LC4032B-10T44I LATTICE [Lattice Semiconductor], LC4032B-10T44I Datasheet

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LC4032B-10T44I

Manufacturer Part Number
LC4032B-10T44I
Description
3.3V/2.5V/1.8V In-System Programmable SuperFAST High Density PLDs
Manufacturer
LATTICE [Lattice Semiconductor]
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LC4032B-10T44I
Manufacturer:
Lattice Semiconductor Corporation
Quantity:
10 000
July 2003
Features
Table 1. ispMACH 4000V/B/C Family Selection Guide
Note: ispMACH 4032Z information is preliminary. ispMACH 4064Z/4128Z information is advance.
© 2003 Lattice Semiconductor Corp. All Lattice trademarks, registered trademarks, patents, and disclaimers are as listed at www.latticesemi.com/legal. All other brand
or product names are trademarks or registered trademarks of their respective holders. The specifications and information herein are subject to change without notice.
www.latticesemi.com
Macrocells
User I/O Options
t
t
t
f
Supply Voltages (V)
Pins/Package
1. 3.3V (4000V) only.
2. 128-I/O and 160-I/O configurations.
PD
S
CO
MAX
(ns)
(ns)
(ns)
High Performance
Ease of Design
Zero Power (ispMACH 4000Z) and Low
Power (ispMACH 4000V/B/C)
(MHz)
• f
• t
• Up to four global clock pins with programmable
• Up to 80 PTs per output
• Enhanced macrocells with individual clock,
• Up to four global OE controls
• Individual local OE control per I/O pin
• Excellent First-Time-Fit
• Fast path, SpeedLocking
• Wide input gating (36 input logic blocks) for fast
• Typical static current 10µA (4032Z)
• Typical static current 1.8mA (4000C)
• 1.8V core low dynamic power
clock polarity control
reset, preset and clock enable controls
path
counters, state machines and address decoders
MAX
PD
= 2.5ns propagation delay
= 400MHz maximum operating frequency
3.3/2.5/1.8V
4032V/B/C
ispMACH
44 TQFP
48 TQFP
30/32
400
2.5
1.8
2.2
32
TM
TM
and refit
Path, and wide-PT
ispMACH 4000V/B/C/Z Family
3.3/2.5/1.8V
4064V/B/C
100 TQFP
ispMACH
44 TQFP
48 TQFP
30/32/64
400
2.5
1.8
2.2
64
3.3/2.5/1.8V
4128V/B/C
144 TQFP
100 TQFP
128 TQFP
ispMACH
64/92/96
1
128
333
2.7
1.8
2.7
TM
Broad Device Offering
Easy System Integration
1
• Multiple temperature range support
• Operation with 3.3V, 2.5V or 1.8V LVCMOS I/O
• Operation with 3.3V (4000V), 2.5V (4000B) or
• 5V tolerant I/O for LVCMOS 3.3, LVTTL, and PCI
• Hot-socketing
• Open-drain capability
• Input pull-up, pull-down or bus-keeper
• Programmable output slew rate
• 3.3V PCI compatible
• IEEE 1149.1 boundary scan testable
• 3.3V/2.5V/1.8V In-System Programmable
• I/O pins with fast setup path
3.3V/2.5V/1.8V In-System Programmable
– Commercial: 0 to 90°C junction (T
– Industrial: -40 to 105°C junction (T
– Automotive: -40 to 130°C junction (T
1.8V (4000C/Z) supplies
interfaces
(ISP™) using IEEE 1532 compliant interface
64/96/128/160
3.3/2.5/1.8V
256 fpBGA
4256V/B/C
144 TQFP
100 TQFP
176 TQFP
ispMACH
256
322
3.0
2.0
2.7
SuperFAST High Density PLDs
1
2
3.3/2.5/1.8V
4384V/B/C
256 fpBGA
176 TQFP
ispMACH
128/192
TM
384
322
3.5
2.0
2.7
3.3/2.5/1.8V
4512V/B/C
256 fpBGA
j
176 TQFP
ispMACH
)
j
)
128/208
ispm4k_15z
Data Sheet
j
)
512
322
3.5
2.0
2.7

Related parts for LC4032B-10T44I

LC4032B-10T44I Summary of contents

Page 1

July 2003 Features High Performance • 400MHz maximum operating frequency MAX • 2.5ns propagation delay PD • four global clock pins with programmable clock polarity control • PTs per output Ease ...

