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PDF
sensata-1nt_series-fixed_temperature_thermostats-datasheet.pdf
Class 6H Thread Narrow .396 Wide 5.6 Tab (.156) Ref. Tab 3.55 (.220) Ref. (.140) Ref. 4.45 (.175) Max. 0.8 (.032) .254 6.35 Ref. (.100) (.250) 6.42 Ref. Ref. (.253) Max. .071 (.028) 0.50 5.6 0.50 Ref. (.020) Ref. (.220) Max. (.020) Ref. *10A Max. on all terminals 0.51 (.020 thick All dimensions mm (
in „Thermoschalter Thermomix 3300 Temperatur?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sensata-1nt_series-fixed_temperature_thermostats-datasheet.pdf
Class 6H Thread Narrow .396 Wide 5.6 Tab (.156) Ref. Tab 3.55 (.220) Ref. (.140) Ref. 4.45 (.175) Max. 0.8 (.032) .254 6.35 Ref. (.100) (.250) 6.42 Ref. Ref. (.253) Max. .071 (.028) 0.50 5.6 0.50 Ref. (.020) Ref. (.220) Max. (.020) Ref. *10A Max. on all terminals 0.51 (.020 thick All dimensions mm (
in „Was ist das für ein Bauteil? Kaffeemaschine“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UPD43256.pdf
0.01 inch) ITEM MILLIMETERS INCHES of its true position (T.P.) at maximum material condition. A 38.10 MAX. 1.500 MAX. B 2.54 MAX. 0.100 MAX. 2) Item "K" to center of leads when formed parallel. C 2.54 (T.P.) 0.100 (T.P.) D 0.50±0.10 0.020 –0.005 F 1.2 MIN. 0.047 MIN. G 3.6±0.3 0.142±0.012 H 0.51 MIN. 0.020 MIN. I 4.31 MAX. 0.170 MAX. J 5.72 MAX. 0.226 MAX. K 15.24 (T.P.) 0.600 (T.P.) L 13.2 0.520 M 0.25+0.10 0.010 +0.004 –0.05 –0.003 N 0.25 0.01 R 0 ~ 15 ° 0 ~ 15° P28C-100-600A1-1 17 PD43256B 28 PIN PLASTIC SOP (450
in „IC P51256Sl-10 SRAM“ · Mikrocontroller und Digitale Elektronik ·
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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 ·
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PDF
MAX856-Stepup.pdf
C 60 VIN 1.5V E 50 E 50 I I F 40 F 40 E E 30 30 20 20 10 10 0 0 0.001 0.01 0.1 1 10 100 1000 0.001 0.01 0.1 1 10 100 1000 LOAD CURRENT (mA) LOAD CURRENT (mA) MAX856/MAX857 MAX856/MAX857 EFFICIENCY vs. OUTPUT CURRENT EFFICIENCY vs. OUTPUT CURRENT VOUT = 5V
in „Bitte mal kurz über Schaltplan drüberschauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX856-Stepup.pdf
C 60 VIN 1.5V E 50 E 50 I I F 40 F 40 E E 30 30 20 20 10 10 0 0 0.001 0.01 0.1 1 10 100 1000 0.001 0.01 0.1 1 10 100 1000 LOAD CURRENT (mA) LOAD CURRENT (mA) MAX856/MAX857 MAX856/MAX857 EFFICIENCY vs. OUTPUT CURRENT EFFICIENCY vs. OUTPUT CURRENT VOUT = 5V
in „Verständnisfrage zu Shutdown Feature von Schaltregler MAX856“ · Mikrocontroller und Digitale Elektronik ·
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PDF
maxim_481_483_491.pdf
Driver Input to Output tPHL CL1= CL2 = 100pF 10 30 60 ns 8 Driver Output Skew to Output tSKEW Figures 6 and DIFF= 54Ω, L1= CL2= 100pF 5 10 ns 7 Figures 6 and 8,MAX481, MAX485, MAX1487 3 15 40 – Driver Rise or Fall Time R F t RDIFF= 54Ω, MAX490C/E,
