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PDF
BF245.pdf
UNIT VDS drain-source voltage − − ±30 V VGSoff gate-source cut-off voltage D = 10 nA; DS= 15 V −0.25 − −8 V VGSO gate-source voltage open drain − − −30 V I drain current V = 15 V; V = 0 DSS DS GS BF245A 2 − 6.5 mA BF245B 6 − 15 mA BF245C 12 − 25 mA Ptot total power dissipation Tamb= 75 °C − − 300 mW
in „Vorbereitung auf Klausur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BF245abc.pdf
UNIT VDS drain-source voltage − − ±30 V VGSoff gate-source cut-off voltage D = 10 nA; DS = 15 V −0.25 − −8 V VGSO gate-source voltage open drain − − −30 V I drain current V = 15 V; V = 0 DSS DS GS BF245A 2 − 6.5 mA BF245B 6 − 15 mA BF245C 12 − 25 mA Ptot total power dissipation Tamb= 75 °C − − 300 mW
in „Welche Steilheit hat ein BF245C?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HMC8205BF10.pdf
Rev.C | Page 6of 14 Data Sheet HMC8205BF10 0 0 –5 ) –5 ) d d ( ( S S O O –10 L–10 L N N U U T T E E –15 R–15 T U U P P U I 500mA O +85°C –20 –20 +25°C 900mA 1300mA –40°C –25 0 –25 0 0 1 2 3 4 5 6 - 0 1 2 3 4 5 6 9 7 FREQUENCY (GHz) 3 FREQUENCY
in „HF Breitbandverstärker Positiv/Negativ Betriebsspannung“ · HF, Funk und Felder ·
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Datei
standard.bjt.txt
MJE=0.2307 MJC=0.2596 TF=3.062E-10 TR=5E-08 ITF=0.1344 VTF=1.48 XTF=54.94 EG=1.11 VCEO=40V ICRATING=25m MFG=PHILIPS) .MODEL BF869 NPN(IS=7.974f ISE=2.266E-16 ISC=4.33p XTI=3 BF=122 BR=6.235 IKF=0.01029 IKR=0.02746 XTB=1.5 VAF=25.51 VAR=19.43 VJE=0.4581 VJC=0.197 RE=0.3814 RC=0.439 RB=1 RBM=0.5 IRB=1E-
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BF998.pdf
mS Cig1-s input capacitance at gate 1 2.1 pF Crs reverse transfer capacitance f = 1 MHz 25 fF F noise figure f = 800 MHz 1 dB Tj operating junction temperature 150 C 1996 Aug 01 2 NXP Semiconductors Product specification Silicon N-channel dual-gate MOS-FETs BF998; BF998R LIMITING VALUES
in „Schaltung mit BF998“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Osram.lib.txt
***************************************************************** .MODEL SFH3410 NPN (IS=6.12e-15 BF=480 NF=1.053 VAF=25.6 + ISE=6.12E-15 NE=2 RE=19.8 RC=13 + CJE=3.98E-12 MJE=0.234 VJE=0.696 FC=0.5 CJC=7.07E-11 + MJC=0.312 VJC=0.539 TF=1e-13) .MODEL SFH3710 NPN (IS=6.12e-15 BF=480 NF=1.053 VAF=25.6
in „Fototransistor mit LTSpice simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DM-KIT-SSK_for_BF533.pdf
_A PB7_A 20 19 PB6_A PB6_A BF_A19 26 25 BF_A18 TMR2 TMR2 PPI0_VSTMR0 26 25 PPI0_HSYNC3 TMR1 24 23 28 27 TMR0 DT1SEC 28 27 DR1SEC TMR1 26 25 30 29 DT1PRI 30 29 DR1PRI /RESET /RESET 28 27 34 33 TSCLK1 34 33 RSCLK1 32 31 36 35 T DT0SEC
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Datei
parts.txt
