SAF-XC878CM-16FFI 5V AC Infineon Technologies, SAF-XC878CM-16FFI 5V AC Datasheet

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SAF-XC878CM-16FFI 5V AC

Manufacturer Part Number
SAF-XC878CM-16FFI 5V AC
Description
IC MCU 8BIT 64KB FLASH 64LQFP
Manufacturer
Infineon Technologies
Series
XC8xxr

Specifications of SAF-XC878CM-16FFI 5V AC

Core Processor
XC800
Core Size
8-Bit
Speed
27MHz
Connectivity
CAN, SPI, SSI, UART/USART
Peripherals
Brown-out Detect/Reset, POR, PWM, WDT
Number Of I /o
40
Program Memory Size
64KB (64K x 8)
Program Memory Type
FLASH
Ram Size
3.25K x 8
Voltage - Supply (vcc/vdd)
4.5 V ~ 5.5 V
Data Converters
A/D 8x10b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
64-LFQFP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
Product Brief
XC87x – Family
New 64KB Flash 8-bit Microcontroller Series
extends XC800 8-bit MCU Family
XC87x - series expands Infineon’s 8-bit XC800 microcontroller (MCU) family
to provide more scalable performance and up to 64KB Flash memory for
cost-sensitive industrial and automotive applications. Operating at up to
26.7MHz and equipped with a 16-bit vector computer XC87x MCUs offers
16-bit performance at 8-bit costs. This exceptional performance, coupled with
2 independent PWM units with up to 10 PWM outputs and a 10-bit Analog-
to-Digital Converter (ADC), makes these devices ideal for implementing Field
Oriented Control (FOC) and Power Factor Correction (PFC) at the lowest system
cost. The devices also are designed to enable simplified development of CAN
(Controller Area Network) systems through an on-chip MultiCAN interface.
The XC87x - series provides two package options XC878 in LQFP-64 and XC874
in VQFN-48 package.
Applications
www.infineon.com/microcontrollers
HVAC systems
Motor control
Pumps and fans
LED control
Roof module
Seat module
Center stack
Low cost BCM module
Key Features
High performance 8051 core running at 26.7MHz
64KByte of Flash memory
3KByte RAM
Capture/Compare Unit (CCU6) dedicated for flexible PWM
signal generation for any kind of motor control
Timer 2 Capture/Compare Unit(T2CCU)
Built-in Error Correction
Protection against invalid code execution
4KByte Data Flash ideal for EEPROM usage
3-phase PWM generation
16-bit resolution and upto 54MHz frequency
Support for dead-time generation
6 compare channels
4 capture channels mutiplexed with compare channels
16-bit resolution and up to 54MHz frequency
Applications: LED control, Stepper motors, frequency
generators
Key Features (cont’d)
10-bit ADC with high accuracy
(8-channels)
16-bit Vector Computer (MDU+CORDIC)
running at 54MHz for Field Oriented
Control
2 CAN nodes
Two Full duplex UART interfaces
LIN master and slave support
for each UART
High-Speed SPI Compatible
Synchronous Serial Interface (SSC)
Integrated safety features
On-chip clock generation unit with
high accuracy
4 general purpose 16-bit timers
14 interrupt vectors with
4 priority levels
Multiple power saving modes available
On-chip debug support
JTAG based non-intrusive debugging
Flexible single voltage supply of
3.3V or 5.0V
48 General purpose I/O Ports
LQFP-64 package (12mm x 12mm)
VQFN-48 package (7mm x 7mm)
Temperature range:
Fast conversion in 1µs
Auto-scan, Injection and Comparator
Modes to reduce CPU load
Hardware synchronisation to PWM
units
Multiplication/Division Unit (MDU)
for high-speed 16- and 32-bit
multiplication, division and shift
operations
CORDIC (COrdinate Rotation DIgital
Computer) Unit for Vector rotation
and transformations
32 message objects shared
between both nodes
Automatic FIFO and gateway
mode support
Brown-out detection
Power-on reset
Voltage and Clock supervisory
Window Watchdog Timer
I/O protection circuitry
SAF (-40°C to 85°C)
SAK (-40°C to -125°C)

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SAF-XC878CM-16FFI 5V AC Summary of contents

Page 1

... JTAG based non-intrusive debugging „ Flexible single voltage supply of „ 3.3V or 5.0V 48 General purpose I/O Ports „ LQFP-64 package (12mm x 12mm) „ VQFN-48 package (7mm x 7mm) „ Temperature range: „ – SAF (-40°C to 85°C) SAK (-40°C to -125°C) – ...

Page 2

... Infineon Technologies failure of such components can reasonably be expected to cause the failure of that life-support device or system affect the safety or effectiveness of that device or system. Life support devices or systems are intended to be implanted in the human body support and/or maintain and sustain and/or protect human life. If they fail reason- able to assume that the health of the user or other persons may be endangered ...

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