-
PDF
LED_treiber_ht1632cv120.pdf
Voltage ¾ ¾ 2.4 5.0 5.5 V I No load, LED ON, DD Operating Current 5V on-chip RC oscillator ¾ 0.3 0.6 mA STB Standby Current 5V No load, power down mode ¾ 1.5 3.0 mA VIL Input Low Voltage 5V DATA, WR, CS, RD 0 ¾ 0.3VDD V VIH Input High Voltage 5V DATA, WR, CS, RD 0.7VDD ¾ 5 V I OSC, SYNC, DATA 5V V =0.5V 18 25 ¾ mA OL1 OL I OSC, SYNC, DATA 5V V =4.5V -10 -13 mA OH1 OH ¾ OL2 ROW Sink Current 5V VOL=0.5V 12 16 ¾ mA OH2 ROW Source Current 5V VOH =4.5V -50 -70 ¾ mA OL3 COM Sink Current 5V VOL=0.5V 250 350 ¾ mA OH3
in „HT1632C mit welchen Bus ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ht1632cv120.pdf
Voltage ¾ ¾ 2.4 5.0 5.5 V I No load, LED ON, DD Operating Current 5V on-chip RC oscillator ¾ 0.3 0.6 mA STB Standby Current 5V No load, power down mode ¾ 1.5 3.0 mA VIL Input Low Voltage 5V DATA, WR, CS, RD 0 ¾ 0.3VDD V VIH Input High Voltage 5V DATA, WR, CS, RD 0.7VDD ¾ 5 V I OSC, SYNC, DATA 5V V =0.5V 18 25 ¾ mA OL1 OL I OSC, SYNC, DATA 5V V =4.5V -10 -13 mA OH1 OH ¾ OL2 ROW Sink Current 5V VOL=0.5V 12 16 ¾ mA OH2 ROW Source Current 5V VOH =4.5V -50 -70 ¾ mA OL3 COM Sink Current 5V VOL=0.5V 250 350 ¾ mA OH3
in „HT1632C mit SPI steuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ht1632cv120.pdf
Voltage ¾ ¾ 2.4 5.0 5.5 V I No load, LED ON, DD Operating Current 5V on-chip RC oscillator ¾ 0.3 0.6 mA STB Standby Current 5V No load, power down mode ¾ 1.5 3.0 mA VIL Input Low Voltage 5V DATA, WR, CS, RD 0 ¾ 0.3VDD V VIH Input High Voltage 5V DATA, WR, CS, RD 0.7VDD ¾ 5 V I OSC, SYNC, DATA 5V V =0.5V 18 25 ¾ mA OL1 OL I OSC, SYNC, DATA 5V V =4.5V -10 -13 mA OH1 OH ¾ OL2 ROW Sink Current 5V VOL=0.5V 12 16 ¾ mA OH2 ROW Source Current 5V VOH =4.5V -50 -70 ¾ mA OL3 COM Sink Current 5V VOL=0.5V 250 350 ¾ mA OH3
in „LED Matrix Schaltung gesucht sowie Bsp Programm“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ht1632cv120.pdf
Voltage ¾ ¾ 2.4 5.0 5.5 V I No load, LED ON, DD Operating Current 5V on-chip RC oscillator ¾ 0.3 0.6 mA STB Standby Current 5V No load, power down mode ¾ 1.5 3.0 mA VIL Input Low Voltage 5V DATA, WR, CS, RD 0 ¾ 0.3VDD V VIH Input High Voltage 5V DATA, WR, CS, RD 0.7VDD ¾ 5 V I OSC, SYNC, DATA 5V V =0.5V 18 25 ¾ mA OL1 OL I OSC, SYNC, DATA 5V V =4.5V -10 -13 mA OH1 OH ¾ OL2 ROW Sink Current 5V VOL=0.5V 12 16 ¾ mA OH2 ROW Source Current 5V VOH =4.5V -50 -70 ¾ mA OL3 COM Sink Current 5V VOL=0.5V 250 350 ¾ mA OH3
in „C-Code -> Verständnis problem..“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
XC6216_XE6216.pdf
△V OUT 1mA≦I OUT≦50mA ( 7.0V<V ≦12.0V ) - 110 140 mV ① OUT(T) Dropout Voltage1 Vdif1(*3) IOUT=20mA - E-1 mV ① (*3) Dropout Voltage2 Vdif2 OUT=100mA - E-2 mV ① Supply Current ISS 1 5 9 μA ② (*1) Line Regulation1
in „Suche schaltung für Ladeerhaltung einer Pufferbatterie“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
sim18_module_osp_manual__cs-129291-dc-8__1_.pdf
