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CPLDs: Lattice Zero Power CPLDs


ispMACH 4000Z Zero Power CPLD Family

  • Industry's Lowest Power CPLDs
  • Standby Current Icc as low as 10µA

"Coolest Power, Coolest Price"

Automotive Devices

Based on Lattice's already popular ispMACH 4000 architecture, the ispMACH 4000Z family delivers both low static power and high speed. Devices operate from a 1.8V power supply providing low dynamic power. The 1.8-volt ispMACH 4000Z family supports a wide range of 3.3V, 2.5V and 1.8V I/O standards and features 5-volt tolerant I/Os when using the LVCMOS 3.3 interface. This family is available in commercial, industrial and automotive temperature ranges.

Reach for the cold one! Lattice zero power CPLDs

Lattice's ispMACH 4000Z family provides the low static power consumption, cost-effective logic implementation, flexible I/Os and power supply range demanded by handheld / portable applications.

Family Member Selector Guide 

ispMACH 4000Z (1.8 V)
Device Typical Standby
Current (µA)
(at 1.8 V, 25°C)
Density
Macrocells
Speed User I/O
& Inputs
Packaging Buy
Now
tPD Fmax
4032ZC 10 32 3.5 267 32 + 4
48 TQFP 22 pixel circular buy icon
32 + 4 56 csBGA 22 pixel circular buy icon
4064ZC 11 64 3.7 250 32 + 4 48 TQFP 22 pixel circular buy icon
32 + 12 56 csBGA 22 pixel circular buy icon
64 + 10 100 TQFP 22 pixel circular buy icon
64 + 10 132 csBGA 22 pixel circular buy icon
4128ZC 12 128 4.2 220 64 + 10
100 TQFP 22 pixel circular buy icon
96 + 4 132 csBGA 22 pixel circular buy icon
4256ZC 13 256 4.5 200 64 + 10 100 TQFP 22 pixel circular buy icon
96 + 6
132 csBGA 22 pixel circular buy icon
128 + 4 176 TQFP 22 pixel circular buy icon

Features

  • Industry's Lowest Power Consumption
    • 10-13 µA stand-by current (Typical)
    • 18-23 µW power consumption (Typical)
  • Coolest Power, Coolest Price
    • Priced below competitive standard power CPLDs
    • No premium for Zero Power!
  • SuperFAST Performance
    • 3.5 ns tPD Pin-to-Pin Delay
    • 267 MHz System Performance
  • Ease of Design
    • Excellent First-Time Fit and Refit Capability
    • 4 Global Clocks
    • 36 Inputs per Logic Block
    • Up to 80 Product Terms (PT) per Output
    • ORP for Pin Locking
    • Density Migration
    • Flexible Control, Clocking and OE
    • Fast, SpeedLockingTM, and Wide PT Paths
  • System Integration
    • Operation with 3.3V Supply (ispMACH 4000V) and operation with 1.8V Supply (ispMACH 4000Z)
    • 1.8V, 2.5V, 3.3V I/O Support
    • 5V tolerant I/O for LVCMOS 3.3 interface
    • Extended power supply operating range 1.6v to 1.9v
    • Automotive temperature range: -40 to +130°C Junction (Tj)
    • IEEE 1532 In-System Programmable (ISPTM)
    • IEEE 1149.1 Boundary Scan Test
    • Open Drain Output for Flexible Bus Interface Capability
    • Programmable Pull-Up or Bus-Keeper Inputs
    • Hot Socketing Capability
    • 3.3V PCI Compatible
    • Programmable Output Slew Rate
    • Lead-free package option

ispMACH4000Z Evaluation Boards

The ispMACH4064Z Evaluation Board enables the user to program, evaluate, and de-bug a design for the Lattice ispMACH4064ZC device. Click the following links to learn more or order on-line:

ispMACH4064Z Evaluation Board

ispMACH4000Z vs CoolRunner II


ispMACH 4000Z: Cooler than Xilinx CoolRunner II!

Compare the ispMACH 4000Z, Zero-Power Family from Lattice against the Xilinx CoolRunner II Family and discover the following:

  • ispMACH 4000Z consumes significantly lower static current than Xilinx's CoolRunner II
  • Xilinx CoolRunner II datasheet claims and specifications regarding static Icc are unspecified, potentially misleading, and/or missing

The table below shows the static Icc specification comparison between Lattice's ispMACH 4000Z and Xilinx's CoolRunner II. There are many specification "holes" to fall into in Xilinx's datasheet!

Static Current Comparison Between ispMACH 4000Z and CoolRunner II
Macrocells Temp
Grade
Static Icc (uA) at 1.9V, 70°C
Zero
Power
Winner
Lattice ispMACH 4000Z Xilinx CoolRunner II
All Speed Grades Slower
Speed Grades
Fastest
Speed Grade
TYP MAX TYP MAX TYP MAX
32 Comm 13 20 22 50 150 1,000 LATTICE!
Ind 15 25 38 80 - -
64 Comm 15 25 NS 100 NS NS LATTICE!
Ind 18 35 NS NS - -
128 Comm 16 35 30 80 NS NS LATTICE!
Ind 19 50 60 150 - -
256 Comm 32 55 33 150 NS NS LATTICE!
Ind 43 90 54 300 - -

NOTES:

NS - No specification

All referenced Xilinx specifications are from datasheets available on the Xilinx website as of Aug-27-04.

ispMACH 4000Z vs. Xilinx Coolrunner II

Lattice WINS the ZERO-POWER CHALLENGE!