Features: ·Fully static CMOS, with low current drain·Two power saving modes: HALT and IDLE·1uS instruction cycle time·4096 bytes on-board ROM (COP888CG)·192 bytes on-board RAM (COP888CG)· Single supply operation: 2.5V-6V·Full duplex UART·Two analog comparators·MICROWIRE/PLUS(TM) serial I/O·WATCHDO...
MNCOPCG-XXX: Features: ·Fully static CMOS, with low current drain·Two power saving modes: HALT and IDLE·1uS instruction cycle time·4096 bytes on-board ROM (COP888CG)·192 bytes on-board RAM (COP888CG)· Single sup...
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Features: ·Lowest power dissipation (600 uW typical)·Fully static (can turn off the clock)·Power s...
Features: ·Low cost 8-bit microcontroller·Fully static CMOS·1 uS instruction time·Low current drai...
Features: · Low cost 8-bit microcontroller· Fully static CMOS· 1 uS instruction time· Low current ...
Supply Voltage (Vcc)....................................7V
Voltage at Any Pin..............-0.3V to Vcc + 0.3V
Total Current into Vcc Pin (Source)........100mA
Total Current out of GND Pin (Sink)........110mA
Storage Temperature Range....-65 C to +140 C
Note 1: Absolute maximum ratings indicate limits beyond which damage to the device may occur. DC and AC electrical specifications are not ensured when operating the device at absolute maximum ratings.
The COP888 family of microcontrollers uses an 8-bit single chip core architecture fabricated with National Semiconductor's M2-CMOS(TM) process technology. The COP888CG is a member of this expandable 8-bit core processor family of microcontrollers. COP888 are fully static parts, fabricated using double-metal silicon gate microCMOS technology. Features of COP888 include an 8-bit memory mapped architecture, MICROWIRE/PLUS serial I/O, three 16-bit timer/counters supporting three modes (Processor Independent PWM generation, External Event counter, and Input Capture mode capabilities), full duplex UART, two comparators, and two power savings modes (HALT and IDLE), both with a multi-sourced wakeup/interrupt capability. This multi-sourced interrupt capability may also be used independent of the HALT or IDLE modes. Each I/O pin has software selectable configurations. The devices operate over a voltage range of 2.5V to 6V. High throughput is achieved with an efficient, regular instruction set operating at a maximum of 1uS per instruction rate.