3012 R : 1677 G : 0 B : 4095 i : 3013 R : 1683 G : 0 B : 4095 i : 3014 R : 1689 G : 0 B : 4095 i : 3015 R : 1695 G : 0 B : 4095 i : 3016 R : 1701 G : 0 B : 4095 i : 3017 R : 1707 G : 0 B : 4095 i : 3018 R : 1713 G : 0 B : 4095 i : 3019 R : 1719 G : 0 B : 4095 i : 3020 R : 1725 G : 0 B : 4095 i : 3021
Automotive Applications D OR PW PACKAGE • ESD Protection Exceeds 2000 V Per (TOP VIEW) MIL-STD-883, Method 3015; Exceeds 200 V Using Machine Model (C = 200 pF, R = 0) A/B 1 16 V CC • Operates From 2 V to 3.6 V 1A 2 15 OE 1B 3 14 4A • Inputs Accept Voltages to 5.5 V • Max t of 4.6 ns at 3.3 V 1Y 4 13 4B pd 2A
temperature range is -40 ºC to 85 ºC • ESD protection exceeds: • 2500 V HBM per Mil. Std. 883C – 3015.7 • Latch-up free (bipolar process with no latching structures). • P82B715 offered in 8-pin DIP (N) and SO (D) P82B96: 2 • Can split bi-directional I C signals into two unidirectional Tx and Rx data
capability (ESD) IN: V ESD 1.0 kV (Human Body Model) all other pins: 2.0 acc. MIL-STD883D, method 3015.7 and ESD assn. std. S5.1-1993 Input voltage (DC) V -10 ... +16 V IN Current through input pin (DC) IIN ±2.0 mA Current through status pin (DC) IST ±5.0 see internal circuit diagrams page 7 2) Supply
Operating Temperature T opr -40~+85 °C Storage Temperature T stg -55~+150 °C HBM (MIL-STD-883G Method 3015.7, Human - 7000 V ESD Rating Body Mode) MM (JEDEC EIA/JESD22-A115, - 300 V Machine Mode) - 5 - March 2008, V1.01 MBI5039 16-Channel Constant Current LED Sink Driver with LED Error Detection and Current
. Habe hier zB zwei funktionierende 7447 von 1972, habe ich stilgerecht auf ein Breakout mit zwei 3015F gesetzt :) Eher sollte man dem Vernehmen nach bei altem MOS-Zeug ESD sehr ernstnehmen. Es gibt wohl Herstellungsfehler/Materialwissenschaftliche Fallstricke geben die zum "Verrotten" bestimmter
ich bin auf der Suche nach einem einstellbaren negativen Spannungsregler. Optimal währe der LT 3015 von Linear oder der LM2991 von National. Nur wo bekommt man die als privater Bastler her ? Hat jemand einen Tip ? Danke ... Gruß Ingo http://www.linear.com/product/LT3015 http://www.national.com
below seating plane. Supply Voltage VDD –0.5 5.5 V ESD 2 kV All pins, human body model MIL 883 Method 3015 Input Voltage VIN –0.5 VDD + 0.5 V PD, SDIO, SCLK, XA, XB, YA, YB, XY_LED, R_BIN Input Voltage V –0.5 3.6 V OSC_IN, OSC_OUT, REF_A IN 8 Recommended Operating Conditions Parameter Symbol Min. Typ. Max
Parameter Symbol Min Typ Max Units maximum to MIL-STD-883C Operating Temp. Top -40 +85 °C method 3015 Maximum Coil Current COIL -10 10 mA Stresses above these listed maximum ratings may cause permanent damages to the device. Exposure beyond AC Voltage on Coil Vcoil 3 14* Vpp specified operating conditions
Static electricity testEndurance test applying the electric stress to VS=800V , RS=1.5 kΩ MIL-883B-3015.1 the terminal. CS=100 pF 1 time ∗∗∗ Supply voltage for logic system = 5V. Supply voltage for LCD system = Operating voltage at 25°C. u Failure Judgement Criterion Criterion Item Test Item No. Failure
