not used, DD2sand VDD3 must be connected to VDD1. D7 540 I/O 8-bit parallel data; in Serial mode tiSS1oor DD1 D3 541 I/O 8-bit parallel data; in Serial mode tiSS1oor DD1 D6 542 I/O 8-bit parallel data; in Serial mode tie toor V SS1 DD1 D2 543 I/O 8-bit parallel data; in Serial mode tiSS1oor DD1 D5 544
irrespective of data in RAM. (SE1 – SS1) > NL Setting disabled Table 69: Two screen drive (SPT = “1”) Register Settings Display Operation ((SE1 – SS1) + (SE2 – SS2)) = NL Full screen display The area of (SE2 – SS1) is normally displayed. ((SE1 – SS1) + (SE2 – SS2)) < NL Partial screen display The area of (SE2 – SS1) is normally displayed. The rest of the area is a white display irrespective of data in RAM. ((SE1 – SS1) + (SE2 – SS2)) > NL Setting
circuit version of the E C 7 7 6 6 5 popular QT1080 sensor IC. The QT1081 is designed for low cost E YN SS NS N N N N appliance, mobile, and consumer electronics applications. D S V S S S S S 24 23 22 21 20 19 1817 QTouch™ technology is a type of patented charge-transfer sensing OUT_0 25 16 SNS5 method well
R01h) R/W RS CB15 CB14 CB13 CB12 CB11 CB10 CB9 CB8 CB7 CB6 CB5 CB4 CB3 CB2 CB1 CB0 W 1 0 0 0 0 0 SM 0 SS 0 0 0 0 0 0 0 0 SS: Shift direction of the source driver output selection. When SS = “0”, source driver shift from S1 to S720. When SS =“1”, source driver shift from S720 to S1. Moreover, SS can cooperate with BGR for different color filter configuration of LCD panel. The combination of SS and BGR bit are summarized at Table 6-2. ★Note: After changing SS bit or BGR bit, display data must be rewritten. Table 6-2 SS=0;BGR=0; S1 S2 S3 S718 S719 S720 SS=0;BGR=1; S1 S2 S3 S718 S719 S720 SS=
Supply Current 1 Supply Current 2 Output Current 1 Output Current 2 Product Code −V DET[V] V HYS[V] SS 1[µA] SS 2[µA] OUT 1[mA] OUT 2[mA] Min. Typ. Max. Min. Typ. Max. Condi- Typ. Max. Condi- Typ. Max. Condi- Min. Typ. Conditions Min. Typ. tions tions tions R3112x091A/C 0.882 0.900 0.918 0.027 0.045 0.063
REGULATOR SET POINT CURRENT-SENSE THRESHOLD vs. TEMPERATURE vs. TEMPERATURE vs. TEMPERATURE 9.8 0 8.9 c 310 c VIN 19V 1 V IN10.8V 1 TOTAL NUMBER OF 1 NO LOAD 1 8.8 6 ) 305 +3σ DEVICES = 100 1 9.7 A A ( M NDRV OUTPUT IS NOT M 8.7 M D 300 SWITCHING, VFB = 1.5V O 9.6 10mA LOAD S ) ) 8.6 R 295 ( ( T MEAN C 9.5
Array der EMS-Sevicecode-Descriptions (/ems-tools/includes/emsscdesc.inc). Merke: Ohne ä, ö, ü und ß gehts besser! Gruß aus der Wetterau Karl M.
Seite gestossen: https://github.com/Th3M3/buderus_ems-wiki Hier sind die Telegramme von MC110, RC310 und MM50 dokumentiert. Diese haben mir sehr geholfen. Kennt jemand die Telegramme vom Mischermodul MM100?
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voltage signals applied to liquid crystal. To change the shift direction of signal outputs, use the SS bit. S720~S1 O LCD SS = “0”, the data in the RAM address “h00000” is output from S1. SS = “1”, the data in the RAM address “h00000” is output from S720. S1, S4, S7, … display red (R), S2, S5, S8, ...
voltage signals applied to liquid crystal. To change the shift direction of signal outputs, use the SS bit. S720~S1 O LCD SS = “0”, the data in the RAM address “h00000” is output from S1. SS = “1”, the data in the RAM address “h00000” is output from S720. S1, S4, S7, … display red (R), S2, S5, S8, ...
