LC6.5 – LC170A Available 1500 Watt Low Capacit.
MC14LC5447 - Calling Line Identification(CLID) Receiver with Ring Detector
MOTOROLA SEMICONDUCTOR TECHNICAL DATA Order this document by MC14LC5447/D Product Preview Calling Line Identification (CLID) Receiver with Ring Det.TMS320LC543 - Floating-Point Digital Signal Processor
TMS320C54x, TMS320LC54x, TMS320VC54x FIXED-POINT DIGITAL SIGNAL PROCESSORS D Advanced Multibus Architecture With Three Separate 16-Bit Data Memory Bu.TMS320LC545 - Floating-Point Digital Signal Processor
TMS320C54x, TMS320LC54x, TMS320VC54x FIXED-POINT DIGITAL SIGNAL PROCESSORS D Advanced Multibus Architecture With Three Separate 16-Bit Data Memory Bu.TLC542I - 8-BIT ANALOG-TO-DIGITAL CONVERTERS
D 8-Bit Resolution A/D Converter D Microprocessor Peripheral or Stand-Alone Operation D On-Chip 12-Channel Analog Multiplexer D Built-In Self-Test Mod.TLC541I - 8-BIT ANALOG-TO-DIGITAL CONVERTERS
D 8-Bit Resolution A/D Converter D Microprocessor Peripheral or Stand-Alone Operation D On-Chip 12-Channel Analog Multiplexer D Built-In Self-Test Mod.STLC5445 - QUAD LINE FEED CONTROLLER
STLC5445 QUAD LINE FEED CONTROLLER s s s s s s s s s s s s s BATTERY VOLTAGE UP TO 120V SUPPLIES POWER FOR UP TO FOUR DIGITAL TELEPHONE LINES PROGRAM.MC14LC5447 - Calling Line Identification(CLID) Receiver with Ring Detector
MOTOROLA SEMICONDUCTOR TECHNICAL DATA Order this document by MC14LC5447/D Product Preview Calling Line Identification (CLID) Receiver with Ring Det.MC14LC5480 - 5 V PCM Codec-Filter
MOTOROLA SEMICONDUCTOR TECHNICAL DATA Order this document by MC14LC5480/D Advance Information 5 V PCM Codec-Filter The MC14LC5480 is a general purp.LC54A - 1500 Watt Low Capacitance Transient Voltage Suppressor
LC6.5 – LC170A Available 1500 Watt Low Capacitance Transient Voltage Suppressor DESCRIPTION This hermetically sealed Transient Voltage Suppressor (.SMBJ-LC54CA - SURFACE MOUNT LOW CAPACITANCE TRANSIENT VOLTAGE SUPPRESSOR
SMBJ-LC5.0A(CA) - SMBJ-LC188A(CA) SURFACE MOUNT LOW CAPACITANCE TRANSIENT VOLTAGE SUPPRESSOR VOLTAGE RANGE: 5.0 - 18 8 V POWER: 600 Wa t t s Features.TMS320LC541 - Floating-Point Digital Signal Processor
TMS320C54x, TMS320LC54x, TMS320VC54x FIXED-POINT DIGITAL SIGNAL PROCESSORS D Advanced Multibus Architecture With Three Separate 16-Bit Data Memory Bu.TMS320LC542 - Floating-Point Digital Signal Processor
TMS320C54x, TMS320LC54x, TMS320VC54x FIXED-POINT DIGITAL SIGNAL PROCESSORS D Advanced Multibus Architecture With Three Separate 16-Bit Data Memory Bu.TMS320LC545A - Floating-Point Digital Signal Processor
TMS320C54x, TMS320LC54x, TMS320VC54x FIXED-POINT DIGITAL SIGNAL PROCESSORS D Advanced Multibus Architecture With Three Separate 16-Bit Data Memory Bu.TMS320LC545B - Floating-Point Digital Signal Processor
TMS320C54x, TMS320LC54x, TMS320VC54x FIXED-POINT DIGITAL SIGNAL PROCESSORS D Advanced Multibus Architecture With Three Separate 16-Bit Data Memory Bu.TMS320LC546 - Floating-Point Digital Signal Processor
TMS320C54x, TMS320LC54x, TMS320VC54x FIXED-POINT DIGITAL SIGNAL PROCESSORS D Advanced Multibus Architecture With Three Separate 16-Bit Data Memory Bu.TMS320LC546B - Floating-Point Digital Signal Processor
TMS320C54x, TMS320LC54x, TMS320VC54x FIXED-POINT DIGITAL SIGNAL PROCESSORS D Advanced Multibus Architecture With Three Separate 16-Bit Data Memory Bu.TMS320LC548 - Floating-Point Digital Signal Processor
TMS320C54x, TMS320LC54x, TMS320VC54x FIXED-POINT DIGITAL SIGNAL PROCESSORS D Advanced Multibus Architecture With Three Separate 16-Bit Data Memory Bu.TLC549I - 8-BIT ANALOG-TO-DIGITAL CONVERTERS
D Microprocessor Peripheral or Standalone Operation D 8-Bit Resolution A/D Converter D Differential Reference Input Voltages D Conversion Time . . . 1.TLC549C - 8-BIT ANALOG-TO-DIGITAL CONVERTERS
D Microprocessor Peripheral or Standalone Operation D 8-Bit Resolution A/D Converter D Differential Reference Input Voltages D Conversion Time . . . 1.TLC548I - 8-BIT ANALOG-TO-DIGITAL CONVERTERS
D Microprocessor Peripheral or Standalone Operation D 8-Bit Resolution A/D Converter D Differential Reference Input Voltages D Conversion Time . . . 1.