-
PDF
MAX351-MAX353.pdf
COM2 COM1 2 15 COM2 NC1 3 14 NC2 NO1 3 14 NO2 NO1 3 14 NC2 V- 4 13 V+ V- 4 13 V+ V- 4 13 V+ GND 5 MAX351 12 VL GND 5 MAX352 12 GND 5 MAX353 12 VL VL NC4 6 11 NC3 NO4 6 11 NO3 NO4 6 11 NC3 7 10 7 10 7 10 COM4 COM3 COM4 COM3 COM4 COM3 IN4 8 9 IN3 IN4 8 9 IN3 IN4 8 9 IN3 DIP/SO DIP/SO DIP/SO MAX351 MAX352
in „analogschalter wie seht ihr das ?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Polyswitch_Sicherung.pdf
17.5 (0.69) 28.8 (1.14) 10.20 (0.4) 2 AGR1400 14.0 13.0 16 100 0.0022 0.0064 0.0067 23.5 (0.925) 28.7 (1.13) 10.20 (0.4) 2 AHR:HighTempRadial-Leaded Dimensions (millimeters/inches) Part I * (A) I *(A) V max. I max. R min. R max
in „Tipps für 24V DC Absicherung gesucht ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX712-MAX713.pdf
D1 TOP VIEW WCUBE 1N4001 V+ VLIMIT1 16 REF V+ C1 VLIMIT BATT+ BATT+ 2 15 1μF REF PGM0 3 14 DRV C3 MAX712 R3 MAX712 10μF PGM1 4 MAX713 13 GND 68kΩ MAX713 BATTERY TEMP THI 5 12 BATT- TLO 6 11 CC 10μF R4 CC BATT- TLO GND LOAD 22kΩ TEMP 7 10 PGM3 C2 FASTCHG 8 9 PGM2 0.01μF RSENSE DIP/SO For pricing, delivery
in „Kleine Nimh ladeschaltung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
multimec-5-series-switches.pdf
10,16 7,62 7,62 0 0 00,8Min 10,16 4 Max 12,5 40,3 0,3 0 0,8Max 12,5Max 12,5 4 3 1 7,62 1 M07,62,5 0,8 Min 10,16 Min 10,16 1 0 Ø 0,9 1 7,62 R=17,51,62 R=7,4 Min 10,16 M7,622,5 Max 12,5 (actuated) R1 Max
in „[S] Beleuchtete Navimec Navigationskreistaster für Prototypenherstellung“ · Markt ·
-
PDF
MAX1920-MAX1921.pdf
toc10 MAX1920 toc11 MAX1920 toc12 V V OUT VOUT AC-COUPLED 1V/div AC-COUPLED 5mV/div 5mV/div IIN 100mA/div VLX V LX 2V/div 2V/div V SHDN 5V/div VIN 3.3V, VOUT= 1.5V, VIN 3.3V, VOUT= 1.5V, VIN 3.3V, VOUT= 1.5V
in „Sinnvoll, von 3V Solar mit Stepdown auf 2,5V SuperCap ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX3095-MAX3096.pdf
19-0498; Rev 1; 10/00 ±15kV ESD-Protected, 10Mbps, 3V/5V, Quad RS-422/RS-485 Receivers M ________________General Description ____________________________Features A The MAX3095/MAX3096 are rugged, low-power, quad, ESD Protection
in „Hilfe mit RS485-Receiver-Dattenblatt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX3095-MAX3096.pdf
19-0498; Rev 1; 10/00 ±15kV ESD-Protected, 10Mbps, 3V/5V, Quad RS-422/RS-485 Receivers M ________________General Description ____________________________Features A The MAX3095/MAX3096 are rugged, low-power, quad, ESD Protection
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX306-MAX307.pdf
NO8 0 0 0 0 1 1 0 0 1 0 1 3 NO16 4 25 NO7 0 0 1 1 1 4 NO15 5 24 NO6 0 1 0 0 1 5 0 1 0 1 1 6 NO14 6 MAX306 23 NO5 0 1 1 0 1 7 NO13 7 22 NO4 0 1 1 1 1 8 1 0 0 1 1 10 NO12 8 21 NO3 1 0 1 0 1 11 NO11 9 20 NO2 1 0 1 1 1 12 1 1 0 0 1 13 NO10 10 19 NO1 1 1 0 1 1 14 NO9 11 18 EN 1 1 1 1 1 16 GND 12 17 A0 MAX306
in „Welche Spannung kann der Multiplexer MAX307 schalten?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX9205EVKIT.pdf
