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1© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Built Into Tomorrow Benefits
- High reliability for on/off operations
- Hi gh-speed response
- Long operational life
- Ex cellent environmental durability
- Ex tremely simple circuit design
- Co mpact, light and easy to handle
- Du st, explosion and corrosion-proof
- Wi de range of operating temperatures available from −10°C to +130°C
- Ex cellent temperature accuracy of ±2.5°C
- UL a nd CSA approved for TRS5***BLRU 100V
- UL a pproved for TRS5***BLRVU 200V
- Ro HS/REACH compliant Thermal Sensors TRS Thermal Reed Switch Overview The TRS Thermal Reed Switch is a highly reliable, precise temperature-sensitive switch ideal for energy conservation. Its unique proprietary design features a magnet and a temperature-sensing soft ferromagnetic substance called Thermorite ®. The material’s magnetic flux density decreases as the temperature increases turning it into a paramagnetic substance at the Curie temperature. These products have also been attested by the International Relay Association.
Applications
Typical applications include temperature detection and overheat monitoring of electric appliances, heat-retention heater control for rice cookers, defrost for air conditioners and vending machines, roll heater temperature control for copying machines, radiator water temperature detection for automotive electric fan control. Axial Type Wire Harness Type Case Type Molded Type
2© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch
Ordering Information
Power (W) Operating Temperature (°C) Contact Type Shape Classification Lead Type Rated Voltage (VDC) Approvals Blank M = Mold TRS 1 = 10.0 W 3 = 35.0 W 5 = 60.5 W M10 = −10°C 0 = 0°C 5 = 5°C 10 = 10°C 15 = 15°C 20 = 20°C 25 = 25°C 30 = 30°C 35 = 35°C 40 = 40°C 45 = 45°C 50 = 50°C 55 = 55°C 60 = 60°C 65 = 65°C 70 = 70°C 75 = 75°C 80 = 80°C 85 = 85°C 90 = 90°C 95 = 95°C 100 = 100°C 105 = 105°C 110 = 110°C 115 = 115°C 120 = 120°C 125 = 125°C 130 = 130°C B = Break M = Make Blank = Molded axial CR = C shape fixing bar LR = L shape fixing bar SR = S shape Blank 00 = Wire harness 01 = Lead terminal 01E =Lead terminal (S shape only) Blank = 100 V V = 200 V Blank = No approvals U = UL and CSA approved for
100 V and UL
Structures and Principles of Operation Thermal Reed Switches (TRS) are temperature-sensing switches composed of a magnet and a temperature-sensing soft ferromagnetic substance called Thermorite. This material’s saturation magnetic flux density decreases as the temperature increases, and it turns into a paramagnetic substance at its Curie temperature. Thermorite properties Th ermorite changes its magnetic property rapidly at its Curie temperature, providing quick response times.
- Th e Curie temperature of Thermorite does not vary with time, as it is based on a compounding ratio.
- Th ermorite is stable against moisture and hazardous gas.
- All specifications in this catalog and production status of products are subject to change without notice. Prior to the purchase, please contact NEC TOKIN for updated product data.
- Please request for a specification sheet for detailed product data prior to the purchase.
