RATINGS All Voltages with Respect to Ground Parameter Symbol Conditions Min Max Unit Supply Voltage VDDV SS - 0.3 +5.5 V Input Voltage V IN V SS.3 V DD.3 V ESD Rating VESD For all pins, ±2 kV Human Body Model (HBM) Latchup Current Limit I For all pins ±100 mA LUT Operating Temperature TOP -40 +85 °C Storage
DIAGRAM Figure 4-1 : SSD1307 Block Diagram RES# SEG 63 CS# t SEG 62 D/C# e e E (RD#) m r : R/W#(WR#) a ) e D SEG1 BS2 D M e S SEG0 BS1 e a R o BS0 Ua p D t Ce i D o D7 Mn c G( C D6 I h M l D4 r A i n COM 0 D3 G R D o e COM 1 D2 m r D0 o D : C COM37 COM38 V DD V CC V SS V LSS l l d t t t SEG 64 a e r o
when a single screen is driven (SPT = “0”) Register Settings Display Operation Full screen display (SE18-10) − (SS18-10) = NL Normally display the range from (SE18-10) to (SS18-10). Partial display (SE18-10
Enable AI00928B G Output Enable ASV Address Strobe / Program Supply PP V Supply Voltage CC V Ground SS June 1996 1/13 M87C257 Figure 2A. DIP Pin Connections Figure 2B. LCC Pin Connections P ASV PP 1 28 V CC 2 V C 4 3 A12 2 27 A14 A A A D V A A1 1 A7 3 26 A13 1 32 A6 4 25 A8 A6 A8 A5 5 24 A9 A5 A9 A4 6
Zenith Modell 6VA62 Ch= 5629 und 7A28A Ch= 5705A haben auch Langwelle, Mittelwelle und zwei mal Kurzwelle und offenbar dieselbe Skala.
Mini-Fundus eine passende Röhre gefunden, aber sie steht nicht in der RTT von 1968. Die Bezeichnung ist A411, das ist mittig gedruckt, da fehlt nichts davor oder dahinter. Lt. Tabelle gibt es aber nur A415=A408=RE084, A409=RE074, A4110=REN904.
Co., Ltd. 51 Jan. 22, 2009 Proprietary & Confidential Preliminary Version: 0.1 Preliminary OTM3225A 7. GRAM Table 7-1 GRAM address and display panel position (SS = “0”) 0 1 2 …. 0 1 1 1 1 1 1 1 1 1 1 2 S/G pin S S S S S S S S S S S S S S S S S S S S S S S S GS=0 GS=1 DB17-0 DB17-0 DB17-0 DB17-0 ….
select signal can be used to select the individual ICs to access. (1) 8080 Series MPUs VDD V CC V DD A0 A0 CS1 CS1 U 2 P 7 M DO to D7 D0 to D7 T S RD E (/RD) WR R/W (/WR) RES /RES GND RESET V SS V SS (2) 6800 Series MPUs VDD V CC V DD A0 A0 IMS CS1 CS1 1 P 5 M DO to D7 D0 to D7 T S E /RD (E) R/W /WR (R/W) RES /RES PS GND V SS RESET V SS (3) Using the Serial Interface (4-line interface) VDD V CC VDD A0 A0 CS1 8 U CS1 5 P T M S Port 1 SI Port 2 SCL RES /RES GND VSS RESET VSS Ver2.3 84/97 2007/1/3 ST7528 (4) Using the Serial
usb rs232 und sortierung niedrigster Preis zuerst: http://www.ebay.de/sch/i.html?_trkparms=65%253A12%257C66%253A2%257C39%253A1%257C72%253A5696&rt=nc&_nkw=usb+ttl&_trksid=p3286.c0.m14&_sop=15&_sc=1 Deine ist nicht dabei, ich habe auch keine mit FT232RL gesehen. CP2102 ist aber auch weit verbreitet
3A nicht stabil unter 100°C zu bekommen ist, > muss ich noch kleine Kühlkörper fertigen. eigentlich machen die MIC38300 nur 2.2A dauerstrom und 3A peak, ich würde es nicht übertreiben mit den tests
voltage (1) VOHC1 VDD= 2.7V IOH=-25μ A 0.8xVDD - V DD *5 Low-level output voltage (1) VOLC1 to 5.5V IOL= 25μA V SS - 0.2xV DD *5 High-level output voltage (2) VOHC2 VDD= 2.7V IOH=-100μ A 0.8xVDD - V DD *6 Low-level output voltage (2) VOLC2 to 5.5V IOL= 100μA V SS - 0.2xV DD *6 High-level output voltage (3) VOHC3 VDD= 2.7V IOH=-100μ A 0.8xV DI - VDI *7 Low-level output voltage (3) VOLC3 to 3.3V IOL= 100μA V SS - 0.2xVDI *7 Input leak current LI VIN=VDD or
