1075-1 TRANSISTOR MOTOROLA Search Results
1075-1 TRANSISTOR MOTOROLA Result Highlights (5)
Part | ECAD Model | Manufacturer | Description | Download | Buy |
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2SC6026MFV |
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NPN Bipolar Transistor / VCEO=50 V / IC=0.15 A / hFE=120~400 / VCE(sat)=0.25 V / SOT-723 |
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TTC5886A |
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NPN Bipolar Transistor / VCEO=50 V / IC=5 A / hFE=400~1000 / VCE(sat)=0.22 V / tf=120 ns / New PW-Mold |
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TTA2097 |
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PNP Bipolar Transistor / VCEO=-50 V / IC=-5 A / hFE=200~500 / VCE(sat)=-0.27 V / tf=60 ns / New PW-Mold |
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TPCP8515 |
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NPN Bipolar Transistor / VCEO=12 V / IC=5 A / hFE=250~500 / VCE(sat)=0.14 V / tf=50 ns / PS-8 |
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TTC021 |
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NPN Bipolar Transistor / VCEO=120 V / IC=3 A / hFE=120~240 / VCE(sat)=0.15 V / tf=170 ns / PW-Mini |
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1075-1 TRANSISTOR MOTOROLA Datasheets Context Search
Catalog Datasheet | Type | Document Tags | |
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Contextual Info: MOTOROLA SEMICONDUCTOR TECHNICAL DATA 1:6 D ifferential Clock Distribution Chip M C 10E 211 M C 100E 211 The MC10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be driven by either a differential or single-ended ECL or, if positive power |
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MC10E/100E211 BR1333 | |
transistor E111
Abstract: EE119 important specification of transistor ac 126
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MC10E/100E211 BR1333 transistor E111 EE119 important specification of transistor ac 126 | |
Contextual Info: MOTOROLA SEMICONDUCTOR TECHNICAL DATA 1:6 D ifferential Clock Distribution Chip M C 10E 211 M C 100E 211 The MC10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be driven by either a differential or single-ended ECL or, if positive power |
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MC10E/100E211 BR1333 b3b7252 | |
Contextual Info: MOTOROLA SEMICONDUCTOR TECHNICAL DATA 1:6 Differential Clock Distribution Chip MC10E211 MC100E211 The MC10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be driven by either a differential or single-ended ECL or, if positive power |
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MC10E211 MC100E211 MC10E/100E211 BR1333 b3b7252 | |
KTS14Contextual Info: MOTOROLA SEMICONDUCTOR TECHNICAL DATA 1:6 D ifferential Clock Distribution Chip MC10E211 MC100E211 The MC10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be driven by either a differential or single-ended ECL or, if positive power |
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MC10E/100E211 BR1333 KTS14 | |
Contextual Info: MOTOROLAn0T0R0LA SC tLOCIC bflE D • b3b7252 00^5250 3bfi « n o m SEMICONDUCTOR TECHNICAL DATA M C 10E 211 M C 100E 211 1:6 Differential Clock Distribution Chip The MC10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be |
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b3b7252 MC10E/100E211 BR1333 | |
c10eContextual Info: MOTOROLA SEMICONDUCTOR TECHNICAL DATA 1:6 Differential Clock Distribution Chip M C 10E211 M C 100E211 The M C10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be driven by e ither a differential or single-ended ECL or, if positive power |
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C10E/100E211 DL140 c10e | |
transistor E111Contextual Info: b & r J> MOTOROLA SEMICONDUCTOR m MOTOROLA TECHNICAL DATA b3b72S2 DDTMTTb <141 « M O T H SC L O G I C 1 MC10E211 M C100E211 1:6 Differential Clock Distribution Chip The MC10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be |
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b3b72S2 MC10E211 C100E211 MC10E/100E211 transistor E111 | |
Contextual Info: MOTOROLA SEMICONDUCTOR TECHNICAL DATA 1:6 Differential Clock Distribution Chip MC10E211 MC100E211 The MC10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be driven by either a differential or single-ended ECL or, if positive power |
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MC10E211 MC100E211 MC10E/100E211 DL140 MC10E211/D* MC10E211/D | |
Contextual Info: MOTOROLA SEMICONDUCTOR TECHNICAL DATA 1:6 Differential Clock Distribution Chip MC10E211 MC100E211 The MC10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be driven by either a differential or single-ended ECL or, if positive power |