400Mbps, 10-bit serializer and the 10-Bit Parallel LVCMOS/LVTTL Interface u MAX9206 400Mbps, 10-bit deserializer. The MAX9205 Allows Common-Mode Testing a IC transforms 10-bit parallel LVCMOS/LVTTL data into a t
in „µC A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX187_MAX.pdf
Serial ADCs 9 8 12.2 1 12.0 11.8 I/O CS X A 11.6 SCK SCLK 11.4 M T 11.2 MISO DOUT / E +5V 7 T 11.0 8 E 10.8 MAX187 1 E 10.6 MAX189 SS X 10.4 (UNDERSAMPLED) A 10.2 a. SPI M 1 10 100 1000 INPUT FREQUENCY (kHz) CS CS SCK SCLK Figure 12. Effective Bits vs. Input Frequency MISO DOUT +5V MAX187 The effective resolution
in „AD-Wandler mittels Optokoppler anbinden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
P26-27-Power-thermistor.pdf
options T3C: Clinched taping T3D: Straight taping ■ Dimensions D T H H0 d Lead wire diameter D2-05 8.5 max. 7.0 max. 11.5 max. 15.5 max. D2-07 11.0 max. 9.0 max. 13.0 max. 16.0 max. Color: Gray 5.0 ± 1 D2-08 10.0 max. 7.0 max. 13.0 max. 17.0 max. D2-10 13.0 max 9.0 max. 17.0 max. 19.5 max. Φ 0.8 Tin plated
in „Auf Fehlersuche bei Nichicon-Netzteil (aus RICOH SP C250SF)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX146-MAX147.pdf
Supply Current, MAX147 DD Full power-down VDD = 3.6V 1.2 10 µA Full-scale input, external reference = 2.5V, Supply Rejection (Note 10) PSR VDD = 2.7V toDD(MAX) ±0.3 mV 4 ________________________________________________
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX146-MAX147.pdf
Supply Current, MAX147 DD Full power-down VDD = 3.6V 1.2 10 µA Full-scale input, external reference = 2.5V, Supply Rejection (Note 10) PSR VDD = 2.7V toDD(MAX) ±0.3 mV 4 ________________________________________________
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX712_MAX713_MAX.pdf
Configuration WALL D1 CUBE V+ 1N4001 TOP VIEW C1 VLIMIT BATT+ VLIMIT1 16 REF 1 F REF BATT+ 2 15 V+ R3 10 F PGM0 3 14 DRV 68k MAX713 BATTERY PGM1 4 MAX712 13 GND MAX713 TEMP THI 5 12 BATT- R4 LOAD TLO 6 11 CC 10 F 22k CC BATT- TLO GND TEMP 7 10 PGM3 C2 FASTCHG8 9 PGM2 0.01 F RSENSE DIP/SO SEE FIGURE 19 FOR
in „Akku-/Batteriekapazität messen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX471-MAX472.pdf
SIGN Sense Current ILOAD ±3 ARMS Sense Resistor RSENSE 35 70 mΩ Current-Sense Ratio OUT / ILOAD = 1A, MAX471C 0.490 0.500 0.510 mA/A ILOAD RS+ = 10V MAX471E 0.4875 0.500 0.5125 ILOAD = 0A, MAX471C 2.5 No-Load OUT Error RS+ = 10V MAX471E 3.0 µA Low-Level OUT Error ILOAD = 30mA, MAX471C ±2.5 µA RS+ = 10V
in „strommeßung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX471-MAX472.pdf
SIGN Sense Current ILOAD ±3 ARMS Sense Resistor RSENSE 35 70 mΩ Current-Sense Ratio OUT / ILOAD = 1A, MAX471C 0.490 0.500 0.510 mA/A ILOAD RS+ = 10V MAX471E 0.4875 0.500 0.5125 ILOAD = 0A, MAX471C 2.5 No-Load OUT Error RS+ = 10V MAX471E 3.0 µA Low-Level OUT Error ILOAD = 30mA, MAX471C ±2.5 µA RS+ = 10V
in „wie Stromrichtung erkennen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX4508-MAX4509.pdf
10V, VCOM_ = +10V C, E -5 +5 nA M -50 +50 +25°C -2 +2 MAX4508 C, E -20 +75 M -200 +200 COM_ Off-Leakage Current ICOM_(OFF)V COM_ – ±10V, nA (Note 6) V NO_= +10V +25°C -1 +1 MAX4509 C, E -100 +75 M -100
