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Z86C9620VSC View Datasheet(PDF) - Zilog

Part Name
Description
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Z86C9620VSC
Zilog
Zilog Zilog
Z86C9620VSC Datasheet PDF : 46 Pages
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PRODUCT SPECIFICATION
Z86C61/62/96
Z8® MICROCONTROLLER
FEATURES
s 8-Bit CMOS Microcontroller
s 40-Pin DIP, 44-Pin PLCC, 64-Pin DIP, or
68-Pin PLCC Package
s 32 Input/Output Lines (Z86C61 Only)
s 52 Input/Output Lines (Z86C62 and Z86C96)
s 3.0V to 5.5V Operating Range
s Low Power Consumption: 200 mW (max)
s Fast Instruction Pointer: 0.75 µs @ 16 MHz
s Two Standby Modes: STOP and HALT
s Full-Duplex UART
s All Digital Inputs are TTL Levels
Z86C61/62/96
CMOS Z8®
MICROCONTROLLER
s Auto Latches
s RAM and ROM Protect
s 16 Kbytes of ROM
s 256 Bytes of RAM
s Two Programmable 8-Bit Counter/Timers,
Each with 6-Bit Programmable Prescaler
s Six Vectored, Priority Interrupts from Eight
Different Sources
s Clock Speeds: 16 and 20 MHz
s On-Chip Oscillator that Accepts a Crystal,
Ceramic Resonator, LC, or External Clock Drive
GENERAL DESCRIPTION
The Z86C61/62/96 microcontroller is a member of the Z8
single-chip microcontroller family with 16 Kbytes of ROM
and 256 bytes of RAM. The Z86C96 is ROMless.
The Z86C61 is offered in 40-pin DIP and 44-pin PLCC style
packages, however, the ROMless pin option is available
on the 44-pin version only. The Z86C62/96 is offered in 64-
pin DIP and 68-pin PLCC style packages. A ROMless pin
option enables these MCUs to address both external
memory and preprogrammed ROM, making them well-
suited for high-volume applications or where code flexibil-
ity is required.
With 16 Kbytes of ROM and 256 bytes of general-purpose
RAM, these low-cost, low power consumption CMOS
Z86C61/62/96 MCUs offer fast execution, efficient use of
memory, sophisticated interrupts, input/output bit manipu-
lation capabilities, and easy hardware/software system
expansion.
The Z86C61/62/96 architecture is characterized by Zilog’s
8-bit microcontroller core. The device offers a flexible I/O
scheme, an efficient register and address space structure,
multiplexed capabilities between address/data, I/O, and a
number of ancillary features that are useful in many indus-
trial and advanced scientific applications.
For applications which demand powerful I/O capabilities,
the Z86C61 fulfills this with 32 pins dedicated to input and
output. These lines are grouped into four ports with eight
lines each. The Z86C62/96 has 52 pins for input and
output, and these lines are grouped into six, 8-bit ports and
one 4-bit port. Each port is configurable under software
control to provide timing, status signals, serial or parallel
I/O with or without handshake, and an address/data bus
for interfacing external memory.
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