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Jul 23 2020

ADSP-21489BSWZ-4A Datasheets | Embedded - DSP (Digital Signal Processors) IC CCD SIGNAL PROCESSOR 100LQFP

Product Overview

Image:
ADSP-21489BSWZ-4A
Manufacturer Part#: ADSP-21489BSWZ-4A
Product Category: Embedded - DSP (Digital Signal Processors)
Stock: Yes
Manufacturer: Analog Devices Inc.
Description: IC CCD SIGNAL PROCESSOR 100LQFP
Datasheet: ADSP-2148x
Package: 100-LQFP Exposed Pad
Minimum: 1
Lead Time: 3(168 Hours)
Quantity: 92 PCS
Send RFQ: Inquiry

Reference Price

Qty Unit Price Ext. Price
1: 28.93000 28.93000
10: 26.68200 266.82000
25: 25.48320 637.08000
100: 21.73550 2173.55000

ADSP-21489BSWZ-4A Images are for reference only.

ADSP-21489BSWZ-4A

CAD Models

Product Attributes

Manufacturer: Analog Devices Inc.
Series: SHARC®
Packaging: Tray
Part Status: Active
Type: Floating Point
Interface: EBI/EMI DAI I²C SPI SPORT UART/USART
Clock Rate: 400MHz
Non-Volatile Memory: External
On-Chip RAM: 5Mbit
Voltage - I/O: 3.30V
Voltage - Core: 1.10V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type: Surface Mount
Package / Case: 100-LQFP Exposed Pad
Supplier Device Package: 100-LQFP-EP (14x14)
Base Part Number: ADSP-21489

Alternative Models

Part Compare Manufacturers Category Description
Mfr.Part#:ADSP-21489BSWZ-4A Compare: Current Part Manufacturers:ADI Category:Digital Signal Processors(DSPs) Description: DSP Floating-Point 32Bit/64Bit 400MHz 400MIPS 100Pin LQFP EP Tray
Mfr.Part#:ADSP-21489BSWZ-3A Compare: ADSP-21489BSWZ-4A VS ADSP-21489BSWZ-3A Manufacturers:ADI Category:Digital Signal Processors(DSPs) Description: DSP Floating-Point 32Bit/64Bit 350MHz 350MIPS 100Pin LQFP EP Tray
Mfr.Part#:ADSP-21478KSWZ-1A Compare: ADSP-21489BSWZ-4A VS ADSP-21478KSWZ-1A Manufacturers:ADI Category:Digital Signal Processors(DSPs) Description: DSP Floating-Point 32Bit 200MHz 200MIPS 100Pin LQFP EP Tray
Mfr.Part#:ADSP-21479BSWZ-2A Compare: ADSP-21489BSWZ-4A VS ADSP-21479BSWZ-2A Manufacturers:ADI Category:Digital Signal Processors(DSPs) Description: DSP Floating-Point 32Bit 266MHz 266MIPS 100Pin LQFP EP Tray