Page 2

Lattice Semiconductor Table 2. ispMACH 4000Z Family Selection Guide ispMACH 4032ZC Macrocells User I/O Options t (ns (ns (ns (MHz) MAX Supply Voltage (V) Standby Icc (µA) Pins/Package 48 TQFP 56 csBGA 1. Preliminary ...

Page 3

Lattice Semiconductor Figure 1. Functional Block Diagram I/O Block ORP 16 I/O Block ORP 16 The I/Os in the ispMACH 4000 are split into two banks. Each bank has a separate I/O power supply. Inputs can support a variety of ...

Page 4

Lattice Semiconductor Figure 2. Generic Logic Block 36 Inputs from GRP AND Array The programmable AND Array consists of 36 inputs and 83 output product terms. The 36 inputs from the GRP are used to form 72 lines in the ...

Page 5

Lattice Semiconductor Figure 3. AND Array In[0] In[34] In[35] Note: Indicates programmable fuse. Enhanced Logic Allocator Within the logic allocator, product terms are allocated to macrocells in product term clusters. Each product term cluster is associated with a macrocell. The ...

Page 6

Lattice Semiconductor Product Term Allocator The product term allocator assigns product terms from a cluster to either logic or control applications as required by the design being implemented. Product terms that are used as logic are steered into a 5-input ...

Page 7

Lattice Semiconductor Table 5. Product Term Expansion Capability Expansion Chains Chain-0 Chain-1 Chain-2 Chain-3 Every time the super cluster allocator is used, there is an incremental delay of t tor is used, all destinations other than the one being steered ...

Page 8

Lattice Semiconductor • Block CLK2 • Block CLK3 • PT Clock • PT Clock Inverted • Shared PT Clock • Ground Clock Enable Multiplexer Each macrocell has a 4:1 clock enable multiplexer. This allows the clock enable signal to be ...

Page 9

Lattice Semiconductor Output Routing Pool (ORP) The Output Routing Pool allows macrocell outputs to be connected to any of several I/O cells within an I/O block. This provides greater flexibility in determining the pinout and allows design changes to occur ...

Page 10

Lattice Semiconductor Table 7. ORP Combinations for I/O Blocks with 16 I/Os I/O Cell I/O 0 M0, M1, M2, M3, M4, M5, M6, M7 I/O 1 M1, M2, M3, M4, M5, M6, M7, M8 I/O 2 M2, M3, M4, M5, ...

Page 11

Lattice Semiconductor Table 10. ORP Combinations for I/O Blocks with 12 I/Os I/O Cell I/O 0 M0, M1, M2, M3, M4, M5, M6, M7 I/O 1 M1, M2, M3, M4, M5, M6, M7, M8 I/O 2 M2, M3, M4, M5, ...

Page 12

Lattice Semiconductor • LVTTL • LVCMOS 1.8 • LVCMOS 3.3 • 3.3V PCI Compatible • LVCMOS 2.5 All of the I/Os and dedicated inputs have the capability to provide a bus-keeper latch, Pull-up Resistor or Pull-down Resistor. A fourth option ...

Page 13

Lattice Semiconductor Figure 10. Global OE Generation for ispMACH 4032 Shared PTOE (Block 0) Shared PTOE (Block 1) Zero Power/Low Power and Power Management The ispMACH 4000 family is designed with high speed low power design techniques to offer both ...

Page 14

Lattice Semiconductor IEEE 1532-Compliant In-System Programming Programming devices in-system provides a number of significant benefits including: rapid prototyping, lower inven- tory levels, higher quality and the ability to make in-field modifications. All ispMACH 4000 devices provide In-Sys- tem Programming (ISP™) ...

Page 15

Lattice Semiconductor Absolute Maximum Ratings Supply Voltage ( -0 ...

Page 16

Lattice Semiconductor I/O Recommended Operating Conditions Standard LVTTL LVCMOS 3.3 2 Extended LVCMOS 3.3 LVCMOS 2.5 LVCMOS 1.8 PCI 3.3 1. Typical values for V are the average of the min. and max. values. CCO 2. ispMACH 4000Z only. DC ...

