saturate, is given by: VDis the forward voltage drop of the diode D1. The maximum duty cycle is: If L1 and L2 are wound on the same core, the value of induc- Inductor Selection tance in the equation above is replaced by 2L due to mutual A good rule for determining the inductance is to allow the inductance
3 00789319 5 www.national.com 1 8 Truth Table 1 L Signal RC Input Timing Gated Input Timing Select Input Output Pin 3 Pin 14 Pin 11 Pin 9 Pin 10 ± Pulses RC L X Pulses = RC X X H H H X X H L L ± Pulses L L L Zero Crossing 00789302 FIGURE 1. LM1815 Adaptive
3 00789319 5 www.national.com 1 8 Truth Table 1 L Signal RC Input Timing Gated Input Timing Select Input Output Pin 3 Pin 14 Pin 11 Pin 9 Pin 10 ± Pulses RC L X Pulses = RC X X H H H X X H L L ± Pulses L L L Zero Crossing 00789302 FIGURE 1. LM1815 Adaptive
Moin, hab hiern SSD1963 für ein 272x480 LCD im 565RGB Modus (16bit Busbreite) der an nem Cortex M3 hängt. Das Display funktioniert eigentlich nicht schlecht, aber es scheint als ob mindestens weiß (0xFFFF) rumzickt und den Controller
mdelay(5); LCD_WR_REG(0x0029); //display on LCD_WR_REG(0x00BE); //set PWM for B/L LCD_WR_DATA(0x0006); LCD_WR_DATA(0x00f0); LCD_WR_DATA(0x0001); LCD_WR_DATA(0x00f0); LCD_WR_DATA(0x0000); LCD_WR_DATA(0x0000); LCD_WR_REG(0x00d0); LCD_WR_DATA(
R T T R H X H T L X H R X H L R X L L T DS75162A Control Input Level Transceiver Signal Direction SC TE DC ATN* EOI REN IFC SRQ NRFD NDAC DAV H H H R T T T R R T H H L T T T R R R T H L H R T T T T T R H L L T T T R T T R L H H R R R T R R T L H L T R R R R R T L L H R R R T T T R L L L T R R R T T R X H X H T X L X H R X X H L R X X L L T e H High level input LeLow level input Xe Don’t care Te Transmit, i.e., signal outputted
SYMATTR Value 56 SYMBOL ind -16 32 R270 WINDOW 0 32 56 VTop 2 WINDOW 3 5 56 VBottom 2 SYMATTR InstName L3 SYMBOL ind 192 -64 R180 WINDOW 0 36 80 Left 2 WINDOW 3 36 40 Left 2 SYMATTR InstName L4 SYMBOL cap -64 80 R0 SYMATTR InstName C1 SYMBOL cap -64 240 R0 SYMATTR InstName C2 SYMATTR Value 60p SYMBOL cap
LM741E LM741 LM741C Units Min Typ Max Min Typ Max Min Typ Max Large Signal Voltage Gain TA = 25˚C, L ≥ 2 k V = ±20V, V = ±15V 50 V/mV S O VS = ±15V, VO = ±10V 50 200 20 200 V/mV TAMIN ≤ A ≤ TAMAX, R ≥ 2 k , L VS = ±20V, VO = ±15V 32 V/mV VS = ±15V, VO = ±10V 25 15 V/mV V = ±5V, V = ±2V 10 V/mV S O Output Voltage Swing VS = ±20V RL≥ 10 k ± 16 V R ≥ 2 k ± 15 V L VS = ±15V RL≥ 10 k ±12 ± 14 ±12 ± 14 V R ≥ 2 k ±10 ± 13 ±10 ± 13 V L Output Short Circuit TA = 25˚C 10 25 35 25 25 mA Current TAMIN ≤ A ≤ TAMAX 10 40 mA Common-Mode T ≤ T ≤ T AMIN A AMAX Rejection Ratio
Counters TL/F/5958–3 Shift Registers TL/F/5958–4 Truth Table X tn 1Inputs n Outputs CLU J K S R Q Q Q L I X O O O I O L X O O O I I O L O X O O O O I L X I O O I O I K X X O O X (No Change) X X X I O X I O X X X O I X O I X X X I I X I I Where: IHigh Level Oe Low Level Ue Level Change e X Don’t Care Xe
L M May 1999 5 7 / M LM567/LM567C 6 7 Tone Decoder C n High rejection of out of band signals and noise T General Description n Immunity to false signals o The LM567 and LM567C are general purpose tone
24 B D C E 6 e P • • • E 3 : R R . M G r Ster ES c U • 2 n H o n o S a N S a T d b d T t E S h a d l : l : n N h l d o h h I f : l u L n t t r u g N F r n y g s _ T e r i b e _ c r c e s 2 n u P e p i . l l l P e e o g o u C 1 V 2 w - A : r 0 - W s M o 2 W e h i n e s ß m 2 s a a / a d s 0 d , h 2 ,
sensitive. Handling and assembly of this device o should be performed at ESD free workstations. o e l B Table 1. Absolute Maximum Ratings 0 Symbol Parameter Min Max Unit 2 9 VCC Power Supply Voltage -0.2 4.0 V X M V I Voltage on any pad with GND = 0V -0.5 VCC + 0.5 V L RF Input Power +15 dBm o T S Storage