1 BD166 1 BD168 5 BD169 2 BD170 24 BD175 40 BD179 12 BD228 15 BD234 3 BD235 2 BD237 2 BD238 25 BD238 100 BD241 30 BD242 1 BD245 1 BD434 9 BD435 35 BD438 4 BD590 13 BD598 28 BD680 11 BD682 4 BDF494 200 BDX63 3 BDY34 3 BF173 80 BF194 5 BF195 4 BF198 6 BF199 30 BF223 40 BF241 1 BF245 3 BF254 350 BF254 18 BF255 5 BF310 7 BF311 7 BF314 160 BF324 30 BF362 120 BF379 2 BF414 290 BF440 25 BF450 100 BF457 26 BF459 20 BF506 2 BF679 200 BFS86 13 BFT91 5 BFX59 5 BG237 8 BGY10 2 BLW 8 BLW35 6 BLW36 36 BLW37
in „[V] Bauteilauflösung Transistoren/Audio+Video IC“ · Markt ·
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PDF
CM-BF537E_HardwareUserManual_V1.pdf
3-6 of the connectors are processor pins and correspond closely to the names found in the Blackfin BF537 datasheet from Analog Devices. PIN Nr. Name IO Type Description 5,78 CLK_out O 25MHz buffered clock output 9,10 Vin 3.3V PWR 3V3 +‐10% 500mA peak for supply 35 nc ‐ Not connected 72 LED_ACT O Indicates
in „SDHC Karte Einbindung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistor_Database.pdf
500MHz BF224 SI-N 45V 50mA 0.25W 450MHz BF240 SI-N 40V 25mA 0.25W 400MHz BF244A N-FET 30V 25mA 0.3W BF244C N-FET 30V 25mA 0.3W BF245A N-FET 30V 25mA 0.3W BF245B N-FET 30V 25mA 0.3W BF245C N-FET 30V 0.1A 0.3W 170MC BF246C N-FET 25V 25mA 0.25W BF247B N-FET 25V 25mA 0.25W BF247C N-FET 25V 25mA 0.25W BF253 SI-N 30V 30mA 150MHz BF254 SI-N 30V 30mA .22W 260MHz BF255 SI-N 20V 30mA .22W 200MHz BF256A N-FET 30V 7mA Vgs<7.5
in „Bauteilebeschaffung !!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistor_Database.pdf
500MHz BF224 SI-N 45V 50mA 0.25W 450MHz BF240 SI-N 40V 25mA 0.25W 400MHz BF244A N-FET 30V 25mA 0.3W BF244C N-FET 30V 25mA 0.3W BF245A N-FET 30V 25mA 0.3W BF245B N-FET 30V 25mA 0.3W BF245C N-FET 30V 0.1A 0.3W 170MC BF246C N-FET 25V 25mA 0.25W BF247B N-FET 25V 25mA 0.25W BF247C N-FET 25V 25mA 0.25W BF253 SI-N 30V 30mA 150MHz BF254 SI-N 30V 30mA .22W 260MHz BF255 SI-N 20V 30mA .22W 200MHz BF256A N-FET 30V 7mA Vgs<7.5
in „Transistor-Datenbank“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
file2.TXT
:100FF0005FC06BF1000E4E6EC80E4F6E420E506E0B :1010000069C14BF06AC14CF06BC14DF02FEC18F088 :101010004BC078F04CC079F04DC07AF099EC19F0E3 :1010200078C00CF179C00DF17AC00EF17BC00FF1E0 :1010300035EC25F08DEC1CF035C010F136C011F107
in „Trying to understand .hex files obtained after compiling a XC8 MPLAB X project.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Poly17.txt
,$25C17,$25C21,$25C4D,$25C5F,$25C63,$25C7B,$25C7D, $25C8D,$25C9F,$25CB1,$25CC9,$25CDB,$25D01,$25D0B,$25D13,$25D19,$25D49,$25D4F,$25D89,$25D9B,$25DAD,$25DB3,$25DC1, $25DCB,$25DDF,$25DE9,$25E0D,$25E15,$25E31
in „Hadamard Transformation“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
OSRAM_Phototransistors_II.lib.txt
G001 Emit Base Opt_In+ Opt_In- {SENS*resp*lens} Q001 Coll Base Emit F049 .MODEL F049 NPN (IS=6.12e-15 BF=480 NF=1.053 VAF=25.6 + ISE=6.12E-15 NE=2 RE=19.8 RC=13 + CJE=3.98E-12 MJE=0.234 VJE=0.696 FC=0.5 CJC=7.07E-11 + MJC=0.312 VJC=0.539 TF=1e-13) .ends **************************************************
