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Measuring principle of HVAC temperature sensors in general:
The measuring principle of temperature sensors is based on an internal sensor that outputs a temperature-dependent resistance signal.  
The type of the internal sensor determines the output signal. The following active ⁄ passive temperature sensors are distinguished: 

a)  Pt 100 measuring resistor  (according to DIN EN 60 751)
b)  Pt 1000 measuring resistor  (according to DIN EN 60751)
c)  Ni 1000 measuring resistor  (according to DIN EN 43 760, TCR = 6180 ppm ⁄ K)
d)  Ni 1000_TK 5000 measuring resistor  (TCR = 5000 ppm ⁄ K)
e)  LM235Z, semiconductor IC  (10 mV ⁄ K, 2.73 V ⁄ °C). Ensure correct po ⁄– when connecting!
f)  NTC  (according to DIN 44070)
g) PTC
h)  KTY silicon temperature sensors

The most important resistance characteristics are shown on the last page of these operating instructions. According to their characteristics, 
 individual temperature sensors exhibit different slopes in the range between 0 °C and +100 °C (TK value). Maximum-possible measuring ranges 
also vary from sensor to sensor (for some examples to this see under technical data).

Design of HVAC temperature sensors in general:
Sensors are distinguished by shape type as follows: surface-contacting sensors, cable temperature sensors, and housing-type and built-in 
 temperature  sensors.
– On surface-contacting sensors, the temperature sensor has at least one contact area that must be brought in contact, e.g. with the surface of 

radiators or pipes. If the contact area is not positioned correctly relative to the surface to be measured, significant temperature measurement 
errors may occur. Good contact area and temperature conduction must be ensured, dirt and unevenness must be avoided, and heat-conductive 
paste is to be used where necessary. 

– On cable temperature sensors, the temperature sensor is installed inside a sensor sleeve, from which a connecting cable is leading out. In 

addition to the standard insulating materials PVC, silicone, and fibreglass with stainless steel texture, other versions are also available that 
may allow a wider range of application.

– On housing-type sensors, the temperature sensor is embedded in a respective housing. Different designs of enclosures are available, e.g. with 

an external sensor sleeve (see outside temperature sensor ATF2). Housing-type sensors are normally distinguished into in-wall (FSTF) and 
on-wall (RTF, ATF) types and indoor and wet room versions. Connection terminals are placed on a plate inside the connecting housing.

– Duct and built-in temperature sensors are distinguished into temperature sensors with interchangeable measuring insert and without inter-

changeable measuring insert. Connection parts are placed inside a connecting head. Standard process connection for immersion sensors is a 
pipe thread (sizes in inches) and a mounting flange for duct sensors. However, it may be designed differently. When a built-in sensor has a neck 
tube, the  application range is usually somewhat wider since ascending heat cannot flow directly and immediately into the connecting head. This 
is to be noted especially when transmitters are installed. The temperature sensor in built-in sensors is always placed inside the front part of 
the protective tube. On temperature sensors with short reaction times, protective tubes are stepped. 

Note!
Select immersion depth for built-in sensors so that the error caused by heat dissipation stays within the admissible error margins. A standard 
value is: 10 x diameter of protection tube + sensor length. In connection with housing-type sensors, particularly with outdoor sensors, please 
consider the influence of thermal radiation. For that purpose, a sunshade and radiation protector SS-02 can be attached. 

G  

General notes

Component ................................................................  max. thermal load

Connecting cable
PVC, normal ....................................................................................+70 °C
PVC, heat-stabilized.................................................................... +105 °C
Silicone  ......................................................................................... +180 °C
PTFE  ............................................................................................. +200 °C
Fibreglass insulation with stainless steel texture  ............... +400 °C

Housing ⁄ Sensor
see table "Technical Data"

Maximum thermal load on components:

On principle, all temperature sensors shall be  protected 
against unacceptable overheating!

Standard values for individual components and  materials 
selected are shown for operation under  
neutral  atmos phere and otherwise normal conditions  
(see table to the right).

For combinations of different insulating materials,  
the  lowest temperature limit shall always apply.

Содержание THERMASGARD RTF LM235Z Series

Страница 1: ...er und messumformer Aufputz G Operating Instructions Mounting Installation Room temperature sensors and measuring transducers on wall F Notice d instruction Sonde et convertisseur de temp rature d amb...

