PIC16LF628A-I/SS Microchip Technology, PIC16LF628A-I/SS Datasheet - Page 3

IC MCU FLASH 2KX14 EEPROM 20SSOP

PIC16LF628A-I/SS

Manufacturer Part Number
PIC16LF628A-I/SS
Description
IC MCU FLASH 2KX14 EEPROM 20SSOP
Manufacturer
Microchip Technology
Series
PIC® 16Fr

Specifications of PIC16LF628A-I/SS

Core Size
8-Bit
Program Memory Size
3.5KB (2K x 14)
Core Processor
PIC
Speed
20MHz
Connectivity
UART/USART
Peripherals
Brown-out Detect/Reset, POR, PWM, WDT
Number Of I /o
16
Program Memory Type
FLASH
Eeprom Size
128 x 8
Ram Size
224 x 8
Voltage - Supply (vcc/vdd)
2 V ~ 5.5 V
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
20-SSOP
Controller Family/series
PIC16LF
No. Of I/o's
16
Eeprom Memory Size
128Byte
Ram Memory Size
224Byte
Cpu Speed
20MHz
No. Of Timers
3
Package
20SSOP
Device Core
PIC
Family Name
PIC16
Maximum Speed
20 MHz
Operating Supply Voltage
2.5|3.3|5 V
Data Bus Width
8 Bit
Number Of Programmable I/os
16
Interface Type
USART
Number Of Timers
3
Processor Series
PIC16LF
Core
PIC
Data Ram Size
224 B
Maximum Clock Frequency
20 MHz
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
3rd Party Development Tools
52715-96, 52716-328, 52717-734
Development Tools By Supplier
PG164130, DV164035, DV244005, DV164005, PG164120, ICE2000, DM163014, DM164120-4
Minimum Operating Temperature
- 40 C
Data Rom Size
128 B
Height
1.75 mm
Length
7.2 mm
Supply Voltage (max)
5.5 V
Supply Voltage (min)
2 V
Width
5.3 mm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Data Converters
-
Lead Free Status / Rohs Status
 Details

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
PIC16LF628A-I/SS
Manufacturer:
MICROSEMI/美高森美
Quantity:
20 000
Company:
Part Number:
PIC16LF628A-I/SS
Quantity:
10 000
1. Module: Timer1 (Asynchronous Counter)
TABLE 1:
© 2007 Microchip Technology Inc.
When writing to the TMR1H register, under
specific conditions, it is possible that the TMR1L
register will miss a count while connected to the
external oscillator via the T1OSO and T1OSI pins.
When Timer1 is started, the circuitry looks for a
falling edge before a rising edge can increment the
counter. Writing to the TMR1H register is similar to
starting Timer1; therefore, the former logic stated
Work around
Operating Conditions: F
from Sleep, Timer1 interrupt enabled, global
interrupts enabled.
The code excerpts in Example 1, Example 2 and
Example 3 show how the TMR1H register can be
updated while the external clock (32.768 kHz) is
still on its high pulse.
40 MHz (PIC18)
16 MHz
20 MHz
FREQUENCY DEPENDENT INSTRUCTION EXECUTION AMOUNTS
1 MHz
2 MHz
4 MHz
8 MHz
F
OSC
OSC
≥ 4 MHz, no wake-ups
T
CY
0.25
0.5
0.2
0.1
4
2
1
(μs)
applies any time the TMR1H register is written. If
the TMR1H register is not completely written to
during the high pulse of the external clock, then the
TMR1L register will miss a count due to the circuit
operation stated previously. The high pulse of a
32.768 kHz external clock crystal yields a 15.25 μs
window for the write to TMR1H to occur. The
amount of instructions that can be executed within
this window is frequency dependent, as shown in
Table 1 below.
The importance of the code examples is that the
bold instructions are executed within the first
15.25 μs high pulse on the external clock after the
Timer1 overflow occurred. This will allow the
TMR1L register to increment correctly.
TIMER1 MODULE
T
CY
within 15.25 μs
15.25
76.25
152.5
3.81
7.63
30.5
61
DS80233C-page 3

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