<?xml version="1.0" encoding="UTF-8" ?><!-- generator=Zoho Sites --><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom" xmlns:content="http://purl.org/rss/1.0/modules/content/"><channel><atom:link href="https://www.radicaltechmart.com/blogs/tag/liquid-level-switch/feed" rel="self" type="application/rss+xml"/><title>Radical TechMart - Blog #liquid level switch</title><description>Radical TechMart - Blog #liquid level switch</description><link>https://www.radicaltechmart.com/blogs/tag/liquid-level-switch</link><lastBuildDate>Wed, 12 Aug 2026 07:21:27 +0530</lastBuildDate><generator>http://zoho.com/sites/</generator><item><title><![CDATA[Magnetic Float Level Switch | Selection and Application Guide ]]></title><link>https://www.radicaltechmart.com/blogs/post/magnetic-float-level-switch-selection-guide</link><description><![CDATA[<img align="left" hspace="5" src="https://www.radicaltechmart.com/magnetic float level.jpg"/>Learn how to select a magnetic float level switch by mounting type, SS or plastic material, temperature, pressure, liquid density, switching points and application.]]></description><content:encoded><![CDATA[
<div class="zpcontent-container blogpost-container "><div data-element-id="elm_dDoUzVieTuCKzrrVEf7YQQ" data-element-type="section" class="zpsection "><style type="text/css"></style><div class="zpcontainer"><div data-element-id="elm_grH85IObSOKD3ZTTENZ19A" data-element-type="row" class="zprow zpalign-items- zpjustify-content- "><style type="text/css"></style><div data-element-id="elm_X6ojztpvTXaaa0rlzn3F6Q" data-element-type="column" class="zpelem-col zpcol-12 zpcol-md-12 zpcol-sm-12 zpalign-self- "><style type="text/css"></style><div data-element-id="elm_B6rp6YkaQMCDLLX1EfTteA" data-element-type="heading" class="zpelement zpelem-heading "><style></style><h2
 class="zpheading zpheading-align-center " data-editor="true"><span style="color:inherit;">Magnetic Float Level Switch Selection Guide: How to Choose the Right Type</span></h2></div>
<div data-element-id="elm_4EKu2B1nQBukQKR3wl4SNw" data-element-type="text" class="zpelement zpelem-text "><style></style><div class="zptext zptext-align-center " data-editor="true"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><div style="color:inherit;"><p style="text-align:left;">A float switch normally gets attention only after something goes wrong.</p><p style="text-align:left;">A pump starts running without enough liquid. A tank overflows because the high level signal never arrives. A boiler needs low level protection. Or a maintenance team replaces an old switch with another one that physically fits, only to find that the float does not move correctly inside the tank.</p><p style="text-align:left;">This is where magnetic float level switch selection becomes more important than simply matching a thread size.</p><p style="text-align:left;">The Radical TechArt catalogue covers a fairly broad range of magnetic float level switches. The product overview on page 2 shows stainless steel and plastic designs, horizontal and vertical mounting, single and multiple level arrangements, DIN connector versions, adjustable designs and conductivity sensors. Pages 3 to 14 then show the individual float switch families and their application ranges. </p><p style="text-align:left;">The practical question is not, &quot;Which float switch is available?&quot;</p><p style="text-align:left;">It is, &quot;Which construction will actually work inside my tank?&quot;</p><h2 style="text-align:left;">What Is a Magnetic Float Level Switch?</h2><p style="text-align:left;">A magnetic float level switch is a point level sensing device used to detect whether liquid has reached a particular level.</p><p style="text-align:left;">A float moves as the liquid rises or falls. A magnet inside or associated with the float operates a reed switch positioned in the stem. That changes the electrical contact and gives the control system a simple ON/OFF level signal.</p><p style="text-align:left;">In practical terms, the switch can be used for functions such as:</p><ul><li style="text-align:left;"> High level alarm </li><li style="text-align:left;"> Low level alarm </li><li style="text-align:left;"> Tank filling control </li><li style="text-align:left;"> Pump start or stop </li><li style="text-align:left;"> Pump dry run protection </li><li style="text-align:left;"> Overflow prevention </li><li style="text-align:left;"> Minimum level protection </li><li style="text-align:left;"> Multi point level indication </li></ul><p style="text-align:left;">Unlike a continuous level transmitter, a magnetic float switch does not normally tell you that a tank is 37 percent or 68 percent full. It tells the control system that a predefined switching level has been reached.</p><p style="text-align:left;">That distinction matters when selecting between a float switch, ultrasonic level transmitter or hydrostatic level transmitter.</p><h2 style="text-align:left;">How Does a Magnetic Float Level Switch Work?</h2><p style="text-align:left;">The operating principle is mechanically simple.</p><p style="text-align:left;">As liquid reaches the float, buoyancy moves the float along or around its permitted travel. The magnet then changes the state of the internal reed contact.</p><p style="text-align:left;">Depending on the design, the output may be SPST or SPDT. The catalogue also shows configurations where the switching action can be changed by removing the float, reversing its orientation and refitting it on the stem. This is particularly useful when the application requires the contact logic to change between rising and falling liquid conditions. </p><p style="text-align:left;">For automation applications, the contact can be used with:</p><ul><li style="text-align:left;"> PLC digital inputs </li><li style="text-align:left;"> Relays </li><li style="text-align:left;"> Alarm annunciators </li><li style="text-align:left;"> Controllers </li><li style="text-align:left;"> Pump control circuits </li><li style="text-align:left;"> Contactor control circuits where the selected switch rating permits it </li></ul><p style="text-align:left;">The important point is that this is a switching contact, not a 4 to 20 mA continuous output.</p><h2 style="text-align:left;">Why Selection Matters in Actual Plant Conditions</h2><p style="text-align:left;">Two magnetic float level switches can look almost identical and still behave very differently once installed.</p><p style="text-align:left;">For example, a stainless steel float suitable for hot water and pressure may be unnecessary for a simple atmospheric water reservoir. On the other hand, a plastic float chosen only because it costs less may be completely wrong for a hot or pressurized application.</p><p style="text-align:left;">Mounting can create the same problem.</p><p style="text-align:left;">A long top mounted switch may work perfectly in a deep tank but be difficult to remove when there is limited space above the vessel. A compact side mounted design can solve that problem, but only if the tank provides enough internal clearance for the float to move.</p><p style="text-align:left;">A purchase team may compare product price. The maintenance team will eventually deal with the result of the selection.