in „Messsystem mit PhotoMOS“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX6966-MAX6967.pdf
19-3487; Rev 2; 4/05 VALU ATI NKIT E AVAIA BLE 10-Port Constant-Current LED Drivers and I/O Expanders with PWM Intensity Control General Description Features M A The MAX6966/MAX6967 serial-interfaced peripherals ♦ High-Speed 26MHz SPI-™/QSPI-™/MICROWIRE
in „MAX6966 Ausgänge Verstärken“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX6966-MAX6967.pdf
19-3487; Rev 2; 4/05 VALU ATI NKIT E AVAIA BLE 10-Port Constant-Current LED Drivers and I/O Expanders with PWM Intensity Control General Description Features M A The MAX6966/MAX6967 serial-interfaced peripherals ♦ High-Speed 26MHz SPI-™/QSPI-™/MICROWIRE
in „4 Ch LED Treiber für RGBW gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX712-MAX713.pdf
D1 TOP VIEW CUBE V+ 1N4001 VLIMIT1 16 REF C1 VLIMIT BATT+ BATT+ 2 15 V+ 1µF REF PGM0 3 14 DRV C3 R3 MAX712 BATTERY 10µF PGM1 4 MAX712 13 GND 68kΩ MAX713 MAX713 TEMP THI 5 12 BATT- R4 LOAD TLO 6 11 CC 10µF 22kΩ CC BATT- TLO GND TEMP 7 10 PGM3 C2 FASTCHG 8 9 PGM2 0.01µF R SENSE DIP/SO SEE FIGURE 19 FOR
in „MAX1775_Verständnisproblem“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX712-MAX713.pdf
D1 TOP VIEW CUBE V+ 1N4001 VLIMIT1 16 REF C1 VLIMIT BATT+ BATT+ 2 15 V+ 1µF REF PGM0 3 14 DRV C3 R3 MAX712 BATTERY 10µF PGM1 4 MAX712 13 GND 68kΩ MAX713 MAX713 TEMP THI 5 12 BATT- R4 LOAD TLO 6 11 CC 10µF 22kΩ CC BATT- TLO GND TEMP 7 10 PGM3 C2 FASTCHG 8 9 PGM2 0.01µF R SENSE DIP/SO SEE FIGURE 19 FOR
in „Kurz vorm Verzweifeln“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX471_MAX472_MAX.pdf
µA Sense Current LOAD ±3 ARMS Sense Resistor RSENSE 35 70 mΩ Current-Sense Ratio OUT / ILOAD = 1A, MAX471C 0.490 0.500 0.510 mA/A LOAD RS+ = 10V MAX471E 0.4875 0.500 0.5125 ILOAD = 0A, MAX471C 2.5 No-Load OUT Error RS+ = 10V MAX471E 3.0 µA Low-Level OUT Error ILOAD = 30mA, MAX471C ±2.5 µA RS+ = 10V MAX471E
in „Strommessung/OP“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
irmp.c
-3 + 0.5) // autodetect key repetition within 150 msec #define MIN_TOLERANCE_00 1.0 // -0% #define MAX_TOLERANCE_00 1.0 // +0% #define MIN_TOLERANCE_05 0.95 // -5% #define MAX_TOLERANCE_05 1.05 // +5% #define MIN_TOLERANCE_10 0.9 // -10% #define MAX_TOLERANCE_10 1.1 // +10% #define MIN_TOLERANCE_15 0.85
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
-
PDF
MAX16801A-MAX16802B.pdf
with Dimming Capability, 10.8V to 24V Input Voltage Range X A M VIN 10.8V TO 24V R1 LED(s) UVLO/EN 1 8 IN D1 C4 DIM/FB 2 7 VCC MAX16802B NDRV L1 COMP 3 6 Q1 CS GND 4 5 R2 R3 R4 DIMMING C2 C3 R5 C1 GND Figure 7. MAX16802 Buck HB
in „High Brightness LEDs > 50W µC als regelbare KSQ“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX4617-MAX4619.pdf
Multiplexers/Switches M ________________General Description ____________________________Features A The MAX4617/MAX4618/MAX4619 are high-speed, low- Fast Switching Times voltage, CMOS analog ICs configured as an 8-channel 15ns t ON X multiplexer (MAX4617), two 4-channel multiplexers 10ns t OFF (MAX4618),
