CY62128EV30LL-45SXIT

Cypress Semiconductor Corporation

CY62128EV30LL-45SXIT

Availability

Design risk

Price trend

Lead time

Semiconductors

STANDARD SRAM

15 results found

Availability

Design risk

Price trend

Lead time

Constrained
Low
Increase
Increase
1734366-1 (TECONNECTIVITYLTD)
View Details
Available
High
Stable
Stable
4053G-S16-R (UTCLTD)
View Details
Available
High
Decrease
Stable
IPP60R125CP (INFINEONTECHNOLOGIESAG)
View Details
Available
Low
Stable
Stable
RSP-3000-48 (MEANWELLENTERPRISESCOLTD)
View Details
Available
Low
Decrease
Stable
ZXTN2010ZTA (DIODESINC)
View Details
Constrained
High
Stable
Stable
EP2C8Q208I8N (INTELCORP)
View Details
Unavailable
Low
Stable
Stable
WR25X10R0FQL (WALSINTECHNOLOGYCORP)
View Details
Constrained
Low
Increase
Stable
TS3USB221RSER (TEXASINSTRUMENTSINC)
View Details
Constrained
Low
Decrease
Stable
0402N102J250CT (WALSINTECHNOLOGYCORP)
View Details
Available
Low
Decrease
Decrease
SRN6045TA-1R0Y (BOURNSINC)
View Details
Available
High
Stable
Stable
C43Q1472M40C000 (XIAMENFARATRONICCOLTD)
View Details
Constrained
Low
Decrease
Increase
AD5328ARUZ-REEL7 (ANALOGDEVICESINC)
View Details
Available
High
Stable
Stable
BCM88370CB0KFSBG (BROADCOMLTD)
View Details
Unavailable
Low
Stable
Increase
DFE252012P-4R7M=P2 (MURATAMANUFACTURINGCOLTD)
View Details
Constrained
Medium
Decrease
Increase
IS43TR16256BL-107MBL-TR (INTEGRATEDSILICONSOLUTIONINC)
View Details

Semiconductors

STANDARD SRAM

Lead time 13 weeks

CYPRESS - INFINEON TECHNOLOGIES - CY62128EV30LL-45SXIT - SRAM, 1MBIT, -40 TO 85DEG C ROHS COMPLIANT: YES

Technical Data
I/O Type COMMON
Technology CMOS
Width (mm) 11.303
Length (mm) 20.4465
JESD-30 Code R-PDSO-G32
Memory Width 8
Package Code SOP
Package Shape RECTANGULAR
Package Style (Meter) SMALL OUTLINE
Surface Mount YES
Terminal Form GULL WING
J-STD-609 Code e4
Memory IC Type STANDARD SRAM
Operating Mode ASYNCHRONOUS
Parallel/Serial PARALLEL
Terminal Finish Nickel/Palladium/Gold (Ni/Pd/Au)
DLA Qualification Not Qualified
Temperature Grade INDUSTRIAL
Terminal Position DUAL
Memory Organization 128KX8
Number of Functions 1
Number of Terminals 32
Terminal Pitch (mm) 1.27
Access Time-Max (ns) 45
Number of Words Code 128K
Memory Density (bits) 1048576
Package Body Material PLASTIC/EPOXY
Output Characteristics 3-STATE
Seated Height-Max (mm) 2.997
Supply Voltage-Max (V) 3.6
Supply Voltage-Min (V) 2.2
Supply Voltage-Nom (V) 3
Number of Words (words) 131072
Standby Current-Max (A) 3.0E-6
Standby Voltage-Min (V) 1.5
Supply Current-Max (mA) 16
Package Equivalence Code SOP32,.56
Moisture Sensitivity Level 3
Peak Reflow Temperature (Cel) 260
Operating Temperature-Max (Cel) 85
Operating Temperature-Min (Cel) -40
Time@Peak Reflow Temperature-Max (s) 20

Submit request

CONTACT REASON

Connect with us

Sourceability North America, LLC

9715 Burnet Rd, Ste 200
Austin, TX 78758-5215

Frequently Asked Questions

What documentation is available for Cypress Semiconductor Corporation CY62128EV30LL-45SXIT?

You can download the user manual and technical specifications for Cypress Semiconductor Corporation CY62128EV30LL-45SXIT in the documentation section.

What are the key features of Cypress Semiconductor Corporation CY62128EV30LL-45SXIT?

CYPRESS - INFINEON TECHNOLOGIES - CY62128EV30LL-45SXIT - SRAM, 1MBIT, -40 TO 85DEG C ROHS COMPLIANT: YES

How does Cypress Semiconductor Corporation CY62128EV30LL-45SXIT contribute to energy efficiency?

As part of the category Semiconductors and subcategory Semiconductors, CY62128EV30LL-45SXIT optimizes energy distribution in electronic devices. Its CYPRESS - INFINEON TECHNOLOGIES - CY62128EV30LL-45SXIT - SRAM, 1MBIT, -40 TO 85DEG C ROHS COMPLIANT: YES allows minimizing losses and increasing the overall system efficiency.

Why is CY62128EV30LL-45SXIT suitable for complex power management systems?

As a component of the subcategory Semiconductors, CY62128EV30LL-45SXIT ensures stable output voltage even when the load changes. Its CYPRESS - INFINEON TECHNOLOGIES - CY62128EV30LL-45SXIT - SRAM, 1MBIT, -40 TO 85DEG C ROHS COMPLIANT: YES makes it a reliable element in multi-level power systems.