</p><h2 style="text-align:left;">Main Types of Magnetic Float Level Switches</h2><p style="text-align:left;">Rather than treating every model in the catalogue as a separate product, it is more useful to understand the main construction families.</p><h3 style="text-align:left;"><span style="font-size:24px;">1. Side Mounted Stainless Steel Float Switches</span></h3><p style="text-align:left;">The RDCL-HFS-B-SS and RDCL-HFS-C-SS families are intended for side installation through the tank wall.</p><p style="text-align:left;">These are useful when there is no practical access from the tank top or when the switching point needs to be close to a particular level on the side of the vessel.</p><p style="text-align:left;">The catalogue lists applications such as sterilizers, water boilers, industrial cleaning tanks and kitchen equipment.</p><p style="text-align:left;"><strong>Best for:</strong> Compact single point high or low level detection in stainless steel process installations.</p><p style="text-align:left;">The HFS-B series is listed with SS 304 / SS 316 construction, temperatures from minus 40°C to 135°C and pressure up to 4 bar. The HFS-C series is also stainless steel, with a smaller diameter seamless float and pressure up to 3 bar. </p><p style="text-align:left;"><strong>Main selection point:</strong> Check the available space inside the tank for float movement before finalizing a horizontal side mounted design.</p><h3 style="text-align:left;"><span style="font-size:24px;">2. Flange Mounted Stainless Steel Float Switches</span></h3><p style="text-align:left;">For larger tanks and pressure vessels, the RDCL-HFS-F-SS flange mounted series provides a more substantial mounting arrangement.</p><p style="text-align:left;">The catalogue lists applications including sterilizers, water boilers, pressure vessels and industrial washing machines.</p><p style="text-align:left;"><strong>Best for:</strong> Larger vessels where flange mounting is preferable to a small threaded process connection.</p><p style="text-align:left;">The listed configuration operates up to 150°C and 5 bar, with stainless steel construction and a ceramic terminal arrangement. </p><p style="text-align:left;">This makes the flange version worth considering when the application condition is beyond the normal range of smaller side mounted products.</p><h3 style="text-align:left;"><span style="font-size:24px;">3. Side Mounted, Vertically Operated Float Switches</span></h3><p style="text-align:left;">The catalogue also includes designs such as RDCL-VFS-L and RDCL-VFS-S.</p><p style="text-align:left;">These combine side mounting with vertical float movement.</p><p style="text-align:left;">That can be a useful compromise. The installation remains compact from the tank side, but the sensing motion is vertical.</p><p style="text-align:left;"><strong>Best for:</strong> Boiler protection, chiller units, autoclaves, water treatment systems and applications where switching close to the tank connection is important.</p><p style="text-align:left;">Stainless steel versions are listed for temperatures up to 135°C and pressures up to 4 bar, while Nylon or Polypropylene float versions are intended for lower temperature, atmospheric pressure applications. </p><h3 style="text-align:left;"><span style="font-size:24px;">4. Top Mounted Single Point Float Switches</span></h3><p style="text-align:left;">The RDCL-MVFS family uses an internal top mounting arrangement.</p><p style="text-align:left;">Top mounting is useful when the tank wall should remain free from additional side penetrations or when the switch needs to reach further down into the vessel.</p><p style="text-align:left;">The catalogue lists water, boiling water, industrial fluids and chemical applications.</p><p style="text-align:left;"><strong>Best for:</strong> Tanks where sensing depth matters and top access is available.</p><p style="text-align:left;">The range includes full stainless steel and hybrid stainless steel stem with Nylon or Polypropylene float configurations.</p><h3 style="text-align:left;"><span style="font-size:24px;">5. Adjustable and Multi Level Float Switches</span></h3><p style="text-align:left;">This is where magnetic float technology becomes especially useful for basic tank automation.</p><p style="text-align:left;">The catalogue includes onsite adjustable designs and multi level top mounted versions.</p><p style="text-align:left;">The adjustable type allows switching positions to be fine tuned at site within the available adjustment range. This is useful when the exact high or low level cannot be finalized perfectly during fabrication.</p><p style="text-align:left;">The multi level series can be configured with multiple floats and switching points. The catalogue specifically notes that up to five switching points can be accommodated in the multi level design. </p><p style="text-align:left;"><strong>Best for:</strong> Applications that need several discrete levels, such as:</p><ul><li style="text-align:left;"> Low low level </li><li style="text-align:left;"> Low level </li><li style="text-align:left;"> Pump start </li><li style="text-align:left;"> Pump stop </li><li style="text-align:left;"> High level alarm </li></ul><p style="text-align:left;">This can sometimes replace several individual switches and reduce the number of tank penetrations.</p><h3 style="text-align:left;"><span style="font-size:24px;">6. DIN Connector Top Mounted Designs</span></h3><p style="text-align:left;">The external top mounted RDCL-VFS-DIN series uses a DIN connector instead of a permanently attached cable arrangement.</p><p style="text-align:left;">This can make field wiring and replacement cleaner in OEM machines or equipment where connectors are preferred.</p><p style="text-align:left;">The catalogue mentions applications including automotive systems, liquid food applications and printing machinery.</p><p style="text-align:left;"><strong>Best for:</strong> OEM installations where a compact external electrical termination is preferred.</p><h3 style="text-align:left;"><span style="font-size:24px;">7. Plastic Float Level Switches</span></h3><p style="text-align:left;">Not every tank needs stainless steel.</p><p style="text-align:left;">The RDCL-HFS-PP and RDCL-SPVFS-PP ranges use engineering plastics such as Nylon and Polypropylene.</p><p style="text-align:left;">The side mounted plastic series is listed for chambers, water reservoirs, water chillers, water coolers, acid tanks and water baths.</p><p style="text-align:left;">The single point top mounted plastic series is intended for oil and chemical applications and is offered with compact threaded mounting options. </p><p style="text-align:left;"><strong>Best for:</strong> Atmospheric tanks where chemical compatibility and economical construction matter more than pressure capability.</p><p style="text-align:left;">Plastic should not automatically be considered a cheaper substitute for stainless steel. In some chemical applications, the correct plastic can actually be the more appropriate wetted material.