a drive waveform. The gate driver for scanning gate lines outputs either VGH or VGL level. The shift direction of 720 source outputs from the source driver is set with the SS bit and the shift direction
a drive waveform. The gate driver for scanning gate lines outputs either VGH or VGL level. The shift direction of 720 source outputs from the source driver is set with the SS bit and the shift direction
a drive waveform. The gate driver for scanning gate lines outputs either VGH or VGL level. The shift direction of 720 source outputs from the source driver is set with the SS bit and the shift direction
a drive waveform. The gate driver for scanning gate lines outputs either VGH or VGL level. The shift direction of 720 source outputs from the source driver is set with the SS bit and the shift direction
a drive waveform. The gate driver for scanning gate lines outputs either VGH or VGL level. The shift direction of 720 source outputs from the source driver is set with the SS bit and the shift direction
, see the Screen-division Driving Function section. SS27–0: Specify the driving start position for the second screen in a line unit. The LCD driving starts from the set value + 1 gate driver. The second screen is driven when SPT = “1”. SE27–0: Specify the driving end position for the second screen in a line unit. The LCD driving is performed to the set value + 1 gate driver. For instance, when SPT = “1”, SS27–20 = “20”H, and SE27– 20 = “4F”H are set, the LCD driving is performed from G33 to G80. Ensure
, see the Screen-division Driving Function section. SS27–0: Specify the driving start position for the second screen in a line unit. The LCD driving starts from the set value + 1 gate driver. The second screen is driven when SPT = “1”. SE27–0: Specify the driving end position for the second screen in a line unit. The LCD driving is performed to the set value + 1 gate driver. For instance, when SPT = “1”, SS27–20 = “20”H, and SE27– 20 = “4F”H are set, the LCD driving is performed from G33 to G80. Ensure
Marcel A. schrieb im Beitrag #4505493: > Muss ich also wirklich den 125er auslöten...:-( Komisch. Schau dir mal an welche Leitung den Strom liefert. Es kommen ja nur SS, SCK ode MOSI in Frage. An welcher
current drive phase. It can either be supplied externally, or by connecting to the VCC. IREF This is a segment current reference pin. A resistor should be connected between this pin and the V SS and the current set at 10uA. VCOMH This is an input pin for high-level voltage output for COM signals. A capacitor
“" 10 mal Zeichen "–" 18 mal Zeichen "—" 14 mal Zeichen "²" 1 mal Zeichen "´" 45 mal Zeichen "Ä" 2 mal Zeichen "Ö" 1 mal Zeichen "×" 34 mal Zeichen "Ü" 189 mal Zeichen "ß" 1522 mal Zeichen "ä" 1 mal Zeichen "é" 544 mal Zeichen "ö" 1388 mal Zeichen "ü"
Inductor for VIN 24V, 4 LEDs The input capacitor current rating can be considered as RCS (Ω) LED (A) L (µH) FSW (kHz) I /2 under the worst condition D = 50%. 1.33 0.15 470 495 LED 0.56 0.35 220 446 LED Ripple Current 0.4 0.5 150 467 The LED current is the same as inductor current. If LED ripple 0.28