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MC10E211 MC100E211 MC10E/100E211 DL140 MC10E211/D* MC10E211/D | |
DL140
Abstract: E211 MC100E211 MC10E211 transistor E111
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MC10E211 MC100E211 MC10E/100E211 DL140 MC10E211/D* MC10E211/D E211 MC100E211 MC10E211 transistor E111 | |
Contextual Info: ED R E S U ATU C FO E FE SU S I Gary Zhang, Sabah Khesbak, Anil Agarwal, and San Chin T he first official shift in communication systems from fixed-location devices to portable/mobile devices happened in 1973 when Martin Cooper, general manager of Motorola’s Communications Systems Division at the time, placed the first mobile call from a New |
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diode jn7
Abstract: UAA1041 C33193 1074 GE FLASHER RELAY UAA1041B flash lamp structure
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C33193 MC33193 UAA1041 UAA1041 UAA1041B MC33193 5S47k diode jn7 C33193 1074 GE FLASHER RELAY flash lamp structure | |
Contextual Info: M OTOROLA SEMICONDUCTOR TECHNICAL DATA 1:6 Differential Clock Distribution Chip M C 10E211 M C 100E211 The MC10E/100E211 is a low skew 1:6 fanout device designed explicitly for low skew clock distribution applications. The device can be driven by either a differential or single-ended ECL or, if positive power supplies are |
OCR Scan |
10E211 100E211 MC10E/100E211 DL140 | |
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Contextual Info: 19-2657; Rev 3; 9/04 ±15V, 128-Tap, Low-Drift Digital Potentiometers The MAX5436–MAX5439 are 128-tap high-voltage ±5V to ±15V digital potentiometers in packages that are half the size of comparable devices in 8-pin SO. They perform the same function as mechanical potentiometers, but |
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128-Tap, MAX5436â MAX5439 128-tap MAX5439 | |
MAX5436
Abstract: MAX5436EUB MAX5437EUD MAX5438EUB MAX5439
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128-Tap, MAX5436 MAX5439 128-tap MAX5439 MAX5436EUB MAX5437EUD MAX5438EUB | |
MAX5436
Abstract: MAX5437EUD MAX5436EUB MAX5438EUB MAX5439
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128-Tap, MAX5437/MAX5439) 35ppm/ 10-Pin MAX5436/MAX5438) 14-Pin 50k/100k MAX5436EUB MAX5436 MAX5437EUD MAX5436EUB MAX5438EUB MAX5439 | |
Contextual Info: 19-2657; Rev 1; 9/03 ±15V, 128-Tap, Low-Drift Digital Potentiometers Features ♦ +10V to +30V Single-Supply Operation ♦ -28V to -10V Single Negative Supply Operation ♦ ±5V to ±15V Dual-Supply Operation ♦ 128 Tap Positions ♦ Uncommitted High-Voltage Amplifier |
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128-Tap, MAX5436 MAX5439 128-tap | |
MAX5436
Abstract: MAX5436EUB MAX5437EUD MAX5438EUB MAX5439
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128-Tap, MAX5437/MAX5439) 35ppm/ 10-Pin MAX5436/MAX5438) 14-Pin 50k/100k MAX5436EUB MAX5436 MAX5436EUB MAX5437EUD MAX5438EUB MAX5439 | |
MAX5436
Abstract: MAX5436-MAX5439 Max5439 MAX5436EUB MAX5437EUD MAX5438EUB
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128-Tap, MAX5437/MAX5439) 35ppm/ 10-Pin MAX5436/MAX5438) 14-Pin 50k/100k MAX5436EUB MAX5436 MAX5436-MAX5439 Max5439 MAX5436EUB MAX5437EUD MAX5438EUB | |
MC10E1651
Abstract: MC10E1651FN MC10E1651L
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MC10E1651 MC10E1651 16-pin 20-pin MC10E1651/D MC10E1651FN MC10E1651L | |
Contextual Info: MC10E1651 5V, −5V Dual ECL Output Comparator with Latch The MC10E1651 is fabricated using ON Semiconductor’s advanced MOSAIC III process. The MC10E1651 incorporates a fixed level of input hysteresis as well as output compatibility with 10 KH logic devices. In addition, a latch is available allowing a sample |
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MC10E1651 16-pin 20-pin MC10E1651/D | |
sm 0038 ir receiver
Abstract: MCR 106-8 transistor washing machine ladder diagram diagram rice cooker sharp keypad 4x4 scanning ir sensor sm 0038 TRANSISTOR mcr 100-6 Lm324 window comparator motorola organ circuit motorola mc6805 development board
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AN-HK-22/H MC68HC05SR3 MC68HC705SR3 AN-HK-22/H sm 0038 ir receiver MCR 106-8 transistor washing machine ladder diagram diagram rice cooker sharp keypad 4x4 scanning ir sensor sm 0038 TRANSISTOR mcr 100-6 Lm324 window comparator motorola organ circuit motorola mc6805 development board | |
Contextual Info: MC10E1652 5V, −5V ECL Dual ECL Output Comparator with Latch The MC10E1652 is fabricated using ON Semiconductor’s advanced MOSAIC IIIt process and is output compatible with 10H logic devices. In addition, the device is available in both a 16-pin DIP and a |
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MC10E1652 MC10E1652 16-pin 20-pin MC10E1652/D |