</p><h3 style="text-align:left;"><span style="font-size:24px;">8. External Side Mount Taper Thread Switches</span></h3><p style="text-align:left;">The RDCL-HFS-C-SS-ET and RDCL-HFS-PP-ET designs use a taper thread arrangement intended for quick external side installation.</p><p style="text-align:left;">The catalogue describes the conical thread as helping achieve a simple tank wall fitment and lists a 1/2 inch NPT style connection. </p><p style="text-align:left;"><strong>Best for:</strong> Simple side mounted installations where fast fitment is important.</p><h2 style="text-align:left;">Key Selection Factors for a Magnetic Float Level Switch</h2><h3 style="text-align:left;"><span style="font-size:24px;">1. Start With the Liquid</span></h3><p style="text-align:left;">Do not start with the model number.</p><p style="text-align:left;">First confirm:</p><ul><li style="text-align:left;"> Water, oil or chemical </li><li style="text-align:left;"> Liquid temperature </li><li style="text-align:left;"> Tank pressure </li><li style="text-align:left;"> Specific gravity </li><li style="text-align:left;"> Whether the liquid leaves deposits </li><li style="text-align:left;"> Material compatibility </li></ul><p style="text-align:left;">The catalogue shows floats with specific gravity values around 0.70 or 0.85 g/cm³ depending on construction.</p><p style="text-align:left;">This number matters. If the process liquid does not provide enough buoyancy for the selected float, the switch may not actuate correctly.</p><p style="text-align:left;">For liquids with unusual density, always confirm float suitability before ordering.</p><h3 style="text-align:left;"><span style="font-size:24px;">2. Choose Stainless Steel or Plastic Carefully</span></h3><p style="text-align:left;">Stainless steel versions are the natural choice for many industrial liquids, hot water applications and pressurized systems.</p><p style="text-align:left;">The catalogue commonly uses SS 304 / SS 316 construction and SS 316L stems in several series.</p><p style="text-align:left;">Plastic versions use Nylon or Polypropylene.</p><p style="text-align:left;">A simple rule is:</p><div><table style="text-align:left;"><thead><tr><th>Application condition</th><th>Starting point</th></tr></thead><tbody><tr><td>Hot water or higher temperature</td><td>Stainless steel</td></tr><tr><td>Pressurized vessel</td><td>Stainless steel</td></tr><tr><td>Water reservoir at atmospheric pressure</td><td>SS or plastic</td></tr><tr><td>Acid or chemical tank</td><td>Select by chemical compatibility</td></tr><tr><td>Economical water level detection</td><td>Plastic may be suitable</td></tr><tr><td>Hygienic or process vessel</td><td>Confirm SS grade and process connection</td></tr></tbody></table></div>
<p style="text-align:left;">Material compatibility must still be checked for the actual fluid.</p><h3 style="text-align:left;"><span style="font-size:24px;">3. Confirm Temperature and Pressure Together</span></h3><p style="text-align:left;">The catalogue does not give one universal rating for every magnetic float switch.</p><p style="text-align:left;">Depending on the family, stainless steel versions are shown with operating temperatures up to 135°C, with the flange mounted series reaching 150°C. Pressure capability varies, with several stainless steel series listed up to 4 bar and the flange type up to 5 bar.</p><p style="text-align:left;">Plastic models are generally shown for atmospheric pressure, with temperature limits commonly up to 100°C. The economical SPVFS series is listed up to 70°C. </p><p style="text-align:left;">This is why selecting by appearance alone is risky.</p><h3 style="text-align:left;"><span style="font-size:24px;">4. Decide Top Mount or Side Mount</span></h3><p style="text-align:left;">Choose top mounting when:</p><ul><li style="text-align:left;"> The tank already has top access </li><li style="text-align:left;"> A longer sensing depth is required </li><li style="text-align:left;"> Multiple level points are needed </li><li style="text-align:left;"> Side penetration should be avoided </li></ul><p style="text-align:left;">Choose side mounting when:</p><ul><li style="text-align:left;"> Only one particular level needs to be detected </li><li style="text-align:left;"> Installation space above the tank is limited </li><li style="text-align:left;"> The existing tank already has a side nozzle </li><li style="text-align:left;"> The switching point needs to remain close to the tank wall connection </li></ul><h3 style="text-align:left;"><span style="font-size:24px;">5. Check the Process Connection</span></h3><p style="text-align:left;">The catalogue includes several connection arrangements depending on series, including:</p><ul><li style="text-align:left;"> 1/4 inch BSP </li><li style="text-align:left;"> M10 </li><li style="text-align:left;"> M16 </li><li style="text-align:left;"> 1 inch BSP </li><li style="text-align:left;"> 1/2 inch NPT </li><li style="text-align:left;"> Flange options </li><li style="text-align:left;"> TC fitting options on selected customizable versions </li></ul><p style="text-align:left;">Do not leave this decision until installation day.</p><p style="text-align:left;">A mechanically correct switch with the wrong process connection is still the wrong switch.</p><h3 style="text-align:left;"><span style="font-size:24px;">6. Decide How Many Switching Points You Need</span></h3><p style="text-align:left;">For basic overflow protection, one level may be enough.</p><p style="text-align:left;">For pump automation, you may need two levels.</p><p style="text-align:left;">For a more complete tank sequence, multiple switching points may make more sense.</p><p style="text-align:left;">Example:</p><p></p><div style="text-align:left;"><strong style="color:inherit;">Low level:</strong><span style="color:inherit;"> Stop pump to prevent dry running</span></div>
<strong><div style="text-align:left;"><strong style="color:inherit;">Middle level:</strong><span style="color:inherit;font-weight:normal;"> Start filling</span></div></strong><div style="text-align:left;"><strong style="color:inherit;">High level:</strong><span style="color:inherit;"> Stop filling</span></div>
<strong><div style="text-align:left;"><strong style="color:inherit;">High high level:</strong><span style="color:inherit;font-weight:normal;"> Generate alarm</span></div></strong><p></p><p style="text-align:left;">The catalogue includes customizable multi level arrangements, including designs with up to five switching points. </p><h3 style="text-align:left;"><span style="font-size:24px;">7. Check Electrical Contact Rating</span></h3><p style="text-align:left;">Switching power varies considerably across the range.</p><p style="text-align:left;">The PDF lists standard ratings from around 10VA on compact economical plastic types to 50VA on several standard models and 70VA on the flange mounted series. Current ratings also vary by model.</p><p style="text-align:left;">The catalogue notes that selected versions can work with contactor loads, but the actual electrical load must always be matched to the selected switch rating. </p><p style="text-align:left;">For PLC applications, the float contact can normally be treated as a discrete input signal through the appropriate control wiring.