-
PDF
UM10204-user-manual.pdf
set-up time 250 - 100 [5] - 50 - ns n SU;DAT R o tr rise time of both SDA and SCL signals - 1000 20 300 - 120 ns e e . n tf fall time of both SDA and SCL - 300 20 × 300 20 × 120 [8] ns 6 i [3][6][7][8] [9] — o signals (VDD / 5.5 V) (VDD / 5.5 V) 4 m t set-up time for STOP condition 4.0 - 0.6 - 0.26 -
in „PCA9507, Slaves auf beiden Seiten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
I2C-bus_specification_2014.pdf
set-up time 250 - 100 [5] - 50 - ns n SU;DAT R o tr rise time of both SDA and SCL signals - 1000 20 300 - 120 ns e e . n tf fall time of both SDA and SCL - 300 20 × 300 20 × 120 [8] ns 6 i [3][6][7][8] [9] — o signals (VDD / 5.5 V) (VDD / 5.5 V) 4 m t set-up time for STOP condition 4.0 - 0.6 - 0.26 -
in „I2C Pullup bei vielen I2C Devices“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
I2C-bus_specification_2014.pdf
set-up time 250 - 100 [5] - 50 - ns n SU;DAT R o tr rise time of both SDA and SCL signals - 1000 20 300 - 120 ns e e . n tf fall time of both SDA and SCL - 300 20 × 300 20 × 120 [8] ns 6 i [3][6][7][8] [9] — o signals (VDD / 5.5 V) (VDD / 5.5 V) 4 m t set-up time for STOP condition 4.0 - 0.6 - 0.26 -
in „Doppelte Pull-Ups bei i2c?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
I2C-bus_specification_2014.pdf
set-up time 250 - 100 [5] - 50 - ns n SU;DAT R o tr rise time of both SDA and SCL signals - 1000 20 300 - 120 ns e e . n tf fall time of both SDA and SCL - 300 20 × 300 20 × 120 [8] ns 6 i [3][6][7][8] [9] — o signals (VDD / 5.5 V) (VDD / 5.5 V) 4 m t set-up time for STOP condition 4.0 - 0.6 - 0.26 -
in „MCP23017 friert ein, stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
I2C_Ref_UM10204.pdf
set-up time 250 - 100 [5] - 50 - ns n SU;DAT R o tr rise time of both SDA and SCL signals - 1000 20 300 - 120 ns e e . n tf fall time of both SDA and SCL - 300 20 × 300 20 × 120 [8] ns 6 i [3][6][7][8] [9] — o signals (VDD / 5.5 V) (VDD / 5.5 V) 4 m t set-up time for STOP condition 4.0 - 0.6 - 0.26 -
in „TWI Bus hängt sich auf“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
I2C-bus_specification_2014.pdf
set-up time 250 - 100 [5] - 50 - ns n SU;DAT R o tr rise time of both SDA and SCL signals - 1000 20 300 - 120 ns e e . n tf fall time of both SDA and SCL - 300 20 × 300 20 × 120 [8] ns 6 i [3][6][7][8] [9] — o signals (VDD / 5.5 V) (VDD / 5.5 V) 4 m t set-up time for STOP condition 4.0 - 0.6 - 0.26 -
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
-
PDF
LTC3490.pdf
Voltages (CAP, LED, SW)................ –0.3V to 6V Lead Temperature (Soldering, 10 sec, S8) .......... 300°C U W U PACKAGE /O RDER I FOR ATIO TOP VIEW TOP VIEW CELLS 1 8 CTRL/SHDN CELLS 1 8 CTRL/SHDN VIN 2 9 7 LOBAT VIN 2 7 LOBAT SW 3 6 CAP GND 4 5 LED SW 3 6 CAP GND 4 5 LED DD PACKAGE S8 PACKAGE 8-LEAD
in „Step Up Wandler 1.5V -> 3.2 V“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TCM8240MD_E150405_REV13.pdf
input voltagVIH EXTCLK - IOVDD x 0.8 - - V LOW level input voltageV - - - IOVDD x 0.2 V Rectanglar IL EXTCLK HIGH level input currenIH EXTCLK VINIOVDD -10 - 10 µA shape LOW level input currentIIL EXTCLK VINGND -10 - 10 µA DUTY * - - 45/55 - 55/45 % Note; * Duty is referred to 50% level of input EXTCLK
in „Cam-Modul TCM8240MD und ARM-Board per I²C“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Schnittstellenbeschreibung_DPS_4005PFC.pdf