in „Fototransistor mit LTSpice simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nano_os_OPTs.txt
; 0x04 15c: 86 bd out 0x26, r24 ; 38 SREG = current->sreg; 15e: 81 81 ldd r24, Z+1 ; 0x01 160: 8f bf out 0x3f, r24 ; 63 SP = (unsigned int)(current->sp - 32); 162: 82 81 ldd r24, Z+2 ; 0x02 164: 93 81 ldd r25, Z+3 ; 0x03 166: 80 97 sbiw r24, 0x20 ; 32 168: 9e bf out 0x3e, r25 ; 62 16a: 8d bf out 0x3d
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Datei
Eclipse.txt
df 93 push r29 27c: cf 93 push r28 27e: cd b7 in r28, 0x3d ; 61 280: de b7 in r29, 0x3e ; 62 282: 25 97 sbiw r28, 0x05 ; 5 284: cd bf out 0x3d, r28 ; 61 286: de bf out 0x3e, r29 ; 62 288: 8a 83 std Y+2, r24 ; 0x02 28a: 9b 83 std Y+3, r25 ; 0x03 28c: 6c 83 std Y+4, r22 ; 0x04 28e: 4d 83 std Y+5, r20
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nano_os_2_OPTs.txt
; 0x04 15c: 86 bd out 0x26, r24 ; 38 SREG = current->sreg; 15e: 81 81 ldd r24, Z+1 ; 0x01 160: 8f bf out 0x3f, r24 ; 63 SP = (unsigned int)(current->sp - 32); 162: 82 81 ldd r24, Z+2 ; 0x02 164: 93 81 ldd r25, Z+3 ; 0x03 166: 80 97 sbiw r24, 0x20 ; 32 168: 9e bf out 0x3e, r25 ; 62 16a: 8d bf out 0x3d
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PDF
Siemens_CrossRef_1998.pdf
SMD-Packages Devices SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 BF240 BF840 BF241 BF841 BF414 BF420 BFN20 BF720 BF421 BFN21 BF721 BF422 BFN22 BF622 BF722 BF423 BFN23 BF623 BF723 BF506 BF660 BF544 BF543 BF763 BF517 BF959 BF799 BF961 BF995 BF963 BF993 BF964S BF994S BF966S BF996S BF970 BF569 BF979S BF579 BF987 BF999 BF988 BF998 BFP22 BFN24 BFN16 BFN36 BFP23 BFN25 BFN17 BFN37 BFP25 BFN26 BFN18 BFN38 BFP26 BFN27 BFN19 BFN39 BFQ23 BFT93 BFQ51 BFT92 BFQ69 BFQ81 BFP81 BFR90 BFR35AP
in „1N4001und BC574C ==> SMD?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
SMD-Packages Devices SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 BF240 BF840 BF241 BF841 BF414 BF420 BFN20 BF720 BF421 BFN21 BF721 BF422 BFN22 BF622 BF722 BF423 BFN23 BF623 BF723 BF506 BF660 BF544 BF543 BF763 BF517 BF959 BF799 BF961 BF995 BF963 BF993 BF964S BF994S BF966S BF996S BF970 BF569 BF979S BF579 BF987 BF999 BF988 BF998 BFP22 BFN24 BFN16 BFN36 BFP23 BFN25 BFN17 BFN37 BFP25 BFN26 BFN18 BFN38 BFP26 BFN27 BFN19 BFN39 BFQ23 BFT93 BFQ51 BFT92 BFQ69 BFQ81 BFP81 BFR90 BFR35AP
in „Suche NPN Transistor Low Noise SMD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_CrossRef_1998.pdf
SMD-Packages Devices SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 BF240 BF840 BF241 BF841 BF414 BF420 BFN20 BF720 BF421 BFN21 BF721 BF422 BFN22 BF622 BF722 BF423 BFN23 BF623 BF723 BF506 BF660 BF544 BF543 BF763 BF517 BF959 BF799 BF961 BF995 BF963 BF993 BF964S BF994S BF966S BF996S BF970 BF569 BF979S BF579 BF987 BF999 BF988 BF998 BFP22 BFN24 BFN16 BFN36 BFP23 BFN25 BFN17 BFN37 BFP25 BFN26 BFN18 BFN38 BFP26 BFN27 BFN19 BFN39 BFQ23 BFT93 BFQ51 BFT92 BFQ69 BFQ81 BFP81 BFR90 BFR35AP