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PDF
MAX485.pdf
Driver Input to Output tPHL CL1= CL2 = 100pF 10 30 60 ns 8 Driver Output Skew to Output tSKEW Figures 6 and DIFF= 54Ω, L1= CL2= 100pF 5 10 ns 7 Figures 6 and 8,MAX481, MAX485, MAX1487 3 15 40 – Driver Rise or Fall Time R F t RDIFF= 54Ω, MAX490C/E,
in „Kommunikation mit PC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IR2130.pdf
10.0 10.0 8.0 8.0 A A ( ( n 6.0 n 6.0 r r C C l l u u 4.0 S 4.0 S V Max. C Max. V Typ. 2.0 2.0 Typ. 0.0 0.0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature (°C) VCC Supply Voltage (V) Figure 28A.V
in „Wie gross muss C für Ladungspumpe IR2130 sein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Byte_Blaster_MV.pdf
APEX II, APEX 20K (including APEX 20K, APEX 20KE, and APEX 20 KC), ACEX 1K, Mercury, Excalibur, FLEX 10K (including FLEX 10KA and FLEX 10KE), FLEX 8000, and FLEX 6000 devices, as well as programming data to MAX 9000, MAX 7000S, MAX 7000A, MAX 7000B, MAX 3000A devices and configuration devices. Because
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PDF
MAX481_422.pdf
= 54Ω, 10 30 60 ns 4 tPHL CL1= CL2 = 100pF 10 30 60 8 Driver Output Skew to Output tSKEW Figures 6 and DIFF= 54Ω, L1= CL2= 100pF 5 10 ns 7 Figures 6 and 8,MAX481, MAX485, MAX1487 3 15 40 – Driver Rise or Fall
in „Problem mit MAX481 Transmitter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX485.pdf
= 54Ω, 10 30 60 ns 4 tPHL CL1= CL2 = 100pF 10 30 60 8 Driver Output Skew to Output tSKEW Figures 6 and DIFF= 54Ω, L1= CL2= 100pF 5 10 ns 7 Figures 6 and 8,MAX481, MAX485, MAX1487 3 15 40 – Driver Rise or Fall
in „STM32 UART Kommunikation -> Langsamer uC Tod“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1674-MAX1676.pdf
. 8-Pin and 10-Pin µMAX Packages X Preassembled Evaluation Kit (MAX1676EVKIT) 1 All three devices have a 0.3Ω N-channel MOSFET 6 power switch. The MAX1674 has a 1A current limit. The MAX1675 has a 0.5A current limit
in „MAX1674: LED an LBO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1132-MAX1133.pdf
, T = T to T , unless otherwise noted. Typical values are at TRE= +25°C.) REFADJ DD REF CREF A MIN MAX X A 1 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 1 ANALOG INPUT 3 Unipolar 0 12 2 MAX1132 Input Range Bipolar -12 12 V M Unipolar 0 4.096 MAX1133 A Bipolar -4.096 4.096 Unipolar 7.5 10.0 X MAX1132
in „50 Hz Tiefpass-Filter mit Eingangsimpedanz ADC möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX6369-MAX6374.pdf