Descriptions

DSP Floating-Point 32-Bit/64-Bit 400MHz 400MIPS 100-Pin LQFP EP Tray:Chip One Stop Global
IC CCD SIGNAL PROCESSOR 100LQFP:Digi-Key
Dsp, 32/40Bit, 400Mhz, Lqfp-100:Newark
The SHARC ADSP-21489 is one of two new members of the fourth generation of SHARC® Processors that now includes the ADSP-21483, ADSP-21486, ADSP-21487, ADSP-21488, ADSP-21489 and offers increased performance, hardware-based filter accelerators, audio and application-focused peripherals, and new memory configurations capable of supporting the latest surround-sound decoder algorithms. All devices are pin-compatible with each other and completely code-compatible with all prior SHARC Processors. These newest members of the fourth generation SHARC Processor family are based on a single-instruction, multiple-data (SIMD) core, which supports both 32-bit fixed-point and 32-/40-bit floating-point arithmetic formats making them particularly suitable for high-performance audio applications. The ADSP-21489 offers the highest performance–450 MHz/2700 MFLOPs–in an LQFP package within the fourth generation SHARC Processor family. This level of performance makes the ADSP-21489 particularly well suited to address the automotive audio and industrial control segments. In addition to its high core performance, the ADSP-21489 includes additional processing blocks such as FIR, IIR, and FFT accelerators to increase the total performance of the system. There is a new feature called Variable Instruction Set Architecture (VISA) that allows the code size to be decreased by 20% to 30% and increase the memory size availability. The fourth generation DSP allows the ability to connect to external memory by providing a glueless interface to 16-bit wide SDR SDRAMs. Fourth-generation SHARC Processors also integrate application-specific peripherals designed to simplify hardware design, minimize design risks, and ultimately reduce time to market. Grouped together, and broadly named the Digital Applications Interface (DAI), these functional blocks may be connected to each other or to external pins via the software-programmable Signal Routing Unit (SRU). The SRU is an innovative architectural feature that enables complete and flexible routing amongst DAI blocks. Peripherals connected through the SRU include but are not limited to serial ports, IDP, S/PDIF Tx/Rx, and an 8-Channel asynchronous sample rate converter block. The fourth generation SHARC allows data from the serial ports to be directly transferred to external memory by the DMA controller. Other peripherals such as SPI,UART and Two-Wire Interface are routed through a Digital Peripheral Interface (DPI).:Analog Devices

ECCN / UNSPSC

Description Value
USHTS: 8542310001
CNHTS: 8542319000
MXHTS: 85423102
TARIC: 8542319000
ECCN: 3A991.a.2

Environmental & Export Classifications

Description Value
RoHS Status: ROHS3 Compliant
Moisture Sensitivity Level (MSL): 3 (168 Hours)

Popularity by Region

  • 1. El Salvador
    100
  • 2. China
    94
  • 3. Svalbard and Jan Mayen
    93
  • 4. Colombia
    93
  • 5. Cameroon
    90
  • 6. United States
    88
  • 7. Costa Rica
    88
  • 8. United Arab Emirates
    88
  • 9. Denmark
    87
  • 10. Qatar
    87
  • 11. Lesotho
    86
  • 12. India
    86
  • 13. ALA
    86
  • 14. New Zealand
    85
  • 15. Saint Kitts and Nevis
    85
  • 16. Norway
    85
  • 17. Luxembourg
    84
  • 18. South Korea
    84
  • 19. Sweden
    84
  • 20. United Kingdom
    83
  • 21. Thailand
    82
  • 22. Vietnam
    82
  • 23. Myanmar
    82
  • 24. Malaysia
    81
  • 25. Bulgaria
    81
  • 26. Taiwan
    81
  • 27. Eritrea
    80
  • 28. Netherlands
    80
  • 29. Czech Republic
    80
  • 30. Guam
    80
  • 31. Spain
    79
  • 32. Estonia
    79
  • 33. Poland
    79
  • 34. South Africa
    78
  • 35. Switzerland
    78
  • 36. Latvia
    78
  • 37. Hungary
    77
  • 38. Austria
    77
  • 39. Nigeria
    77
  • 40. Ireland
    77
  • 41. Russia
    77
  • 42. Panama
    77
  • 43. Sri Lanka
    76
  • 44. Philippines
    76
  • 45. France
    76
  • 46. Japan
    76
  • 47. Slovenia
    76
  • 48. Indonesia
    76
  • 49. Chile
    76
  • 50. Hong Kong
    75
  • 51. Portugal
    75
  • 52. Malta
    75
  • 53. Israel
    75
  • 54. Pakistan
    74
  • 55. Jordan
    74
  • 56. Slovakia
    74
  • 57. Mexico
    74
  • 58. Saudi Arabia
    74
  • 59. Singapore
    74
  • 60. Romania
    73
  • 61. Germany
    73
  • 62. Belarus
    73
  • 63. Canada
    73
  • 64. Egypt
    73
  • 65. Australia
    73
  • 66. Turkey
    73
  • 67. Belgium
    72
  • 68. Brazil
    72
  • 69. Argentina
    72
  • 70. Peru
    72
  • 71. Tunisia
    72
  • 72. Isle of Man
    72
  • 73. Trinidad and Tobago
    72
  • 74. Finland
    71
  • 75. Italy
    71
  • 76. Serbia
    71
  • 77. Mauritania
    71
  • 78. Lithuania
    71
  • 79. Kyrgyzstan
    69
  • 80. Algeria
    68
  • 81. Ukraine
    64
  • 82. Croatia
    63
  • 83. Kazakhstan
    56
  • 84. Iceland
    48
  • 85. Honduras
    35
  • 86. Macao
    30

