Z16M1720ASG1868 Zilog, Z16M1720ASG1868 Datasheet - Page 51
Z16M1720ASG1868
Manufacturer Part Number
Z16M1720ASG1868
Description
IC PCMCIA INTERFACE 100-VQFP
Manufacturer
Zilog
Datasheet
1.Z0847006PSG.pdf
(330 pages)
Specifications of Z16M1720ASG1868
Applications
*
Interface
*
Voltage - Supply
*
Package / Case
100-LQFP
Mounting Type
Surface Mount
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
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Manufacturer
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Direct Memory Access
DMA OVERVIEW
UM008101-0601
CPU Data Transfers
Direct Memory Access (DMA) and DMA Controllers are dedicated to
controlling high-speed block transfers of data independently of the CPU.
DMA data transfers are usually between memory and I/O, or vice versa.
A DMA controller (DMAC) also performs some transfers that have tradi-
tionally been done by the CPU. For example, the Z80 DMA can perform
memory-to-memory, memory-to-I/O, and I/O-to-memory transfers, as
well as search for particular patterns of bits in a byte either simulta-
neously with or independently of transfers.
The advantages of DMA transfers are:
•
•
In systems without DMA, data transfers must pass through the CPU and be
implemented in software. Data transfers through the CPU include
executing an instruction sequence for input and output, and tracking each
byte of data in the block to be transferred.
Figure 15 illustrates the minimum sequence of instructions that must be
fetched from memory and executed by conventional CPUs to transfer a
block of data one byte at a time. Most CPUs require many more instructions.
CPU transfers are relatively slow and tie up the CPU. In addition response
time (startup time for the first byte) is also usually slow because the I/O
device typically uses interrupts to signal its readiness, and the CPU interrupt
service routine causes a significant time lag in transferring the first byte.
Transfers bypass the CPU
Transfers are fast
< % 2 7 2 G T K R J G T C N U
Direct Memory Access
7 U G T / C P W C N
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