watchdog startup delay and the normal watchdog timeout Table 1. Minimum Timeout Settings LOGIC INPUTS MAX6369/MAX6370 MAX6371/MAX6372 MAX6373/MAX6374 SET2 SET1 SET0 DELAY ,WD tDELAY = 60s,WD tDELAY tWD 0 0 0 1ms 1ms 3ms 3ms 0 0 1 10ms 3ms 3s 3s 0 1 0 30ms 10ms 60s 1s 0 1 1 Disabled Disabled Disabled Disabled 1 0 0 100ms 100ms 200µs 30µs 1 0 1 1s 300ms First Edge 1s 1 1 0 10s 3s First Edge 10s 1 1 1 60s 60s 60s 10s www.maximintegrated.com Maxim Integrated 7 MAX6369–MAX6374 Pin-Selectable Watchdog Timers ●● Watchdog Timeout Period: no undesired watchdog outputs, the routine
in „[V] 10St. Langzeit (>1min) Selectable Watchdog Timers MAX6373KA+ (15€)“ · Markt ·
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PDF
MAX6369-MAX6374.pdf
watchdog startup delay and the normal watchdog timeout Table 1. Minimum Timeout Settings LOGIC INPUTS MAX6369/MAX6370 MAX6371/MAX6372 MAX6373/MAX6374 SET2 SET1 SET0 DELAY ,WD tDELAY = 60s,WD tDELAY tWD 0 0 0 1ms 1ms 3ms 3ms 0 0 1 10ms 3ms 3s 3s 0 1 0 30ms 10ms 60s 1s 0 1 1 Disabled Disabled Disabled Disabled 1 0 0 100ms 100ms 200µs 30µs 1 0 1 1s 300ms First Edge 1s 1 1 0 10s 3s First Edge 10s 1 1 1 60s 60s 60s 10s www.maximintegrated.com Maxim Integrated 7 MAX6369–MAX6374 Pin-Selectable Watchdog Timers ●● Watchdog Timeout Period: no undesired watchdog outputs, the routine
in „[V] 10St. Langzeit (>1min) Selectable Watchdog Timers MAX6373KA+ (10€)“ · Markt ·
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PDF
max6369-max6374.pdf
watchdog startup delay and the normal watchdog timeout Table 1. Minimum Timeout Settings LOGIC INPUTS MAX6369/MAX6370 MAX6371/MAX6372 MAX6373/MAX6374 SET2 SET1 SET0 DELAY ,WD tDELAY = 60s,WD tDELAY tWD 0 0 0 1ms 1ms 3ms 3ms 0 0 1 10ms 3ms 3s 3s 0 1 0 30ms 10ms 60s 1s 0 1 1 Disabled Disabled Disabled Disabled 1 0 0 100ms 100ms 200µs 30µs 1 0 1 1s 300ms First Edge 1s 1 1 0 10s 3s First Edge 10s 1 1 1 60s 60s 60s 10s www.maximintegrated.com Maxim Integrated 7 MAX6369–MAX6374 Pin-Selectable Watchdog Timers ●● Watchdog Timeout Period: no undesired watchdog outputs, the routine
in „[V] 10St. Langzeit(>1min) Selectable Watchdog Timers MAX6373KA+ (8€)“ · Markt ·
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PDF
MAX6369-MAX6374.pdf
watchdog startup delay and the normal watchdog timeout Table 1. Minimum Timeout Settings LOGIC INPUTS MAX6369/MAX6370 MAX6371/MAX6372 MAX6373/MAX6374 SET2 SET1 SET0 DELAY ,WD tDELAY = 60s,WD tDELAY tWD 0 0 0 1ms 1ms 3ms 3ms 0 0 1 10ms 3ms 3s 3s 0 1 0 30ms 10ms 60s 1s 0 1 1 Disabled Disabled Disabled Disabled 1 0 0 100ms 100ms 200µs 30µs 1 0 1 1s 300ms First Edge 1s 1 1 0 10s 3s First Edge 10s 1 1 1 60s 60s 60s 10s www.maximintegrated.com Maxim Integrated 7 MAX6369–MAX6374 Pin-Selectable Watchdog Timers ●● Watchdog Timeout Period: no undesired watchdog outputs, the routine
in „[V] 10St. Langzeit (>1min) Selectable Watchdog Timers MAX6373KA+ (8€)“ · Markt ·
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PDF
503991-da-01-en-RELAIS_24V_5A_G2R_2.pdf