Page 17

Lattice Semiconductor Supply Current, ispMACH 4000V/B/C Symbol Parameter ispMACH 4032V/B/C 1,2,3 ICC Operating Power Supply Current 4 ICC Standby Power Supply Current ispMACH 4064V/B/C 1,2,3 ICC Operating Power Supply Current 5 ICC Standby Power Supply Current ispMACH 4128V/B/C 1,2,3 ICC ...

Page 18

Lattice Semiconductor Supply Current, ispMACH 4000V/B/C (Cont.) Symbol Parameter 4 I Standby Power Supply Current 25°C, frequency = 1.0 MHz Device configured with 16-bit counters varies with specific device configuration and operating ...

Page 19

Lattice Semiconductor Supply Current, ispMACH 4000Z (Cont.) Symbol Parameter 2 ispMACH 4256ZC ICC Operating Power Supply Current 6, 7 ICC Standby Power Supply Current 1. Preliminary information. 2. Advance information 25°C, frequency = ...

Page 20

Lattice Semiconductor I/O DC Electrical Characteristics V IL Standard Min (V) LVTTL -0.3 LVCMOS 3.3 -0.3 LVCMOS 2.5 -0.3 LVCMOS 1.8 -0.3 (4000V/B) LVCMOS 1.8 -0.3 0. (4000C/Z) PCI 3.3 (4000V/B) -0.3 PCI 3.3 (4000C/Z) -0.3 0.3 * ...

Page 21

Lattice Semiconductor 100 0.5 1.0 V Output Voltage ( 0.5 V Output Voltage (V) O ispMACH 4000V/B/C/Z Family Data Sheet 3.3V V CCO 70 60 ...

Page 22

Lattice Semiconductor ispMACH 4000V/B/C External Switching Characteristics Parameter Description 5-PT bypass combinatorial propagation t PD delay 20-PT combinatorial propagation delay t PD_MC through macrocell t GLB register setup time before clock S GLB register setup time before clock t ST ...

Page 23

Lattice Semiconductor ispMACH 4000V/B/C External Switching Characteristics (Cont.) Parameter Description t 5-PT bypass combinatorial propagation delay PD t 20-PT combinatorial propagation delay through macrocell PD_MC t GLB register setup time before clock S t GLB register setup time before clock ...

Page 24

Lattice Semiconductor ispMACH 4032Z External Switching Characteristics Parameter t 5-PT bypass combinatorial propagation delay PD t 20-PT combinatorial propagation delay through macrocell PD_MC t GLB register setup time before clock S t GLB register setup time before clock with T-type ...

Page 25

Lattice Semiconductor Timing Model The task of determining the timing through the ispMACH 4000 family, like any CPLD, is relatively simple. The timing model provided in Figure 11 shows the specific delay paths. Once the implementation of a given function ...

Page 26

Lattice Semiconductor ispMACH 4000V/B/C Internal Timing Parameters Parameter Description In/Out Delays t Input Buffer Delay IN t Global OE Pin Delay GOE t Global Clock Input Buffer Delay GCLK_IN t Delay through Output Buffer BUF t Output Enable Time EN ...

Page 27

Lattice Semiconductor ispMACH 4000V/B/C Internal Timing Parameters (Cont.) Parameter Description Propagation Delay through t Transparent Latch to Output/ PDLi Feedback MUX Asynchronous Reset or Set to t SRi Output/Feedback MUX Delay Asynchronous Reset or Set t SRR Recovery Time Control ...

Page 28

Lattice Semiconductor ispMACH 4000V/B/C Internal Timing Parameters Parameter In/Out Delays t Input Buffer Delay IN t Global OE Pin Delay GOE t Global Clock Input Buffer Delay GCLK_IN t Delay through Output Buffer BUF t Output Enable Time EN t ...

Page 29

Lattice Semiconductor ispMACH 4000V/B/C Internal Timing Parameters (Cont.) Parameter t Global PT OE Delay GPTOE t Macrocell PT OE Delay PTOE Note: Internal Timing Parameters are not tested and are for reference only. Refer to Timing Model in this data ...