) verwenden: http://www.reichelt.de/Flaechen-LEDs/FW-LED-10X20-4GN/index.html?ACTION=3&GROUPID=3015&ARTICLE=31494&SHOW=1&START=0&OFFSET=16&;PROVID=2402 und über einen Atmega8 ansteuern. Die Bestaltung vom Atmega und co ist gar kein problem, nur kann ich den µC ja nur mit 20mAh pro Pin beaufschlagen
Hallo Forum, ich würde gerne eine KlimaLogger http://cgi.ebay.de/TFA-KLIMALOGGER-30-3015-PROFI-HYGROMETER-1-AUsENSENSOR-/260330379491?pt=Mess_Pr%C3%BCftechnik&hash=item3c9ce658e3 an einen AVR anschliessen. Inzwischen habe ich auch schon was über das verwendete Protokoll gefunden: http
ESD Protected Per MIL-STD-883, Method A differential switching. The devices handle the needs of X 3015 Gigabit Ethernet (10/100/1000) Base-T switching as Single +3.0V to +3.6V Power-Supply Voltage 4 well as LVDS and LVPECL switching. The MAX4890E/ MAX4892E provide enhanced ESD protection up to Low On-Resistance
10 Electrostatic discharge capability (ESD) V ESD 4.0 kV Human Body Model acc. MIL-STD883D, method 3015.7 and ESD assn. std. S5.1-1993, C = 100 pF, R = 1.5 kΩ Current through input pin (DC) IIN +15, -250 mA Current through current sense status pin (DC) IIS +15, -250 see internal circuit diagrams on page
V Storage temperature - 40 + 125 °C Electrostatic discharge to -2000 +2000 V Mil-Std-883C method 3015.7 with ref. toSS Maximum soldering conditions Packages are Green-Mold and Lead-free As per Jedec J-STD-020C Stresses above these listed maximum ratings may cause permanent damage to the device. Exposure
gedacht. Als Anzeige möchte ich die Nixie Röhre ZM1040 verwenden und alternativ die Glühfadenanzeige 3015-F einsetzen, mit Sekunden und Datumsanzeige. Hier benötige ich jetzt Hilfe: 1.) Wer hat noch Schaltungsunterlagen hierfür, bzw. kann mir Bezugs- quellen nennen? ( wie Elektor Mai 1970, Funkschau
each pin. The machine model is a 200pF capacitor discharged directly into each pin. (MIL-STD-883 3015.7) Note 5: In applications where high power dissipation and/or poor package thermal resistance is present, the maximum ambient temperature may have to be derated. Maximum ambient temperaA-MAX is dependent
contains ESD protection and exceeds the following tests: Human Body Model 2000 V per MIL−STD−883, Method 3015. Machine Model Method 200 V. 2. Maximum package power dissipation must be observed. 3. Tlow = 0°C for MC34161 Thigh = +70°C for MC34161 −40°C for MC33161 +105°C for MC33161 −40°C for NCV33161 +125°C
Handset Votronic HH-SI-30.3/V1.1/0 Siemens Car Kit Portable Siemens Siemens ordering number L36880-N3015-A117 DSB35 Support Box Siemens Siemens ordering number L36880-N8101-A100-3 MC35i_HD_V01.03 Page 76 of 77 07.05.2004 MC35i Hardware Interface Description s Confidential / Released m obile Description
see the Electrical Characteristics. Note 2: Human Body Model, applicable std. MIL-STD-883, Method 3015.7. Machine Model, applicable std. JESD22-A115-A (ESD MM std. of JEDEC) Field-Induced Charge-Device Model, applicable std. JESD22-C101-C (ESD FICDM std. of JEDEC). Note 3: The maximum power dissipation
testEndurance test applying the electric stress to VS=800V , RS=1.5 kΩ MIL-883B- the terminal. CS=100 pF 3015.1 1 time ∗∗∗ Supply voltage for logic system = VDD. Supply voltage for LCD system = Operating voltage at 25°C. u Failure Judgement Criterion Criterion Item Test Item No. Failure Judgment Criterion 1