: slow-blow6.3A/250V 1.14 Operatingtime: 8hourscontinuously 1.15Dimensions(WxHxL): approx. 270x135x300mm 1.16Weight: approx. 3kg 1.17 Environmental conditions a. Operatingtemperature: 0 to40▯ b. Relativehumidity: 80%max. c. Storagetemperature: -20 to+60▯ 2. OPERATING INSTRUCTIONS 2.1 Description of front
in „Programmierbares Netzteil (RS232c)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
512020-an-01-en-Schnittstellenbeschreibung_DPS_4005PFC.pdf
: slow-blow6.3A/250V 1.14 Operatingtime: 8hourscontinuously 1.15Dimensions(WxHxL): approx. 270x135x300mm 1.16Weight: approx. 3kg 1.17 Environmental conditions a. Operatingtemperature: 0 to40▯ b. Relativehumidity: 80%max. c. Storagetemperature: -20 to+60▯ 2. OPERATING INSTRUCTIONS 2.1 Description of front
-
PDF
mic5205.pdf
Temperature (T S).........................–65°C to +150°C (4) Electrical Characteristics VIN V OUT+ 1V; IL= 100µA; C L 1.0µF; V EN ≥ 2.0V; TJ= 25°C, bold values indicate –40°C ≤ T J +125°C; unless noted. Symbol Parameter Condition Min Typ Max Units V O Output Voltage Accuracy variations from specifiOUTV –
in „schalten eines 3v3 Spannungsreglers mit 2 Transistoren (funktioniert nicht richtig)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
NHD-C160100DiZ-FSW-FBW.pdf
Optimal View W- Wide Temp RoHS Compliant Newhaven Display International, Inc. 2661 Galvin Ct. Elgin IL, 60124 Ph: 847-844-8795 Fax: 847-844-8796 www.newhavendisplay.com nhtech@newhavendisplay.com nhsales@newhavendisplay.com Document Revision History Revision Date Description Changed by 0 1/06/2008 Initial
in „[V] 2St. NHD LCDs: NHD-C160100 und NHD C12864WO“ · Markt ·
-
PDF
PCF2119X__plagin_LCD_.PDF
input voltage swing of SS to VDD. [3] C = total capacitance of one bus line in pF. b V IH V IH RS V IL V IL su(A) h(A) R/W VIL VIL w(en) h(A) VIH VIH E V V IL IL VIL t t h(D) su(D) V V DB0 to DB7 IH valid data IH VIL VIL tcy(en) mbk474 Fig 35. Parallel bus write operation sequence; writing data from microcontroller to PCF2119x V IH V IH RS V V IL IL t t su(A) h(A) R/W V IH VIH t w(en) h(A) E VIH VIH VIL VIL VIL th(D) td(DV) VOH VOH DB0 to DB7 VOL VOL t mbk475 cy(en) Fig 36. Parallel bus read operation sequence; writing data from PCF2119x to microcontroller
in „I2C Display Steuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SL494.pdf
single-ended output operation may be selected through the output- control function. The architecture of the IL494 prohibits the possibility of either output being pulsed twice during push-pull operation. ORDERINGINFORMATION SL494N Plastic SL494DSOIC • Complete PWM Power Control Circuitry • Uncommitted Outputs
in „SL494 TL494“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ePaper_Controller.pdf
********************************************************** ; e-paper-controller functions: SSD1681 IL3829 SD1675 ; 200*200 200*300 160*296 ;**************************************************************************************** .equ DRVOUTCTRL = 0x01 ; x x x DRIVER_OUTPUT_CONTROL ;.equ GateDRVCTRL =
in „Fragen zu Waveshare e-paper 1.54"“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP4821-MCP4822.pdf
Typ Max Units Conditions Power Requirements Input Voltage VDD 2.7 — 5.5 Input Current - MCP4821 I — 300 400 µA Digital inputs grounded, Output DD Input Current - MCP4822 — 415 750 unloaded, code = 0x000 Hardware Shutdown Current SHDN — 0.25 2 µA Software Shutdown Current SHDN_SW — 2 6 µA Power-On Reset
in „Digital-Analog-Umsetzer (10V -> 1mV Auflösung)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
isow7841.pdf