Page 30

Lattice Semiconductor ispMACH 4032Z Internal Timing Parameters Parameter In/Out Delays t Input Buffer Delay IN t Global OE Pin Delay GOE t Global Clock Input Buffer Delay GCLK_IN t Delay through Output Buffer BUF t Output Enable Time EN t ...

Page 31

Lattice Semiconductor ispMACH 4032Z Internal Timing Parameters Parameter t Macrocell PT OE Delay PTOE 1. Preliminary information. Note: Internal Timing Parameters are not tested and are for reference only. Refer to Timing Model in this data sheet for further details. ...

Page 32

Lattice Semiconductor ispMACH 4000V/B/C Timing Adders Adder Base Type Parameter Optional Delay Adders t t Input register delay INDIO INREG Product term expander t t EXP MCELL delay t — Output routing pool delay ORP Additional block loading t t ...

Page 33

Lattice Semiconductor ispMACH 4000V/B/C Timing Adders Adder Base Type Parameter Optional Delay Adders t t Input register delay INDIO INREG t t Product term expander delay EXP MCELL t — Output routing pool delay ORP t t Additional block loading ...

Page 34

Lattice Semiconductor ispMACH 4032Z Timing Adders Adder Base Type Parameter Optional Delay Adders t t INDIO INREG t t EXP MCELL t — ORP t t BLA ROUTE t Input Adjusters IOI LVTTL_in IN, GCLK_IN, GOE LVCMOS33_in ...

Page 35

Lattice Semiconductor Boundary Scan Waveforms and Timing Specifications Symbol t TCK [BSCAN test] clock cycle BTCP t TCK [BSCAN test] pulse width high BTCH t TCK [BSCAN test] pulse width low BTCL t TCK [BSCAN test] setup time BTSU t ...

Page 36

Lattice Semiconductor Power Consumption ispMACH 4000Z Typical I vs. Frequency CC (Preliminary Information) 100 4032ZC 100 150 200 250 Frequency (MHz) Note: The devices are configured with maximum number of 16-bit counters, typical ...

Page 37

Lattice Semiconductor Switching Test Conditions Figure 12 shows the output test load that is used for AC testing. The specific values for resistance, capacitance, voltage, and other test conditions are shown in Table 11. Figure 12. Output Test Load, LVTTL ...

Page 38

Lattice Semiconductor Signal Descriptions Signal Names TMS TCK TDI TDO GOE0/IO, GOE1/IO GND CLK0/I, CLK1/I, CLK2/I, CLK3 CCO0 CCO1 yzz 1. In some packages, certain I/O are only available for use as inputs. See ...

Page 39

Lattice Semiconductor ispMACH 4000V/B/C/Z Power Supply and NC Connections Signal TQFP TQFP csBGA VCC 11, 33 12, 36 K2, A9 VCCO0 VCCO1 GND 12, 34 13, 37 H3, C8 ...

Page 40

Lattice Semiconductor ispMACH 4032V/B/C and 4064V/B/C Logic Signal Connections: 44-Pin TQFP Pin Number Bank Number ...

Page 41

Lattice Semiconductor ispMACH 4032V/B/C and 4064V/B/C Logic Signal Connections: 44-Pin TQFP (Cont.) Pin Number Bank Number ispMACH 4032V/B/C/Z and 4064V/B/C/Z Logic Signal Connections: 48-Pin TQFP ispMACH 4032V/B/C Pin Bank Number Number GLB/MC/Pad 1 - ...

Page 42

Lattice Semiconductor ispMACH 4032V/B/C/Z and 4064V/B/C/Z Logic Signal Connections: 48-Pin TQFP (Cont.) ispMACH 4032V/B/C Pin Bank Number Number GLB/MC/Pad 33 1 B10 34 1 B11 35 - TDO 36 - VCC 37 - GND 38 1 B12 39 1 B13 ...

Page 43

Lattice Semiconductor ispMACH 4032Z and 4064Z Logic Signal Connections: 56-Ball csBGA (Cont.) Ball Number Bank Number K10 1 J10 - H8 1 H10 1 G10 1 ...