SSB_DEMO_TEST_REF_POSITION X e C 0x41 65 SSB_DEMO_TEST_PFC_CONTINUOUS X o n 0x42 66 SSB_DEMO_TEST_PFC_RESTARTS X t o 0xA2 162 MID_HeadSync1 X l 0xA3 163 X D o 0xA4 164 X c m 0xA5 165 MID_ChangeUartChnl X e 0xA6 166 MID_SetMsgRate X n t © SiRF Technology, Inc., a CSR plc company 2009-2010 CS-129291-TCP8 This material is subject
in „Schlampiges GPS-Receiver Datenblatt (Maestro 2035-H)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
XCL213-XCL214.pdf
TYPICAL PERFORMANCE CHARACTERISTICS (Continued) (7) Load Transient Response XCL214B183DR (V INV, I OUT1mA⇔1000mA) XCL214B183DR (VIN5V, OUT=100mA⇔1000mA) V =1.8V VOUT=1.8V OUT VOUT=1.8V VOUT=1.8V 1 1 OUTT1mAA⇔1100 mA IOUT=100mA 1000mAA 2 2 1ch 50mV/div 2ch 500mA/div H 100us/div 1ch 50mV/div 2ch 500mA/div H:100us/div XCL214B333DR (V =IN, I OUT1mA⇔1000mA) XCL214B333DR (V IN5V, OUT100mA⇔1000mA) VOUT=3.3V VOUT=3.3V 1 1 IOUT=1mA⇔1000mA IOUT=100mA⇔1000mA 2 2 1ch 50mV/div 2ch 500mA/div H:100us/div 1ch 50mV/div 2ch 500mA/div H:100us/div 13/16 XCL213
in „1.5A regulator Built-in Step-Down micro DC/DC Converters“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Littelfuse_TVS_Diode_P6KE_Datasheet.pdf
1 207.0 2.9 1 X P6KE160A P6KE160CA 136.00 152.00 168.00 1 219.0 2.8 1 X P6KE170A P6KE170CA 145.00 162.00 179.00 1 234.0 2.6 1 X P6KE180A P6KE180CA 154.00 171.00 189.00 1 246.0 2.5 1 X P6KE200A P6KE200CA 171.00 190.00 210.00 1 274.0 2.2 1 X P6KE220A P6KE220CA 185.00 209.00 231.00 1 328.0 1.9 1 X P6KE250A
in „PhotoMos mit TVS schützen ?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
US-GPL-AM-AA_web_0417.pdf
that the battery under consideration has an internal -40 -22 -4 14 32 50 68 86 104 resistance of 4mΩ (0.004Ω) when fully charged. Also, assume that Temperature F it has an internal resistance of 8mΩ (0.008Ω) when discharged to an end voltage of 10.5 volts. However, the instant the load is removed from
in „Kaffeemaschine im Gartenhaus“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
NEO-7_DataSheet__UBX-13003830_.pdf
Receiver type 56 Channels GPS L1C/A SBAS L1C/A QZSS L1C/A 1 Galileo E1B/C 2 Time-To-First-Fix NEO-7N NEO-7M Cold Start 29 s 30 s Warm Start 28 s 28 s Hot Start 1 s 1 s 3 Aided Starts 5 s 5 s 4 Sensitivity NEO-7N NEO-7M Tracking & Navigation -162 dBm -161 dBm Reacquisition -160 dBm -160 dBm Cold Start -148
-
PDF
CEPT-Laenderliste_2014.pdf
Rufzeichenzusätze: FO/ Polynésie Française, FP/ St. Pierre & Miquelon; FR/ Réunion; FS/ St. Martin; FY/M Mobilbetrieb, /P Portabelbetrieb Guiane Française; TK/ Corse; Rufzeichenzusätze: /M Mobilbetrieb, /MM Maritim- Info: Reglugerðasafn – www.reglugerd.is/interpro/dkm/WebGuard.nsf/2d8cdab mobilbetrieb,
-
PDF
Torex_XC6210B332MR_-_LDO.pdf
2005 V4 ◆CMOS ◆Low Power Consumption :35µA (TYP.) ■APPLICATIONS ◆Maximum Output Current :More than 700mA ●CD-ROMs, CD-R / RW drive (800mA limit, TYP.) ●DVD drive ◆Dropout Voltage :50mV @ 100mA ●HDD drive :100mV @ 200mA ◆Operating Voltage Range :1.5V ~ 6.0V ●Cameras, Video recorders ◆Output Voltage Range