</p><h2 style="text-align:left;">Magnetic Float Switch With PLC, HMI and SCADA</h2><p style="text-align:left;">A magnetic float level switch does not normally communicate with SCADA directly.</p><p style="text-align:left;">A typical arrangement is:</p><p style="text-align:left;"><strong>Float switch contact → PLC digital input → PLC logic → HMI / SCADA</strong></p><p style="text-align:left;">For example, a PLC can use two float switches to control a pump and then display:</p><ul><li style="text-align:left;"> Tank low </li><li style="text-align:left;"> Pump running </li><li style="text-align:left;"> Tank full </li><li style="text-align:left;"> High level alarm </li></ul><p style="text-align:left;">This is often simpler and less expensive than installing a continuous transmitter when the process only requires fixed switching points.</p><p style="text-align:left;">If the operator actually needs a live level percentage or level trend, a continuous level transmitter is usually the more appropriate technology.</p><h2 style="text-align:left;">Common Applications</h2><p style="text-align:left;">The catalogue range covers applications including:</p><ul><li style="text-align:left;"> Water storage tanks </li><li style="text-align:left;"> Water boilers </li><li style="text-align:left;"> Sterilizers </li><li style="text-align:left;"> Industrial cleaning tanks </li><li style="text-align:left;"> Pressure vessels </li><li style="text-align:left;"> Industrial washing machines </li><li style="text-align:left;"> Boiler low level protection </li><li style="text-align:left;"> Feeder tanks </li><li style="text-align:left;"> Chiller systems </li><li style="text-align:left;"> Autoclaves </li><li style="text-align:left;"> Water treatment plants </li><li style="text-align:left;"> Underground tanks </li><li style="text-align:left;"> Water reservoirs </li><li style="text-align:left;"> Fuel tanks </li><li style="text-align:left;"> Automotive applications </li><li style="text-align:left;"> Printing machinery </li><li style="text-align:left;"> Chemical tanks </li><li style="text-align:left;"> Acid tanks </li><li style="text-align:left;"> Oil tanks </li><li style="text-align:left;"> Water coolers and water baths </li></ul><h2 style="text-align:left;">Common Mistakes to Avoid</h2><ol><li style="text-align:left;"><strong>Selecting only by thread size:</strong> The float still needs enough internal tank clearance. </li><li style="text-align:left;"><strong>Ignoring liquid specific gravity:</strong> The float must generate enough buoyancy to switch correctly. </li><li style="text-align:left;"><strong>Using a plastic model because it is cheaper:</strong> Temperature, pressure and chemical compatibility come first. </li><li style="text-align:left;"><strong>Ignoring switch contact rating:</strong> A level switch signal and a motor power circuit are not the same thing. </li><li style="text-align:left;"><strong>Ordering a fixed switch when the level may change during commissioning:</strong> An adjustable version may save rework. </li><li style="text-align:left;"><strong>Installing multiple individual switches unnecessarily:</strong> A multi level assembly may be cleaner when several switching points are required. </li><li style="text-align:left;"><strong>Not confirming NO, NC or SPDT logic:</strong> The mechanical fit may be correct while the control logic is wrong. </li><li style="text-align:left;"><strong>Treating a float switch as a continuous level transmitter:</strong> Use a transmitter when actual continuous level measurement is required. </li></ol><h2 style="text-align:left;">Do This, Not That</h2><div><table style="text-align:left;"><thead><tr><th>Do This</th><th>Not This</th></tr></thead><tbody><tr><td>Select by liquid, temperature and pressure</td><td>Select from appearance alone</td></tr><tr><td>Check specific gravity</td><td>Assume every float works in every liquid</td></tr><tr><td>Confirm available float movement</td><td>Check only process thread</td></tr><tr><td>Decide switching levels before fabrication</td><td>Add level points later without planning</td></tr><tr><td>Match contact rating to the electrical circuit</td><td>Connect loads without checking rating</td></tr><tr><td>Use a multi level design when appropriate</td><td>Add unnecessary tank penetrations</td></tr><tr><td>Confirm SS, Nylon or PP compatibility</td><td>Select material only by price</td></tr></tbody></table></div>
<h2 style="text-align:left;">Quick Selection Checklist</h2><p style="text-align:left;">Before requesting a quotation, confirm:</p><ol><li style="text-align:left;"> Liquid name </li><li style="text-align:left;"> Liquid specific gravity if known </li><li style="text-align:left;"> Minimum and maximum temperature </li><li style="text-align:left;"> Tank operating pressure </li><li style="text-align:left;"> Stainless steel, Nylon or PP requirement </li><li style="text-align:left;"> Top mount, side mount or flange mount </li><li style="text-align:left;"> Process connection </li><li style="text-align:left;"> Required insertion or stem length </li><li style="text-align:left;"> Number and position of switching points </li><li style="text-align:left;"> NO, NC, SPST or SPDT contact requirement </li><li style="text-align:left;"> Electrical voltage and load </li><li style="text-align:left;"> Cable termination or DIN connector requirement </li></ol><h2 style="text-align:left;">Installation and Maintenance Points</h2><p style="text-align:left;">Leave enough clearance for the float to move freely. Internal pipes, tank walls, agitators and structural parts should not obstruct its travel.</p><p style="text-align:left;">For liquids that can form scale or sticky deposits, periodically inspect the float movement. A reed switch can be electrically healthy while the float itself is mechanically restricted by buildup.</p><p style="text-align:left;">Also check gaskets, cable condition, terminal connections and actual switching response during preventive maintenance.</p><p style="text-align:left;">For pump protection applications, a functional level test is more useful than checking continuity only at the terminal.</p><h2 style="text-align:left;">Specifications to Confirm Before Purchase</h2><p style="text-align:left;">Because the catalogue contains several constructions and customizable versions, final specifications should be confirmed for the exact model before purchase.</p><p style="text-align:left;">Confirm:</p><ul><li style="text-align:left;"> Wetted material </li><li style="text-align:left;"> Float material </li><li style="text-align:left;"> Float dimensions </li><li style="text-align:left;"> Stem length </li><li style="text-align:left;"> Switching level </li><li style="text-align:left;"> Temperature rating </li><li style="text-align:left;"> Pressure rating </li><li style="text-align:left;"> Float specific gravity </li><li style="text-align:left;"> Process connection </li><li style="text-align:left;"> SPST or SPDT requirement </li><li style="text-align:left;"> NO or NC switching logic </li><li style="text-align:left;"> Switching power </li><li style="text-align:left;"> Switching voltage </li><li style="text-align:left;"> Maximum current </li><li style="text-align:left;"> Number of switching points </li><li style="text-align:left;"> Cable type and length </li><li style="text-align:left;"> Connector type </li><li style="text-align:left;"> Gasket material </li><li style="text-align:left;"> Chemical compatibility </li></ul><h2 style="text-align:left;">Why Buy Magnetic Float Level Switches from Radical TechMart?