PowerPC G4 Microprocessor MPC74xx Series MPC7410 1.8V 360-BCBGA, FCCBGA
SOT-23
MPC7410THX500LE Datasheet
non-compliant
In-Stock: 0 items
Specifications
Name
Value
Type
Parameter
Package / Case
360-BCBGA, FCCBGA
Surface Mount
YES
Operating Temperature
-40°C~105°C TA
Packaging
Tray
Series
MPC74xx
Published
1994
Part Status
Obsolete
Moisture Sensitivity Level (MSL)
1 (Unlimited)
ECCN Code
3A991.A.1
HTS Code
8542.31.00.01
Terminal Position
BOTTOM
Terminal Form
BALL
Supply Voltage
1.8V
Base Part Number
MPC7410
JESD-30 Code
R-PBGA-B
Supply Voltage-Max (Vsup)
1.9V
Supply Voltage-Min (Vsup)
1.7V
Speed
500MHz
uPs/uCs/Peripheral ICs Type
MICROPROCESSOR, RISC
Core Processor
PowerPC G4
Boundary Scan
NO
Low Power Mode
NO
Format
FIXED POINT
Integrated Cache
NO
Voltage - I/O
1.8V 2.5V 3.3V
Number of Cores/Bus Width
1 Core 32-Bit
Graphics Acceleration
No
RoHS Status
Non-RoHS Compliant
MPC7410THX500LE Product Details
MPC7410THX500LE Description
The MPC7410THX500LE Host Processor is a high-performance, low-power, 32-bit processor built on Power Architecture technology with a full 128-bit implementation of Our AltiVec?? technology. This creates a microprocessor ideal for leading-edge computing, embedded network control, and signal processing applications. The MPC7410THX500LE offers the high-bandwidth MPX bus with minimized signal setup times and reduced idle cycles to increase maximum operating frequency to over 100 MHz, in addition to increased address and data bus bandwidth. To maintain compatibility with existing designs, the MPC7410THX500LE also supports the 60x bus protocol. MPC7410THX500LE microprocessors offer single-cycle double-precision floating-point performance, full symmetric multi-processing (SMP) capabilities, and support for up to 2MB of backside L2 cache.
MPC7410THX500LE Features
Two integer units and Double-precision floating-point unit
Vector permute unit
Vector arithmetic logic unit
Load/store unit and System unit
Branch processing unit
Enables faster, more secure encryption methods optimized for the SIMD processing model.