in „Low-drop Torex 1V Dropout zu viel“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
M7000_US_2003.pdf
9.0 4.50 0.81 82 111 2.3 2.6 4.90 G 0.107 100 L/40 5 3.7 1725 15.2 7.62 0.75 81 183 2.7 3.1 5.10 G 0.162 132 S/4 7.5 5.5 1735 19.8 9.9 0.82 86 272 2.45 2.75 5.45 G 0.553 132 M/4 10 7.5 1735 25.8 12.9 0.84 87 363 2.9 3.2 6.45 H 0.753 P n - Full-load power Ta/T n - Locked-rotor torque ratio nn - Full-load
in „Frequenzumformer“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
2.txt
x [mm] y [mm] z [mm] ExRe [V/m] EyRe [V/m] EzRe [V/m] ExIm [V/m] EyIm [V/m] EzIm [V/m] ------------------------------------------------------------------------------------------------------------------------------------------ 99.68
in „Gnuplot: wie plotte ich diese Daten?“ · PC Hard- und Software ·
-
PDF
Sony_M610__MBX-176_.pdf
157 DQ48 DQ52 158 M_A_DQ52 0603 0603 0603 0603 0603 M_A_DQ49 159 DQ49 DQ53 160 M_A_DQ53 161 VSS52 VSS57 162 163 NCTEST CK1 164 M_CLK_DDR1 8 165 VSS30 CK1# 166 M_CLK_DDR#1 8 M_A_DQS#6 167 168 M_A_DQS6 169 DQS#6 VSS45 170
in „Blitzschaden an Sony Vaio Notebook“ · PC Hard- und Software ·
-
PDF
Haier_LT26M1CA__LT26M1C_LCD_TV.pdf
Haier LT26M1CA<26M1C 14 26”LCD TV Haier LT26M1CA<26M1C 15 26”LCD TV Haier LT26M1CA<26M1C 16 26”LCD TV Haier LT26M1CA<26M1C 17 26”LCD TV Haier LT26M1CA<26M1C 18 26”LCD TV Haier LT26M1CA<26M1C 19 26”LCD
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
-
PDF
AD538_c.pdf
Min Typ Max Min Typ Max Min Typ Max Units MULTIPLIER DIVIDER PERFORMANCE Nominal Transfer Function m m m VZ VZ V Z 10 V V X VY, Z 0 VO= V Y ÷ VO= Vy ÷ V O V Y ÷ VX VX V X m m m IZ IZ IZ 400 A IX, Y,Z 0 VO= 25 k IY ÷ VO= 25 k IY ÷ V O 25 k IY ÷ IX IX IX Total Error Terms 100 mV VX 10 V 0.5 61 0.25 60.5
in „Wurzeloperation mit Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AD538_analog_rechnen.pdf
Min Typ Max Min Typ Max Min Typ Max Units MULTIPLIER DIVIDER PERFORMANCE Nominal Transfer Function m m m VZ VZ V Z 10 V V X VY, Z 0 VO= V Y ÷ VO= Vy ÷ V O V Y ÷ VX VX V X m m m IZ IZ IZ 400 A IX, Y,Z 0 VO= 25 k IY ÷ VO= 25 k IY ÷ V O 25 k IY ÷ IX IX IX Total Error Terms 100 mV VX 10 V 0.5 61 0.25 60.5
in „Beschaltung eines analogen Positionssensors“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AD538_analog_rechnen.pdf
Min Typ Max Min Typ Max Min Typ Max Units MULTIPLIER DIVIDER PERFORMANCE Nominal Transfer Function m m m VZ VZ V Z 10 V V X VY, Z 0 VO= V Y ÷ VO= Vy ÷ V O V Y ÷ VX VX V X m m m IZ IZ IZ 400 A IX, Y,Z 0 VO= 25 k IY ÷ VO= 25 k IY ÷ V O 25 k IY ÷ IX IX IX Total Error Terms 100 mV VX 10 V 0.5 61 0.25 60.5
in „Zu viel Rauschen bei OPV Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
NCP51530-D-1324764-1.pdf
boot* BO ) V CC *CCO (eq. 11) V capacitor value should be selected at least ten times CC + 14 V * 0.4 mA ) 15 V * 0.4 mA + 11.6 mW the value of C boot In this case thus CVCC > 2 mF. I is the operating current for the high side driver BO R gateSELECTION ICCO is the operating current for the low side driver