Functional operation under these conditions is not implied. All voltage values are referred to Vtage. SS RECOMMENDED OPERATING CONDITIONS Symbol Parameter Value Unit VDD Supply Voltage 3 to 20 V VI Input Voltage 0 to DD V Top Operating Temperature -55 to 125 °C 4/13 HCF4511B DC SPECIFICATIONS Test Condition
32V R TSD 10µsy S Q 125°C Drive PWM OSC R Q S 1 S/OCP CV/CC FB/CC FControl 4 /OLP Soft Start OLP FM/SS 2 OCP LEB Frequency Modulation 3 GND FEATURES AND BENEFITS (cont’d) ■ AutomaticBurstStand-By(intermittentoperation) Input Power <0.1 W at No Load ■ Auto-BiasFunction Stable Burst Operation Without Generating
rauscharmen und empfindlichen Verstaerker. Bei (Amateur-)Radar wurde in diesen Bereich gerne der TAA310 benutzt fuer die Dopplerfrequenzen.
so weiter. Aloso ICH sehe da keine Schwäche im Konzept, wennwas nicht paßt. Ist eben nur so, da´ß man manchmal Teile hat, die nicht "passen", weil von der Stange, der Eigenbau aber nicht. > > Das ist ein durchaus beachtenswerter Umstand modernerer Lösungen, daß > sie weniger aufwendige Mechanik
any two outputs η Efficiency V =3.5, I =40mA 93 % IN OUT(total) Charge Pump t Soft start time 200 ms SS FCLK Clock Frequency 300 600 900 KHz EN/SET VEN(L) Enable Threshold Low 0.4 V VEN(H) Enable Threshold High 1.4 V tLO EN/SET low time VEN/SET< 0.6 0.3 75 µs tHI Minimum EN/SET high time V EN/SET< 0.6
Power supply for panel driving voltage. This is also the most positive power voltage supply pin. V SS Power Ground pin V LSS Power Analog system ground pin. V COMH O COM signal deselected voltage level. A capacitor should be connected between this pin and V SS. BGGND Power Connect to Ground V DDB Power
DD.3V VDD2/3 V DD ITO trace resistance needs to be minimized forDD2/VDD3. VSS 2 Ground. Connect V SS and VSS2 to the shared GND pin. In COG V GND 4 applications, minimize the ITO resistance for both Vnd V . SS2 SS SS2 LCD P OWER S UPPLY & VOLTAGE CONTROL LCD Bias Voltages. These are the voltage sources
ADuM-Isolator. Andere Varianten wären + einen FTDI + seriellen Trenner + Wandler für uC + eine serielle SS am PC + seriellen Trenner + Wandler für uC + Versionen mit Glasfaser dazwischen und ggf. Akkubetrieb
7.62mm Isoabstand 105D5VFS +-100mA out 72% TI/Burr Brown: DCR010505 200mA out 25mA im Leerlauf 310mA Aufnahme bei 200mA Abgabe. 1kV DCH010505S 200mA out 60mA im Leerlauf. 3kV Recom: R0.25S-0505/HP 50mA out 3kV DIP 0.25W RP-0505SP 200mA out 5.2kV ~71% wenig Grundfläche RSS-0505HP 200mA out
5 2 3 1 2 3 4 5 2 3 1 1 1 1 1 1 1 COM 1 CL 0 1 2 G G G S S S FLM FR V LCD V 1 COM 0 V 2 V 3 V 4 V SS V LCD V 1 V 2 COM 1 V 3 V 4 V SS V LCD V SEG 0 1 V 2 V 3 V 4 V SS V LCD SEG 1 V 1 V 2 V 3 V 4 V SS Remark ) when 1/163 duty, the status of COM/SEG at 163 driving sequence. COM : all no selection SEG
angegebenen Genauigkeit korrekt anzuzeigen. Greifen wir uns mal ein paar einfache DMM heraus Extech EX310 ca. 35 EUR: AC Bandwith 50/60 Hz !! Benning MM 1-1 DMM ca. 67 EUR: 1,5 % IM FREQUENZBEREICH 50 bis 500 Hz !! Voltcraft VC270 DMM ca. 45 EUR: um 1 % IM FREQUENZBEREICH 40 bis 400 Hz !! Fluke
ich allerdings die Uni-T gekannt hätte, dann hätte ich auch dort gekauft. *grummel* ;-) Gruß 900ss Edit: Ich habe nur mal den Gleichspannungsbereich mit einem teuren, kalibrierten Tischmultimeter verglichen: Das Voltcraft ist deutlich besser als die Angabe in dessen Datenblatt.