in „SMD - Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
SMD-Packages Devices SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 BF240 BF840 BF241 BF841 BF414 BF420 BFN20 BF720 BF421 BFN21 BF721 BF422 BFN22 BF622 BF722 BF423 BFN23 BF623 BF723 BF506 BF660 BF544 BF543 BF763 BF517 BF959 BF799 BF961 BF995 BF963 BF993 BF964S BF994S BF966S BF996S BF970 BF569 BF979S BF579 BF987 BF999 BF988 BF998 BFP22 BFN24 BFN16 BFN36 BFP23 BFN25 BFN17 BFN37 BFP25 BFN26 BFN18 BFN38 BFP26 BFN27 BFN19 BFN39 BFQ23 BFT93 BFQ51 BFT92 BFQ69 BFQ81 BFP81 BFR90 BFR35AP
in „BC337-40 in Pspice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
SMD-Packages Devices SOD-123 SOD-323 SCD-80 SOT-23 SOT143 SOT-323 SOT-343 SOT-363 SCT-595 SOT-89 SOT-223 BF240 BF840 BF241 BF841 BF414 BF420 BFN20 BF720 BF421 BFN21 BF721 BF422 BFN22 BF622 BF722 BF423 BFN23 BF623 BF723 BF506 BF660 BF544 BF543 BF763 BF517 BF959 BF799 BF961 BF995 BF963 BF993 BF964S BF994S BF966S BF996S BF970 BF569 BF979S BF579 BF987 BF999 BF988 BF998 BFP22 BFN24 BFN16 BFN36 BFP23 BFN25 BFN17 BFN37 BFP25 BFN26 BFN18 BFN38 BFP26 BFN27 BFN19 BFN39 BFQ23 BFT93 BFQ51 BFT92 BFQ69 BFQ81 BFP81 BFR90 BFR35AP
in „SMD-Vergleichstypen von Transistoren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nano_os_OPT3.txt
; 0x04 15c: 86 bd out 0x26, r24 ; 38 SREG = current->sreg; 15e: 81 81 ldd r24, Z+1 ; 0x01 160: 8f bf out 0x3f, r24 ; 63 SP = (unsigned int)(current->sp - 32); 162: 82 81 ldd r24, Z+2 ; 0x02 164: 93 81 ldd r25, Z+3 ; 0x03 166: 80 97 sbiw r24, 0x20 ; 32 168: 9e bf out 0x3e, r25 ; 62 16a: 8d bf out 0x3d
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Datei
FAIRCHILD_igbt_fs1_650V_rev4_ltspice.txt
B8 9B 84 5A 5B B0 7A D5 FD 12 30 82 A0 66 6F F7 29 39 3F 3F 68 F7 09 05 6B C5 9B F4 F5 90 19 02 95 25 24 ED 45 55 44 2D 2A 25 18 DD 76 61 0E A4 95 EC EF F1 D4 03 C1 B8 2F CD 95 06 DE D2 92 94 96 49 BF 61 24 F0 9D F5 23 F9 77 69 4D 01 0D B6 BF 83 53 D1 D7 F7 2A 3F ED DE 81 A4 08 42 55 82 10 06 B0 AC 7E
in „LTSpice IGBT Problem“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
FAN3111E_REV1_ltspice.txt
BD 2E FE A8 7D 09 A0 68 B6 13 AB 27 13 B9 D5 08 6A C8 AA 42 64 29 BF 23 90 8E 6C 8F 19 F7 40 1C AA D5 79 49 8F 1A 6B AF 8E 67 0F 8E 40 95 53 B1 67 D0 A7 7C 78 81 14 BD D7 25 AC 4C B3 53 63 19 CB 25 4F 83 8A FF 6C 22 6A C4 61 86 10 AF ED 5E 32 91 1D B4 60 C9 83 8F 01 84
in „Gate Treiber Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
AVR-Studio.txt
df 93 push r29 49a: cf 93 push r28 49c: cd b7 in r28, 0x3d ; 61 49e: de b7 in r29, 0x3e ; 62 4a0: 25 97 sbiw r28, 0x05 ; 5 4a2: cd bf out 0x3d, r28 ; 61 4a4: de bf out 0x3e, r29 ; 62 4a6: 8a 83 std Y+2, r24 ; 0x02 4a8: 9b 83 std Y+3, r25 ; 0x03 4aa: 6c 83 std Y+4, r22 ; 0x04 4ac: 4d 83 std Y+5, r20
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pic30.hexfile.txt