threshold hysteresis V I(HYS) 0.1 V SI (INx) I Low level input current V = 0 at INx or SEL –10 µA IL IL I High level input current V = V (1at INx or SEL 10 µA IH IH SI V SO (1– V OH High level output voltage O = –4 mA, see Figure 8-1 0.4 VSO – 0.2 V V Low level output voltage I = 4 mA, see Figure 8-
in „Problem mit der SPI Datenübertragung zwischen einem Arduino Portenta H7 und einem ADS8684 (ADC)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
X9C103.pdf
X9C503, and X9C104...............................10V LeadTemperature (Soldering, 10 seconds)..........+300°C RECOMMENDED OPERATING CONDITIONS Temperature Min. Max. Supply Voltage (V CC Limits Commercial 0°C +70°C X9C102/103/104/503 5V ±10% 3863 PGM T04.2 Industrial –40°C +85°C Military –55°C +125°C 3863
in „Präzisionsspannungsquelle mit mindestens 100 Abstufungen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
bd7690fj-e.pdf
OUT (Gate) MOSFET (Vds) IL V EO Vramp (Internal) V ZCD 1 2 3 4 Figure 5. Switching operation timing chart www.rohm.com © 2016 ROHM Co., Ltd. All rights reserved. 4/22 TSZ02201-0F2F0A200280-1-2 TSZ22111 • 15 • 001 28.Dec.2020 Rev
in „Modulierung eines Hochsetzstellers mit PFC-Steuerung in PLECS – Hilfe bei Grundlagen der Steuerung g“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ST7920-1.pdf
External Resistor vs. Frequency (VDD=5V) (VDD=5V) 800 900 700 800 600 700 )600 500 H A (500 (400 c I e400 300 u r300 200 F200 100 100 0 0 5 15 25 40 60 80 100 5 15 25 40 60 80 100 Resistor(K) Resistor(K) 3. When using voltage doubler (VOUT), it is recommended that the sum of those divide resistors (R1~R5) should
in „DDRAM Adressierung (DG-14032 GLCD)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ST7920.pdf
External Resistor vs. Frequency (VDD=5V) (VDD=5V) 800 900 700 800 600 700 )600 500 H A (500 (400 c I e400 300 u r300 200 F200 100 100 0 0 5 15 25 40 60 80 100 5 15 25 40 60 80 100 Resistor(K) Resistor(K) 3. When using voltage doubler (VOUT), it is recommended that the sum of those divide resistors (R1~R5) should
in „Display mit ST7920 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ST7920.pdf
External Resistor vs. Frequency (VDD=5V) (VDD=5V) 800 900 700 800 600 700 )600 500 H A (500 (400 c I e400 300 u r300 200 F200 100 100 0 0 5 15 25 40 60 80 100 5 15 25 40 60 80 100 Resistor(K) Resistor(K) 3. When using voltage doubler (VOUT), it is recommended that the sum of those divide resistors (R1~R5) should
in „Display mit ST7920 Controller“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
L6207.pdf
diodes VSD Forward ON voltage ISD = 2.8 A, EN = LOW 1.15 1.3 V rr Reverse recovery time f = 2.8 A 300 ns fr Forward recovery time 200 ns Logic input V IL Low level logic input voltage -0.3 0.8 V V IH High level logic input voltage 2 7 V IL Low level logic input current GND logic input voltage -10 µA
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
1822670.pdf
diodes VSD Forward ON voltage ISD = 2.8 A, EN = LOW 1.15 1.3 V rr Reverse recovery time f = 2.8 A 300 ns fr Forward recovery time 200 ns Logic input V IL Low level logic input voltage -0.3 0.8 V V IH High level logic input voltage 2 7 V IL Low level logic input current GND logic input voltage -10 µA
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS1302.pdf
X2 3 1 6 I/O S § Serial I/O for Minimum Pin Count GND 4 D 5 CE § 2.0V to 5.5V Full Operation DIP (300 mils) § Uses Less than 300nA at 2.0V § Single-Byte or Multiple-Byte (Burst Mode) Data Transfer for Read or Write of Clock or RAM Data VCC2 1 8 VCC1 X1 2 S 7 SCLK § 8-Pin DIP or Optional 8-Pin SO for