</h2><p style="text-align:left;">A magnetic float switch enquiry often begins with only three details: tank size, liquid and required level.</p><p style="text-align:left;">But choosing the correct model may also require checking mounting orientation, temperature, pressure, float density, process connection, switching logic and electrical load.</p><p style="text-align:left;">At Radical TechMart, the focus is not only on supplying a float switch. The objective is to help match the switch construction to the actual tank and control requirement.</p><p style="text-align:left;">This is particularly useful for OEMs, maintenance teams, system integrators, panel builders, EPC contractors and process plants where a small selection mistake can create unnecessary fabrication or commissioning work.</p><h2 style="text-align:left;">Final Thoughts</h2><p style="text-align:left;">A magnetic float level switch is a simple device, but that simplicity should not lead to casual selection.</p><p style="text-align:left;">For a water tank at atmospheric pressure, a compact plastic switch may be perfectly adequate. For hot liquid, pressure vessels or demanding industrial service, stainless steel may be the better starting point. For multiple alarms and pump commands, a multi level assembly can simplify the installation considerably.</p><p style="text-align:left;">The right magnetic float level switch is selected by understanding the liquid, mounting position, temperature, pressure, buoyancy, switching points and final control circuit, not simply by matching an old model number.</p><hr style="text-align:left;"/><h1 style="text-align:left;">FAQs</h1><h2 style="text-align:left;"><span style="font-size:24px;">1. What is a magnetic float level switch used for?</span></h2><p style="text-align:left;">A magnetic float level switch detects a predetermined liquid level and provides an electrical contact for alarms, pump control, overflow protection or low level protection.</p><h2 style="text-align:left;"><span style="font-size:24px;">2. Can a magnetic float switch connect to a PLC?</span></h2><p style="text-align:left;">Yes. Its switching contact can be connected to a suitable PLC digital input. The PLC can then use the signal for pump logic, alarms, HMI indication or SCADA monitoring.</p><h2 style="text-align:left;"><span style="font-size:24px;">3. What is the difference between top mount and side mount float switches?</span></h2><p style="text-align:left;">Top mounted switches enter vertically from the tank top and are useful for deeper sensing or multiple level points. Side mounted switches are compact and useful for detecting a specific level through the tank wall.</p><h2 style="text-align:left;"><span style="font-size:24px;">4. Which is better, stainless steel or PP float switch?</span></h2><p style="text-align:left;">Neither is universally better. Stainless steel is commonly used for higher temperature, pressure and demanding industrial applications. Polypropylene can be suitable for atmospheric tanks and selected chemical applications where its compatibility is appropriate.</p><h2 style="text-align:left;"><span style="font-size:24px;">5. Can one float switch detect several liquid levels?</span></h2><p style="text-align:left;">A single float normally represents a particular switching point, but multi level assemblies can contain several floats and switching points on one stem. The uploaded catalogue includes versions configurable for up to five switching points. </p><h2 style="text-align:left;"><span style="font-size:24px;">6. Can I use a float switch directly for a pump?</span></h2><p style="text-align:left;">The electrical contact rating must be checked first. In many control systems, the float switch operates a relay, PLC input or contactor control circuit rather than switching the pump motor load directly.</p><h2 style="text-align:left;"><span style="font-size:24px;">7. Does a magnetic float switch give 4 to 20 mA output?</span></h2><p style="text-align:left;">Normally no. It is a point level switch providing discrete contact status. If continuous liquid level measurement and a proportional signal are required, consider a level transmitter instead.</p><h2 style="text-align:left;"><span style="font-size:24px;">8. What information should I provide when buying a float level switch?</span></h2><p style="text-align:left;">Provide the liquid, temperature, pressure, specific gravity if available, tank mounting arrangement, process connection, required switching levels, material preference and electrical contact requirement.</p></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div>
</div></div></div></div></div></div> ]]></content:encoded><pubDate>Tue, 11 Aug 2026 11:35:33 +0000</pubDate></item><item><title><![CDATA[Baumer Float Level Switch | LA & LZ Selection Guide]]></title><link>https://www.radicaltechmart.com/blogs/post/baumer-float-level-switch-selection-guide</link><description><![CDATA[<img align="left" hspace="5" src="https://www.radicaltechmart.com/float level baumer.jpg"/>Learn how to choose the right Baumer float level switch for tanks, pump control, water treatment and process applications. Compare Baumer LA side mounted and LZ cable float level switches, specifications, applications and selection factors.]]></description><content:encoded><![CDATA[
<div class="zpcontent-container blogpost-container "><div data-element-id="elm_GYhK2GZnQN-al5jmTjpsCw" data-element-type="section" class="zpsection "><style type="text/css"></style><div class="zpcontainer"><div data-element-id="elm_YMw9axpqRM2uTQCNWdNAQA" data-element-type="row" class="zprow zpalign-items- zpjustify-content- "><style type="text/css"></style><div data-element-id="elm_WrvPRgaOSs6VHWPhGedGxw" data-element-type="column" class="zpelem-col zpcol-12 zpcol-md-12 zpcol-sm-12 zpalign-self- "><style type="text/css"></style><div data-element-id="elm_jemnC_iCS02u3KKJXtBBDA" data-element-type="heading" class="zpelement zpelem-heading "><style></style><h2
 class="zpheading zpheading-align-center " data-editor="true"><span style="color:inherit;">Baumer Float Level Switch Selection Guide: Choosing Between LA and LZ</span></h2></div>
