components. The use of multilayer boards
is essential to allow the use of dedicated power planes.
The area under any digital components should be a con-
tinuous ground plane if possible. Keep bypass capacitor
leads short for best noise rejection and place the capaci-
tors as close to the leads of the devices as possible.
CMOS design guidelines for any semiconductor require
that no pin be taken above V
of this guideline can result in a hard failure (damage to
the silicon inside the device) or a soft failure (uninten-
tional modification of memory contents). Voltage spikes
above or below the device’s absolute maximum ratings
can potentially cause a devastating IC latchup.
Microcontrollers commonly experience negative volt-
age spikes through either their power pins or general-
STATE
D
E
F
POWER-FAIL
(Periodically)
Applications Information
Off
On
Off
Grounds and Bypassing
REGULATOR
DD
INTERNAL
or below GND. Violation
Off
Off
Off
OSCILLATOR
CRYSTAL
Off
Off
Off
purpose I/O pins. Negative voltage spikes on power pins
are especially problematic as they directly couple to the
internal power buses. Devices such as keypads can
conduct electrostatic discharges directly into the micro-
controller and seriously damage the device. System
designers must protect components against these tran-
sients that can corrupt system memory.
Designers must have the following documents to fully
use all the features of this device. This data sheet
contains pin descriptions, feature overviews, and elec-
trical specifications. Errata sheets contain deviations
from published specifications. The user’s guides offer
detailed information about device features and opera-
tion. The following documents can be downloaded from
www.maximintegrated.com/microcontrollers.
• This MAXQ613 data sheet, which contains electrical/
• The
• The MAXQ610 User’s Guide, which contains detailed
RETENTION
(www.maximintegrated.com/errata).
timing specifications, pin descriptions, and package
information.
information on features and operation, including pro-
gramming.
SRAM
Yes
Yes
MAXQ613
Additional Documentation
Application enters stop mode.
V
CPU in stop mode.
V
An interrupt occurs that causes the CPU to
exit stop mode.
Power-fail monitor is turned on, detects a
power-fail, and puts CPU in reset.
Power-fail monitor is turned on periodically.
V
Device held in reset. No operation allowed.
DD
POR
DD
> V
< V
< V
revision-specific
RST
POR
DD
.
.
< V
COMMENTS
RST
.
Maxim Integrated
errata
sheet

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