Analog Devices Inc. ADSP-2189NBCA-320
- Part Number:
- ADSP-2189NBCA-320
- Manufacturer:
- Analog Devices Inc.
- Ventron No:
- 3631903-ADSP-2189NBCA-320
- Description:
- IC DSP 16BIT 80MHZ 144CSBGA
- Datasheet:
- ADSP-2189NBCA-320
Analog Devices Inc. ADSP-2189NBCA-320 technical specifications, attributes, parameters and parts with similar specifications to Analog Devices Inc. ADSP-2189NBCA-320.
- Mounting TypeSurface Mount
- Package / Case144-LFBGA, CSPBGA
- Surface MountYES
- Operating Temperature-40°C~85°C TA
- PackagingTray
- SeriesADSP-21xx
- JESD-609 Codee0
- Pbfree Codeno
- Part StatusObsolete
- Moisture Sensitivity Level (MSL)3 (168 Hours)
- Number of Terminations144
- ECCN Code3A991.A.2
- Terminal FinishTin/Lead/Silver (Sn/Pb/Ag)
- HTS Code8542.31.00.01
- SubcategoryDigital Signal Processors
- TechnologyCMOS
- Terminal PositionBOTTOM
- Terminal FormBALL
- Peak Reflow Temperature (Cel)240
- Supply Voltage1.8V
- Terminal Pitch0.8mm
- Reach Compliance Codenot_compliant
- Reflow Temperature-Max (s)30
- Base Part NumberADSP-2189
- Pin Count144
- JESD-30 CodeS-PBGA-B144
- Qualification StatusNot Qualified
- Supply Voltage-Max (Vsup)1.89V
- Power Supplies2/3.3V
- Supply Voltage-Min (Vsup)1.71V
- InterfaceHost Interface, Serial Port
- Clock Frequency40MHz
- Bit Size16
- Address Bus Width14
- Boundary ScanNO
- Low Power ModeYES
- External Data Bus Width24
- RAM (words)49152
- Voltage - I/O1.8V 2.5V 3.3V
- Barrel ShifterYES
- Internal Bus ArchitectureMULTIPLE
- Non-Volatile MemoryExternal
- Voltage - Core1.90V
- On Chip Data RAM192kB
- Source Url Status Check Date2013-05-01 14:56:48.858
- Clock Rate80MHz
- Height Seated (Max)1.4mm
- Length10mm
- Width10mm
- RoHS StatusNon-RoHS Compliant
ADSP-2189NBCA-320 Overview
Surface mount technology, also known as SMT, has become a popular choice for mounting electronic components onto printed circuit boards. This mounting type, denoted by the abbreviation "SMT", is commonly used in the manufacturing of CMOS technology. The JESD-609 code for this technology is "e0", indicating its compliance with industry standards. Additionally, this technology is also environmentally friendly as it is Pbfree, meaning it does not contain any lead. The supply voltage for SMT is typically 1.8V, with a pin count of 144 and an address bus width of 14. While it does not support boundary scan, it does have a barrel shifter, making it a versatile choice for various applications. The voltage for the core of this technology is 1.90V, ensuring efficient and reliable performance.
ADSP-2189NBCA-320 Features
Supplied in the 144-LFBGA, CSPBGA package
ADSP-2189NBCA-320 Applications
There are a lot of Analog Devices Inc. ADSP-2189NBCA-320 DSP applications.
Computer vision technology
Remote sensing image processing technology
Seismology
Tomography technology
Digital communications
Airplanes
Control systems
Speech processing and recognition
Monitoring equipment
Consumer electronic gadgets
Surface mount technology, also known as SMT, has become a popular choice for mounting electronic components onto printed circuit boards. This mounting type, denoted by the abbreviation "SMT", is commonly used in the manufacturing of CMOS technology. The JESD-609 code for this technology is "e0", indicating its compliance with industry standards. Additionally, this technology is also environmentally friendly as it is Pbfree, meaning it does not contain any lead. The supply voltage for SMT is typically 1.8V, with a pin count of 144 and an address bus width of 14. While it does not support boundary scan, it does have a barrel shifter, making it a versatile choice for various applications. The voltage for the core of this technology is 1.90V, ensuring efficient and reliable performance.
ADSP-2189NBCA-320 Features
Supplied in the 144-LFBGA, CSPBGA package
ADSP-2189NBCA-320 Applications
There are a lot of Analog Devices Inc. ADSP-2189NBCA-320 DSP applications.
Computer vision technology
Remote sensing image processing technology
Seismology
Tomography technology
Digital communications
Airplanes
Control systems
Speech processing and recognition
Monitoring equipment
Consumer electronic gadgets
ADSP-2189NBCA-320 More Descriptions
Digital Signal Processors & Controllers - DSP, DSC 16B 75 MIPS 2.5V 2 Serial Prts Host Prt
Digital Signal Processor, 24-Ext Bit, 33MHz, CMOS, PQFP100
DSP Fixed-Point 16bit 80MHz 80MIPS 144-Pin CSP-BGA
The ADSP-218xN series consists of six single chip microcomputers optimized for digital signal processing applications. All series members are pin-compatible and are differentiated solely by the amount of on-chip SRAM. This feature combined with ADSP-21xx code compatibility provide a great deal of flexibility in the design decision. The ADSP-218xN series offers products from 2 MBits of SRAM to $3.50. Specifically, the series members are - ADSP-2184N (4K PM/4K DM) ADSP-2186N (8K PM/8K DM) ADSP-2185N (16K PM/16K DM) ADSP-2187N (32K PM/32K DM) ADSP-2189N (32K PM/48K DM) ADSP-2188N (48K PM/56K DM) The ADSP-218xN series offers the highest performance (80Mhz/MIPS) and lowest power consumption (0.55mW/MIP @ 1.8V) within the ADSP-218x portfolio. All series members are offered in a 100-lead LQFP and 144-Ball MBGA packages.
Digital Signal Processor, 24-Ext Bit, 33MHz, CMOS, PQFP100
DSP Fixed-Point 16bit 80MHz 80MIPS 144-Pin CSP-BGA
The ADSP-218xN series consists of six single chip microcomputers optimized for digital signal processing applications. All series members are pin-compatible and are differentiated solely by the amount of on-chip SRAM. This feature combined with ADSP-21xx code compatibility provide a great deal of flexibility in the design decision. The ADSP-218xN series offers products from 2 MBits of SRAM to $3.50. Specifically, the series members are - ADSP-2184N (4K PM/4K DM) ADSP-2186N (8K PM/8K DM) ADSP-2185N (16K PM/16K DM) ADSP-2187N (32K PM/32K DM) ADSP-2189N (32K PM/48K DM) ADSP-2188N (48K PM/56K DM) The ADSP-218xN series offers the highest performance (80Mhz/MIPS) and lowest power consumption (0.55mW/MIP @ 1.8V) within the ADSP-218x portfolio. All series members are offered in a 100-lead LQFP and 144-Ball MBGA packages.
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