in „Wiedermal ein RTC-Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX941-MAX944.pdf
- V , Figure 3 2.2 V IN+ IN- MAX94_C_ _, MAX94_EP_, Common-Mode Rejection MAX94_ES_, MAX942MSA 80 300 Ratio CMRR (Note 5) µV/V MAX941_UA/MAX942_UA 80 800 Power-Supply Rejection 2.7V ≤ V+ ≤ 5.5V, MAX94_C_ _, MAX94_EP_, 80 300 Ratio PSRR V = 0V MAX94_ES_, MAX942MSA µV/V CM MAX941_UA/MAX942_UA 80 350 SOURCE
in „Verstärkung 2V -> 3.3V“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
24C32.pdf
In Set-up Time 200 200 100 ns SU.DAT tR Inputs Rise Time (1) 1.0 1.0 0.3 µs tF Inputs Fall Time(1) 300 300 300 ns tSU.STO Stop Set-up Time 4.7 4.7 0.6 µs tDH Data Out Hold Time 100 100 50 ns tWR Write Cycle Time 20 10 10 ms (1) Write Endurance 5.0V, 25°C, Page Mode 1M 1M 1M Cycles Note: 1. This parameter
in „EEproms 24C32 zu verschenken“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX1758.pdf
-Pin SSOP preventing overload of the input supply and allowing the use of a low-cost wall adapter. 300kHz PWM Oscillator Reduces Noise The per-cell battery regulation voltage is set between 4.0V and 4.4V using standard 1% resistors. The num- Ordering Information ber of cells is set from 1-to-4 by pin
in „Verständnisfrage Strom für MAX1758“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
349_529-15.pdf
K zul_Kabell_HTL .eps Abtastfrequenz [kHz] 40 Stromaufnahme Die Stromaufnahme bei Messgeräten mit 300 m U P 24 V U P 15 V HTL-Ausgangssignalen ist abhängig von der 300 200 m 300 300 m Ausgangsfrequenz und der Kabellänge zur ] ] Folge-Elektronik. Die Diagramme zeigen A 250 A 250 200 m typische Verläufe
in „Wie entsteht das Sinusförmige Signal eines Drehgebers/ Vermutung“ · Offtopic ·
-
PDF
tea6415c.pdf
BUSCHARACTERISTICS Symbol Parameter Test Conditions Min. Max. Unit SCL V Low Level Input Voltage - 0.3 + 1.5 V IL VIH High Level Input Voltage 3.0 VCC + 0.5 V ILI Input Leakage Current V I 0 to V CC - 10 + 10 A fSCL Clock Frequency 0 100 kHz tR Input Rise Time 1.5V to 3V 1000 ns tF Input Fall Time 1.5V to 3V 300
in „Videosignal (FBAS) mit Reed-Relais umschalten?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
M95160_EEPROM.pdf
0.070 c 0.25 0.20 0.36 0.010 0.008 0.014 D 9.27 9.02 10.16 0.365 0.355 0.400 E 7.87 7.62 8.26 0.310 0.300 0.325 E1 6.35 6.10 7.11 0.250 0.240 0.280 e 2.54 – – 0.100 – – eA 7.62 – – 0.300 – – eB 10.92 0.430 L 3.30 2.92 3.81 0.130 0.115 0.150 33/40 M95160, M95080 Figure 19. SO8 narrow – 8 lead Plastic Small
in „SPI EEPROM M95160: read/write probleme, erhalte immer FFh!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD667.pdf
Settling Time: 3 ms max to 0.01% Guaranteed for Operation with 612 V or 615 V Supplies Low Power: 300 mW Including Reference TTL/5 V CMOS Compatible Logic Inputs Low Logic Input Currents MIL-STD-883 Compliant Versions Available PRODUCT DESCRIPTION The AD667 is available in five performance grades. The
in „[V] 12 Bit DAC AD667BD“ · Markt ·
-
PDF
Datenblatt_PG240128ERS-XYABP1_Display.pdf
4.0 - mA Input Voltage V High Level 0.8* - VDD V IH OPTICAL DATA (High Level) VDD Input Voltage V IL Low Level 0 - 0.2* V Item Symbol Condition Min Typ Max Unit (Low Level) VDD Contrast Ratio K Ø=10°, - 3.0 - - Frame fFLM - - 75 - Hz θ =0°, Frequency Note 1 2 Duty Ratio - 1/128 - Brightness - - - 10
in „Problem mit Grafikdisplay (Powertip)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Regulate-a-0-to-500V--10-mA-power-supply-in-a-different-way-.pdf
