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M4A5-64 데이터시트 PDF




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부품번호 M4A5-64 기능
기능 High Performance E2CMOS In-System Programmable Logic
제조업체 Lattice Semiconductor
로고 Lattice Semiconductor 로고


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M4A5-64 데이터시트, 핀배열, 회로
ispMACH4A CPLD Family
High Performance E2CMOS®
In-System Programmable Logic
FEATURES
High-performance, E2CMOS 3.3-V & 5-V CPLD families
Flexible architecture for rapid logic designs
— Excellent First-Time-FitTM and ret feature
— SpeedLockingTM performance for guaranteed xed timing
— Central, input and output switch matrices for 100% routability and 100% pin-out retention
High speed
— 5.0ns tPD Commercial and 7.5ns tPD Industrial
— 182MHz fCNT
32 to 512 macrocells; 32 to 768 registers
44 to 388 pins in PLCC, PQFP, TQFP, BGA, fpBGA and caBGA packages
Flexible architecture for a wide range of design styles
— D/T registers and latches
— Synchronous or asynchronous mode
— Dedicated input registers
— Programmable polarity
— Reset/ preset swapping
Advanced capabilities for easy system integration
— 3.3-V & 5-V JEDEC-compliant operations
— JTAG (IEEE 1149.1) compliant for boundary scan testing
— 3.3-V & 5-V JTAG in-system programming
— PCI compliant (-5/-55/-6/-65/-7/-10/-12 speed grades)
— Safe for mixed supply voltage system designs
— Programmable pull-up or Bus-FriendlyTM inputs and I/Os
— Hot-socketing
— Programmable security bit
— Individual output slew rate control
Advanced E2CMOS process provides high-performance, cost-effective solutions
Lead-free package options
Lead-
Free
Package
Options
Available!
Publication# ISPM4A Rev: M
Amendment/0
Issue Date: September 2006




M4A5-64 pdf, 반도체, 판매, 대치품
The ispMACH 4A family offers 20 density-I/O combinations in Thin Quad Flat Pack (TQFP), Plastic
Quad Flat Pack (PQFP), Plastic Leaded Chip Carrier (PLCC), Ball Grid Array (BGA), fine-pitch BGA
(fpBGA), and chip-array BGA (caBGA) packages ranging from 44 to 388 pins (Table 3). It also offers I/O
safety features for mixed-voltage designs so that the 3.3-V devices can accept 5-V inputs, and 5-V devices
do not overdrive 3.3-V inputs. Additional features include Bus-Friendly inputs and I/Os, a programmable
power-down mode for extra power savings and individual output slew rate control for the highest speed
transition or for the lowest noise transition.
Table 3. ispMACH 4A Package and I/O Options (Number of I/Os and dedicated inputs in Table)
3.3 V Devices
Package
M4A3-32 M4A3-64 M4A3-96 M4A3-128 M4A3-192 M4A3-256 M4A3-384 M4A3-512
44-pin PLCC
32+2 32+2
44-pin TQFP
32+2 32+2
48-pin TQFP
32+2 32+2
100-pin TQFP
64+6 48+8 64+6
100-pin PQFP
64+6
100-ball caBGA
64+6
144-pin TQFP
96+16
144-ball fpBGA
96+16
208-pin PQFP
128+14, 160
160
160
256-ball fpBGA
128+14, 192
192
192
256-ball BGA
128+14
192
388-ball fpBGA
256
Package
44-pin PLCC
44-pin TQFP
48-pin TQFP
100-pin TQFP
100-pin PQFP
144-pin TQFP
208-pin PQFP
M4A5-32
32+2
32+2
32+2
M4A5-64
32+2
32+2
32+2
5 V Devices
M4A5-96
48+8
M4A5-128 M4A5-192 M4A5-256
64+6
64+6
96+16
128+14
4 ispMACH 4A Family

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M4A5-64 전자부품, 판매, 대치품
Product-Term Array
The product-term array consists of a number of product terms that form the basis of the logic being
implemented. The inputs to the AND gates come from the central switch matrix (Table 5), and are provided
in both true and complement forms for efficient logic implementation.
Table 5. PAL Block Inputs
Device
Number of Inputs to PAL Block
M4A3-32/32 and M4A5-32/32
M4A3-64/32 and M4A5-64/32
M4A3-64/64
M4A3-96/48 and M4A5-96/48
M4A3-128/64 and M4A5-128/64
33
33
33
33
33
M4A3-192/96 and M4A5-192/96
M4A3-256/128 and M4A5-256/128
34
34
M4A3-256/160 and M4A3-256/192
M4A3-384
M4A3-512
36
36
36
Logic Allocator
Within the logic allocator, product terms are allocated to macrocells in “product term clusters.” The
availability and distribution of product term clusters are automatically considered by the software as it fits
functions within a PAL block. The size of a product term cluster has been optimized to provide high
utilization of product terms, making complex functions using many product terms possible. Yet when few
product terms are used, there will be a minimal number of unused—or wasted—product terms left over.
The product term clusters available to each macrocell within a PAL block are shown in Tables 6 and 7.
Each product term cluster is associated with a macrocell. The size of a cluster depends on the configuration
of the associated macrocell. When the macrocell is used in synchronous mode
(Figure 2a), the basic cluster has 4 product terms. When the associated macrocell is used in asynchronous
mode (Figure 2b), the cluster has 2 product terms. Note that if the product term cluster is routed to a
different macrocell, the allocator configuration is not determined by the mode of the macrocell actually
being driven. The configuration is always set by the mode of the macrocell that the cluster will drive if not
routed away, regardless of the actual routing.
In addition, there is an extra product term that can either join the basic cluster to give an extended cluster,
or drive the second input of an exclusive-OR gate in the signal path. If included with the basic cluster, this
provides for up to 20 product terms on a synchronous function that uses four extended 5-product-term
clusters. A similar asynchronous function can have up to 18 product terms.
When the extra product term is used to extend the cluster, the value of the second XOR input can be
programmed as a 0 or a 1, giving polarity control. The possible configurations of the logic allocator are
shown in Figures 3 and 4.
ispMACH 4A Family
7

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M4A5-64

High Performance E2CMOS In-System Programmable Logic

Lattice Semiconductor
Lattice Semiconductor

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