Page 44

Lattice Semiconductor ispMACH 4064V/B/C/Z, 4128V/B/C/Z, 4256V/B/C Logic Signal Connections: 100-Pin TQFP Bank Pin Number Number GLB/MC/Pad GND (Bank ...

Page 45

Lattice Semiconductor ispMACH 4064V/B/C/Z, 4128V/B/C/Z, 4256V/B/C Logic Signal Connections: 100-Pin TQFP (Cont.) ispMACH 4064V/B/C/Z Bank Pin Number Number GLB/MC/Pad VCCO (Bank GND (Bank ...

Page 46

Lattice Semiconductor ispMACH 4064V/B/C/Z, 4128V/B/C/Z, 4256V/B/C Logic Signal Connections: 100-Pin TQFP (Cont.) ispMACH 4064V/B/C/Z Bank Pin Number Number GLB/MC/Pad 83 1 VCCO (Bank D0/GOE1 ...

Page 47

Lattice Semiconductor ispMACH 4128V/B/C Logic Signal Connections: 128-Pin TQFP (Cont.) Pin Number ...

Page 48

Lattice Semiconductor ispMACH 4128V/B/C Logic Signal Connections: 128-Pin TQFP (Cont.) Pin Number ...

Page 49

Lattice Semiconductor ispMACH 4128V/B/C Logic Signal Connections: 128-Pin TQFP (Cont.) Pin Number 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 ispMACH 4128V and 4256V ...

Page 50

Lattice Semiconductor ispMACH 4128V and 4256V Logic Signal Connections: 144-Pin TQFP (Cont.) Pin Number Bank Number ...

Page 51

Lattice Semiconductor ispMACH 4128V and 4256V Logic Signal Connections: 144-Pin TQFP (Cont.) Pin Number Bank Number ...

Page 52

Lattice Semiconductor ispMACH 4128V and 4256V Logic Signal Connections: 144-Pin TQFP (Cont.) Pin Number Bank Number 100 1 101 1 102 1 103 1 104 1 105 1 106 1 107 - 108 - 109 - 110 - 111 1 ...

Page 53

Lattice Semiconductor ispMACH 4128V and 4256V Logic Signal Connections: 144-Pin TQFP (Cont.) Pin Number Bank Number 143 0 144 - 1. For device migration considerations, these NC pins are GND pins for I/O banks in ispMACH 4128V devices. 2. For ...

Page 54

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C, Logic Signal Connections: 176-Pin TQFP (Cont.) Bank Pin Number Number GLB/MC/Pad VCCO (Bank ...

Page 55

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C, Logic Signal Connections: 176-Pin TQFP (Cont.) Bank Pin Number Number GLB/MC/Pad VCCO (Bank GND (Bank ...

Page 56

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C, Logic Signal Connections: 176-Pin TQFP (Cont.) Bank Pin Number Number GLB/MC/Pad 115 1 116 1 117 1 118 1 119 1 GND (Bank 1) 120 1 121 1 122 1 123 1 124 1 ...

Page 57

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C, Logic Signal Connections: 176-Pin TQFP (Cont.) Bank Pin Number Number GLB/MC/Pad 156 0 157 - 158 0 159 0 A2/GOE0 160 0 161 0 162 0 163 0 164 0 165 0 166 0 ...

Page 58

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C Logic Signal Connections: 256-Ball fpBGA (Cont.) ispMACH 4256V/B/C 128-I/O Ball I/O Number Bank GLB/MC/Pad GND (Bank 0) ...

Page 59

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C Logic Signal Connections: 256-Ball fpBGA (Cont.) ispMACH 4256V/B/C 128-I/O Ball I/O Number Bank GLB/MC/Pad F10 L6 0 ...

Page 60

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C Logic Signal Connections: 256-Ball fpBGA (Cont.) ispMACH 4256V/B/C 128-I/O Ball I/O Number Bank GLB/MC/Pad - - GND T8 0 CLK1 GND (Bank CLK2 VCC ...

Page 61

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C Logic Signal Connections: 256-Ball fpBGA (Cont.) ispMACH 4256V/B/C 128-I/O Ball I/O Number Bank GLB/MC/Pad P15 1 K14 L11 1 K12 P16 1 K10 K11 1 K8 M14 1 K6 K12 1 K4 N15 1 ...