photodiode.) Alternatively, you can use a commercially available linear optocoupler—for example, an IL300, which houses two photodiodes. Its current transfer ratio is only about 0.007, so you should use several such components in parallel. The current-limiting circuit formed by Q an2 R sim2ly shorts the
in „Netzteil 0 - 500V/10mA mit OPA364“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
gi_DE.pdf
Ersatzteil-Liste sind wie folgt eingeteilt: 1 - 299 Ersatzteile, in der Explosionszeichnung dargestellt. 300 - 399 Ersatzteile, in der Explosionszeichnung nicht immer dargestellt. 400 - 599 Zubehör, in der Explosionszeichnung nicht immer dargestellt. Nicht verfügbare Ersatzteile für Sonderaktionsgeräte Geräte
in „Rasierer will Akku nicht laden“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
M7616.pdf
3.0 volt DD — — 70 No load @5.0 volt “H” Transfer Voltage V IH — 0.7 VDD — V “L” Transfer Voltage V IL 0.3 VDD 0.3 V DD V OPAmp Open Loop Gain A 60 80 — dB No load VO OPAmp Input Offset Voltage Vos ─ 10 35 mV No load CDS “H” Transfer Voltage V cds+ — 0.2VDD — V Relay Source Current I — — 10 mA RS 2/4
in „Bewegungsmelder nur 1s schalten“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DS-Type-S-SZ-Mersen_2.pdf
C [µFR*U [V]+6RA[µA] , c Usefullife3000h @85°C;U ;I R R Requirements o ΔC/C≤30% ofinitialvalue;ESR≤300%ofspecified; n u limitIL≤specifiedlimit t w Endurancetest2000h@85°C,U R Requirements t ΔC/C≤20%ofinitialvalue;ESR≤130%ofspecified; e limitI ≤specifiedlimit o L r , ClimaticcategoryIEC60068 40/085/56
in „Elko rauh in AEG-Stroboskop von 1955 ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DS-Type-S-SZ-Mersen_2.pdf
C [µFR*U [V]+6RA[µA] , c Usefullife3000h @85°C;U ;I R R Requirements o ΔC/C≤30% ofinitialvalue;ESR≤300%ofspecified; n u limitIL≤specifiedlimit t w Endurancetest2000h@85°C,U R Requirements t ΔC/C≤20%ofinitialvalue;ESR≤130%ofspecified; e limitI ≤specifiedlimit o L r , ClimaticcategoryIEC60068 40/085/56
in „Elko rauh in AEG-Stroboskop von 1955 ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
74hct595.pdf
− V IH voltage VIL LOW-level input 4.5 to 5.5 − 1.2 0.8 V voltage VOH HIGH-level output V I V IHor IL voltage all outputs I = −20 A 4.5 4.4 4.5 − V O Q7Õ standard output IO= −4.0 mA 4.5 3.84 4.32 − V Qn bus driver outputs IO= −6.0 mA 4.5 3.7 4.32 − V VOL LOW-level output V I V IHor IL voltage all outputs
in „74HC595 wie steuert man das latch an?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
74HC595_Philips.pdf
− V IH voltage VIL LOW-level input 4.5 to 5.5 − 1.2 0.8 V voltage VOH HIGH-level output V I V IHor IL voltage all outputs I = −20 A 4.5 4.4 4.5 − V O Q7Õ standard output IO= −4.0 mA 4.5 3.84 4.32 − V Qn bus driver outputs IO= −6.0 mA 4.5 3.7 4.32 − V VOL LOW-level output V I V IHor IL voltage all outputs
in „Definierter Einschaltzustand beim 74HC595“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
74HC595_Shiftregister.pdf
− V IH voltage VIL LOW-level input 4.5 to 5.5 − 1.2 0.8 V voltage VOH HIGH-level output V I V IHor IL voltage all outputs I = −20 A 4.5 4.4 4.5 − V O Q7Õ standard output IO= −4.0 mA 4.5 3.84 4.32 − V Qn bus driver outputs IO= −6.0 mA 4.5 3.7 4.32 − V VOL LOW-level output V I V IHor IL voltage all outputs
in „Unterschied 74HCT595, 74HC595“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
74HC_HCT595.pdf