30 3 Aat 30 3Aat 30 1.5Aat VDC VDC VDC VDC VDC VDC VDC VDC VDC VDC VDC 30 VDC Rated carry current 10A 5A 16A 5A 5 A 3 A Max. switchingvoltage 380 VAC, 125 VDC 380 VAC, 125 VDC 380VAC, 125VDC Max. switchingcurrent 10A 5A 16A 5A 5 A 3 A Failure rate (Plevel) (reference value) * 100 mAat 5VDC 10 mAat 5
in „Relais an Atmega, Kontrolle Bauteile“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1487-MAX491.pdf
= 54Ω, 10 30 60 ns 4 tPHL CL1= CL2 = 100pF 10 30 60 8 Driver Output Skew to Output tSKEW Figures 6 and DIFF= 54Ω, L1= CL2= 100pF 5 10 ns 7 Figures 6 and 8,MAX481, MAX485, MAX1487 3 15 40 – Driver Rise or Fall
in „SPI Recihweite über RS422 (MAX490) erhöhen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX491.pdf
= 54Ω, 10 30 60 ns 4 tPHL CL1= CL2 = 100pF 10 30 60 8 Driver Output Skew to Output tSKEW Figures 6 and DIFF= 54Ω, L1= CL2= 100pF 5 10 ns 7 Figures 6 and 8,MAX481, MAX485, MAX1487 3 15 40 – Driver Rise or Fall
in „MAX491 -Defekt??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221_LED_Display_Treiber.pdf
(V) MAX7219 MAX7221 SEGMENT OUTPUT CURRENT SEGMENT OUTPUT CURRENT 1 0 MAXIMUM INTENSITY = 31/32 2 MAXIMUM INTENSITY = 15/16 1 A A M M 10mA/div 10mA/div 0 0 5µs/div 5µs/div 4 ________________________________
in „23 7-Segment LEDs mit AVR ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
(V) MAX7219 MAX7221 SEGMENT OUTPUT CURRENT SEGMENT OUTPUT CURRENT 1 0 MAXIMUM INTENSITY = 31/32 2 MAXIMUM INTENSITY = 15/16 1 A A M M 10mA/div 10mA/div 0 0 5µs/div 5µs/div 4 ________________________________
in „BCD-Decoder als SMD gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
(V) MAX7219 MAX7221 SEGMENT OUTPUT CURRENT SEGMENT OUTPUT CURRENT 1 0 MAXIMUM INTENSITY = 31/32 2 MAXIMUM INTENSITY = 15/16 1 A A M M 10mA/div 10mA/div 0 0 5µs/div 5µs/div 4 ________________________________
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PDF
emax.pdf
10X5 (Thin) Specifications No. Of cells 2-3x Li-Poly Max. efficiency 82% Max. efficiency current 8 - 13 A (>75%) No load current / 10 V 0,5 A Current capacity 2215/25 15 A/60s 2215/20 20 A/60s Internal
in „A4963 BLDC Motor Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IR2130.pdf
i i r 15.0 r 15.0 l l T Max. T Max. U U F 10.0 Typ. F 10.0 Typ. t t , , 1 Min. 1 Min. L L 5.0 5.0 0.0 0.0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature (°C) V CC Supply Voltage (V) Figure 17A. LIN1,2,3 to FAULT Clear
in „Shunt Messung mit IR2130 (BLDC Steuerung)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ferritperlen.pdf
mm (See Note) E D F DS310/310H TYPE Fig. 1 DST310/310H TYPE Fig. 2 DSS310/310H TYPE Fig. 3 I T 7.5 max. E 9.5 max. 4.0 max. 9.5 max. 4.0 max. 12.0 max. R S 1.5 max. 1.5 max. 10.0 max. 1.5 max. 10.5 max. 15.5 max. 1.0 ± 0.5 2.5 ± 0.5 25.0 min. 1.25 ± 0.5 25.0 min. 25.0 min. 0.65 D. F2 Ferrite 0.65 D.
