AC162078 Microchip Technology, AC162078 Datasheet - Page 210

HEADER INTRFC MPLAB ICD2 18F1330

AC162078

Manufacturer Part Number
AC162078
Description
HEADER INTRFC MPLAB ICD2 18F1330
Manufacturer
Microchip Technology
Datasheet

Specifications of AC162078

Accessory Type
Transition Header
Lead Free Status / RoHS Status
Not applicable / Not applicable
For Use With/related Products
ICD2
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Not applicable / Not applicable

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Part Number:
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PIC18F1230/1330
20.5.2
The entire data EEPROM is protected from external
reads and writes by two bits: CPD and WRTD. CPD
inhibits external reads and writes of data EEPROM.
WRTD inhibits internal and external writes to data
EEPROM. The CPU can always read data EEPROM
under normal operation, regardless of the protection bit
settings.
20.5.3
The Configuration registers can be write-protected.
The WRTC bit controls protection of the Configuration
registers. In normal execution mode, the WRTC bit is
read-only. WRTC can only be written via ICSP
operation or an external programmer.
20.6
Eight memory locations (200000h-200007h) are
designated as ID locations, where the user can store
checksum or other code identification numbers. These
locations are both readable and writable during normal
execution through the TBLRD and TBLWT instructions
or during program/verify. The ID locations can be read
when the device is code-protected.
20.7
PIC18F1230/1330 microcontrollers can be serially
programmed while in the end application circuit. This is
simply done with two lines for clock and data and three
other lines for power, ground and the programming
voltage. This allows customers to manufacture boards
with unprogrammed devices and then program the
microcontroller just before shipping the product. This
also allows the most recent firmware or a custom
firmware to be programmed.
DS39758D-page 210
ID Locations
In-Circuit Serial Programming
DATA EEPROM
CODE PROTECTION
CONFIGURATION REGISTER
PROTECTION
20.8
When the BKBUG Configuration bit is programmed to
a ‘0’, the In-Circuit Debugger functionality is enabled.
This function allows simple debugging functions when
used with MPLAB
this feature enabled, some resources are not available
for general use. Table 20-4 shows which resources are
required by the background debugger.
TABLE 20-4:
To use the In-Circuit Debugger function of the microcon-
troller, the design must implement In-Circuit Serial
Programming connections to MCLR/V
V
will interface to the In-Circuit Debugger module available
from Microchip or one of the third party development tool
companies.
20.9
The PIC18F1230/1330 device family does not support
Low-Voltage ICSP Programming or LVP. This device
family can only be programmed using high-voltage ICSP
programming.
“PIC18F1230/1330 Flash Microcontroller Programming
Specification” (DS39752).
Memory that is not code-protected can be erased using
either a block erase, or erased row by row, then written
at any specified V
erased, a block erase is required.
I/O pins:
Stack:
Program Memory:
Data Memory:
DD
, V
SS
In-Circuit Debugger
, RB7/PWM5/PGD and RB6/PWM4/PGC. This
Single-Supply ICSP Programming
For
DD
®
DEBUGGER RESOURCES
IDE. When the microcontroller has
. If code-protected memory is to be
more
 2009 Microchip Technology Inc.
RB6, RB7
2 levels
512 bytes
10 bytes
details,
refer
PP
/RA5/FLTA,
to
the

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