<div data-element-id="elm_gADFSr_-SLKp8DMYuhkmVw" data-element-type="text" class="zpelement zpelem-text "><style></style><div class="zptext zptext-align-center " data-editor="true"><div style="color:inherit;"><p style="text-align:left;">A tank has to stop filling before it overflows. A pump should not continue running when the liquid level becomes too low. A process vessel needs a high-level alarm. A wastewater sump needs automatic pump control.</p><p style="text-align:left;">All of these sound like straightforward level switching applications.</p><p style="text-align:left;">The mistake happens when the buyer simply asks for a &quot;float switch&quot; without considering how the switch will be mounted, what liquid is inside the vessel, operating temperature, pressure, required switching point and installation environment.</p><p style="text-align:left;">A cable float hanging inside a water tank and a stainless steel side-mounted float fitted into a process vessel perform the same basic job, but they are meant for very different installations.</p><p style="text-align:left;">Within the Baumer float level switch range covered by the available datasheets, this difference is clearly seen between the <strong>LZ Cable Float Level Switch</strong> and the <strong>LA Side Mounted Level Switch</strong>. The LZ is designed around a suspended polypropylene float and cable arrangement, while the LA uses a side-mounted float mechanism with AISI 316 stainless steel wetted parts and a magnetic switching principle. </p><p style="text-align:left;">That distinction should be the starting point of selection.</p><h2 style="text-align:left;">What Is a Baumer Float Level Switch?</h2><p style="text-align:left;">A float level switch detects whether liquid has reached a particular level and changes an electrical contact accordingly.</p><p style="text-align:left;">Unlike a continuous level transmitter, it does not tell the control system that the tank is 42% or 78% full. Its job is to give a switching condition such as:</p><p></p><div style="text-align:left;"><span style="color:inherit;">High level reached</span></div><div style="text-align:left;"><span style="color:inherit;">Low level reached</span></div><div style="text-align:left;"><span style="color:inherit;">Pump start</span></div><div style="text-align:left;"><span style="color:inherit;">Pump stop</span></div><div style="text-align:left;"><span style="color:inherit;">Tank filling stop</span></div><div style="text-align:left;"><span style="color:inherit;">Dry-run protection alarm</span></div><p></p><p style="text-align:left;">In a typical control panel, this switching contact can become part of a relay, contactor, alarm or PLC digital input circuit, depending on the electrical design.</p><p style="text-align:left;">The important question is therefore not only, &quot;Do I need a float switch?&quot;</p><p style="text-align:left;">It is, <strong>&quot;What type of float switch suits this vessel and process?&quot;</strong></p><h2 style="text-align:left;"><a href="https://www.radicaltechmart.com/products/lz-cable-float-level-switch/138206000017366467"><span style="font-size:24px;">Baumer LZ Cable Float Level Switch</span></a></h2><p style="text-align:left;">The LZ is the simpler choice when the float can hang freely inside a tank, sump or reservoir.</p><p style="text-align:left;">As the liquid rises or falls, the float tilts. That movement operates an internal microswitch and changes the contact from normally open to normally closed or vice versa. Baumer also shows the LZ being used for filling control and pump protection, which makes its intended use very clear. </p><h3 style="text-align:left;">Best for:</h3><p style="text-align:left;">Water tanks, sewage tanks, reservoirs, sumps and automatic pump control applications where a suspended cable float can move freely with liquid level.</p><h3 style="text-align:left;">Why the LZ makes sense</h3><p style="text-align:left;">The strength of the LZ is simplicity.</p><p style="text-align:left;">You do not need a side process flange penetrating the vessel. The float is suspended from its cable, and the adjustable counterweight helps define how the float moves around the required switching level.</p><p style="text-align:left;">This makes it practical for larger tanks where the level differential does not need to be extremely tight.</p><p style="text-align:left;">Its polypropylene construction also suits the water and sewage applications identified in the datasheet. The enclosure is IP68, which is particularly relevant because the float operates directly in the liquid environment. </p><h3 style="text-align:left;">Technical points to note</h3><div><div><table style="text-align:left;"><thead><tr><th>Parameter</th><th>Baumer LZ</th></tr></thead><tbody><tr><td>Type</td><td>Cable float level switch</td></tr><tr><td>Float and counterweight</td><td>Polypropylene</td></tr><tr><td>Cable</td><td>PVC</td></tr><tr><td>Standard cable length</td><td>3 metre</td></tr><tr><td>Other listed cable lengths</td><td>5, 10 and 20 metre</td></tr><tr><td>Enclosure</td><td>IP68</td></tr><tr><td>Mounting</td><td>Vertical</td></tr><tr><td>Switch</td><td>SPDT</td></tr><tr><td>Electrical rating</td><td>16 A, 250 VAC</td></tr><tr><td>Maximum operating pressure</td><td>4 bar</td></tr><tr><td>Maximum operating temperature</td><td>Up to 60°C</td></tr></tbody></table></div></div>
<p style="text-align:left;">Baumer notes that cable lengths above 20 metres should be discussed with the factory. </p><h3 style="text-align:left;">Where the LZ is commonly used</h3><p style="text-align:left;">Its datasheet specifically identifies sewage and water treatment plants, storage tanks and automatic pump control utilities. The same operating principle makes it relevant wherever a freely suspended float can be used for high or low level switching. </p><p style="text-align:left;">For example, in a sump pump application, one LZ can be positioned to create the required switching point. Where multiple level points are necessary, the datasheet also states that the LZ can be used as a multipoint switch arrangement. </p><h3 style="text-align:left;">Selection caution</h3><p style="text-align:left;">Do not select the LZ simply because the application contains water.</p><p style="text-align:left;">Check whether the float has enough free space to move without hitting a wall, ladder, pipe, agitator or other internal structure. Also confirm liquid temperature and pressure because the standard version is specified up to 60°C and 4 bar. </p><p style="text-align:left;">For compact vessels requiring a precise side switching point, the LA arrangement may make more sense.</p><h2 style="text-align:left;"><span style="font-size:24px;"><a href="https://www.radicaltechmart.com/products/baumer-la-float-level-switch/138206000017286705">Baumer LA Side Mounted Float Level Switch</a></span></h2><p style="text-align:left;">The LA belongs to a different class of installation.</p><p style="text-align:left;">Instead of hanging from a cable, it is fitted through the side of the vessel. A free-moving float operates a magnetic mechanism. The datasheet describes two magnets, one associated with the float arm and another in the switch enclosure. Changing liquid level brings the magnetic poles into a position where repulsion produces a snap-action changeover contact. </p><h3 style="text-align:left;">Best for:</h3><p style="text-align:left;">Process tanks and vessels where a defined side-mounted level point is required, particularly where stainless steel wetted parts, higher temperature capability or higher operating pressure are needed.</p><h3 style="text-align:left;">Why the LA makes sense</h3><p style="text-align:left;">A side-mounted switch gives the engineer a defined physical switching location.</p><p style="text-align:left;">If the requirement is &quot;give me a high-level alarm at this nozzle&quot; rather than &quot;switch somewhere across this suspended cable travel,&quot; a side-mounted design is generally much easier to engineer into the vessel.