ADSP-21489BSWZ-4A Popularity by Region

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  • Product Attributes
  • Descriptions
  • Features
  • CAD Models
Manufacturer: Analog Devices Inc.
Series: SHARC®
Packaging: Tray
Part Status: Active
Type: Floating Point
Interface: EBI/EMI DAI I²C SPI SPORT UART/USART
Clock Rate: 400MHz
Non-Volatile Memory: External
On-Chip RAM: 5Mbit
Voltage - I/O: 3.30V
Voltage - Core: 1.10V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type: Surface Mount
Package / Case: 100-LQFP Exposed Pad
Supplier Device Package: 100-LQFP-EP (14x14)
Base Part Number: ADSP-21489

DSP Floating-Point 32-Bit/64-Bit 400MHz 400MIPS 100-Pin LQFP EP Tray:Chip One Stop Global
IC CCD SIGNAL PROCESSOR 100LQFP:Digi-Key
Dsp, 32/40Bit, 400Mhz, Lqfp-100:Newark
The SHARC ADSP-21489 is one of two new members of the fourth generation of SHARC® Processors that now includes the ADSP-21483, ADSP-21486, ADSP-21487, ADSP-21488, ADSP-21489 and offers increased performance, hardware-based filter accelerators, audio and application-focused peripherals, and new memory configurations capable of supporting the latest surround-sound decoder algorithms. All devices are pin-compatible with each other and completely code-compatible with all prior SHARC Processors. These newest members of the fourth generation SHARC Processor family are based on a single-instruction, multiple-data (SIMD) core, which supports both 32-bit fixed-point and 32-/40-bit floating-point arithmetic formats making them particularly suitable for high-performance audio applications. The ADSP-21489 offers the highest performance–450 MHz/2700 MFLOPs–in an LQFP package within the fourth generation SHARC Processor family. This level of performance makes the ADSP-21489 particularly well suited to address the automotive audio and industrial control segments. In addition to its high core performance, the ADSP-21489 includes additional processing blocks such as FIR, IIR, and FFT accelerators to increase the total performance of the system. There is a new feature called Variable Instruction Set Architecture (VISA) that allows the code size to be decreased by 20% to 30% and increase the memory size availability. The fourth generation DSP allows the ability to connect to external memory by providing a glueless interface to 16-bit wide SDR SDRAMs. Fourth-generation SHARC Processors also integrate application-specific peripherals designed to simplify hardware design, minimize design risks, and ultimately reduce time to market. Grouped together, and broadly named the Digital Applications Interface (DAI), these functional blocks may be connected to each other or to external pins via the software-programmable Signal Routing Unit (SRU). The SRU is an innovative architectural feature that enables complete and flexible routing amongst DAI blocks. Peripherals connected through the SRU include but are not limited to serial ports, IDP, S/PDIF Tx/Rx, and an 8-Channel asynchronous sample rate converter block. The fourth generation SHARC allows data from the serial ports to be directly transferred to external memory by the DMA controller. Other peripherals such as SPI,UART and Two-Wire Interface are routed through a Digital Peripheral Interface (DPI).:Analog Devices

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There is no relevant information available for this part yet.