Page 62

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C Logic Signal Connections: 256-Ball fpBGA (Cont.) ispMACH 4256V/B/C 128-I/O Ball I/O Number Bank GLB/MC/Pad - 1 - E15 1 NC G12 1 NC E13 1 NC D16 1 NC E14 1 NC G11 1 ...

Page 63

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C Logic Signal Connections: 256-Ball fpBGA (Cont.) ispMACH 4256V/B/C 128-I/O Ball I/O Number Bank GLB/MC/Pad A10 1 P10 P2/GOE1 ...

Page 64

Lattice Semiconductor ispMACH 4256V/B/C, 4384V/B/C, 4512V/B/C Logic Signal Connections: 256-Ball fpBGA (Cont.) ispMACH 4256V/B/C 128-I/O Ball I/O Number Bank GLB/MC/Pad - 0 - Note: VCC, VCCO and GND are tied together to their respective common signal on the package substrate. ...

Page 65

Lattice Semiconductor Part Number Description LC XXXX X X – XXX Device Family Device Number 4032 = 32 Macrocells 4064 = 64 Macrocells 4128 = 128 Macrocells 4256 = 256 Macrocells 4384 = 384 Macrocells ...

Page 66

Lattice Semiconductor ispMACH 4000C (1.8V) Commercial Devices Device Part Number LC4064C-25T100C LC4064C-5T100C LC4064C-75T100C LC4064C-25T48C LC4064C LC4064C-5T48C LC4064C-75T48C LC4064C-25T44C LC4064C-5T44C LC4064C-75T44C LC4128C-27T128C LC4128C-5T128C LC4128C-75T128C LC4128C LC4128C-27T100C LC4128C-5T100C LC4128C-75T100C LC4256C-3F256AC LC4256C-5F256AC LC4256C-75F256AC LC4256C-3F256BC LC4256C-5F256BC LC4256C-75F256BC LC4256C LC4256C-3T176C LC4256C-5T176C LC4256C-75T176C LC4256C-3T100C LC4256C-5T100C LC4256C-75T100C ...

Page 67

... Lattice Semiconductor Device Part Number LC4032B-25T48C LC4032B-5T48C LC4032B-75T48C LC4032B LC4032B-25T44C LC4032B-5T44C LC4032B-75T44C LC4064B-25T100C LC4064B-5T100C LC4064B-75T100C LC4064B-25T48C LC4064B LC4064B-5T48C LC4064B-75T48C LC4064B-25T44C LC4064B-5T44C LC4064B-75T44C LC4128B-27T128C LC4128B-5T128C LC4128B-75T128C LC4128B LC4128B-27T100C LC4128B-5T100C LC4128B-75T100C LC4256B-3F256AC LC4256B-5F256AC LC4256B-75F256AC LC4256B-3F256BC LC4256B-5F256BC LC4256B-75F256BC LC4256B LC4256B-3T176C LC4256B-5T176C LC4256B-75T176C LC4256B-3T100C LC4256B-5T100C ...

Page 68

Lattice Semiconductor ispMACH 4000B (2.5V) Commercial Devices (Cont.) Device Part Number LC4512B-35F256C LC4512B-5F256C LC4512B-75F256C LC4512B LC4512B-35T176C LC4512B-5T176C LC4512B-75T176C Device Part Number LC4032V-25T48C LC4032V-5T48C LC4032V-75T48C LC4032V LC4032V-25T44C LC4032V-5T44C LC4032V-75T44C LC4064V-25T100C LC4064V-5T100C LC4064V-75T100C LC4064V-25T48C LC4064V LC4064V-5T48C LC4064V-75T48C LC4064V-25T44C LC4064V-5T44C LC4064V-75T44C LC4128V-27T144C LC4128V-5T144C ...