</p><p style="text-align:left;">The standard LA uses AISI 316 stainless steel wetted parts, a 92 mm PCD square flange and a 215 mm standard insertion depth. Its standard operating specification extends from -10°C to +180°C with a maximum pressure of 18 kg/cm² and a minimum liquid specific gravity of 0.75. </p><p style="text-align:left;">That immediately places it in a different application range from the LZ.</p><h3 style="text-align:left;">Technical points to note</h3><div><div><table style="text-align:left;"><thead><tr><th>Parameter</th><th>Baumer LA Standard Version</th></tr></thead><tbody><tr><td>Mounting</td><td>Side mounted</td></tr><tr><td>Housing</td><td>Die cast aluminium</td></tr><tr><td>Ingress protection</td><td>IP65</td></tr><tr><td>Standard process connection</td><td>92 mm PCD square flange</td></tr><tr><td>Wetted parts</td><td>AISI 316 SS</td></tr><tr><td>Float diameter</td><td>45 mm, 48 mm at welded seam</td></tr><tr><td>Standard insertion depth</td><td>215 mm</td></tr><tr><td>Minimum specific gravity</td><td>0.75</td></tr><tr><td>Operating temperature</td><td>-10°C to +180°C</td></tr><tr><td>Maximum operating pressure</td><td>18 kg/cm²</td></tr><tr><td>Switch differential</td><td>15 ± 5 mm</td></tr><tr><td>Switch</td><td>Microswitch</td></tr><tr><td>Switch rating</td><td>5 A, 250 VAC</td></tr></tbody></table></div></div>
<p></p><h3 style="text-align:left;">Where the LA is commonly used</h3><p style="text-align:left;">Baumer identifies applications including chemical processing equipment, alarms for hydro-pneumatic tanks, shipbuilding, water treatment plants, food and pharmaceutical applications. </p><p style="text-align:left;">These applications make sense because the LA is designed around a process-mounted construction rather than a freely suspended plastic float.</p><h3 style="text-align:left;">LA variants matter when the standard model is not enough</h3><p style="text-align:left;">The LA family is not limited to one configuration.</p><p style="text-align:left;">Baumer lists:</p><p style="text-align:left;"><strong>Type A:</strong> General-purpose standard version</p><p style="text-align:left;"><strong>Type T:</strong> High-temperature version, up to 350°C, using aluminium cooling fins</p><p style="text-align:left;"><strong>Type Z:</strong> Adjustable differential version</p><p style="text-align:left;">The minimum insertion depth is 215 mm for Types A and T, while Type Z starts from 350 mm. The ordering information also provides alternatives for housing, cable glands, switch output and process connections. Standard switch output is 1 SPDT, with 2 SPDT / 1 DPDT available as another listed configuration. </p><p style="text-align:left;">This is useful in projects where the requirement is more specific than a standard high or low level switch.</p><h3 style="text-align:left;">Selection caution</h3><p style="text-align:left;">The minimum specific gravity of 0.75 must not be ignored.</p><p style="text-align:left;">A float works only when the liquid can provide sufficient buoyancy. Before ordering the LA, Baumer specifically asks for the liquid, specific gravity, operating pressure and operating temperature along with the model information. </p><p style="text-align:left;">That is good purchasing practice even when replacing an existing switch.</p><h1 style="text-align:left;">Baumer LA vs LZ: Which Float Level Switch Should You Choose?</h1><div><div><table style="text-align:left;"><thead><tr><th>Selection Point</th><th>LZ Cable Float</th><th>LA Side Mounted</th></tr></thead><tbody><tr><td>Installation style</td><td>Suspended inside tank</td><td>Installed through vessel side</td></tr><tr><td>Best suited to</td><td>Tanks, reservoirs, sumps, pump control</td><td>Process tanks and vessels</td></tr><tr><td>Standard wetted construction</td><td>Polypropylene float</td><td>AISI 316 SS</td></tr><tr><td>Protection</td><td>IP68</td><td>IP65 standard</td></tr><tr><td>Maximum temperature</td><td>Up to 60°C</td><td>Up to 180°C standard, Type T up to 350°C</td></tr><tr><td>Maximum pressure</td><td>4 bar</td><td>18 kg/cm² standard</td></tr><tr><td>Switching arrangement</td><td>SPDT</td><td>SPDT standard, additional output option listed</td></tr><tr><td>Level differential</td><td>Determined through cable float arrangement</td><td>15 ± 5 mm standard, Type Z adjustable</td></tr><tr><td>Main buying advantage</td><td>Simple tank and pump control installation</td><td>Defined process mounting and broader process capability</td></tr></tbody></table></div></div>
<p></p><p style="text-align:left;">In simple words, <strong>choose the LZ when you need a practical cable float inside a tank. Choose the LA when you need an engineered switching point on the side of a process vessel.</strong></p><h2 style="text-align:left;">Key Selection Factors for a Baumer Float Level Switch</h2><h3 style="text-align:left;"><span style="font-size:24px;">1. Start With the Tank, Not the Model Number</span></h3><p style="text-align:left;">First determine whether the vessel allows a freely hanging float.</p><p style="text-align:left;">A large water storage tank or sump may suit an LZ very well. A compact process vessel with a dedicated side nozzle naturally points toward the LA.</p><h3 style="text-align:left;"><span style="font-size:24px;">2. Check the Liquid</span></h3><p style="text-align:left;">For the LA, specific gravity matters because the standard minimum is 0.75. Also consider whether the wetted material is compatible with the liquid. The standard LA uses AISI 316 SS wetted parts, while the LZ uses a polypropylene float. </p><h3 style="text-align:left;"><span style="font-size:24px;">3. Check Temperature Before Anything Else</span></h3><p style="text-align:left;">This is one of the easiest ways to separate the two products.</p><p style="text-align:left;">An application near ambient water temperature is very different from a hot process vessel.</p><p style="text-align:left;">The LZ standard version is specified up to 60°C. The LA standard version reaches +180°C, while the Type T configuration is listed for temperatures up to 350°C. </p><h3 style="text-align:left;"><span style="font-size:24px;">4. Confirm Operating Pressure</span></h3><p style="text-align:left;">Do not use tank dimensions as a substitute for pressure information.</p><p style="text-align:left;">The LZ standard specification lists a maximum operating pressure of 4 bar. The LA standard version lists 18 kg/cm². </p><h3 style="text-align:left;"><span style="font-size:24px;">5. Decide the Required Switching Differential</span></h3><p style="text-align:left;">A pump control application may intentionally need significant difference between ON and OFF levels to avoid rapid cycling.</p><p style="text-align:left;">A process alarm may require a much more defined switching point.</p><p style="text-align:left;">This is where the physical arrangement of LZ and LA becomes important.</p><h3 style="text-align:left;"><span style="font-size:24px;">6. Confirm the Electrical Circuit</span></h3><p style="text-align:left;">Both products provide switch contacts rather than a continuous analogue level signal.