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LPC4323JET100 Datasheet(PDF) 8 Page - NXP Semiconductors

Part # LPC4323JET100
Description  Errata sheet LPC435x/3x/2x/1x
Download  11 Pages
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Manufacturer  NXP [NXP Semiconductors]
Direct Link  http://www.nxp.com
Logo NXP - NXP Semiconductors

LPC4323JET100 Datasheet(HTML) 8 Page - NXP Semiconductors

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ES_LPC435X_3X_2X_1X
All information provided in this document is subject to legal disclaimers.
© NXP B.V. 2012. All rights reserved.
Errata sheet
Rev. 2 — 20 October 2012
8 of 11
NXP Semiconductors
ES_LPC435x/3x/2x/1x
Errata sheet LPC435x/3x/2x/1x
4.
AC/DC deviations detail
4.1 IBAT.1: VBAT supply current higher than expected
Introduction:
The LPC43xx contain a Real-Time Clock which measures the passage of time. The RTC
has an ultra-low power design to support battery powered systems with a dedicated
battery supply pin.
Problem:
On the LPC43xx, high current consumption of about 70 uA or higher may occur on the
VBAT power supply pin due to current drain from the RTC_ALARM and SAMPLE pins.
On the LPC43xx, at temperatures lower than 0
C, high current consumption up to 25 uA
may occur on the VBAT power supply pin while VDD is present if VDD < VBAT. This is
seen during Deep Sleep, Power Down, and Deep Power Down modes.
Work-around:
VBAT current consumption due to RTC_ALARM and SAMPLE pins can be lowered
significantly by configuring the RTC_ALARM pin and SAMPLE pins as "Inactive" by
setting the ALARMCTRL 7:6 field in CREG0 to 0x3 and the SAMPLECTRL 13:12 field in
CREG0 to 0x3. These bits persist through power cycles and reset, as long as VBAT is
present.
To work-around the current consumption at temperatures less than 0
C, keep the VBAT
voltage less than VDD. For example, use a 3.0 V VBAT voltage with a 3.3 V VDD supply.
This also avoids current consumption during active mode which can occur when VBAT >
VDD (see datasheet for details).
4.2 IRC.1: IRC frequency variation higher than expected
Introduction:
The IRC is used as the clock source for the WWDT and/or as the clock that drives the
PLLs and the CPU. The nominal IRC frequency is 12 MHz. The IRC is trimmed to 1 %
accuracy over the entire voltage and temperature range.
Problem:
On LPC43xx flash-based parts, the IRC currently has a non-linear behavior at high
temperatures. This results in worse IRC accuracy than specified in the Data Sheet.
Work-around:
Many of the peripherals on these parts require use of an external crystal to meet timing
accuracy even at the specified accuracy. The IRC is typically used during boot up and
during UART and CAN In-Application Programming. It is recommended to avoid use of
UART and CAN IAP at elevated temperatures to ensure accuracy.


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