Static electricity testEndurance test applying the electric stress to VS=800V , RS=1.5 kΩ MIL-883B-3015.1 the terminal. CS=100 pF 1 time ∗∗∗ Supply voltage for logic system = 5V. Supply voltage for LCD system = Operating voltage at 25°C. Failure Judgement Criterion Criterion Item Test Item No. Failure
electrostatic-discharge (ESD) protection Input Off-Leakage Current < 1nA at +85°C greater than 2000V per Method 3015.7 9 Output Off-Leakage Current < 2.5nA at +85°C These muxes operate with a single +2.7V to +16V sup- Low Power Consumption < 10µW 7 ply or with ±2.7V to ±8V dual supplies, while retaining TTL/CMOS Compatible
guide-Static Discharge Voltage .......................................... >2001V (per MIL-STD-883, Method 3015) lines, not tested.) Storage Temperature .................................–65°C to +150°Cp Current.................................................... >200 mA Ambient Temperature with Operating Range
befinden sich ein paar TDA´s und ein: http://pdf1.alldatasheet.com/datasheet-pdf/view/112285/NEC/UPD70F3015BYGC-8EU.html Jetzt meine Frage ob ich das Display mit einem AVR anteuern kann, bzw. wie ich die Pinbelegung herausfinden kann. Ich hab den Metallrahmen schon mal hochgebogen und da geht der Folienleiter
robots”. In Qspdffejoht pg 2::6 JFFF Joufsobujpobm Dpogfsfodf po Spcpujdt boe Bvupnbujpo, Seiten: 3015–3020, 1995. [193] Lijun Li, Yingzhou Wang, und Ke Gong. “Measurements of building construction materials at the Ka-band.”. Qspdffejoht pg uif TQJF . Uif Joufsobujpobm Tpdjfuz gps Pqujdbm Fohjoffsjoh
Q2612A von HP: Sie passt für die Drucker 1010, 1012, 1015, 1018, 1020, 1022 und Multifunktionsgeräte 3015, 3050, 3052, 3055, M1319. d.h. wenn TTF erfolgreich mit einem Drucker aus der Serie klappt, sollte es grundsätzlich mit jedem gehen. 2. Da sich alternativ-Toner in der Zusammensetzung vom Original
hrs transportation by air. Others 11 Static Endurance test applying the electricVS=800V, MIL-883B-3015.1 electricity test stress to the terminal. RS=1.5 k CS=100 pF 1 time Supply voltage for logic system = 3V. Supply voltage for LCD system = Operating voltage at 25℃. 13. QUALITY GUARANTEE Acceptable
capability (ESD) IN: V ESD 1.0 kV (Human Body Model) all other pins: 2.0 acc. MIL-STD883D, method 3015.7 and ESD assn. std. S5.1-1993 Input voltage (DC) V -10 ... +16 V IN Current through input pin (DC) IIN ±2.0 mA Current through status pin (DC) I ±5.0 ST see internal circuit diagrams page 7 2) Supply
Discharge 330Ω 150pF 8kV The SP724 has a Level 4 rating when tested to the IEC 61000-4-2 MIL-STD-3015.7 Modified HBM 1.5kΩ 100pF 8kV†▯ Human Body Model (HBM) standard and connected in a circuit in which the V+ and V- pins have a return path to ground. Level 4 specifies a Standard HBM 1.5kΩ 100pF 2kV
testEndurance test applying the electric stress to VS=800V , RS=1.5 kΩ MIL-883B- the terminal. CS=100 pF 3015.1 1 time ∗∗∗ Supply voltage for logic system = 5V. Supply voltage for LCD system = Operating voltage at 25°C. u Failure Judgement Criterion Criterion Item Test Item No. Failure Judgment Criterion 1