in „Hilfe bei Halbbrückenschaltung benötigt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
RE5VL-RICOH.pdf
. TYP. MAX. Unit –VDET Detector Threshold 5.265 5.400 5.535 V VHYS Detector Threshold Hysteresis 0.162 0.270 0.378 V VDD =5.20V 1.20 3.60 SS Supply Current VDD =7.40V 1.40 4.20 µA VDD =10.0V 1.70 5.10 VDD Operating Voltage 1.50 10.0 V Nch VDS=0.5V 0.25 0.50 mA VDD=1.5V VDS=0.5V IOUT Output Current Nch
in „12V Tiefentladeschutz ohne Eigenverbrauch“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
RE5VL-RICOH.pdf
. TYP. MAX. Unit –VDET Detector Threshold 5.265 5.400 5.535 V VHYS Detector Threshold Hysteresis 0.162 0.270 0.378 V VDD =5.20V 1.20 3.60 SS Supply Current VDD =7.40V 1.40 4.20 µA VDD =10.0V 1.70 5.10 VDD Operating Voltage 1.50 10.0 V Nch VDS=0.5V 0.25 0.50 mA VDD=1.5V VDS=0.5V IOUT Output Current Nch
in „Wie sprunghafte Bereitstellung der Betriebsspannung für MC realisieren?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
AVR910JS_2313_v3_3.asm
output, the rest is input .endm .macro pulse_sck sbi portb,SCK ldi temp2,6 ;value for 4MHz crystal m0: dec temp2 brne m0 cbi portb,SCK ldi temp2,3 ;value for 4MHz crystal m1: dec temp2 brne m1 .endm ;***************** ;* SPI Constants * ;***************** .if silicon_chip .equ MOSI = 5 ; Bit number
in „AVR - suche Datei avr910.asm von Atmel“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Schematic_Scope_1014D_2023-01-06.pdf
GND 8 - + 1 8 - + 1 1 5 4 3 ANALOG1_ADC_INPUT U18 6 3 KAQY214STLD R64 GND GND 2 2M7 C109 C110 R67 7 2 3V3 S S 360K ANALOG1_RELAIS2 ANALOG1_RELAIS3 Q1 B 3 4 8 1 SS8550 B RF1 1 2 R62 - + BNC C99 150 GND 5 C100 C111 C104 GND 4 3 ANALOG1_RELAIS1 C105 R68 GND VRF1 1M8 R100 R65 10 R71 1M2
in „Fnirsi 1014d defekt“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
obegransad_usec.ino
pool.ntp.org" // set the best fitting NTP server (pool) for your location #define MY_TZ "CET-1CEST,M3.5.0/02,M10.5.0/03" // https://github.com/nayarsystems/posix_tz_db/blob/master/zones.csv unsigned long usec; unsigned long mil1; unsigned long mil60; unsigned long mil3600; int dutyCycle = 90; // Duty
in „LEDs flackern unregelmäßig bei geringer Helligkeit“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HX8347-D_DS_T_v02_090324.pdf
Recommendation 240RGB x 320 TFT Panel 2 1 3 5 1 1 1Y S S S 6 6 6 6 6 6 1 1 2 2 2 1 6 4 22 Y G G G 3 3 3M S S S S S S S S S Y 3 3 G G GY M G G GU M G G M U D U U D D D T T U Y M Y U _ M M M M W M U U M W P C K T N W _ _ D I T P O S C C L E E _ 1 9 8 7 6 5 4 3 2 _ C 1 H 1 L H 0 1 _ U1 O ON N 1 1 2 2H LE B
in „HX8347 Display Treiber“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
XCS20-3VQ100C.pdf
(v1.8) June 26, 2008 Product Specification R Spartan and Spartan-XL FPGA Families Data Sheet C OUT M G1 1 M 0 1 G2 I 0 G4 G3 COUT0 TO M FUNCTION F2 GENERATORS M 1 0 1 F1 M 0 F4 M 0 1 M 3 F3 1 0 M M M CIN DS060_17_080400 Figure 17: Detail of Spartan/XL Dedicated Carry Logic 3-State Long Line Drivers