in „CMOS analog multiplexer MAX4619“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX941-MAX944.pdf
(Note 8) MAX94_C 80 150 ns 9 PD- MAX94_E/A, MAX942MSA 80 200 4 Differential Propagation Delay dt (Note 9) 10 ns PD 2 Propagation Delay Skew (Note 10) 10 ns / V+ V+ M Logic Input Voltage High VIH (Note 11) –2 + 0.4
in „Verstärkung 2V -> 3.3V“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
datasheetMax3392.pdf
sourced, yet the device will not latch up. The speed-up M / V V VL VCC E L CC 9 V V VL CC 7 L CC 3 3 MAX3372E–MAX3379E MAX3372E–MAX3379E AND MAX3390E–MAX3393E AND MAX3390E–MAX3393E X DATA DATA A I/OLV _ I/OCC I/OLV _ I/OCC _ M GND RLOAD CLOAD CLOAD RLOAD GND – E 2 7 3 I/OLV I/OCC _ 3 tFALL 10ns) (RISE
in „Max3392 Pegelwandler, BlueNiceCom 4“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX396.pdf
MIN MAX M -10 10 TA= +25°C -0.2 0.05 0.2 V COM =±±4.5V, V NO= 4.5V, MAX396 TA= TMIN C, E -2.5 2.5 COM Off-Leakage Current V+ = 5.5V, V- = -5.5V to MAX M -40 40 (Note 6) ICOM(OFF) nA V COM = ±4.5V, TA= +25°C
in „Welche Spannung kann der Multiplexer MAX307 schalten?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX1480A-MAX1490B.pdf
9, L = 100pF, S2 closed 3 10 µs A Shutdown to Driver Output Low ZL(SHDN) Figures 6 and 9, L = 100pF, S1 closed 3 10 µs / / B / SWITCHING CHARACTERISTICS—MAX1480B/MAX1480C/MAX1490B A (VCC_= 5V ±10%, FS = VCC_, A = TMINto MAX , unless
in „[V] 1St. DS1480ACPI DIL Complete, Isolated RS-485/RS-422 Data Interface“ · Markt ·
-
PDF
MAX7219-MAX7221.pdf
A VAILA BLE MAX7219/MAX7221 Serially Interfaced, 8-Digit LED Display Drivers General Description Features The MAX7219/MAX7221 are compact, serial input/out- ♦ 10MHz Serial Interface put common-cathode display drivers
in „[V] 2x MAX7219CNG“ · Markt ·
-
PDF
MAX1480A.pdf
) DRIVER DISABLE TIME DRIVER ENABLE TIME vs. TEMPERATURE vs. TEMPERATURE 100 a 100 b - - 0 0 8 8 s MAX1480B X s MAX1480B X ( M ( M E 10 E 10 T T L L RL= 54 A A VDI´= 0V MEASURED FROM D E DE´ TO VALID OUTPUT R MAX1480C E I 1 RL= 54 I 1 D V = 0V MEASURED FROM D MAX1480C DI´ DE´ TO VALID OUTPUT MAX1480A
-
PDF
CUPP_RELAYS.pdf
(0.025) 14 10 6 2 12 4 3.20 12 8 4 10 6 (0.125) 5.08–0.18 10 6 19.70MAX. 10.00MAX. (0.200–0.007) TopView TopView (0.775) (0.393) 10.16–0.18 (0.400–0.007) 15.24–0.18 (0.600–0.007) U S A 1-877-4REMTECH Europe 32-11-
-
Datei
irmp.c
-3 + 0.5) // autodetect key repetition within 150 msec #define MIN_TOLERANCE_00 1.0 // -0% #define MAX_TOLERANCE_00 1.0 // +0% #define MIN_TOLERANCE_05 0.95 // -5% #define MAX_TOLERANCE_05 1.05 // +5% #define MIN_TOLERANCE_10 0.9 // -10% #define MAX_TOLERANCE_10 1.1 // +10% #define MIN_TOLERANCE_15 0.85
in „ATmega resettet dauernd“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX3030-MAX3033.pdf
