Z16C3010VSC00TR Zilog, Z16C3010VSC00TR Datasheet - Page 47

IC Z16C32 MCU USC 68PLCC

Z16C3010VSC00TR

Manufacturer Part Number
Z16C3010VSC00TR
Description
IC Z16C32 MCU USC 68PLCC
Manufacturer
Zilog
Series
USC®r
Datasheet

Specifications of Z16C3010VSC00TR

Controller Type
USC Controller
Interface
DMA
Voltage - Supply
4.5 V ~ 5.5 V
Current - Supply
7mA
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
68-LCC (J-Lead)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
Z16C3010VSC00TR
Manufacturer:
Zilog
Quantity:
10 000
Z16C30
Product Specification
43
In NRZ, a 1 is represented by a High level for the duration of the bit cell and a 0 is
NRZ—
represented by a Low level for the duration of the bit cell.
Data is inverted from NRZ.
NRZB—
In NRZI-Mark, a 1 is represented by a transition at the beginning of the bit
NRZI-Mark—
cell. That is, the level present in the preceding bit cell is reversed. A 0 is represented by the
absence of a transition at the beginning of the bit cell.
In NRZI-Space, a 1 is represented by the absence of a transition at the
NRZI-Space—
beginning of the bit cell. That is, the level present in the preceding bit cell is maintained. A
0 is represented by a transition at the beginning of the bit cell.
In Biphase-Mark, a 1 is represented by a transition at the beginning of the
Biphase-Mark—
bit cell and another transition at the center of the bit cell. A 0 is represented by a transition
at the beginning of the bit cell only.
In Biphase-Space, a 1 is represented by a transition at the beginning of
Biphase-Space—
the bit cell only. A 0 is represented by a transition at the beginning of the bit cell and
another transition at the center of the bit cell.
In Biphase-Level, a 1 is represented by a High during the first half of the
Biphase-Level—
bit cell and a Low during the second half of the bit cell. A 0 is represented by a Low dur-
ing the first half of the bit cell and a High during the second half of the bit cell.
DS007902-0708
P R E L I M I N A R Y
Functional Description

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