2e 6f b2 07 63 a4 ec 6a ba 2d da 41 a2 83 d8 df e8 94 d9 25 d9 58 8e f3 4a 41 fe 0b 9f ca bf d9 2f 5a a3 18 fa ac 9b 40 e3 bd 58 00 02 41 62 42 4c d2 83 e5 60 d0 58 07 85 61 1f 25 20 6b ba 19 17 0f 01 58 79 4b 05 0a 40 b8 91 61 7a 75 59 c3 bd 4b ae 87 30 a0 d6
in „Mikrocontroller auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Gicar.asm
#0x81 ;0x008BDF, A1 81 jrc .+14 ;(0x008BF1) ;0x008BE1, 25 0E inc 0x03 ;0x008BE3, 3C 03 jrne .+10 ;(0x008BF1) ;0x008BE5, 26 0A inc 0x02 ;0x008BE7, 3C 02 jrne .+6 ;(0x008BF1) ;0x008BE9, 26 06 inc 0x01 ;0x008BEB, 3C 01 jrne .+2 ;(0x008BF1) ;0x008BED
in „Wie STM8 Assembler File "bearbeiten"?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ee24xx.lst
* { 101:ee24xx.c **** case TW_MT_DATA_ACK: 194 .LM17: 195 009e 8F2F mov r24,r31 196 00a0 9927 clr r25 197 00a2 83B9 out 35-0x20,r24 102:ee24xx.c **** case TW_MT_DATA_NACK: 199 .LM18: 200 00a4 94E8 ldi r25,lo8(-124) 201 00a6 96BF out 86-0x20,r25 202 .L25: 103:ee24xx.c **** goto quit; 204 .LM19: 205 00a8
in „I2C EEPROM Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HW_manual_bf533.pdf
.................... 19-23 CYCLES and CYCLES2 Registers ....................................... 19-25 Product Identification Register .................................................. 19-25 DSPID Register .................................................................. 19-26 xxxii ADSP-BF533 Blackfin
in „Blackfin ADSP-BF532 - Einstieg“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
stk500-log.txt
packet 06/19/2006 21:48:55.468 (5000ms) > 1B 14 00 4A 0E (5000ms) > 13 00 40 A1 0A 40 4C 20 FF 00 CD BF 89 83 81 E0 > 8A 83 8A 81 8F 3F 59 F0 8A 81 80 93 43 00 89 81 > 99 27 0E 94 47 00 8A 81 8F 5F 8A 83 F2 CF 22 96 > 0F B6 F8 94 DE BF 0F BE CD BF DF 91 CF 91 08 95 > CF 93 DF 93 CD B7 DE B7 25 97 (5000ms
in „STK500v2-Bootloader von Peter Fleury“ · Projekte & Code ·
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Datei
CodeAuswertung.lst
: 0f b6 in r0, 0x3f ; 63 52: 0f 92 push r0 54: 11 24 eor r1, r1 56: 8f 93 push r24 58: 9f 93 push r25 5a: af 93 push r26 5c: bf 93 push r27 /* Timer neu laden. */ TCNT0 = 222; 5e: 8e ed ldi r24, 0xDE ; 222 60: 82 bf out 0x32, r24 ; 50 Read one byte from EEPROM address \c addr. */ uint8_t eeprom_read_byte
in „Probleme mit dem EEPROM vom ATtiny26“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Models_optional.txt
-012 PB=9.91494E-001 FC=5.00000E-001) .model 2N3819 NJF(Beta=1.304m Betatce=-.5 Rd=1 Rs=1 Lambda=2.25m Vto=-3 Vtotc=-2.5m Is=33.57f Isr=322.4f N=1 Nr=2 Xti=3 Alpha=311.7u Vk=243.6 Cgd=1.6p M=.3622 Pb=1 Fc=.5 Cgs=2.414p Kf=9.882E-18 Af=1 mfg=Vishay) * NPN und PNP in standard.bjt .model BF199 NPN(IS=4.031E
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PDF
bf258.pdf