Страница 2: ...g Geh use Baldur 1 Dimensional drawing Housing Baldur 1 Plan cot bo tier Baldur 1 Baldur 1 Ma zeichnung Geh use Baldur 2 Dimensional drawing Housing Baldur 2 Plan cot bo tier Baldur 2 Baldur 2 T K 6 0...

Страница 3: ...r waagerecht installierten UP Dosen f r Kabeleinf hrung hinten mit Sollbruchstelle f r Kabeleinf hrung oben unten bei AP elektr Anschluss 0 14 1 5 mm ber Schraubklemmen nur an Sicherheitskleinspannung...

Страница 4: ...15 14 13 12 11 10 9 8 7 6 T1 Sollwert Offset THERMASGARD RTFxxT Ausf hrung mit F hler und Taster max 24 V DC max 10 mA Baldur 1 THERMASGARD RTFxxLT Ausf hrung mit F hler Leuchtdiode gr n und Taster m...

Страница 5: ...W Leuchtdiode gr n und Taster max 24 V DC max 10 mA Baldur 1 THERMASGARD RTFxxPW Ausf hrung mit F hler Potentiometer 1 kOhm max 0 1 W und Wippschalter max 24 V AC DC max 130 mA Baldur 1 THERMASGARD R...

Страница 6: ...isplay 1 2 3 18 17 16 P1 P2 4 5 S1 15 14 13 12 11 10 9 8 7 6 Sollwert Offset THERMASGARD RTFxxP RTFxxPU RTM U PU Ausf hrung mit F hler und Potentiometer 1 kOhm max 0 1 W 1 2 3 4 5 6 min max Korrektur...

Страница 7: ...eratursensor in einem entsprechenden Geh use eingebettet wobei das Geh use verschieden aufgebaut sein kann z B mit einer externen F hlerh lse siehe Au entemperaturf hler ATF2 Bei den Geh usef hlern wi...

Страница 8: ...d zu ber cksichtigen VDE VDI Technische Temperaturmessungen Richtlinie Mess an ord nungen f r Temperaturmessungen die EMV Richtlinien diese sind einzuhalten eine Parallelverlegung mit stromf hrenden L...

Страница 9: ...ogdarstellung sind nicht zus tzlich aufgef hrt und im Sinne des technischen Fortschritts und der stetigen Verbesserung unserer Produkte m glich Bei Ver nderungen der Ger te durch den Anwender entfalle...

Страница 10: ...installed in wall flush boxes for cable entry from the back with predetermined breaking point for on wall cable entry from top bottom in case of plain on wall installation Electrical connection 0 14 1...

Страница 11: ...0 mA Baldur 1 THERMASGARD RTFxxLT Version with sensor LED green and pushbutton max 24 V DC max 10 mA Baldur 1 THERMASGARD RTFxxPT Version with sensor potentiometer 1 kOhm max 0 1 W and pushbutton max...

Страница 12: ...RD RTFxxPW Version with sensor potentiometer 1 kOhm max 0 1 W and rocker switch max 24 V AC DC max 130 mA Baldur 1 THERMASGARD RTFxxPD Version with sensor potentiometer 1 kOhm max 0 1 W and turn switc...

Страница 13: ...P RTFxxPU RTM U PU Version with sensor and potentiometer 1 kOhm max 0 1 W Baldur 1 Baldur 1 Baldur 1 3 4 5 6 Rx 1 2 Output temperature 0 10V UB supply voltage 24V AC DC UB GND Output potentiometer 0 1...

Страница 14: ...plication On housing type sensors the temperature sensor is embedded in a respective housing Different designs of enclosures are available e g with an external sensor sleeve see outside temperature se...

Страница 15: ...regarded VDE VDI directive technical temperature measurements measurement set up for temperature measurements The EMC directives must be adhered to It is imperative to avoid parallel laying of curren...

Страница 16: ...re exclusively valid Deviations from the catalogue representation are not explicitly mentioned and are possible in terms of technical progress and continuous improvement of our products In case of any...

Страница 17: ...r bo tes d encastrement mont es verticalement ou horizontalement pour passage de c ble par l arri re avec point de rupture pour passage de c ble par le haut bas pour montage en saillie Raccordement le...

Страница 18: ...Baldur 1 THERMASGARD RTFxxLT Mod le avec sonde diode lectroluminescente verte et bouton poussoir max 24 V cc max 10 mA Baldur 1 THERMASGARD RTFxxPT Mod le avec sonde potentiom tre 1 kOhm max 0 1 W et...