- Before using the product in this catalog, please read "Precautions" and other safety precautions listed in the printed version catalog. 2015.3.31 0000SENVOL14E1503H1 NEC TOKIN Sensors Vol.14 5 Structures and Principles of Operation Thermal Reed Switches (TRS TM ) are temperature-sensing switches composed of a magnet and a temperature- sensing soft ferromagnetic substance called Thermorite TM . This material's saturation magnetic fl ux density decreases as the temperature increases, and it turns into a paramagnetic substance at the Curie temperature. Temperature sensing ferrite (Thermorite ◆Our self-developed Themorite is temperature sensing ferrite utilizing Curie-temperature, where ferrites lose its magnetic property. Thermorite changes its magnetic property rapidly at Curie-temperature. ◆Features of Thermorite as temperature sensing material. (1) Curie-temperature do not vary as time advances, because it depends on compounding ratio. (2) Arbitrary shape available as ceramics. (3) Stable against moist or hazardous gas. Structure of reed switch ◆ Reed switch is contact switch comprised of a pair of Fe-Ni alloy reeds encased in glass tube with inactive gas. The reeds are switched on or off by magnetic field of permanent magnet or magnet coil. ◆ Long lifetime, High environmental resistance because of protected contact by glass encasing. ◆ Reeds in glass tube become magnetized with magnetic field, and then two reeds contact and connect each other (switch on). And then magnetic field disappears, the reeds separate and disconnect (switch off). 6000 (1kHz-0.01Oe) 5000 4000 3000 2000 1000 20 40 60 80 100 Temperature (℃) Permeability - temperature Thermal property of Thermorite Permeability 120 140 160 0 500 1000 1500 2000 2500 3000 3500 20 40 60 80 100 Temperature (℃) Saturation magnetic flux density ‒ temperature Saturation magnetic flux density TC=Curie temperature 120 140 160 TC=30 TC=60 TC=90 TC=120 TC=150 TC=30 TC=60 TC=90 TC=120 TC=150 N SS NN S NN SS Encasing Glass tube ContactInactive gas Fe-Ni alloy reed
3© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Structures and Principles of Operation cont.
- All specifications in this catalog and production status of products are subject to change without notice. Prior to the purchase, please contact NEC TOKIN for updated product data.
- Please request for a specification sheet for detailed product data prior to the purchase.
- Before using the product in this catalog, please read "Precautions" and other safety precautions listed in the printed version catalog. 2015.3.31 0000SENVOL14E1503H1 NEC TOKIN Sensors Vol.14 5 Structures and Principles of Operation Thermal Reed Switches (TRS TM ) are temperature-sensing switches composed of a magnet and a temperature- sensing soft ferromagnetic substance called Thermorite TM . This material's saturation magnetic fl ux density decreases as the temperature increases, and it turns into a paramagnetic substance at the Curie temperature. Temperature sensing ferrite (Thermorite ◆Our self-developed Themorite is temperature sensing ferrite utilizing Curie-temperature, where ferrites lose its magnetic property. Thermorite changes its magnetic property rapidly at Curie-temperature. ◆Features of Thermorite as temperature sensing material. (1) Curie-temperature do not vary as time advances, because it depends on compounding ratio. (2) Arbitrary shape available as ceramics. (3) Stable against moist or hazardous gas. Structure of reed switch ◆ Reed switch is contact switch comprised of a pair of Fe-Ni alloy reeds encased in glass tube with inactive gas. The reeds are switched on or off by magnetic field of permanent magnet or magnet coil. ◆ Long lifetime, High environmental resistance because of protected contact by glass encasing. ◆ Reeds in glass tube become magnetized with magnetic field, and then two reeds contact and connect each other (switch on). And then magnetic field disappears, the reeds separate and disconnect (switch off). 6000 (1kHz-0.01Oe) 5000 4000 3000 2000 1000 20 40 60 80 100 Temperature (℃) Permeability - temperature Thermal property of Thermorite Permeability 120 140 160 0 500 1000 1500 2000 2500 3000 3500 20 40 60 80 100 Temperature (℃) Saturation magnetic flux density ‒ temperature Saturation magnetic flux density TC=Curie temperature 120 140 160 TC=30 TC=60 TC=90 TC=120 TC=150 TC=30 TC=60 TC=90 TC=120 TC=150 N SS NN S NN SS Encasing Glass tube ContactInactive gas Fe-Ni alloy reed Reed switch structure
- Th e reed switch is a contact switch comprised of a pair of Fe-Ni alloy reeds encased in a glass tube with inactive gas. The reeds are switched on or off by the magnetic field of a permanent magnet or magnet coil. Th e reeds in the glass tube become magnetized from the magnetic field, allowing the two reeds to make contact and connect (switch on). When the magnetic field disappears, the reeds separate and disconnect (switch off). Th e glass encasement of the reeds ensures high environmental resistance and a long operational life. TRS principle: Break (B) type
- All specifications in this catalog and production status of products are subject to change without notice. Prior to the purchase, please contact NEC TOKIN for updated product data.