in „[V] Spartan FPGA“ · Markt ·
-
PDF
SpartanXL.pdf
-7778 Product Specification R Spartan and Spartan-XL Families Field Programmable Gate Arrays C OUT M G1 1 M 0 1 G2 I 0 G4 G3 COUT0 TO M FUNCTION F2 GENERATORS M 1 0 1 F1 M 0 F4 M 0 1 M 3 F3 1 0 M M M CIN DS060_17_080400 Figure 17: Detail of Spartan/XL Dedicated Carry Logic 3-State Long Line Drivers
in „Logic Analyzer bauen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
048_Relaisschaltungen_fuer_Bastler.pdf
AW Ib/nA C u L 0 0327-1 2080 67,5 6 185 89 O,ll 0327-2 3700 227 12 195 53 0,08 0327-3 9000 1430 24 162 18 0,05 .Kleinstumpfrelais GBR Ansprechleistung 80 mW Betriebsleistung 420 mW Ansprechzeit 6 bis 9 ms Abfallzeit 2 bis 4 ms Schaltspannung (max.) 100 V Abmessungen 30 mm X 19 mm X 29 mm Bauarten: Bezeichnung
in „Bistabilen Zustand mit einem Taster (12v dc)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
eGC.pdf
R R R R R R R R A o o o o o o o o o o o o o s s s s s s s s s s s s s R2R R R R R R R R R R R R R m m m m m m m m m m m m m R1R1R17181910P0P0P0P0P0P0 h . . . . . . . . . . . . . SDRC_A0 VTT 4 4 4 4 4 4 4 4 4 4 4 4 4 SDRC_A1 SDRC_A2 SDRC_A3 7 8 9 SDRC_A4 RR R R SDRC_A5 SDRC_A6 t t t SDRC_A7 s s s SDRC_A8
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN1010.pdf
Application Note AN1010/D Rev. 1, 5/2002 M68HC11 EEPROM Programming from a Personal Computer Introduction This application note describes a simple and reliable method of programming either the M68HC11’s internal EEPROM or the EEPROM connected
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Haartrockner.pdf
Temperatur ab- hängig (Abb. 4.7). 51 Stromweg Körperwiderstand Ω maximaler Fehlerstrom Hand – Hand 1000 230 mA Fuß – Fuß 1000 230 mA Hand – Fuß 750 306 mA Hände – Füße 500 460 mA Hand – Brust 450 511 mA Hände – Brust 230 1 A Hand – Gesäß 550 418 mA Hände – Gesäß 300 766 mA Abb. 4.7 Beispiele für Fehlerströme
in „wir schmeißen mal einen Föhn in die Badewanne.“ · Offtopic ·
-
PDF
OURDSO_V2.pdf
AD8065ART 8 330 PD12 PD11 3 5 U2 R23 PD14 11 12 PD13 R3 R4 1 3 GND C70 PD16 13 14 PD15 BNC 473 C72 1M 1M +5v 4 IN 7 0603 0603 PD18 15 16 PD17 3/35P 4 AD603AR 100pF PD20 17 18 PD19 GND R24 GND 19 20 5 1 PD22 21 22 PD21 P3 S1A050000 R6 0603 2 6 1 1 2 3 9 4 49 U8A PD6 23 24 PD7 470k R25 C73 100 GND GND
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ht1632cv130.pdf
OSC, SYNC, DATA 5V V =OL5V 18 25 — mA OH1 OSC, SYNC, DATA 5V V =OH5V -10 -13 — mA OL2 ROW Sink Current 5V V =OL5V 12 16 — mA OH2 ROW Source Current 5V V =OH5V -50 -70 — mA OL3 COM Sink Current 5V V =OL5V 250 350 — mA OH3 COM Source Current 5V V =OH5V -45 -60 — mA RPH Pull-high Resistor 5V DATA, WR, CS, RD 18 27 40 kW Rev. 1.30 3 February 11, 2014 HT1632C A.C. Characteristics V DD.4V~5.5V, Ta=25°C (Unless otherwise specified) Test Conditions Symbol Parameter