testEndurance test applying the electric stress to VS=800V , RS=1.5 kΩ MIL-883B- the terminal. CS=100 pF 3015.1 1 time ∗∗∗ Supply voltage for logic system = 5V. Supply voltage for LCD system = Operating voltage at 25°C. u Failure Judgement Criterion Criterion Item Test Item No. Failure Judgment Criterion 1
R Flatness over Specified Signal 2 consumption and ESD tolerance greater than 2000V per ON Method 3015.7 are guaranteed. Range (2Ω max) M The MAX312/MAX313/MAX314 are quad, single- ♦ Guaranteed ESD Protection > 2000V per Method A pole/single-throw (SPST) analog switches. The MAX312 3015.7 is normally
electricity testEndurance test applying the electric stress to VS=800V , RS=1.5 MIL-883B- the terminal. kΩ 3015.1 CS=100 pF 1 time ∗∗∗ Supply voltage for logic system = 5V. Supply voltage for LCD system = Operating voltage at 25°C. Failure Judgement Criterion Criterion Item Test Item No. Failure Judgment Criterion
reliability. Refer also to the ST SURE Program and other relevant quality documents. 2. MIL-STD-883C, 3015.7 (100 pF, 1)00 T2ese memory devices are compatible with the When writing data to the memory, the memoth I C memory standard. This is a two wire serial inserts an acknowledge bit during the 9 bit time
) refe2ence PCB with 6 cm cooling area ESD Protection (Human Body Model acc. MIL STD 883D, method 3015.7 and EOS/ ESD assn. standard S5.1 - 1993) Input LS-Switch V ESD 0.5 kV Input HS-Switch V ESD 1 kV Status HS-Switch V ESD 2 kV Output LS and HS-Switch V ESD 4 kV allotherpinsconnected to Ground Note
sogar latenter Überdruck herrschen." Einige Anzeigen die nach dem Prinzip arbeiten (Minitron 3015...) sind in der Tat evakuiert. Die haben auch einen lustigen Ausfallmodus: Wenn das Vakuum hin ist wird der Gluehdraht so kalt dass er nicht mehr glueht ... ohne durchzubrennen.
Human body model is a 100pF capacitor discharged through a 1.5kΩ resistor into each pin. (MIL-STD-883 3015.7) The machine model is a 200pF capacitor discharged directly into each pin. (EAIJ) Note 6: In applications where high power dissipation and/or poor package thermal resistance is present, the maximum
Protection Exceeds 2000 V Per shunt monitors. Wide input common-mode voltage range, MIL-STD-883, Method 3015; Exceeds 200 V high-speed, low quiescent current, and tiny TSSOP-8 packaging enable use in a variety of applications. Using Machine Model (C = 200 pF, R = 0) D Complete Unipolar High-Side Current Input
PISS10114 PA6 PISS20114 PB10 PISS3014 PIUC1094 BOOT0 PE4 P I U C 1 0 3 NLPE5 PISS10115 PISS20115 PISS3015 PE5 P I U C 1 0 4 NLPE6 PC1 PISS10116 PA7 PISS20116 PB11 PISS3016 PE6 P I U C 1 0 5 PE6 C PO NRSTT NRSTS PIUC1014 NRST PE7 PIUC1038 PE7E7 SS11 SS2 2 SS33 C GND PIUC1020 VREF- PE8 PIUC1039 PE8E8 PB12
Static electricity testEndurance test applying the electric stress to VS=800V , RS=1.5 kΩ MIL-883B-3015.1 the terminal. CS=100 pF 1 time ∗∗∗ Supply voltage for logic system = 5V. Supply voltage for LCD system = Operating voltage at 25°C. u Failure Judgement Criterion Criterion Item Test Item No. Failure