15 Years Factory wholesale TU-1D01-100 thermal wax actuator for automobile thermostat for Swedish Manufacturers

15 Years Factory wholesale
 TU-1D01-100 thermal wax actuator for automobile thermostat for Swedish Manufacturers

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We've been proud with the significant shopper fulfillment and wide acceptance due to our persistent pursuit of top of the range both of those on solution and repair for Automation Temperature Control System , Automation Control , Wax Motor , Welcome worldwide customers to contact us for business and long-term cooperation. We will be your reliable partner and supplier of auto parts and accessories in China.
15 Years Factory wholesale TU-1D01-100 thermal wax actuator for automobile thermostat for Swedish Manufacturers Detail:

1. Operation Principle

The Thermostatic Wax that has been sealed in shell body induces expansion by a given temperature, and inner rubber seal part drives its handspike to move under expansion pressure to realize a transition from thermal energy into mechanical energy. The Thermostatic Wax brings an upward movement to its handspike, and automatic control of various function are realized by use of upward movement of handspike. The return of handspike is accomplished by negative load in a given returned temperature.

2. Characteristic

(1)Small body size, occupied limited space, and its size and structure may be designed in according to the location where needs to work.

(2)Temperature control is reliable and nicety

(3)No shaking and tranquilization in working condition.

(4)The element doesn’t need special maintenance.

(5)Working life is long.

3.Main Technical Parameters

(1)Handspike’s height may be confirmed by drawing and technical parameters

(2)Handspike movement is relatives to the temperature range of the element, and the effective distance range is from 1.5mm to 20 mm.

(3)Temperature control range of thermal wax actuator is between –20 ~ 230℃.

(4)Lag phenomenon is generally 1 ~ 2℃. Friction of each component part and lag of the component part temperature cause a lag phenomenon. Because there is a difference between up and down curve of traveling distance.

(5)Loading force of thermal wax actuator is difference, it depends on its’ shell size.


Product detail pictures:

15 Years Factory wholesale
 TU-1D01-100 thermal wax actuator for automobile thermostat for Swedish Manufacturers detail pictures


It adheres to the tenet "Honest, industrious, enterprising, innovative" to develop new products constantly. It regards customers, success as its own success. Let us develop prosperous future hand in hand for 15 Years Factory wholesale TU-1D01-100 thermal wax actuator for automobile thermostat for Swedish Manufacturers, The product will supply to all over the world, such as: Indonesia , Karachi , Sweden , We have advanced production technology, and pursuit innovative in goods. At the same time, the good service has enhanced the good reputation. We believe that as long as you understand our product, you need to be willing to become partners with us. Looking forward to your inquiry.



  • https://www.ibiology.org/ibioseminars/dominique-bergmann-part-3.html

    Talk Overview:
    While mammals are protected by the mother’s womb during their most critical development, plants are exposed to the environment for most of their development. To survive, plants have developed strategies such as the ability to grow new tissue and regenerate tissue lost to predators. New leaves, stems and flowers are derived from the shoot apical meristem while roots come from the root apical meristem. Meristems are the source of pluripotent stem cells for all plant growth. Bergmann explains that because plants can live for a very long time and are constantly regenerating they are an excellent system for improving our understanding of stem cells.
    In Part 2, Bergmann focuses on the stem cells that give rise to the epidermis of the plant. These stem cells give rise to two distinct sets of cells. Pavement cells form an impermeable layer that “waterproofs” the plant. Stomata are small pores on the plant surface formed by two cells that act as a valve to regulate the uptake of CO2 and the release of oxygen and water. Bergmann’s lab used confocal microscopy to follow stem cells from their “birth”, through a series of asymmetric divisions to their eventual differentiation to pavement cells or stomata. At the same time, they measured how active or inactive all genes in the plant were at the different stages. Using chromatin immunoprecipitation, they were able to identify key genes involved in determining and maintaining cell fate decisions. Interestingly, similar genes and mechanisms may influence cell fate decisions in animals.
    In her last talk, Bergmann discusses the impact of plant physiology on the Earth’s climate and the impact of climate on plant physiology. Since stomata regulate CO2 uptake and oxygen and H2O release, their function impacts global climate change. The number of stomata a plant has increases and decreases in response to many factors including CO2 concentration, light, and temperature and stomata can open and close in response to the same cues. Bergmann and her colleagues studied plants with different numbers of stomata that were grown in controlled climates to get a better understanding of stomatal behavior in response to changes in climate. Knowing these details may contribute to improving the accuracy of global climate models.

    Related Articles (to open on a separate page from Resources link under the video window):
    Matos JL, Lau OS, Hachez C, Cruz-Ramírez A, Scheres B, Bergmann DC (2014) Irreversible fate commitment in the Arabidopsis stomatal lineage requires a FAMA and RETINOBLASTOMA-RELATED module. Elife. 2014 Oct 10;3. PMID: 25303364
    Lau OS, Davies KA, Chang J, Adrian J, Rowe MH, Ballenger CE, Bergmann DC (2014) Direct roles of SPEECHLESS in the specification of stomatal self-renewing cells. Science 2014 Sept; PMID: 25190717
    Dong J, Macalister CA, Bergmann DC (2009) BASL Controls Asymmetric Cell Division in Arabidopsis. Cell. 2009 Jun 26;137(7):1320-30. PMID: 19523675
    Key reviews:
    Dow GJ, Bergmann DC (2014) Patterning and processes: how stomatal development defines physiological potential. Curr Opin Plant Biol. 2014 Jul 21;21C:67-74. PMID: 25058395
    Matos JL, Bergmann DC (2014) Convergence of stem cell behaviors and genetic regulation between animals and plants: insights from the Arabidopsis thaliana stomatal lineage. F1000Prime Rep. 2014 Jul 8;6:53. PMID: 25184043
    Lau OS, Bergmann DC (2012) Stomatal development: a plant’s perspective on cell polarity, cell fate transitions and intercellular communication. Development 139(20):3683-92. PMID: 22991435
    Vatén A, Bergmann DC (2012) Mechanisms of stomatal development: an evolutionary view. Evodevo 3(1):11. PMID: 22691547