LEVEL Figure 60. PAL RGB Video Levels –34– REV. B ADV7175A/ADV7176A UV WAVEFORMS T A W N N K W T I L N E E E C E O E E K H E Y R A E L L I L A E G D U A W Y C G M R B B H E Y R A E L L 505mV W Y C G M R B B 505mV 423mV 334mV BETACAM LEVEL 171mV 82mV BETACAM LEVEL 0mV 0mV –82mV 0mV 0mV 2171mV –423mV
define SQRT32_ROUTINE 3 #if SQRT32_ROUTINE == 1 .macro SQRT32 ; 32bit square root (526..542clk) clr T6L clr T6H clr T8L clr T8H ldi BL, 1 ldi BH, 0 clr CL clr CH ldi DH, 16 90: lsl T2L rol T2H rol T4L rol T4H rol T6L rol T6H rol T8L rol T8H lsl T2L rol T2H rol T4L rol T4H rol T6L rol T6H rol T8L rol T8H
die Zahlen richtig deklariert werden müssen. Vielen Dank im Voraus. Daniel [C] /** I N C L U D E S **********************************************************/ #include <p18f4580.h> #include <delays.h> // für die Warteschleife #include <usart.h> #include <adc.h
8 9 C T T C N U U D N I A I N O O V G V B I L R A A I M RHD PACKAGE M (TOP VIEW) NC − No internal connection K T L K O D D D M PW PACKAGE L K D N D O I (TOP VIEW) B C B D D X X 2 2 2 2 2 2 2 BVDD 1 28 DGND CLKOUT 2 27 DVDD 3 26 DIN 1 21 SCLK BCLK
8 9 C T T C N U U D N I A I N O O V G V B I L R A A I M RHD PACKAGE M (TOP VIEW) NC − No internal connection K T L K O D D D M PW PACKAGE L K D N D O I (TOP VIEW) B C B D D X X 2 2 2 2 2 2 2 BVDD 1 28 DGND CLKOUT 2 27 DVDD 3 26 DIN 1 21 SCLK BCLK
8 9 C T T C N U U D N I A I N O O V G V B I L R A A I M RHD PACKAGE M (TOP VIEW) NC − No internal connection K T L K O D D D M PW PACKAGE L K D N D O I (TOP VIEW) B C B D D X X 2 2 2 2 2 2 2 BVDD 1 28 DGND CLKOUT 2 27 DVDD 3 26 DIN 1 21 SCLK BCLK
saturate, is given by: VDis the forward voltage drop of the diode D1. The maximum duty cycle is: If L1 and L2 are wound on the same core, the value of induc- Inductor Selection tance in the equation above is replaced by 2L due to mutual A good rule for determining the inductance is to allow the inductance
saturate, is given by: VDis the forward voltage drop of the diode D1. The maximum duty cycle is: If L1 and L2 are wound on the same core, the value of induc- Inductor Selection tance in the equation above is replaced by 2L due to mutual A good rule for determining the inductance is to allow the inductance
saturate, is given by: VDis the forward voltage drop of the diode D1. The maximum duty cycle is: If L1 and L2 are wound on the same core, the value of induc- Inductor Selection tance in the equation above is replaced by 2L due to mutual A good rule for determining the inductance is to allow the inductance
driving two low-power TTL loads or one low-power Schottky TTL load over the ratea tempera- ture range l M Connection Diagrams o n o s a Dual-In-Line Package b l e M u t v b r a o r TL/F/5998–2 Top View Order Number CD4528B TL/F/5998–1 Truth Table Inputs Outputs Clear A B Q Q H e High Level L e Low Level L X X L H u e Transition from Low to High X H X L H v e Transition from High to Low X X L L H É e One High Level Pulse H L v É ß ß e One Low Level Pulse H u H É ß X e Irrelevant C1995 National SemicoTL
L M September 2000 2 9 1 N e LM2991 g a Negative Low Dropout Adjustable Regulator i e General Description Features The LM2991 is a low dropout adjustable negative regulatorn Output voltage adjustable from
7 12 32 . . 5 2 2 0 1 24 14.5 7 Indicator actuator page 5 a a a a 18 x 24 mm 18 x 18 mm Ø18 mm i i l i i 1.5 ... 6 r r a r r . t t g l l 0 i i l s s s 8 3 e e p e e d 2 l l l i i d S S ( U U + L L1 U U+D 23.5 26.5 36 - L1 U U+D 1D, 2D 36 10.5 L 21 06.2009 Drawings 31 8 Illuminated pushbutton actuator page 6 l l l l n n ) a a i i l i i e e a e e g g g l l r r l r r e e e o e e o o o l n n d S S ( U U + 18 x 24 mm 18 x 18 mm Ø18 mm 1.5 ... 6 L L1 U U+D 0 1NC+1NO 29 36 - - x 3 2NC+2NO 36.5 - - - 2 - 3NC+3NO