− V IH voltage VIL LOW-level input 4.5 to 5.5 − 1.2 0.8 V voltage VOH HIGH-level output V I V IHor IL voltage all outputs I = −20 A 4.5 4.4 4.5 − V O Q7Õ standard output IO= −4.0 mA 4.5 3.84 4.32 − V Qn bus driver outputs IO= −6.0 mA 4.5 3.7 4.32 − V VOL LOW-level output V I V IHor IL voltage all outputs
in „74HC595 und ATtiny13 Lauflicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Optokoppler_AQV252GA.pdf
Load voltage (peak AC) VL - 30 V 60 V A 3.5A 2.5A A connection: Peak AC, DC Continuous load current IL u B 4.0A 3.5A t C 6.0A 5.0A B, C connection DC O A connection: Peak load current Ipeak - 6.0A 100 ms (1 shot), V L= DC Power dissipation P out - 600 mW Total power dissipation PT - 650 mW I/O isolation
in „Zu blöd Datenblatt lesen AQV252GA“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
93LC46.pdf
s web site at: www.microchip.com. FIGURE 1-1: SYNCHRONOUS DATA TIMING CS VIH 4 2 3 VIL 5 VIH CLK V IL 7 8 V IH DI VIL 9 9 10 DO VOH (Read) VOL 11 10 DO VOH (Write) Status Valid V OL 2004 Microchip Technology Inc. DS21712B-page 3 93LC46/56/66 TABLE 1-1: INSTRUCTION SET FOR 93LC46: ORG = 1 (X 16 ORGANIZATION
in „Probleme mit SPI EEPROM“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
24lc32a.pdf
......-65°C to +125WP Write Protect Input Soldering temperature of leads (10 seconds).............+300VCCC +2.5V to 6.0V Power Supply ESD protection on all pins.................................................. 4 kV *Notice: Stresses above those listed under “Maximum Ratings” may cause permanent damage
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
3193_datasheet.pdf
CA3193▯ amplifies▯ the provide▯full-scale▯output▯if▯the▯thermocouple▯opens. Typical▯Performance▯Curves 300 400 CA3193 ) V CA3193▯(0 C▯to▯70 C) ▯ ) E V A 200 ( 300 L E O G ▯ T E O CA3193A▯(-25 C▯to▯85 C) F ▯ F 100 CA3193A▯ T 200 ▯ S U F P ▯ I T P 100 I 0 0 500 1000 1500 TIME▯AT▯AMBIENT▯TEMPERATURE▯=▯125 C
in „OP Temperatursteuerung von 1984 verstehen und Reparieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
sim300_HD_V3.07.pdf
Hardware Design SIM300_HD_V3.07 SIM300 Hardware Design Document Title: SIM300 Hardware Design 3.07 Version: Date: 2007-10-25 Status: Release Document Control ID: SIM300_HD_V3.07 General Notes SIMCOM offers this information
in „GSM sim300 mit SAM7-EX256 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LT3465.pdf
MaximumDuty Cycle ● 90 93 90 93 % Switch Current Limit ● 225 340 225 340 mA Switch CESAT ISW = 250mA 300 300 mV Switch Leakage Current VSW = 5V 0.01 5 0.01 5 µA VCTRLfor Full LED Current 1.8 1.8 V VCTRLto Enable Chip ● 150 150 mV V to Shut Down Chip ● 50 50 mV CTRL CTRL Pin Bias Current 48 60 72 48 60
in „s65 display stromversorgung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TouchSensor_Field-Effect_Data_Sheet.pdf
Min. Typ. Max. Units +VSTROBE 4.50 5.00 5.50 V Touchcell Current 16 30 μA t RESP 110 260 μS * STB 300 μS *BLANK 50 μS VOUT **(RL=4.7K) 4.00 V *Recommended **Output current should be limited to no more than 10mA. Design Process Design Process also required directly behind dielectric in nature. Common
in „SMD Code B2PE Gehäuse SOT23-6“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
D_CH23103.pdf
400 1 2 4 6 8 10 20 40 60 80 100 200 Hz kHz kHz Bei Verwendung einer externen Refe- START 50 Hz STOP 300kHz renz ist es leichter, den Wandler an Geräte wie A/D-Wandler anzuschließen. Bild 10 und 11: Amplituden- und Phasengang des LTSR 25-NP. 4 Wichtige Kenndaten Der Kompromiss, den man für diesen Vorteil
in „Transducer LEM HAIS-50“ · Mikrocontroller und Digitale Elektronik ·