in „24Bit Delta-Sigma ADC-Eingang vor ESD und Überspannung schützen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX6457-MAX6460.pdf
= 12V 5 5 T = +125°C 4 X X 1600 A X M 100 M s M 13 (1400 MAX6457UKD3 E ) ) 10 T1200 A 12 s ( V = 5V ( A1000 I CC tT F 11 1 U 800 T MAX6457UKD0 U 600 T = +25°C 10 VCC = 24V O A 0.1 400 9 200 TA= -40°C 8 0.01 0 4 8 12 16 20 24 28 -40 -25 -10 5 20 35 50 65 80 95
in „Tiefenentladungsschutz für Li-Ion Akku mit MAX6457“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MEM4X16E43VTW-5.pdf
DQ VIOH VIOL VALID DATA VIH OE# VIL DON?T CARE UNDEFINED TIMING PARAMETERS -5 -6 -5 -6 SYMBOL MIN MAX MIN MAX UNITS SYMBOL MIN MAX MIN MAX UNITS t t ACH 12 15 ns RAD 9 12 ns tAR 38 45 ns tRAH 7 10 ns tASC 0 0 ns tRAS 50 10,000 60 10,000 ns t t ASR 0 0 ns RC 84 104 ns tCAH 8 10 ns tRCD 11 14 ns tCAS
in „SN74ABTH16460 4-to-1 Multiplexed/Demultiplexed Transceivers with 3-State Outputs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sensata_1nt_series_fixed_temperature_thermostats_d-1760342.pdf
Class 6H Thread Narrow .396 Wide 5.6 Tab (.156) Ref. Tab 3.55 (.220) Ref. (.140) Ref. 4.45 (.175) Max. 0.8 (.032) .254 6.35 Ref. (.100) (.250) 6.42 Ref. Ref. (.253) Max. .071 (.028) 0.50 5.6 0.50 Ref. (.020) Ref. (.220) Max. (.020) Ref. *10A Max. on all terminals 0.51 (.020 thick All dimensions mm (
in „Thermoschalter Thermomix 3300 Temperatur?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX8211-MAX8212.pdf
= 4.5V to 5.5V 1.0 0.2 mV Voltage with Supply Voltage 0V ≤ V ≤ V+, T = +25°C 0.01 10 0.01 10 Threshold Input Current ITH TH A nA TA= TMIN to MAX 20 20 VOUT = 16.5V, TH = 1.0V 10 TA= TMINto MAX ,VOUT = 16.5V, TH = 1.3V 10 C/E temp. rangesVOUT = 5V, VTH= 1.0V 1 Output Leakage Current I
in „low batt anzeige“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
max232.pdf
Reel A0 B0 K0 P1 W Pin1 Type Drawing Diameter Width (mm) (mm) (mm) (mm) (mm) Quadrant (mm) W1 (mm) MAX232DR SOIC D 16 2500 330.0 16.4 6.5 10.3 2.1 8.0 16.0 Q1 MAX232DR SOIC D 16 2500 330.0 16.4 6.5 10.3 2.1 8.0 16.0 Q1 MAX232DWR SOIC DW 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 MAX232DWRG4 SOIC DW 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 MAX232IDR SOIC D 16 2500 330.0 16.4 6.5 10.3 2.1 8.0 16.0 Q1 MAX232IDWR SOIC DW 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 MAX232NSR SO NS 16 2000 330.0 16.4 8.2 10.5 2.5
in „CES Hautwiderstand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX38640A-MAX38643B.pdf
Wireless, Industrial Products Typical Operating Circuit 2.2µH INPUT 1.8V-5.5V OUTPUT 1.8V IN LX OUT 10µF 22µ F MAX38640A RSEL EN GND R SEL 768kΩ 19-100410; Rev 0; 10/18 MAX38640/1/2/3/A/B Tiny 1.8V - 5.5V Input, 330nA I , 700mA Q nanoPower Buck Converter Absolute Maximum Ratings IN, EN, RSEL, NC, OUT
in „(Ultra) Low Power System mit 3.3V ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4908-MAX4932.pdf
/ V ], V = output, V = input to off switch. Y Off-Isolation =[V / V ], V = output, 10 X X_ X X_ 10 Y Y_ Y VY_ = input to off switch. Maxim Integrated 3 www.maximintegrated.com MAX4908/MAX4909/ Dual 3:1 Clickless Audio Multiplexers MAX4930/MAX4932 with Negative-Signal Handling Typical