power consumption • Built-in temperature sensor circuit • Power supply Logic power supply 1: V DI-V SS= 2.7 to 3.3V Logic power supply 2: V DD -V SS= 2.7 to 5.5V Liquid crystal drive power supply: V3-V SS= 5.6 to 17.0V Boosting power supply: V DD2-V SS= V DIto 5.5V • Wide operation temperature range:
X ¡X ¡X Contrast Ratio Cr(MAX) Ta= 25 C 3 4 ¡X Response Time TR T = 25 C ¡X 110 220 ms TF a ¡X 210 310 Frame Frequency fFLM ¡X ¡X 64 ¡X Hz 4.1 q and f θ φ • The contrast of the display is optimal when viewed in the “View Direction” (f = 0°). • 0° £ q < 90°, 0° £ f < 360° PICVUE ELECTRONICS, LTD. P/N:
Specifications. Note 1. A destructive high current mode may occur iI Vd VOare not constrained to the rangeSS ≤ VIor O ≤ VDD. January 1995 5 Philips Semiconductors Product specification HEF4511B BCD to 7-segment latch/decoder/driver MSI DC CHARACTERISTICS VSS = 0 V T amb(°C) V DD OH HEF V mA SYMBOL −40 + 25 +
Control ! BLOCK DIAGRAM V IN CE ON/OFF each circuit Control Current Limiter V OUT R2 R1 Voltage V SS Reference ! ABSOLUTE MAXIMUM RATINGS Ta=25 C PARAMETER SYMBOL RATINGS UNITS Input Voltage VIN 12 V Output Current IOUT 500 mA Output Voltage VOUT VSS -0.3 ~ VIN +0.3 V CE Input Voltage VCE VSS -0.3 ~
the output pin for the voltage output low level for COM signals. This pin should be connected to V SS. VSL O This is the output pin for the voltage output low level for SEG signals. This pin can be kept NC or connected with a capacitor to V SS for stability. Refer to command BFh for VSL pin connection
the output pin for the voltage output low level for COM signals. This pin should be connected to V SS. VSL O This is the output pin for the voltage output low level for SEG signals. This pin can be kept NC or connected with a capacitor to V SS for stability. Refer to command BFh for VSL pin connection
Registers and control CLK RDY 62 MB91F109 ELECTRICAL CHARACTERISTICS 1. Absolute Maximum Ratings (VSS= AV SS= 0.0 V) Value Parameter Symbol Unit Remarks Min. Max. Power supply voltage VCC V SS– 0.3 V SS+ 4.0 V *1 Analog supply voltage AV CC V SS– 0.3 V SS+ 4.0 V *2 Analog reference voltage AVRH V SS– 0.3 V SS+ 4.0 V *2 Analog pin input voltage VIA V SS– 0.3 AVCC + 0.3 V Input voltage VI V SS– 0.3 V CC+ 0.3 V Output voltage VO V SS– 0.3 V CC+ 0.3 V “L” level maximum output current OL — 10 mA *3 “L” level average
minderwertiger Stahl bei tiefen Temperaturen zu Sprödbruch" neigt. https://en.wikipedia.org/wiki/SS_John_P._Gaines https://de.wikipedia.org/wiki/Spr%C3%B6dbruch
praktisch nachzuprüfen. CFK ist seit sehr langer Zeit Teil des Flugzeugbaus. Bereits beim Airbus A310 von 1983 bestand das Seitenleitwerk daraus. Ebenso wird das Material für Propeller verwendet. Man hat also einige Erfahrung damit. Trotzdem gibt es natürlich Ausfälle und wird es geben. Man wird