50 ⋅C 5 W Tstg Storage Temperature – 55 to 200 ⋅C Tj Junction Temperature 200 ⋅C October 1988 1/5 BF257-BF258-BF259 THERMAL DATA Rth j-case Thermal Resistance Junction-case Max 30 ⋅C/W R Thermal Resistance Junction-ambient Max 175 ⋅C/W th j-amb ELECTRICAL CHARACTERISTICS (T amb = 25 ⋅C unless otherwise
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Datei
Disassembly.txt
0000001B e4 cf RJMP PC-0x001B Relative jump 0000001C 88 ed LDI R24,0xD8 Load immediate 0000001D 8c bf OUT 0x3C,R24 Out to I/O location 0000001E 91 e0 LDI R25,0x01 Load immediate 0000001F 97 bf OUT 0x37,R25 Out to I/O location 00000020 8c bf OUT 0x3C,R24 Out to I/O location 00000021 16 bf OUT 0x36,R17
in „ATtiny10 mit avr-gcc Compiler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sed1278.pdf
· · · · DB0 RS R/W E 0 0 1 1 * * * * 0 0 40 µs or more [5] Busy flag DB7 · · · · · · DB0 RS R/W E BF=1 BF A CC 0 1 1 BF=0 DB7 · · · · · · DB0 RS R/W E [6] System set 0 0 1 1 N F * * 0 0 [7] Busy flag DB7 · · · · · · DB0 RS R/W E BF A CC 0 1 1 BF=1 BF=0 7 1 D S EPSON 9–17 SED1278 Display DB7 · · · ·
in „Suche Schaltplan, Peaktech 4010.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
bdxxx.txt
.MODEL BD238 PNP(Is=51.23f Xti=3 Eg=1.11 Vaf=100 Bf=434.1 Ise=51.23f Ne=1.22 Ikf=.3883 Nk=.5544 Xtb=2.2 Br=55.47 Isc=51.23f Nc=1.205 Ikr=10.87 Rc=.3443 Cjc=136.9p Mjc=.3155 Vjc=.75 Fc=.5 Cje=179.9p Mje=.4294 Vje=.75 Tr=20.25n Tf=13.05n Itf=6.85 Xtf=1.573
in „FG504 Endstufe defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
app_bootloader.lst
bad_interrupt>: 3896: 0c 94 00 1c jmp 0x3800 ; 0x3800 <__vectors> 0000389a <main>: 389a: 9f b7 in r25, 0x3f ; 63 389c: f8 94 cli 389e: 85 b7 in r24, 0x35 ; 53 38a0: 28 2f mov r18, r24 38a2: 21 60 ori r18, 0x01 ; 1 38a4: 25 bf out 0x35, r18 ; 53 38a6: 82 60 ori r24, 0x02 ; 2 38a8: 85 bf out 0x35, r24
in „2 byte >> 1 word“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TC4050BP.pdf
TC4049,4050BP/BF/BFN TOSHIBA CMOS Digital Integrated Circuit Silicon Monolithic TC4049BP,TC4049BF,TC4049BFN, TC4050BP,TC4050BF,TC4050BFN TC4049B Hex Buffer/Converter (inverting type) TC4050B Hex Buffer/Converter (non-inverting
in „Ersatztyp zum LVX125“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD_Catalog.pdf
dual diode cc 50V 0.1A JA BAV74 Mot B SOT23 dual sw diodes JBs BAR74 Sie C SOT23 fast sw diode 50V 0.25A JCs BAL74 Sie V SOT23 fast sw diode 50V 0.25A JFs BAL99 Sie V SOT23 fast sw diode 70V 0.25A JG BAR99 Sie E - fast sw diode 70V 0.25A JKs BF1009 Sie W SOT143 biased n-ch dg mosfet 1GHz 9V JLs BF1009S
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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Datei
P3310_SROM_0x11.txt
99 b0 e2 27 cc fb 74 6a 56 2e de 1b 9d b7 d3 24 ca 16 ae de 3e fe 5f 3c db 34 cb 14 8b 94 aa d6 2e bf fc 5b 34 ea 56 2e bf fc 7a 51 0d 79 51 20 c2 06 6f 3d d9 11 a0 a3 a5 a9 b1 c1 00 63 25 a9 b1 c1 e1 22 a1 a3 a1 c0 e3 25 a9 d0 2a a7 ad d8 12 a4 ca 16 8f 9c 9b b1 c2 ff 63 3f e9 44 dc 8e 10 16 80 ab 42