- Please request for a specification sheet for detailed product data prior to the purchase.
- Before using the product in this catalog, please read "Precautions" and other safety precautions listed in the printed version catalog. 2015.3.31 0000SENVOL14E1503H1 6 NEC TOKIN Sensors Vol.14 N S N S N S N S N S N S S N S N Thermal magnet = paramagnet ( ■:Permanent magnet ■:Thermorite® ■:Reed switch contact area ) Reset temperature Action temperature Magnetic Flux Forming => Reed switch ON <Magnetic Field of Contact Part> N S S N N S N S N S N S Thermal magnet = NO magnetic Low temperature High temperature Switch ON Switch OFF Magnetic Flux ≒0 => Reed switch OFF <Magnetic Field of Contact Part> S NS N S N N S N S SP N S N S N S Thermal magnet = paramagnet ( ■:Permanent magnet ■:Thermorite® ■:Gapspacer(SP) ■:Reed switch contact area ) Reset temperature Action temperature N S Thermal magnet = NO magnetic Low temperature High temperature Switch OFF Switch ON Magnetic Flux ≒0 => Reed switch OFF <Magnetic Field of Contact Part> N S N S SP N SN S N S N S N S N S <Magnetic Field of Contact Part> TRS principle : Break (B) type TRS principle : Make (M) typeTRS principle: Make (M) type
- All specifications in this catalog and production status of products are subject to change without notice. Prior to the purchase, please contact NEC TOKIN for updated product data.
- Please request for a specification sheet for detailed product data prior to the purchase.
- Before using the product in this catalog, please read "Precautions" and other safety precautions listed in the printed version catalog. 2015.3.31 0000SENVOL14E1503H1 6 NEC TOKIN Sensors Vol.14 N S N S N S N S N S N S S N S N Thermal magnet = paramagnet ( ■:Permanent magnet ■:Thermorite® ■:Reed switch contact area ) Reset temperature Action temperature Magnetic Flux Forming => Reed switch ON <Magnetic Field of Contact Part> N S S N N S N S N S N S Thermal magnet = NO magnetic Low temperature High temperature Switch ON Switch OFF Magnetic Flux ≒0 => Reed switch OFF <Magnetic Field of Contact Part> S NS N S N N S N S SP N S N S N S Thermal magnet = paramagnet ( ■:Permanent magnet ■:Thermorite® ■:Gapspacer(SP) ■:Reed switch contact area ) Reset temperature Action temperature N S Thermal magnet = NO magnetic Low temperature High temperature Switch OFF Switch ON Magnetic Flux ≒0 => Reed switch OFF <Magnetic Field of Contact Part> N S N S SP N SN S N S N S N S N S <Magnetic Field of Contact Part> TRS principle : Break (B) type TRS principle : Make (M) type
4© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch External Magnetic Field TRS installation in external magnetic field All specifications in this catalog and production status of pr o ducts are subject to change without notice. Prior to the purch a se, please contact NEC TOKIN for updated product data . Please request for a specification sheet for detailed product d ata p rior to the purchase . Before using the product in this catalog, please read "Precau t ions" and other safety precautions listed in the printed versi o n catalog . 2015.3.31 0000 SE NVOL14E1503H 1 NEC TOKIN Sensors Vol.14 7 Before Using Thermal Reed Switch (TRS TM
- Please ask for a copy of specifi cation and check the contents thoroughly before the actual use.
- Please contact us before deciding your specifi cations.
- Do not use in close proximity to strongly magnetized parts.
- Do not use if dropped or strongly shocked.
