No. |
Part Name |
Description |
Manufacturer |
1951 |
TH-05 |
Selecting and Using High-Speed Track and Hold Amplifiers - Application Note |
Comlinear Corporation |
1952 |
TK2070 |
STEREO 70W (4Ohm) CLASS-T DIGITAL AUDIO AMPLIFIER DRIVER USING DIGITAL POWER PROCESSING (DPP) TECHNOLOGY |
Tripath |
1953 |
TLC0820 |
Advanced LinCMOSE HIGH-SPEED 8-BIT ANALOG-TO-DIGITAL CONVERTERS USING MODIFIED FLASH TECHNIQUES |
Texas Instruments |
1954 |
TLC0820AC |
Advanced LinCMOSE HIGH-SPEED 8-BIT ANALOG-TO-DIGITAL CONVERTERS USING MODIFIED FLASH TECHNIQUES |
Texas Instruments |
1955 |
TLC0820AI |
Advanced LinCMOSE HIGH-SPEED 8-BIT ANALOG-TO-DIGITAL CONVERTERS USING MODIFIED FLASH TECHNIQUES |
Texas Instruments |
1956 |
TLC0820AIDB |
Advanced LinCMOSE HIGH-SPEED 8-BIT ANALOG-TO-DIGITAL CONVERTERS USING MODIFIED FLASH TECHNIQUES |
Texas Instruments |
1957 |
TLC8188CDA |
CIS/CCD SCANNER AFE USING PIPELINE-ARCHITECTURE ADC AT 4MSPS |
Texas Instruments |
1958 |
TLD4011 |
ADSL line driver using tipath's power processing technology, 880 mW power consumption |
Tripath |
1959 |
TLD4013 |
ADSL line driver using tipath's power processing technology, 770 mW power consumption |
Tripath |
1960 |
TLD4014 |
ADSL line driver using tipath's power processing technology, 620 mW power consumption |
Tripath |
1961 |
TPS61150A |
Dual Output Boost WLED Driver Using Single Inductor 10-VSON -40 to 85 |
Texas Instruments |
1962 |
TPS61150ADRCR |
Dual Output Boost WLED Driver Using Single Inductor 10-VSON -40 to 85 |
Texas Instruments |
1963 |
TPS61150ADRCRG4 |
Dual Output Boost WLED Driver Using Single Inductor 10-VSON -40 to 85 |
Texas Instruments |
1964 |
TPS61150ADRCT |
Dual Output Boost WLED Driver Using Single Inductor 10-VSON -40 to 85 |
Texas Instruments |
1965 |
TPS61150ADRCTG4 |
Dual Output Boost WLED Driver Using Single Inductor 10-VSON -40 to 85 |
Texas Instruments |
1966 |
TPS65149 |
LCD Bias Solution For LCD Panels Using ASG/GIP Technology |
Texas Instruments |
1967 |
TPS65149RSHR |
LCD Bias Solution For LCD Panels Using ASG/GIP Technology 56-VQFN -40 to 85 |
Texas Instruments |
1968 |
TPS65149RSHT |
LCD Bias Solution For LCD Panels Using ASG/GIP Technology 56-VQFN -40 to 85 |
Texas Instruments |
1969 |
TPV593 |
Application Note - 470-860MHz broadband amplifier 5W UHF TV transposer using two TPV593 transistors |
Motorola |
1970 |
TRANSISTORS PACKAGES |
Housing and dimensions of transistors from FERRANTI Halbleiter-Kurzdaten-1977, IN-LINE, TO-18, TO-39, TO-46, TO-72, TO-3, TO-220, SOT-23, Micro-E |
FERRANTI |
1971 |
TWO-POINT MODULATION |
Using Two-Point Modulation to Reduce Synthesizer Problems When Designing DC-Coupled GMSK Modulators |
CONSUMER MICROCIRCUITS LIMITED |
1972 |
U1160 |
small Photocell Glass encapsulated housing |
PerkinElmer Optoelectronics |
1973 |
UCC28740 |
Constant-Voltage, Constant-Current Flyback Controller Using Opto-Coupler Feedback |
Texas Instruments |
1974 |
UCC28740D |
Constant-Voltage, Constant-Current Flyback Controller Using Opto-Coupler Feedback 7-SOIC -40 to 125 |
Texas Instruments |
1975 |
UCC28740DR |
Constant-Voltage, Constant-Current Flyback Controller Using Opto-Coupler Feedback 7-SOIC -40 to 125 |
Texas Instruments |
1976 |
UP2B-681 |
Low-Cost 100 mA High-Voltage Buck and Buck-Boost Using NCP1052 |
ON Semiconductor |
1977 |
UPD65941 |
Channelless type CMOS gate array using 0.35um process |
NEC |
1978 |
UPD65941GA-XXX-9EU |
Channelless type CMOS gate array using 0.35um process |
NEC |
1979 |
UPD65941GB-XXX-YEU |
Channelless type CMOS gate array using 0.35um process |
NEC |
1980 |
UPD65942 |
Channelless type CMOS gate array using 0.35um process |
NEC |
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