in „Audio Umschlter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX4626.pdf
V+ = 4.5V, TA= +25°C 0.35 0.5 4 On-Resistance RON VNO or VNC = 3.5V, Ω X ICOM = 100mA TA= T MINto MAX 0.6 A On-Resistance Flatness R FLAT(ON) V+ = 4.5V; COM = 0, 1V, TA= +25°C 0.05 0.10 Ω (Note 4) 2V; COM = 100mA TA= T MINto MAX 0.10 M NO or NC Off-Leakage I , V+ = 5.5V; V = 1V, 4.5V; TA= +25°C -2 0.2
in „Selbsthaltener Powerschalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7450ESA_T-Dallas-Semiconductor.pdf
vs. TEMPERATURE 35 o 0 c MAX7450 5 MAX7450 5 A A 33 M V -1 M A ( ( G -2 N 31 T R O U H -3 Y R P 29 P U K -4 S A 27 B -5 25 -6 -40 -15 10 35 60 85 -40 -15 10 35 60 85 TEMPERATURE (°C) TEMPERATURE (°C) 4 _________________________
in „Video conditioners gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD_Catalog.pdf
-4.1 Max L SC70 4.096V 0.5% shunt V ref ABY LM4040DIX3-4.1 Max L SC70 4.096V 1% shunt V ref ABZ LM4040AIX3-5.0 Max L SC70 5.000V 0.1% shunt V ref AC BCX51-100 Sie P SOT89 45V pnp audio hfe 100 AC BCX51-10 Phi
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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PDF
MAX7313-92585.pdf
to 3.6V, T = T to T , unless otherwise noted. Typical values are at V+ = 3.3V, T = +25°C.) 1 A MIN MAX A (Note 1) 3 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 7 Interrupt Valid tIV Figure 10 6.5 µs X Interrupt Reset tIR Figure 10 1 µs A Output Data Valid t Figure 10 5 µs DV M Input Data Setup Time
in „MAX7313 an Arduino Nano - Pins nicht "schaltbar"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max232.pdf
Reel A0 (mm) B0 (mm) K0 (mm) P1 W Pin1 Type Drawing Diameter Width (mm) (mm) Quadrant (mm) W1 (mm) MAX232DR SOIC D 16 2500 330.0 16.4 6.5 10.3 2.1 8.0 16.0 Q1 MAX232DR SOIC D 16 2500 330.0 16.4 6.5 10.3 2.1 8.0 16.0 Q1 MAX232DWR SOIC DW 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 MAX232IDR SOIC D 16 2500 330.0 16.4 6.5 10.3 2.1 8.0 16.0 Q1 MAX232IDWR SOIC DW 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 MAX232NSR SO NS 16 2000 330.0 16.4 8.2 10.5 2.5 12.0 16.0 Q1 Pack Materials-Page 1 PACKAGE MATERIALS INFORMATION www.ti.com
in „Problem mit RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX_Reset_Circuit.pdf
to MAX803_EXR-T10 -40°C to +125°C 3 SC70-3 X be in the correct logic stateCCordown to 1V. MAX809_EXR-T -40°C to +125°C 3 SC70-3 8 Low supply current makes the MAX803/MAX809/ MAX809_EXR-T10 -40°C to +125°C
in „AVR, Batteriebetrieb und Brownout“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CONTROL_IC_IR2109PBF_DIP_8__IR.pdf
Supply Volta ge www.irf.com 9 IR2109 4 ( ) ( S ) & (PbF) 200 200 ) ) s 150 n 150 ( ( e m T T l l 100 Max. F 100 F f f - Max. - Typ. r r 50 u 50 T T Typ. 0 0 10 12 14 16 18 20 -50 -25 0 25 50 75 100 125 o V Supply Voltage (V) Temperature ( C) BIAS Figure 10A. Turn-off Fall Time Figure 10B. Turn-off Fall
in „1. Schaltung Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADG507A.pdf