7 12 32 . . 5 2 2 0 1 24 14.5 7 Indicator actuator page 5 a a a a 18 x 24 mm 18 x 18 mm Ø18 mm i i l i i 1.5 ... 6 r r a r r . t t g l l 0 i i l s s s 8 3 e e p e e d 2 l l l i i d S S ( U U + L L1 U U+D 23.5 26.5 36 - L1 U U+D 1D, 2D 36 10.5 L 21 06.2009 Drawings 31 8 Illuminated pushbutton actuator page 6 l l l l n n ) a a i i l i i e e a e e g g g l l r r l r r e e e o e e o o o l n n d S S ( U U + 18 x 24 mm 18 x 18 mm Ø18 mm 1.5 ... 6 L L1 U U+D 0 1NC+1NO 29 36 - - x 3 2NC+2NO 36.5 - - - 2 - 3NC+3NO
Thermal Time Constant 5 L M 3 5 L M 3 , L M 3 A L M 2 5 A L 569833 569834 3 3 Thermal Response in Still Air Thermal Response in Stirred Oil Bath A 569835 569836 Forward Characteristics 569837 5 www.national.com 5 3 Application
Title 500 10000 500 10000 VGS= 10 V thru 6 V 400 400 ) ) ( 1000 ( 1000 n 300 n 300 e r e n e r e n l u l l l u T = 25 °C l l d C s n d C C s n 2 a 200 V = 5 V 1 2 2 a 200 1 2 D GS D - 100 - 100 I I 100 100 TC= 125 °C VGS= 4 V TC= -55 °C 0 10 0 10 0 2 4 6 8 10 0 2 4 6 8 10 VDS - Drain-to-Source Voltage
Voltage CC TRUTH TABLE INPUTS OUTPUTS SI SCK SCLR RCK G X X X X H QA THRU QH OUTPUTS DISABLE X X X X L QA THRU QH OUTPUTS ENABLE X X L X X SHIFT REGISTER IS CLEARED FIRST STAGE OF S.R. BECOMES "L" OTHER L H X X STAGES STORE THE DATA OF PREVIOUS STAGE, RESPECTIVELY FIRST STAGE OF S.R. BECOMES "H" OTHER
AXIS DEVELOPER BOARD The FastTrack to NetworkingYour Devices ( x i s T e c h n o l o g y The Axis Developer Board introduces an effortless way to get acquainted with em- bedded Linux and Ethernet networking. With the highly integrated ETRAX 100 system-on-a-chip at its core, this prototyping
6 I These are terminals for IC chip testing. 2 They are set tDDV. Total: 288 pins for the SED1565* 272 pins for the SED1566* 256 pins for the SED1567* EPSON 8–23 SED1565 Series DESCRIPTION OF FUNCTIONS through a serial data input (SI). Through selecting the P/ S terminal polarity to the “H” or “L” it
Betreibsspannung braucht, keine Offset etc. (und mit dem auch ein Maschinenbauer wie ich klar kommt): TLC 272 CP Ich habe Vergleichsmessunge mit einem hochwertigen Temperaturmessgerät gemacht und die Abweichung lag bei 0,3K! Der AD592AN kostet 7,48€ , die beiden OP´s gibts in einem Gehäuse für 1,15€.
eurer Schaltungen übernehmen und was müsste ich ändern um es an meine Bedürfnisse anzupassen. l.G. Armin
L M June 2000 2 9 0 7 L LM2907/LM2917 M 2 Frequency to Voltage Converter 9 7 n Easy to use; VOUT = fINx VCC x R1 x C1 General Description n Only one RC network provides frequency doubling r The LM2907,
L M June 2000 2 9 0 7 L LM2907/LM2917 M 2 Frequency to Voltage Converter 9 7 n Easy to use; VOUT = fINx VCC x R1 x C1 General Description n Only one RC network provides frequency doubling r The LM2907,
L M June 2000 2 9 0 7 L LM2907/LM2917 M 2 Frequency to Voltage Converter 9 7 n Easy to use; VOUT = fINx VCC x R1 x C1 General Description n Only one RC network provides frequency doubling r The LM2907,
29, Nov, bis 5, Dez, 1926 Sprachkurse RADIO-WIEN Nr, 9 L' articolo indeterminato femmlnile ha una sola Esercicio forma (una), la quäle siapostrofa dinanzi a vocale Preponete 1'articolo determinato e 1indeter , p, e, un' ora , , . plurale: le ore minato prima
Vmin. DD= 15V 6/16 HCC/HCF4067B HCC/HCF4097B o DYNAMIC ELECTRICAL CHARACTERISTICS (T amb = 25 C, C =L50 pF, R = L00 K , typical temperature coefficent for all DD values is 03 %/ C, all input rise and fall times= 20 ns) Test Conditions Value Symbol Parameter VC RL fi VI V SS V DD Unit (V) (K ) (KHz) (