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OMAPL138BZWT4ARM926EJ-S Microprocessor IC OMAP-L1x 1 Core, 32-Bit 456MHz 361-NFBGA (16x16)
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ABRmicro #.ABR694-OMAPL1-403912
ManufacturerTexas Instruments
MPN #.OMAPL138BZWT4
Estimated Lead Time-
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DatasheetOMAP-L138Bx (PDF)
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In Stock: 3
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Min.&Mult.1
Packaging
Tray
Shipping DateDecember 24, 2024
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Technical Specifications
SeriesOMAP-L1x
Packaging
Tray
Lifecycle StatusObsolete
Additional InterfacesHPI, I2C, McASP, McBSP, MMC/SD, SPI, UART
Base Product NumberOMAPL138
Specialized Processors (Co-Processors/DSP)Signal Processing; C674x, System Control; CP15
Core ProcessorARM926EJ-S
Display & Interface ControllersLCD
Ethernet10/100Mbps (1)
Graphics AccelerationNo
Mounting StyleSurface Mount
Number of Cores/Bus Width1 Core, 32-Bit
Operating Temperature0°C ~ 90°C (TJ)
RAM ControllersSDRAM
Serial ATASATA 3Gbps (1)
Security FeaturesBoot Security, Cryptography
Speed456MHz
Package Type (Mfr.)361-NFBGA (16x16)
USB InterfacesUSB 1.1 + PHY (1), USB 2.0 + PHY (1)
I/O Operating Voltage1.8V, 3.3V
Package / Case361-LFBGA
Customize Part Specifications , or Contact Our Sales Representative to Obtain the Data You Desireinfo@Abrmicro.com
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PCN Design/Specification
PCN Obsolescence/ EOL
Environmental & Export Classifications
RoHS ComplianceComplies with RoHS 3 Directive (2015/863/EU)
MSL Level3 (168 Hours, ≤ 30°C/60% RH), Vacuum Sealing
REACH RegulationNo SVHCs Present
US ECCN3A991A2 AT
HTSUS8542.31.0001 (No rates found in the Harmonized Tariff Schedule)
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The OMAPL138BZWT4, manufactured by Texas Instruments, is an integrated ARM926EJ-S microprocessor designed for applications requiring efficient signal processing and system control. It features a single-core architecture with a 32-bit processor operating at a clock speed of 456 MHz, housed in a compact 361-ball NFBGA package measuring 16x16 mm. The microprocessor incorporates a C674x digital signal processor, offering enhanced capabilities for managing complex computations. Additionally, it includes system control functions through the CP15, support for LCD interfacing, and security features such as boot security and cryptography, making it a versatile choice for embedded system designs.
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