in „8x8 RGB Matrix Ansteuerungsproblem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
mixer_basics_primer.pdf
harmonics REF LVL available at the mixer IF port are given by the relation OdBm fout= ±nf ±LOf 1 RF1±m f 2 RF2 (8) where n, m an1 m are 2ll integers. As is shown in Fig. 11,two-toneIMDistroublesomebecausethegenerated interference tones Interferer 1= 2fRF1 fRF2 fLO (9a) CENTER 5.50000GHz SPAN 10.00MHz
-
PDF
mixer_basics_primer.pdf
harmonics REF LVL available at the mixer IF port are given by the relation OdBm fout= ±nf ±LOf 1 RF1±m f 2 RF2 (8) where n, m an1 m are 2ll integers. As is shown in Fig. 11,two-toneIMDistroublesomebecausethegenerated interference tones Interferer 1= 2fRF1 fRF2 fLO (9a) CENTER 5.50000GHz SPAN 10.00MHz
-
PDF
SSD1332_R1.61.pdf
n a l e L l ) a d l p i e v e O b d . COM1 m c s i T e C n o i ( . COM3 o D O D G - c / i e . C C e D i . D S D . | n . m m . COM61 C . COM63 L S R E B e C M E P P P E L L C C D E F B V C V V V V IR V V G R V V Figure 1 - Block Diagram SSD1332
in „OLED und 8051“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Panasonic_JD_700_800_Series_Service_Manual_1_.pdf
15L M74LS259P " for JD740M/JD840M loL M74LS74P " for JD740M/JD840M 18L M74LS157P " 4M M74LS373P " bM M74LS373P " 8M M74LS244P " 12M SN74367AN " 13M M74LS51P " for JD740M/JD840M 14M M74LS74P " 15M- M74LS04P
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
I2cBusSniffer.pdf
the end of 32KB. The basic building block is therefore an ATMEGA161 (I know, I should upgrade to a 162, but I had the 161 laying around already) with a latch and 32KB of SRAM. I happened to have several old cache chips (20ns 32KB SRAM’s) from a 486 system laying around, and they work nicely. I needed
-
Datei
pwm_aus_sram1.txt
Repeat-Funktion bei Dauerdruck. ;LCD 4x27 an Port D .nolist ;List der Include-Datei unterdrücken .include "m162def.inc" ;vereinbarte Namen verwenden (lt. Datasheet) .list ;Programm listen .listmac ;Makros listen .equ clock = 8000000 ;Taktfrequenz 8Mhz .equ teilfaktor=100 ;Zählumfang des Teilers .equ pwu = 100
in „MENÜ-STEUERUNG“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
pwm_aus_sram1.txt
Repeat-Funktion bei Dauerdruck. ;LCD 4x27 an Port D .nolist ;List der Include-Datei unterdrücken .include "m162def.inc" ;vereinbarte Namen verwenden (lt. Datasheet) .list ;Programm listen .listmac ;Makros listen .equ clock = 8000000 ;Taktfrequenz 8Mhz .equ teilfaktor=100 ;Zählumfang des Teilers .equ pwu = 100
in „MENÜ-STEUERUNG“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Programm_Save.txt
Segment_Control TITLE '7_Segment_Control' "#TITLE '7Segment Controller for MT_HW_0037'; "#ENGINEER 'M.Ott & C. Marbach'; "#COMPANY 'R. Bosch GmbH'; "#REVISION 'V000 24.11.06'; "#COMMENT 'GAL26CV12'; DECLARATIONS DIO_01,DIO_02,DIO_03,DIO_04,DIO_05,DIO_06,DIO_07,DIO_08 PIN 2,3,4,5,6,8,9,10; D1_A,D1_B,D1
-
PDF
27512EP_EDA.pdf
