No. | parte # | Fabricante | Descripción | Hoja de Datos |
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ETC |
(M57793 - M57797H) High Frequency Device |
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Texas Instruments |
microprocessor 1 • Arm® Cortex®-A15 microprocessor subsystem • C66x floating-point VLIW DSP cores – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 512KB of on-chip L3 RAM • Level 3 (L3) and l |
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Texas Instruments |
microprocessor 1 • Arm® Cortex®-A15 microprocessor subsystem • C66x floating-point VLIW DSP cores – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 512KB of on-chip L3 RAM • Level 3 (L3) and l |
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Texas Instruments |
microprocessor 1 • Arm® Cortex®-A15 microprocessor subsystem • C66x floating-point VLIW DSP – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 512KB of on-chip L3 RAM • Level 3 (L3) and Level 4 |
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Texas Instruments |
microprocessor 1 • Dual Arm® Cortex®-A15 microprocessor subsystem • Up to two C66x floating-point VLIW DSP cores – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 2.5MB of on-chip L3 RAM • Two |
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ETC |
TINY CONTROLLER-BASED SOUND PROCESSOR Single power supply 2.4 V ~ 5 V. Wide range of ROMs : EM57001 - 10Kx10 bits, EM57100 - 16Kx10 bits, EM57200 - 32Kx10 bits, EM57300 - 64Kx10 bits, EM57400 - 128Kx10 bits, EM57500 - 256Kx10 bits, EM57600 - 512Kx10 bits, EM57700 - 1024Kx10 bits. O |
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ETC |
TINY CONTROLLER-BASED SOUND PROCESSOR Single power supply 2.4 V ~ 5 V. Wide range of ROMs : EM57001 - 10Kx10 bits, EM57100 - 16Kx10 bits, EM57200 - 32Kx10 bits, EM57300 - 64Kx10 bits, EM57400 - 128Kx10 bits, EM57500 - 256Kx10 bits, EM57600 - 512Kx10 bits, EM57700 - 1024Kx10 bits. O |
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ETC |
(M57793 - M57797H) High Frequency Device |
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|
|
Texas Instruments |
microprocessor 1 • Dual Arm® Cortex®-A15 microprocessor subsystem • Up to 2 C66x floating-point VLIW DSP – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 2.5MB of on-chip L3 RAM • Two DDR3/DD |
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Texas Instruments |
microprocessor 1 • Dual Arm® Cortex®-A15 microprocessor subsystem • Up to 2 C66x floating-point VLIW DSP – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 2.5MB of on-chip L3 RAM • Two DDR3/DD |
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Texas Instruments |
microprocessor 1 • Dual Arm® Cortex®-A15 microprocessor subsystem • Up to two C66x floating-point VLIW DSP cores – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 2.5MB of on-chip L3 RAM • Two |
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ETC |
TINY CONTROLLER-BASED SOUND PROCESSOR Single power supply 2.4 V ~ 5 V. Wide range of ROMs : EM57001 - 10Kx10 bits, EM57100 - 16Kx10 bits, EM57200 - 32Kx10 bits, EM57300 - 64Kx10 bits, EM57400 - 128Kx10 bits, EM57500 - 256Kx10 bits, EM57600 - 512Kx10 bits, EM57700 - 1024Kx10 bits. O |
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ETC |
TINY CONTROLLER-BASED SOUND PROCESSOR Single power supply 2.4 V ~ 5 V. Wide range of ROMs : EM57001 - 10Kx10 bits, EM57100 - 16Kx10 bits, EM57200 - 32Kx10 bits, EM57300 - 64Kx10 bits, EM57400 - 128Kx10 bits, EM57500 - 256Kx10 bits, EM57600 - 512Kx10 bits, EM57700 - 1024Kx10 bits. O |
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ETC |
TINY CONTROLLER-BASED SOUND PROCESSOR Single power supply 2.4 V ~ 5 V. Wide range of ROMs : EM57001 - 10Kx10 bits, EM57100 - 16Kx10 bits, EM57200 - 32Kx10 bits, EM57300 - 64Kx10 bits, EM57400 - 128Kx10 bits, EM57500 - 256Kx10 bits, EM57600 - 512Kx10 bits, EM57700 - 1024Kx10 bits. O |
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ETC |
TINY CONTROLLER-BASED SOUND PROCESSOR Single power supply 2.4 V ~ 5 V. Wide range of ROMs : EM57001 - 10Kx10 bits, EM57100 - 16Kx10 bits, EM57200 - 32Kx10 bits, EM57300 - 64Kx10 bits, EM57400 - 128Kx10 bits, EM57500 - 256Kx10 bits, EM57600 - 512Kx10 bits, EM57700 - 1024Kx10 bits. O |
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ETC |
(M57793 - M57797H) High Frequency Device |
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ETC |
Encoder / Decoder - Two-wire control bus kodowania, który charakteryzuje się możliwie dużą ilością kombinacji. Dotychczas związane to było z poważną rozbudową towarzyszących układów elektronicznych, teraz to zadanie radykalnie upraszcza się przez zastosowanie MM57410. Układ ten, jak wspomn |
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Texas Instruments |
microprocessor 1 • Dual Arm® Cortex®-A15 microprocessor subsystem • Up to 2 C66x floating-point VLIW DSP – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 2.5MB of on-chip L3 RAM • Two DDR3/DD |
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Texas Instruments |
microprocessor 1 • Arm® Cortex®-A15 microprocessor subsystem • C66x floating-point VLIW DSP – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 512KB of on-chip L3 RAM • Level 3 (L3) and Level 4 |
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Texas Instruments |
microprocessor 1 • Dual Arm® Cortex®-A15 microprocessor subsystem • Up to two C66x floating-point VLIW DSP cores – Fully object-code compatible with C67x and C64x+ – Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle • Up to 2.5MB of on-chip L3 RAM • Two |
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