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CY7C1462AV25-167AXI

Description
2M X 18 ZBT SRAM, 3.2 ns, PQFP100
Categorystorage   
File Size483KB,27 Pages
ManufacturerCypress Semiconductor
Download Datasheet Parametric View All

CY7C1462AV25-167AXI Overview

2M X 18 ZBT SRAM, 3.2 ns, PQFP100

CY7C1462AV25-167AXI Parametric

Parameter NameAttribute value
maximum clock frequency200 MHz
Number of functions1
Number of terminals100
Minimum operating temperature0.0 Cel
Maximum operating temperature70 Cel
Rated supply voltage2.5 V
Minimum supply/operating voltage2.38 V
Maximum supply/operating voltage2.62 V
Processing package description14 X 20 MM, 1.40 MM HEIGHT, LEAD FREE, PLASTIC, MS-026, TQFP-100
each_compliYes
EU RoHS regulationsYes
China RoHS regulationsYes
stateActive
sub_categorySRAMs
ccess_time_max3.2 ns
i_o_typeCOMMON
jesd_30_codeR-PQFP-G100
jesd_609_codee4
storage density3.77E7 bi
Memory IC typeZBT SRAM
memory width18
moisture_sensitivity_level3
Number of digits2.10E6 words
Number of digits2M
operating modeSYNCHRONOUS
organize2MX18
Output characteristics3-STATE
Packaging MaterialsPLASTIC/EPOXY
ckage_codeLQFP
ckage_equivalence_codeQFP100,.63X.87
packaging shapeRECTANGULAR
Package SizeFLATPACK, LOW PROFILE
serial parallelPARALLEL
eak_reflow_temperature__cel_260
wer_supplies__v_1.8/2.5,2.5
qualification_statusCOMMERCIAL
seated_height_max1.6 mm
standby_current_max0.1200 Am
standby_voltage_mi2.38 V
Maximum supply voltage0.3850 Am
surface mountYES
CraftsmanshipCMOS
Temperature levelCOMMERCIAL
terminal coatingNICKEL PALLADIUM GOLD
Terminal formGULL WING
Terminal spacing0.6500 mm
Terminal locationQUAD
ime_peak_reflow_temperature_max__s_20
length20 mm
width14 mm
dditional_featurePIPELINED ARCHITECTURE
CY7C1460AV25
CY7C1462AV25
CY7C1464AV25
36-Mbit (1M x 36/2M x 18/512K x 72)
Pipelined SRAM with NoBL™ Architecture
Features
• Pin-compatible and functionally equivalent to ZBT™
• Supports 250-MHz bus operations with zero wait states
— Available speed grades are 250, 200 and 167 MHz
• Internally self-timed output buffer control to eliminate
the need to use asynchronous OE
• Fully registered (inputs and outputs) for pipelined
operation
• Byte Write capability
• 2.5V core power supply
• 2.5V/1.8V I/O power supply
• Fast clock-to-output times
— 2.6 ns (for 250-MHz device)
• Clock Enable (CEN) pin to suspend operation
• Synchronous self-timed writes
• CY7C1460AV25, CY7C1462AV25 available in
JEDEC-standard lead-free 100-pin TQFP package,
lead-free and non-lead-free 165-ball FBGA package.
CY7C1464AV25 available in lead-free and non-lead-free
209-ball FBGA package
• IEEE 1149.1 JTAG-Compatible Boundary Scan
• Burst capability—linear or interleaved burst order
• “ZZ” Sleep Mode option and Stop Clock option
Functional Description
The CY7C1460AV25/CY7C1462AV25/CY7C1464AV25 are
2.5V, 1M x 36/2M x 18/512 x 72 Synchronous pipelined burst
SRAMs with No Bus Latency™ (NoBL™) logic, respectively.
They are designed to support unlimited true back-to-back
Read/Write operations with no wait states. The
CY7C1460AV25/CY7C1462AV25/CY7C1464AV25
are
equipped with the advanced (NoBL) logic required to enable
consecutive Read/Write operations with data being trans-
ferred on every clock cycle. This feature dramatically improves
the throughput of data in systems that require frequent
Write/Read
transitions.
The
CY7C1460AV25/CY7C1462AV25/CY7C1464AV25
are
pin-compatible and functionally equivalent to ZBT devices.
All synchronous inputs pass through input registers controlled
by the rising edge of the clock. All data outputs pass through
output registers controlled by the rising edge of the clock. The
clock input is qualified by the Clock Enable (CEN) signal,
which when deasserted suspends operation and extends the
previous clock cycle. Write operations are controlled by the
Byte Write Selects (BW
a
–BW
h
for CY7C1464AV25,
BW
a
–BW
d
for CY7C1460AV25 and BW
a
–BW
b
for
CY7C1462AV25) and a Write Enable (WE) input. All writes are
conducted with on-chip synchronous self-timed write circuitry.
Three synchronous Chip Enables (CE
1
, CE
2
, CE
3
) and an
asynchronous Output Enable (OE) provide for easy bank
selection and output three-state control. In order to avoid bus
contention, the output drivers are synchronously three-stated
during the data portion of a write sequence.
Logic Block Diagram–CY7C1460AV25 (1M x 36)
A0, A1, A
MODE
CLK
CEN
ADDRESS
REGISTER 0
A1
A1'
D1
Q1
A0
A0'
BURST
D0
Q0
LOGIC
ADV/LD
C
WRITE ADDRESS
REGISTER 1
WRITE ADDRESS
REGISTER 2
C
ADV/LD
BW
a
BW
b
BW
c
BW
d
WE
WRITE REGISTRY
AND DATA COHERENCY
CONTROL LOGIC
WRITE
DRIVERS
MEMORY
ARRAY
S
E
N
S
E
A
M
P
S
O
U
T
P
U
T
R
E
G
I
S
T
E
R
S
D
A
T
A
S
T
E
E
R
I
N
G
O
U
T
P
U
T
B
U
F
F
E
R
S
E
DQs
DQP
a
DQP
b
DQP
c
DQP
d
E
INPUT
REGISTER 1
E
INPUT
REGISTER 0
E
OE
CE1
CE2
CE3
ZZ
READ LOGIC
SLEEP
CONTROL
Cypress Semiconductor Corporation
Document #: 38-05354 Rev. *D
198 Champion Court
San Jose
,
CA 95134-1709
408-943-2600
Revised June 22, 2006
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