PUSH DE 155 PUSH HL 156 mov DE,[D18F6] 157 XOR A 158 SBC HL,DE 159 POP HL 160 POP DE 161 jmp C,L1A89 162 jmp L1AC2 163 ; 164 L1ABF mov D,H 165 mov E,L 166 DEC HL 167 L1AC2 mov [D18F8],HL 168 call PRINT 169 db 00E 170 db "2308E" 171 db ".+080 172 CALL L0589 173 CALL L1CE1 174 jmp Z,L1A89 175 L1AD5 call
in „EDA-Dateien bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
VHF-COMM.1983.3.pdf
rtus ecuon. VSWR·Measuremenls on Receiver A suuable transmit antenna forme t -rrans Syslems 153 - 162 ponder is 10be found on pag es \84 - 189 Gun rnerBorcnen . OF 5Fe Early problems with the t-transponoer (approx 30 dB of sensitivity were rnissmq') A 2 m/70 em SSB Transmitter with seem 10be solved
-
Datei
config.xml
Always On" WDTON="0"/> <Setting caption="programmable" WDTON="1"/> </WatchdogTimer> </AVR> <AVR name="m162" caption="ATmega162"> <Fuse name="UNUSED_E7" bit="7" fuseByte="efuse" default="1" desc="unused" mode="expert"/> <Fuse name="UNUSED_E6" bit="6" fuseByte="efuse" default="1" desc="unused" mode="expert
in „Fuseeditor, grafische Benutzeroberfläche für AVRdude“ · Projekte & Code ·
-
Datei
st-link_gdbserver_log.txt
q\377wI\377\377\010\377\010`\377\377\011\377\377\377\010\377\377\377o\377\020\377 \377@\377\377\377M\377\004\377M\377\004\377M\377\004\377M\377\004\3773K\033x\377\377\030F\377\377\010\3771I\003F\377\000\033\032\377\000\013D\0203\032`,K\033x\377\377\0013\034F/\377+K\033x\377\377\377\377\377\377\003\377
in „STM32 Cube IDE Inline Assembler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
NMEA_manual_for_Fastrax_IT500_Series_GPS_receivers_V1_8.pdf
HDOP v.v VDOP 1.4 VTG – Course Over Ground and Ground Speed Course and speed. Example: $GPVTG,0.00,T,,M,0.00,N,0.00,K,A*3D Format: $GPVTG,h.hh,T,m.m,M,s.ss,N,s.ss,K,M*hh<CR><LF> h.hh Heading in degrees. T Letter 'T' denoting True heading in degrees. m.m Magnetic heading in degrees. M Letter 'M' denoting
in „GPS - Shield von Antrax mit 10hz betreiben [Arduino Mega]“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Datasheet_ILI9225DS_V022.pdf
VCI1 DUMMY27 VCI1 DUMMY26 VCI1 S2 VCI1 S3 C11P 0 5 S4 C11P S5 C11P S6 C11P S7 C11P S8 C11P S9 C11P C11M C11M C11M 0 6 C11M C11M C11M C11M . . C12P … … C12P … … C12P … … C12P … … C12P 0 7 … … C12P … … Alignment Mark-Left C12M … … C12M … … C12M 105um C12M C12M C31P C31P C31P 0 8 15um C31P 15um C31P C31M
in „STM32F103 TFT SPI ILI9225“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EM6126_DS.pdf
mV VLCD Level V bias tolerance V bias tol. (note 4) -80 80 mV Typical load C LOAD 1.2 pF/pixel Note 1: Measured on V DD1+ V DD2, all outputs open, SDA and SCL at V , RSS at V DD1, multiplex rate 81, x5
in „LCD mit SPI ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HCPL2631.pdf
O 0.6 O 0.6 R 60 V V I = 16 mA U T 0.5 T O C I = 10-15 mA P IO= 16 mA P 0.5 IO= 12.8 mA T F T IO= 12.8 mA T P O 0.4 O 0.4 T 50 L L O E 0.3 E 0.3 L E I = 9.6 mA E IO= 9.6 mA O = 6.4 mA E L 0.2 O O = 6.4 mA L 0.2 E 40 F = 5.0 mA W
in „HCPL2631 Vorwiderstand“ · Mikrocontroller und Digitale Elektronik ·