A SWITCHING E ( ( 20 ( N 60 N N 1.5 – E E E M U TA= +25°C U 15 U Y Y Y P 40 P P 1.0 A U TA= 0°C U 10 U S S S X 20 0.5 5 3 0 0 0 0 3 0 1 2 3 4 0.1k 1k 10k 100k 1M 10M 100M 0.1k 1k 10k 100k 1M 10M SUPPLY VOLTAGE (V) DATA RATE (bps) DATA RATE (bps) 3 MAX3030E E MAX3030E/MAX3032E MAX3031E/MAX3033E DRIVER
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX3293-MAX3295.pdf
19-2770; Rev 2; 10/06 20Mbps, +3.3V, SOT23 RS-485/ RS-422 Transmitters M General Description Features The MAX3293/MAX3294/MAX3295 low-power, high- A ♦ Space-Saving 6-Pin SOT23 Package speed transmitters for RS-485/RS-422
in „Stromaufnahme eines RS422-Receivers anhand von Datenblatt ermitteln“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
irmp.c
// -5% #define MAX_TOLERANCE_05 1.05 // +5% #define MIN_TOLERANCE_10 0.9 // -10% #define MAX_TOLERANCE_10 1.1 // +10% #define MIN_TOLERANCE_15 0.85 // -15% #define MAX_TOLERANCE_15 1.15 // +15% #define MIN_TOLERANCE_20
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
-
PDF
datasheetFilter.pdf
kHz) (kHz) (dB) (dB) (dB) (dB) (dB) (dB) (dB) (kΩ) KMFC626C within 455 within 455 (SFGCG455CZAWCZB) T10.5 to T10.5kHz T10.5kHz 1.5 KMFC626C30 455 T13.0max. Y 30min. 60min. 55min. 40min. 20min. 8max. (SFGCG455CZ10AWCZ10B) 0.5max. 20max. 1.0 KMFC626C5 within 455 within 455 1.5 (SFGCG455CZ5AWCZ5B) 455 T9.0
in „Superhet mit einer Loop-Antenne=Empangsspule für KW“ · HF, Funk und Felder ·
-
Datei
irmp.c
// -5% #define MAX_TOLERANCE_05 1.05 // +5% #define MIN_TOLERANCE_10 0.9 // -10% #define MAX_TOLERANCE_10 1.1 // +10% #define MIN_TOLERANCE_15 0.85 // -15% #define MAX_TOLERANCE_15 1.15 // +15% #define MIN_TOLERANCE_20
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
-
PDF
max774-max776.pdf
Current V+ = 10V, SHDN ≥ 1.6V (shutdown) 2 5 µA A V+ = 16.5V, SHDN ≥ 1.6V (shutdown) 4 M FB Trip Point 3V ≤ V+ ≤ 16.5V -10 10 mV MAX77_C ±50 FB Input Current FB MAX77_E ±70 nA MAX77_M ±90 MAX774 -4.80 -5 -5.20 Output
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
-
Datei
irmp.c
-3 + 0.5) // autodetect key repetition within 150 msec #define MIN_TOLERANCE_00 1.0 // -0% #define MAX_TOLERANCE_00 1.0 // +0% #define MIN_TOLERANCE_05 0.95 // -5% #define MAX_TOLERANCE_05 1.05 // +5% #define MIN_TOLERANCE_10 0.9 // -10% #define MAX_TOLERANCE_10 1.1 // +10% #define MIN_TOLERANCE_15 0.85
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
-
PDF
MAX3232.pdf
3V or -3V to +3V, 24 150 V/µs 3 T A +25°C V CC X C = 150pF to 2500pF, L 4 30 A MBAUD = GND Note 2: MAX3222/MAX3232/MAX3241: C1–C4 = 0.1µF tested at 3.3V ±10%; C1 = 0.047µF, C2–C4 = 0.33µF tested at 5.0V ±10%. M / MAX3237: C1–C4 = 0.1µF tested at 3.3V ±5%; C1–C4 = 0.22µF tested at 3.3V ±10%; C1 = 0.047µF
-
PDF
MAX186-MAX188.pdf
TEMPERATURE (°C) TEMPERATURE (°C) TEMPERATURE (°C) MAX186/MAX188 FFT PLOT – 133kHz 20 0 ft = 10kHz ) -20 t = 10kHz3kHz (-40 s = 133kHz E TA= +25°C U -60 L M -80 A -100 -120 -140 0 33.25kHz 66.5kHz FREQUENCY ______________________________________________
in „Allgemeine Frage zu ADC Spezifikationen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Fehler.txt