aktiviert Busy, was mit CTS vom UART des PCs verbunden ist. So wird der Datentransfer ausgebremst (auf ca 310kBit/s). Das funktioniert wunderbar, ich habe zumindest schon >50MByte ans Display gesendet, ohne Probleme. Die einzigen Probleme die ich mir vorstellen kann, sind eine nicht ganz exakte Baudrate von
EEPROM SCK -> SCK Mega8515 EEPROM SI -> MOSI Mega8515 EEPROM DO -> MISO Mega8515 EEPROM /CS -> /SS Mega8515 -> /CS noch über einen 4k7 Widerstand gegen 5V Funktion: Wenn der Display-Controller initialisiert wurde soll der Startbildschirm aus dem EEPROM geladen und sofort angezeigt werden. Danach
Ahnengalerie erfolgreicher Widerstandskämpfer einreihen und dir hier im Forum ewigen Ruhm verschaffen. Gru0ß Hennig
erfolgreicher Widerstandskämpfer einreihen und dir hier im Forum ewigen > Ruhm verschaffen. > > Gru0ß > > Hennig Du sollst mich auch nicht agitieren, ich habe geschrieben gesagt warum ich keinen solchen Schein habe und auch nicht zu benötigen gedenke. Gruß, Holm
Power supply for panel driving voltage. This is also the most positive power voltage supply pin. V SS P This is a ground pin. V P This is an analog ground pin. It should be connected to V externally. LSS SS V COMH O The pin for COM signal deselected voltage level. A capacitor should be connected between
Power supply for panel driving voltage. This is also the most positive power voltage supply pin. V SS P This is a ground pin. V P This is an analog ground pin. It should be connected to V externally. LSS SS V COMH O The pin for COM signal deselected voltage level. A capacitor should be connected between
P1W 6 9 P0W SDA 2 EP 11 NC P1A 7 8 P0A V 3 17 10 P0B - Software Write Protect (WP) Configuration Bit SS • Brown-out Reset Protection (1.5V typical) TSSOP V SS 4 9 P0W • Serial Interface Inactive Current (2.5 uA typical) 5 6 7 8 B W A A • High-Voltage Tolerant Digital Inputs: Up to 12.5V P P P P • Wide
P1W 6 9 P0W SDA 2 EP 11 NC P1A 7 8 P0A V 3 17 10 P0B - Software Write Protect (WP) Configuration Bit SS • Brown-out Reset Protection (1.5V typical) TSSOP V SS 4 9 P0W • Serial Interface Inactive Current (2.5 uA typical) 5 6 7 8 B W A A • High-Voltage Tolerant Digital Inputs: Up to 12.5V P P P P • Wide
P1W 6 9 P0W SDA 2 EP 11 NC P1A 7 8 P0A V 3 17 10 P0B - Software Write Protect (WP) Configuration Bit SS • Brown-out Reset Protection (1.5V typical) TSSOP V SS 4 9 P0W • Serial Interface Inactive Current (2.5 uA typical) 5 6 7 8 B W A A • High-Voltage Tolerant Digital Inputs: Up to 12.5V P P P P • Wide
P1W 6 9 P0W SDA 2 EP 11 NC P1A 7 8 P0A V 3 17 10 P0B - Software Write Protect (WP) Configuration Bit SS • Brown-out Reset Protection (1.5V typical) TSSOP V SS 4 9 P0W • Serial Interface Inactive Current (2.5 uA typical) 5 6 7 8 B W A A • High-Voltage Tolerant Digital Inputs: Up to 12.5V P P P P • Wide