Страница 19: ...ur 1 THERMASGARD RTFxxPW Mod le avec sonde potentiom tre 1 kOhm max 0 1 W et interrupteur bascule max 24 V ca cc max 130 mA Baldur 1 THERMASGARD RTFxxPD Mod le avec sonde potentiom tre 1 kOhm max 0 1...

Страница 20: ...le avec sonde et potentiom tre 1 kOhm max 0 1 W Baldur 1 Baldur 1 Sch ma de raccordement RTM U PU Display 3 4 5 6 Rx 1 2 Output temperature 0 10V UB supply voltage 24V AC DC UB GND Output potentiomete...

Страница 21: ...un bo tier correspondant Mais il est possible que ce bo tier soit construit diff remment par ex avec une sonde chemis e externe voir sonde de temp rature ext rieure ATF2 Dans le cas des sondes sous f...

Страница 22: ...igueur pour le lieu de mesure par ex r gles de soudage etc Sont notamment consid rer Mesure technique de temp ratures selon VDE VDI directives ordonnances sur les instruments de mesure pour la mesure...

Страница 23: ...il sont applicables des diff rences par rapport la pr sentation dans le catalogue ne sont pas mentionn es explicitement et sont possibles suite au progr s technique et l am lioration continue de nos p...

Страница 24: ...70 C RTF PT100 Pt100 DIN EN 60 751 RTF PT1000 Pt1000 DIN EN 60 751 RTF NI1000 Ni1000 DIN EN 43 760 TCR 6180 1 K RTF NI1000TK5000 Ni1000 TK5000 TCR 5000 1 K LG Ni1000 RTF LM235Z LM235Z TCR 10 K 2 73 O...

Страница 25: ...FxxT 24 10 Baldur 1 THERMASGARD RTFxxLT 24 10 Baldur 1 THERMASGARD RTFxxPT 1 0 1 24 10 Baldur 1 1 2 3 18 17 16 4 5 S1 15 14 13 12 11 10 9 8 7 6 T1 1 2 3 18 17 16 4 5 S1 15 14 13 12 11 10 9 8 7 6 T1 LD...

Страница 26: ...ARD RTFxxPW 1 0 1 24 130 Baldur 1 THERMASGARD RTFxxPD 1 0 1 24 130 Baldur 2 1 2 3 18 17 16 P1 P2 4 5 S1 15 14 13 12 11 10 9 8 7 6 T1 LD1 setpoint offset 1 2 3 4 21 20 19 5 6 S1 1 2 3 0 15 16 17 18 14...

Страница 27: ...xPU RTM U PU 1 0 1 Baldur 1 Baldur 1 RTM U PU 3 4 5 6 Rx 1 2 Output temperature 0 10V UB supply voltage 24V AC DC UB GND Output potentiometer 0 10V 1 2 3 4 5 6 min max Korrektur T Potentio meter int S...

Страница 28: ...N EN 60 751 Pt 1000 DIN EN 60751 Ni 1000 DIN EN 43 760 TCR 6180 ppm K Ni 1000_TK5000 TCR 5000 ppm K LM235Z IC 10 K 2 73 C NTC DIN 44070 PTC KTY 0 100 C TK ATF2 FSTF RTF ATF G 10 x SS 02 r 70 C 105 C 1...

Страница 29: ...Imax Pt1000 0 6 A Pt100 1 0 A Ni1000 DIN Ni1000 TK5000 0 3 A NTC xx 2 LM235Z 400 A 5 A KTY 81 210 2 A 0 C Pt100 Pt1000 DIN EN 60751 0 3 K 1 3 DIN EN 60751 0 1 K NI1000 DIN EN 43760 0 4 K NI1000 1 2 D...

Страница 30: ...30 r ZVEI VDE EMV r...

Страница 31: ...date of publication They are only meant to inform about our products and their application potential but do not imply any warranty as to certain product characteristics Since the devices are used und...

Страница 32: ...557 0 3431 3607 3830 110 120 146 1 1461 1760 1625 4 3552 3817 3930 120 130 149 8 1498 1833 3676 4008 130 140 153 6 1536 1909 3802 4166 140 150 157 3 1573 1987 3929 4280 150 NTC 1 8 kOhm NTC 2 2 kOhm N...

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