</p><p style="text-align:left;">Before connecting the switch to a PLC, relay or pump control circuit, confirm the required contact logic, voltage and current. The LZ is listed as SPDT rated 16 A at 250 VAC, while the standard LA microswitch is rated 5 A at 250 VAC. </p><h2 style="text-align:left;">Common Mistakes to Avoid</h2><p style="text-align:left;">The most common mistake is ordering by the words &quot;float switch&quot; alone.</p><p style="text-align:left;">Also avoid selecting the LZ without checking whether it has enough movement inside the tank, ignoring the LA's specific gravity requirement, choosing a switch without checking process temperature and pressure, assuming IP68 and IP65 mean the products can be used interchangeably, and replacing an old side-mounted switch without confirming process connection and insertion depth.</p><p style="text-align:left;">For pump applications, also consider the actual start and stop logic before installation. A switch that operates correctly at the wrong elevation is still the wrong installation.</p><h2 style="text-align:left;">Do This, Not That</h2><div><div><table style="text-align:left;"><thead><tr><th>Do This</th><th>Not This</th></tr></thead><tbody><tr><td>Select mounting style from the vessel design</td><td>Buy any float switch based on price</td></tr><tr><td>Confirm liquid specific gravity for the LA</td><td>Assume every liquid will operate the float</td></tr><tr><td>Check actual process temperature and pressure</td><td>Select from tank capacity alone</td></tr><tr><td>Confirm switch logic and electrical rating</td><td>Assume every contact suits every load</td></tr><tr><td>Check cable travel and obstructions for LZ</td><td>Let the float hit the tank wall or piping</td></tr><tr><td>Confirm LA process connection and insertion depth</td><td>Order only from an old model name</td></tr><tr><td>Select differential according to control requirement</td><td>Treat pump control and alarm duty as identical</td></tr></tbody></table></div></div>
<h2 style="text-align:left;">Quick Selection Checklist</h2><p style="text-align:left;">Before sending an inquiry for a Baumer float level switch, confirm the liquid, tank or vessel type, side-mounted or suspended installation, high-level or low-level function, operating temperature, operating pressure, liquid specific gravity where applicable, required switching differential, electrical contact requirement, process connection for LA, cable length for LZ and whether the application is alarm duty or automatic pump control.</p><p style="text-align:left;">Providing these details usually makes model selection much faster.</p><h2 style="text-align:left;">Why Buy Baumer Float Level Switches from Radical TechMart?</h2><p style="text-align:left;">A float level switch is inexpensive compared with the pump, vessel or process it protects, but incorrect selection can still create repeated operating problems.</p><p style="text-align:left;">At Radical TechMart, the focus is to help buyers identify whether the application needs a simple cable float such as the <strong>Baumer LZ</strong> or a process-mounted switch such as the <strong>Baumer LA</strong>, then confirm the important operating conditions before quotation.</p><p style="text-align:left;">Support can include product selection, datasheet clarification, model configuration, pricing and availability for water treatment companies, OEMs, EPC contractors, process industries, maintenance teams and industrial purchase departments.</p><h2 style="text-align:left;">Final Thoughts</h2><p style="text-align:left;">The best Baumer float level switch is not automatically the model with the higher temperature rating or more options.</p><p style="text-align:left;">For a water tank or sump, the simpler LZ cable float may be exactly what the application needs. For a pressurised process vessel, chemical application or defined side-mounted switching point, the LA can be the more appropriate choice.</p><p style="text-align:left;">The selection becomes straightforward once you answer four questions first: <strong>What is the liquid, where will the switch be mounted, what are the temperature and pressure, and exactly what level action should occur?</strong></p><p style="text-align:left;">That is a much better way to select a float level switch than starting with price or model number.</p><h1 style="text-align:left;">FAQs</h1><h3 style="text-align:left;"><span style="font-size:24px;">1. What is a Baumer float level switch used for?</span></h3><p style="text-align:left;">A Baumer float level switch is used for point level detection such as high-level alarm, low-level alarm, filling control, pump start, pump stop and pump protection.</p><h3 style="text-align:left;"><span style="font-size:24px;">2. What is the difference between Baumer LA and LZ level switches?</span></h3><p style="text-align:left;">The LZ is a cable float that hangs inside the tank and tilts as the level changes. The LA is a side-mounted process level switch using a float arm and magnetic snap-action switching mechanism. </p><h3 style="text-align:left;"><span style="font-size:24px;">3. Which Baumer level switch is suitable for a water tank?</span></h3><p style="text-align:left;">For a storage tank or reservoir where a suspended float can move freely, the LZ is specifically identified by Baumer for storage tanks, sewage and water treatment and automatic pump control. </p><h3 style="text-align:left;"><span style="font-size:24px;">4. Which Baumer float switch is better for high-temperature applications?</span></h3><p style="text-align:left;">The LA offers greater temperature capability. Its standard version is specified up to +180°C, while the Type T high-temperature configuration is listed up to 350°C. </p><h3 style="text-align:left;"><span style="font-size:24px;">5. Can a Baumer float switch be connected to a PLC?</span></h3><p style="text-align:left;">The products provide switch contacts that can typically be incorporated into industrial control circuits. The final PLC input wiring or interposing relay arrangement should be designed according to the PLC input specification and the switch contact rating.</p><h3 style="text-align:left;"><span style="font-size:24px;">6. What cable lengths are available for the Baumer LZ?</span></h3><p style="text-align:left;">The datasheet lists 3 metres as standard, with 5, 10 and 20 metre versions. For lengths above 20 metres, Baumer advises consulting the factory. </p><h3 style="text-align:left;"><span style="font-size:24px;">7. What specific gravity is required for the Baumer LA?</span></h3><p style="text-align:left;">The standard LA datasheet specifies a minimum specific gravity of 0.75. </p><h3 style="text-align:left;"><span style="font-size:24px;">8. What information should I provide when requesting a Baumer LA level switch?</span></h3><p style="text-align:left;">Baumer's ordering information asks buyers to specify the model number, liquid, specific gravity, operating pressure and operating temperature. Process connection, insertion depth, housing and switch output should also be selected according to the required configuration.&nbsp;</p></div></div>
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