D1 D0 W 1 0 0 0 0 0 0 0 0 SE17 SE16 SE15 SE14 SE13 SE12 SE11 SE10 W 1 0 0 0 0 0 0 0 0 SS17 SS16 SS15 SS14 SS13 SS12 SS11 SS10 SE1[7:0]: Specify the driving end position for the screen in a line unit. The LCD driving is performed to the ‘set value + 1’ gate driver. For example, when SS1[7
kann man den usb stick removen und DSO rebooten. Im hexeditor sieht org. version so aus 27 3B A0 E3 40 30 83 E2 03 00 50 E1 00 A8 1B C9 geändert so 27 3B A0 E3 40 30 83 E2 03 00 50 E1 00 00 A0 E1 Ist zwar nciht die schönste art, aber was solls. Dabei ist mir aufgefallen warum HanTekway
ich dachte du hast sowas wie 500mV/A, lach :) 104mV/A ? Also wenn schon dann sind es 96 bis 104, also eigentlich 100. Das sind also 10A/V, stellst also "Probe" auf dem DSO auf x10 und schon entspricht 1V auf DSO anzeige 1A, da muss
. Operational Amplifier OP493F OP493F/AD ANLG_DEV.OLB Analog Devices, Inc. Operational Amplifier OP495 OP495/AD ANLG_DEV.OLB Analog Devices, Inc. Operational Amplifier OP495A OP495A/AD ANLG_DEV.OLB Analog Devices, Inc. Operational Amplifier OP495G OP495G/AD ANLG_DEV.OLB Analog Devices, Inc. Operational
SSD1623 Rev 0.10 P 5/44 Nov 2007 Solomon Systech 4 BLOCK DIAGRAM Figure 4-1 : SSD1623 Block Diagram COM0A SEG0A SEG1, SEG2, ….. SEG94, SEG95 SEG0B COM0B r d leC r d l e s v e m i l a Segment output cell with r - a s v e m a n s m s n e g s i v k a in s m e s H n e s s o 3-levels High voltage driving stage
TB1 V SS GND V CC VCC 19 - P4.2 17 - P4.2 TB2 CCI2A 19 - P4.2 17 - P4.2 ACLK (internal) CCI2B 22 - P4.5 20 - P4.5 V GND CCR2 TB2 SS V CC VCC universal serial communications interface (USCI) The USCI module is
/ 256 * IREF* scale factor, in which the contrast is set by command and the scale factor = 1 ~ 16. A resistor should be connected between this pin and V SS to maintain the current around 10uA. Please refer to section 6 “Current and Voltage Supply” for the formula of resistor value from REF. V COMH This
A4 A3 A2 A1 A0 c u o e P2* Port 2 A0H ICA OCA SPICLK SS MISO MOSI OCD ICB [3] c P 0 Bit address B7 B6 B5 B4 B3 B2 B1 B0 n 5 r 8 P3* Port 3 B0H - - - - - - XTAL1 XTAL2 [3] l 9 [3] e L P0M1 Port 0 output
STB5V_M DCDC STB_D3.3V P + F15V STANDBY POWER R STB_D3.3V P VOLTAGE FACTOR T STB5V RECTIFIER CONTROL O SS21 C A31 A32 S I SS24 CONTROL _ A PULSE S S 5 O U + S S VSUS VSUS RECTIFIER P SU11 SC2 P2 SS33 SD11 MAIN SW2 SS2 SUSTAIN MAIN SW1 CONNECTOR RECTIFIER RELAY P34 (LOWER) A SCAN VSCAN GEN. T a DRIVER SD42
RATINGS All Voltages with Respect to Ground Parameter Symbol Conditions Min Max Unit Supply Voltage VDDV SS - 0.3 +6 V Input Voltage VIN VSS0.3 VDD0.3 V (1) ESD Rating VHBM Human Body Model (HBM) ±2 kV VCDM Charged Device Model (2) ±1 kV Latchup Current Limit LUT For all pins ±100 mA Operating Temperature
=1 (SDHC/SDXC) (SDSC) No UHS-I Card?it mode Check SS18A=1 (Switch) (No Switch) Function Group 3 CMD11e Driver Strength No Response CSeck RGet Response UHS-I Mode Current Limit VSwitch to SDR12 timing CMD19 SwitchlEeYes Error? No Complete?uning Power Cycle
/ . 6 R / P P D M S D L S A A A P P C A v P p 3 3 5n M 6 1 4 3 5 2 R 1 9 8 S W W C C V V C V D D D C C D e O t 8 8 5 M C0 D OD G G Y Y D C D D W S S R C h 9u U L 1 % T C T A K A K R N R 6 A _ T _ 1 1 1 2 3 4 5 6 7 8 9 1 1 2 2 K