Comments ANALOG SWITCH Analog Signal Range VSS V SS VSS VSS V SS VSS V min VDD V DD VDD VDD V DD VDD V max R ON 280 280 280 typ –10 V V S +10 V, DS=1 mA; Test Circuit 1 450 600 450 600 450 600 max 300 400 300 400 max V DD= 15 V ( 10%), SS= –15 V ( 10%) 300 400 max V = 15 V ( 5%), V = –15 V ( 5%) DD SS R
in „Videopfad - LM1881 -Sync-Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Relais-g6b.pdf
1-pole Single-winding Latching Model and PCB Mounting Holes Single-side Stable Model P6B-04P 23.2 max. (BOTTOM VIEW) (23)* Tolerance: ±0.1 mm 10 max. 2.54 Four, 1.1-dia. holes (9.9)* 3.1 2.54 (1.2) 10.1 max. (10)* 7 3.5 (2.71) 10.16 7.62 0.8 0.4 10.16 7.62 7.62 * Average value Socket for 1-pole Double-winding
in „Snubber für stromloses ausschalten eines Transformators notwendig?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDS_RS-5V.pdf
9 Temperature rise Max. 35°C at 0.5 W operating power Mechanical (at 500 cps.) 10 Max. 65°C at 1 W operating power 1A20VDC/0.3A110VAC 10 (at 1 cps.) 5 2 0.5A30VDC/0.1A110VAC 3×10 (at 2 cps.) Shock Functional* Min. 980 m/s
in „[S] Reed-Kontakt "NC"“ · Markt ·
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PDF
SDS-R-Relais.pdf
9 Temperature rise Max. 35°C at 0.5 W operating power Mechanical (at 500 cps.) 10 Max. 65°C at 1 W operating power 1A20VDC/0.3A110VAC 10 (at 1 cps.) 5 2 0.5A30VDC/0.1A110VAC 3×10 (at 2 cps.) Shock Functional* Min. 980 m/s
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Datei
broetje-xml.xml
="-10" max="10" step="1" scale="64" unit="°C" writeable="true" nullable="true"/> <cmdDef progNr="00740" cmdCode="213D0663" name="Vorlaufsollwert Minimum" level="Expert" payloadType="Int16" length="3" default
in „Brötje ISR Plus Kommunikation / LPB“ · Haus & Smart Home ·
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Datei
broetje-xml.xml
="-10" max="10" step="1" scale="64" unit="°C" writeable="true" nullable="true"/> <cmdDef progNr="00740" cmdCode="213D0663" name="Vorlaufsollwert Minimum" level="Expert" payloadType="Int16" length="3" default
in „Brötje ISR Plus Kommunikation / LPB“ · Haus & Smart Home ·
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PDF
TLC_555specs_TI.pdf
range 0.3 1.05 0.61 1.39 V 25°C 10 10 I(TRIG) Trigger current pA MAX 75 150 25°C 0.4 1.1 1.5 0.4 1.1 1.5 V Reset voltage V I(RESET) Full range 0.3 2 0.3 1.8 25°C 10 10 I(RESET) Reset current MAX 75 150 pA Control voltage (open circuit
in „TL555i was ist das“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IR2110-DataSheet.pdf
channel designed for bootstrap operation Fully operational to +500V or +600V VOFFSET (IR2110) 500V max. Tolerant to negative transient voltage (IR2113) 600V max. dV/dt immune • Gate drive supply range from 10 to 20V I +/- 2A / 2A • Undervoltage lockout for both channels O V OUT 10 - 20V • 3.3V logic
in „Inverter DC/AC mit EGS002 China DEV-Board“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NAIS_TN2.pdf
load) FCC surge voltage between open 1,500 V Max. switching voltage 110 V DC,125 V AC contacts Temperature rise* (at 20°C) Max. 50°C Max. switching current 1 A Min. switching capacity 1 10 A 10 mV DC Operate time [Set time]* (at 20°C) Max. 3 ms (Approx
in „LED/LDR Schaltung“ · Mikrocontroller und Digitale Elektronik ·