Page 69

Lattice Semiconductor ispMACH 4000V (3.3V) Commercial Devices (Cont.) Device Part Number LC4256V-3F256AC LC4256V-5F256AC LC4256V-75F256AC LC4256V-3F256BC LC4256V-5F256BC LC4256V-75F256BC LC4256V-3T176C LC4256V LC4256V-5T176C LC4256V-75T176C LC4256V-3T144C LC4256V-5T144C LC4256V-75T144C LC4256V-3T100C LC4256V-5T100C LC4256V-75T100C LC4384V-35F256C LC4384V-5F256C LC4384V-75F256C LC4384V LC4384V-35T176C LC4384V-5T176C LC4384V-75T176C LC4512V-35F256C LC4512V-5F256C LC4512V-75F256C LC4512V LC4512V-35T176C LC4512V-5T176C ...

Page 70

Lattice Semiconductor ispMACH 4000C (1.8V) Industrial Devices (Cont.) Family Part Number LC4064C-5T100I LC4064C-75T100I LC4064C-10T100I LC4064C-5T48I LC4064C LC4064C-75T48I LC4064C-10T48I LC4064C-5T44I LC4064C-75T44I LC4064C-10T44I LC4128C-5T128I LC4128C-75T128I LC4128C-10T128I LC4128C LC4128C-5T100I LC4128C-75T100I LC4128C-10T100I LC4256C-5F256AI LC4256C-75F256AI LC4256C-10F256AI LC4256C-5F256BI LC4256C-75F256BI LC4256C-10F256BI LC4256C LC4256C-5T176I LC4256C-75T176I LC4256C-10T176I LC4256C-5T100I LC4256C-75T100I ...

Page 71

... Lattice Semiconductor Family Part Number LC4032B-5T48I LC4032B-75T48I LC4032B-10T48I LC4032B LC4032B-5T44I LC4032B-75T44I LC4032B-10T44I LC4064B-5T100I LC4064B-75T100I LC4064B-10T100I LC4064B-5T48I LC4064B LC4064B-75T48I LC4064B-10T48I LC4064B-5T44I LC4064B-75T44I LC4064B-10T44I LC4128B-5T128I LC4128B-75T128I LC4128B-10T128I LC4128B LC4128B-5T100I LC4128B-75T100I LC4128B-10T100I LC4256B-5F256AI LC4256B-75F256AI LC4256B-10F256AI LC4256B-5F256BI LC4256B-75F256BI LC4256B-10F256BI LC4256B LC4256B-5T176I LC4256B-75T176I LC4256B-10T176I LC4256B-5T100I LC4256B-75T100I ...

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Lattice Semiconductor ispMACH 4000B (2.5V) Industrial Devices (Cont.) Family Part Number LC4512B-5F256I LC4512B-75F256I LC4512B-10F256I LC4512B LC4512B-5T176I LC4512B-75T176I LC4512B-10T176I Family Part Number LC4032V-5T48I LC4032V-75T48I LC4032V-10T48I LC4032V LC4032V-5T44I LC4032V-75T44I LC4032V-10T44I LC4064V-5T100I LC4064V-75T100I LC4064V-10T100I LC4064V-5T48I LC4064V LC4064V-75T48I LC4064V-10T48I LC4064V-5T44I LC4064V-75T44I LC4064V-10T44I LC4128V-5T144I LC4128V-75T144I ...

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Lattice Semiconductor ispMACH 4000V (3.3V) Industrial Devices (Cont.) Family Part Number LC4256V-5F256AI LC4256V-75F256AI LC4256V-10F256AI LC4256V-5F256BI LC4256V-75F256BI LC4256V-10F256BI LC4256V-5T176I LC4256V LC4256V-75T176I LC4256V-10T176I LC4256V-5T144I LC4256V-75T144I LC4256V-10T144I LC4256V-5T100I LC4256V-75T100I LC4256V-10T100I LC4384V-5F256I LC4384V-75F256I LC4384V-10F256I LC4384V LC4384V-5T176I LC4384V-75T176I LC4384V-10T176I LC4512V-5F256I LC4512V-75F256I LC4512V-10F256I LC4512V LC4512V-5T176I LC4512V-75T176I ...

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Lattice Semiconductor For Further Information In addition to this data sheet, the following technical notes may be helpful when designing with the ispMACH 4000V/B/C/Z family: • ispMACH 4000 Timing Model Design and Usage Guidelines (TN1004) • ispMACH 4000V/B/C Power Consumption ...

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