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Datasheets for D-RE

Datasheets found :: 244
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No. Part Name Description Manufacturer
181 AGM2464D-RE-YBHT 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
182 AGM2464D-RE-YBS-T 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
183 AGM2464D-RE-YBW-T 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
184 AGM2464D-RE-YBWT 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
185 AGM2464D-RE-YTD-T 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
186 AGM2464D-RE-YTH-T 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
187 AGM2464D-RE-YTHT 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
188 AGM2464D-RE-YTS-T 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
189 AGM2464D-RE-YTW-T 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
190 AGM2464D-RE-YTWT 0.3-7.0V; number of dots: 240 x 64dots; dot size:0.49 x 0.49mm; dot pitch:0.53 x 0.53mm; AZ display AZ Displays
191 ALD105 LD-relay. 1 form slim power relay. Nominal voltage 5 V DC. Matsushita Electric Works(Nais)
192 ALD106 LD-relay. 1 form slim power relay. Nominal voltage 6 V DC. Matsushita Electric Works(Nais)
193 ALD109 LD-relay. 1 form slim power relay. Nominal voltage 9 V DC. Matsushita Electric Works(Nais)
194 ALD112 LD-relay. 1 form slim power relay. Nominal voltage 12 V DC. Matsushita Electric Works(Nais)
195 ALD118 LD-relay. 1 form slim power relay. Nominal voltage 18 V DC. Matsushita Electric Works(Nais)
196 ALD124 LD-relay. 1 form slim power relay. Nominal voltage 24 V DC. Matsushita Electric Works(Nais)
197 HCS410 The HCS410 is a code hopping transponder device designed for secure entry systems. The HCS410 utilizes the patented KEELOQ® code hopping system and bi-directional challenge-and-response for logical and physical access control. High se Microchip
198 HCS412 The HCS412 combines the patented KEELOQ® code hopping technology and bi-directional transponder challenge-and-response security into a single chip solution for logical and physical access control. High security learning mechanisms mak Microchip
199 HCS412-I/P The HCS412 combines the patented KEELOQ® code hopping technology and bi-directional transponder challenge-and-response security ... Microchip
200 HCS412-I/SN The HCS412 combines the patented KEELOQ® code hopping technology and bi-directional transponder challenge-and-response security ... Microchip
201 HCS412/SN The HCS412 combines the patented KEELOQ® code hopping technology and bi-directional transponder challenge-and-response security ... Microchip
202 HCS473 The HCS473 combines the patented KEELOQ® code hopping technology and bi-directional transponder challenge-and-response security into a single chip solution for logical and physical access control. High security learning mechanisms mak Microchip
203 J2N2222AUB1 Rad-Resistant NPN bipolar transistor 40 V, 0.8 A ST Microelectronics
204 JANS2N2222AUBG Rad-Resistant NPN bipolar transistor 40 V, 0.8 A ST Microelectronics
205 JANS2N2222AUBT Rad-Resistant NPN bipolar transistor 40 V, 0.8 A ST Microelectronics
206 JANSR2N2222AUBG Rad-Resistant NPN bipolar transistor 40 V, 0.8 A ST Microelectronics
207 JANSR2N2222AUBT Rad-Resistant NPN bipolar transistor 40 V, 0.8 A ST Microelectronics
208 LM48820 Gnd-Ref, Ultra Low Noise, Fixed Gain, 95mW Stereo Headphone Amp Texas Instruments
209 LM48820TM/NOPB Gnd-Ref, Ultra Low Noise, Fixed Gain, 95mW Stereo Headphone Amp 14-DSBGA -40 to 85 Texas Instruments
210 LM48820TMX/NOPB Gnd-Ref, Ultra Low Noise, Fixed Gain, 95mW Stereo Headphone Amp 14-DSBGA -40 to 85 Texas Instruments


Datasheets found :: 244
Page: | 3 | 4 | 5 | 6 | 7 | 8 | 9 |



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