Users\Name\Desktop\Protogen_OS_V3.1_mod (1)\1\1.ino:24:0: C:\Users\Name\Documents\Arduino\libraries\MaxMatrix/MaxMatrix.h:48:10: note: initializing argument 3 of 'void MaxMatrix::writeSprite(int, int, const byte*)' void writeSprite(int x, int y, const byte* sprite); ^~~~~~~~~~~ C:\Users\Name\Desktop\Protogen_OS_V3.1
in „Max7219 an Arduino Nano will nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
431000.pdf
0.003 inch) of A 8.0±0.1 0.315±0.004 its true position (T.P.) at maximum material condition. B 0.45 MAX. 0.018 MAX. C 0.5 (T.P.) 0.020 (T.P.) (2) "A" excIudes mold flash. (Includes mold flash : 8.3 mm MAX. D 0.20±0.10 0.008±0.004 <0.327 inch MAX.>) G 1.02 MAX. 0.041 MAX. H 19.0±0.2 0.748±0.008 I 18.4±
in „SRAM Ansteuern (Zeitdiagramm)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CP-Clare-PRME-15002.pdf
IC - 0.4 - - 2 Amps Contact Rating Max DC/PeakAC Resistive - 3 - - 10 Watts Life Expectancy Signal Level 1.0V 10mA - 20 - 300 500 - x10 Ops Related Loads(1) Static Contact Resistance 50mV, 10mA CR - 200 - - 150 mΩ Dynamic Contact Resistance
-
PDF
CP-Clare-PRME-15002.pdf
IC - 0.4 - - 2 Amps Contact Rating Max DC/PeakAC Resistive - 3 - - 10 Watts Life Expectancy Signal Level 1.0V 10mA - 20 - 300 500 - x10 Ops Related Loads(1) Static Contact Resistance 50mV, 10mA CR - 200 - - 150 mΩ Dynamic Contact Resistance
-
Datei
MAX7219.C
9;aa++) { if (t1[aa] == 0) { fehl++; } } if (fehl == 0 //es sind alle beschrieben ) { for (aa=1;aa<10;aa++) { z=aa-1; xx=5; /* EasyCASE - */ f=t1[aa]; ziffer= f/10000; MAX7219_Write (xx,(unsigned char)ziffer); /* EasyCASE - */ b1=f%10000; ziffer = b1/1000; xx--; MAX7219_Write (xx,(unsigned char)ziffer); /* EasyCASE - */ d1=b1%1000; ziffer=d1/100; xx--; MAX7219_Write (xx,(unsigned char)ziffer); /* EasyCASE - */ f1=d1%100; ziffer=f1/10; xx--; MAX7219_Write (xx,(unsigned char)ziffer); /* EasyCASE - */ g1=f1%10; ziffer=g1; xx--; MAX7219_Write (xx,(unsigned
in „MAX 7219 AVR Programm“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Inverter_MAX660.pdf
factors (in addition to load current) affect the rent for capacitances ranging from 0.33µF to 220µF. MAX660 output voltage drop from its ideal value: Output current is plotted for inputs of 4.5V (5V-10%) and 1) MAX660 output resistance 3.0V (3.3V-10%), and allow for 10% and 20% output droop with each input
in „Spannungspeaks / Ripple durch Schaltregler. Abhilfe?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LD3361BS.pdf
℃) PART NUMBER DICE PEAK MAX. REVERSE VF VF (V) LUMINOUS MATERIAL WAVELENGTH CURRENT / (V) MAX. INTENSITY / (COLOR) (nm) SEGMENT (uA) TYP SEGMENT AVERAGE (IF = 10mA) LEDS5612AUR11 AlGaAs Red 660 10 1.8 2.3 10,000 ucd LEDS5612TB11
in „TPIC6B595N Cascade Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MOSFET_Treiber.pdf
Figure 10B. Turn-On Rise Time vs. Voltage 100 100 80 80 n n e 60 e 60 i i l l F F Max. O O r 40 r 40 T Max. T Typ. Typ. 20 20 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature (°C) VBIASSupply Voltage
in „MOSFET - Treiber“ · Analoge Elektronik und Schaltungstechnik ·