    Speaker Biography:
    Dominique Bergmann completed her BA in molecular and cellular biology at the University of California, Berkeley. Bergmann studied development in C. elegans as a PhD student at the University of Colorado at Boulder, but switched her focus to development in Arabidopsis while a post-doc at the Carnegie Institution, Department of Plant Biology. Moving to Carnegie’s neighbor, Stanford University, Bergmann set up her own lab in 2005, and continues to study Arabidopsis. Currently, her work focuses on specialized structures called stomata and the role of asymmetric cell division and cell-cell communication in their formation.
    Bergmann is currently an associate professor at Stanford University and a Howard Hughes Medical Institute and Gordon and Betty Moore Foundation Investigator. She is also an associate of the Stanford Institute for Stem Cell Biology and Regenerative Medicine and The Carnegie Institute, Department of Plant Biology.



    Moving Head Wash mit 3 W Luxeon Rebel LEDs

    Bestückung mit 108 x 3 W highpower LEDs “Luxeon Rebel” made by Lumileds, USA

    LEDs: 52 x rot, 22 x grün, 22 x blau, 12 x weiß

    Korrektur der Farbtemperatur durch 12 kaltweiße LEDs möglich

    Luxeon Rebel LEDs zeichnen sich durch extreme Helligkeit und lange Betriebszeit aus

    100 000 Stunden Lebensdauer der LEDs

    DMX-gesteuerter Betrieb oder Stand Alone Betrieb mit Master-/Slave-Funktion möglich

    56 vorprogrammierte Szenen im Program Run für Stand Alone Betrieb

    Anzahl der Szenen im Program Run kann beliebig verändert werden

    Die Szenen im Program Run lassen sich über das Control Board oder externen Controller individuell anpassen und in den Speicher laden

    7 eingebaute Programme, die sich über den DMX-Controller aufrufen lassen

    Musikgetaktet über eingebautes Mikrofon

    Exakte Positionierung durch 16 Bit Auflösung der Pan/Tilt-Bewegung

    PAN-Winkel zwischen 630° und 540° umschaltbar

    Schaltnetzteiltechnologie

    Automatische Anpassung der Netzspannung zwischen 100 und 240 Volt ohne Umschaltung

    Stufenlose RGBW-Farbmischung

    Geschwindigkeit der Farbwechsel und Strobe-Effekt einstellbar

    Strobe-Effekt mit 1-25 Blitzen pro Sekunde

    Strobe-Effekt über Zufallsgenerator

    Lichtstrahl mit 40° Abstrahlwinkel

    Blaues LCD-Display

    Weiteres Modul zur Aufrüstung erhältlich: Drahtlos-Empfänger für W-DMX Betrieb

    ESDC-Funktion (Easy Service Data Check) mit batteriegepuffertem Control Board zum Auslesen der Betriebszeiten etc.

    Masterdimmer

    Rainbow-Effekt

    Control-Board mit LCD-Display und Folientastatur zur Einstellung der DMX-Startadresse, Pan-/Tilt-Reverse, Programm, Reset

    RDMX (Remote DMX Adressing). Einstellen der DMX-Startadresse über Controller möglich

    Vorteile der LED-Technologie: extrem lange Lebensdauer, niedriger Gesamtanschlusswert, minimale Wärmeentwicklung, quasi wartungsfrei bei brillantem Abstrahlverhalten

    DMX-512 Steuerung über jeden handelsüblichen DMX-Controller möglich
    ————————-
    Moving Head Wash with 3 W Luxeon Rebel LEDs

    Equipped with 108 x 3 W high power LEDs “Luxeon Rebel” made by Lumileds, USA

    LEDs: 52 x red, 22 x green, 22 x blue, 12 x white

    Correction of the color temperature via 12 cold white LEDs possible

    Luxeon Rebel LEDs have a very high brighness and extreme long life

    100 000 hours LED life

    DMX-controlled operation or stand alone operation with Master/Slave-function

    56 preprogrammed scenes in Program Run for stand alone operation

    Number of scenes in Program Run can be changed individually

    The scenes in Program Run can be modified via the Control Board or via an external controller and loaded into the memory

    7 built-in programs can be called up via DMX-controller

    Sound-controlled via built-in microphone

    Exact positioning via 16 bit Pan/Tilt movement resolution

    PAN angle switchable between 630° and 540°

    Switch-mode power supply

    Automatic power supply adaption between 100 and 240 Volts without power selector

    Stepless RGBW color changing

    Programmable color-change speed and strobe effect

    Random strobe effect

    Lightbeam with 40° radiation angle

    Blue LCD display

    Upgrade via further optional module: wireless receiver for W-DMX operation

    ESDC function (Easy Service Data Check) with battery-buffered Control Board for operation time readouts etc.

    Strobe effect with 1-25 flashes per second

    Masterdimmer

    Rainbow effect

    Control Board with LCD display and foil-keyboard for adjusting the DMX-starting address, Pan/Tilt Reverse, Program, Reset

    RDMX (Remote DMX Adressing). DMX address setting via controller

    Advantages of LED-technology: extremely long life, low power consumption, minimal heat emission, defacto maintenance free with brilliant light radiation

    DMX-control via every standard DMX-controller

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