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| Image | Part Number | Manufacturer | Description | Series | Packaging | Mounting Type | Package / Case | Base Part Number | Supplier Device Package | Voltage - Input | Programmable Type | Speed |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| OMAP3515DCUS72 | N/A | IC MPU OMAP-35XX 720MHZ 423FCBGA | OMAP-35xx | Tray | - | 423-LFBGA, FCBGA | OMAP3515 | 423-FCBGA (16x16) | - | - | 720MHz | |
| MC9328MXLVP15 | NXP Semiconductors / Freescale | IC MPU I.MXL 150MHZ 225MAPBGA | i.MXL | Tray | - | 225-LFBGA | MC9328MXL | 225-MAPBGA (13x13) | - | - | 150MHz | |
| P1010NSN5KHB | NXP Semiconductors / Freescale | IC MPU Q OR IQ 1.0GHZ 425TEBGA | QorIQ P1 | Tray | - | 425-FBGA | P1010 | 425-TEPBGA I (19x19) | - | - | 1.0GHz | |
| MC68EC040RC20A | NXP Semiconductors / Freescale | IC MPU M680X0 20MHZ 179PGA | M680x0 | Tray | - | 179-BPGA | MC68EC040 | 179-PGA (47.24x47.24) | - | - | 20MHz | |
| MPC8349EZUAGDB | NXP Semiconductors / Freescale | IC MPU MPC83XX 400MHZ 672TBGA | MPC83xx | Tray | - | 672-LBGA | MPC8349 | 672-TBGA (35x35) | - | - | 400MHz | |
| KMPC8358EZQAGDDA | NXP Semiconductors / Freescale | IC MPU MPC83XX 400MHZ 668BGA | MPC83xx | Tray | - | 668-BBGA Exposed Pad | MPC8358 | 668-PBGA-PGE (29x29) | - | - | 400MHz | |
| MC8640DHX1067NE | NXP Semiconductors / Freescale | IC MPU MPC86XX 1.067GHZ 1023BGA | MPC86xx | Tray | - | 1023-BCBGA, FCCBGA | MC8640 | 1023-FCCBGA (33x33) | - | - | 1.067GHz | |
| KMPC8255AVVPIBB | NXP Semiconductors / Freescale | IC MPU MPC82XX 300MHZ 480TBGA | MPC82xx | Tray | - | 480-LBGA Exposed Pad | PC8255 | 480-TBGA (37.5x37.5) | - | - | 300MHz | |
| IDT79RV4640-200DUG | IDT (Integrated Device Technology) | IC MPU MIPS-I 200MHZ 128QFP | - | Tray | - | 128-BQFP | IDT79RV4640 | 128-PQFP (28x28) | - | - | 200MHz | |
| T1042NSE7PQB | NXP Semiconductors / Freescale | IC SOC 4CORE 1400MHZ 780FCBGA | QorIQ T1 | Bulk | - | 780-FBGA, FCBGA | - | 780-FCPBGA (23x23) | - | - | 1.4GHz |
Microprocessors are integrated circuits that contain a central processing unit (CPU) along with other components such as memory, input/output interfaces, and control logic. They are the heart of most computing devices, including computers, smartphones, tablets, and embedded systems. Microprocessors execute instructions stored in memory to perform arithmetic, logic, and control functions, enabling the operation of software applications and the execution of user tasks. They come in various architectures and instruction sets tailored to specific applications, ranging from low-power microcontrollers for embedded systems to high-performance processors for desktop computers and servers. Microprocessors play a crucial role in modern electronics, driving innovation and enabling advanced computing capabilities in a wide range of devices and applications.