in „Maussensor PMW 3310 firmware (ASCII - textfile) einspielen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_LCD16A4.pdf
L H DD RAM address 42µs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0µs H Busy FLAG & both DD & CG RAM address BF ADDRESS L Ready − Reads BF indication internal operating is being performed − Reads addresscounter contents WRITE DATA H L Write
in „LCD Atmega8535 fehler beim Programm erstellen mit AVR-Studio“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spicemodel.txt
In1, Gnd, Sink, In2, Source Q1 1 2 6 ZXGD3001N Q2 3 5 4 ZXGD3001P * .MODEL ZXGD3001N NPN IS=9E-13 BF=990 NF=1 VAF=25 IKF=3.8 ISE=8E-14 NE=1.35 + BR=410 NR=1 VAR=8 IKR=1.25 ISC=8e-14 NC=1.35 RE=0.0117 RB=0.1 RC=0.0081 + CJE=168E-12 VJE=0.7 MJE=0.38 CJC=61E-12 VJC=0.52 MJC=0.31 TF=0.5E-9 TR=1.7e-9 + XTB
in „LTSpice - hierarchische Blöcke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCD162C_DIS.pdf
L H DD RAM address 42µs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0µs H Busy FLAG & both DD & CG RAM address ADDRESS BF L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „LCD Ansteuerung kleine Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD162F_DIS.pdf
L H DD RAM address 42µs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0µs FLAG & both DD & CG RAM address H Busy ADDRESS BF L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „2x16 LCD-Display funkt einfach nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD162C.pdf
L H DD RAM address 42µs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0µs H Busy FLAG & both DD & CG RAM address ADDRESS BF L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „LCD 2x16 sprung in die zweite zeile“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_Datenblatt.pdf
L H DD RAM address 42µs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0µs H Busy FLAG & both DD & CG RAM address ADDRESS BF L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „LCD KS0070B mit atmega8 nach Tutorial: Initialisierungsprob.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_Datenblatt.pdf
L H DD RAM address 42µs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0µs H Busy FLAG & both DD & CG RAM address ADDRESS BF L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „Display "Displaytech 162" bringe ich nicht zum laufen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIS.pdf
L H DD RAM address 42µs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0µs H Busy FLAG & both DD & CG RAM address ADDRESS BF L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „Problem mit LCD Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_Datenblatt.pdf
L H DD RAM address 42µs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0µs H Busy FLAG & both DD & CG RAM address ADDRESS BF L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „LCD Problem ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·