- Do NOT use with greater load than specifi ed. t n e r r u c h s u r r o ) d a o l e v i t c u d n i ( e g a t l o v e g r u s g n i c u d o r p o t e n o r p s t i u c r i c n i s e h c t i w s e s e h t g n i l l a t s n i n e h W (in lamps and motors), an appropriate switch type should be used, or a contact point protection circuit added. . g n i s s e c o r p l a n o i t i d d a f o e s a c n i ) n o i s r o t y l l a i c e p s e ( s s e r t s d i o v A •
- Each reed switch has a specifi c resonance frequency. Please contact us when an oscillation is added. External magnetic fi eld Ferromagnetic material infl uence N S N S N S N S Magnet inside TRS is parallel to the external field → Greater Influence Wrong direction Magnet inside TRS is perpendicular to the external field → Less influence Magnetic field from equipment TRS/OHD installation direction in external magnetic field Magnetic field emitting equipment such as motors, coils Operation temperature variation (°C) Gap distance_d(mm) Note; Above figures are for reference only and are not guarantee d values. 2 4 6 8 10 12 14 16 BType Soft iron (thickness 3.3mm) MType d TRS Correct direction Ferromagnetic material influence All specifications in this catalog and production status of pr o ducts are subject to change without notice. Prior to the purch a se, please contact NEC TOKIN for updated product data . Please request for a specification sheet for detailed product d ata p rior to the purchase . Before using the product in this catalog, please read "Precau t ions" and other safety precautions listed in the printed versi o n catalog . 2015.3.31 0000 SE NVOL14E1503H 1 NEC TOKIN Sensors Vol.14 7 Before Using Thermal Reed Switch (TRS TM
- Please ask for a copy of specifi cation and check the contents thoroughly before the actual use.
- Please contact us before deciding your specifi cations.
- Do not use in close proximity to strongly magnetized parts.
- Do not use if dropped or strongly shocked.
- Do NOT use with greater load than specifi ed. t n e r r u c h s u r r o ) d a o l e v i t c u d n i ( e g a t l o v e g r u s g n i c u d o r p o t e n o r p s t i u c r i c n i s e h c t i w s e s e h t g n i l l a t s n i n e h W (in lamps and motors), an appropriate switch type should be used, or a contact point protection circuit added. . g n i s s e c o r p l a n o i t i d d a f o e s a c n i ) n o i s r o t y l l a i c e p s e ( s s e r t s d i o v A •
- Each reed switch has a specifi c resonance frequency. Please contact us when an oscillation is added. External magnetic fi eld Ferromagnetic material infl uence N S N S N S N S Magnet inside TRS is parallel to the external field → Greater Influence Wrong direction Magnet inside TRS is perpendicular to the external field → Less influence Magnetic field from equipment TRS/OHD installation direction in external magnetic field Magnetic field emitting equipment such as motors, coils Operation temperature variation (°C) Gap distance_d(mm) Note; Above figures are for reference only and are not guarantee d values. 2 4 6 8 10 12 14 16 BType Soft iron (thickness 3.3mm) MType d TRS Correct direction
5© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Dimensions – Millimeters Part Number Dimensions - Millimeters TRS5-*BLR00 TRS5-*BLR00V TRS1-*MLR00V TRS3-*MLR00 TRS5-*BLRU TRS5-*BLRVU
6© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Dimensions – Millimeters cont. Part Number Dimensions - Millimeters TRS1-*MCR01V TRS3-*MCR01 TRS5-*BCR01 TRS5-*BCR01V TRS5-*BCR00 TRS5-*BCR00V TRS1-*MCR00V TRS3-*MCR00
7© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Dimensions – Millimeters cont. Part Number Dimensions - Millimeters TRS1-*MSR01EV TRS3-*MSR01E TRS5-*BSR01E TRS5-*BSR01EV M-TRS5-***B Environmental Compliance All KEMET Thermal Sensors are RoHS compliant.
8© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Approvals Certification Body File Number Part Type UL E67648 TRS5-*BLRU TRS5-*BLRVU CSA LR50414 TRS5-*BLRU Performance Characteristics Item Performance Characteristics Operations All types 100,000 times Condition TRS5-*BCR00, TRS5-*BLR00, TRS5-*BSR01E, TRS5-*BLRU and TRS5-*BCR01 110 VAC – 200 Ω (purely resistive load) TRS3-*MSR01E and TRS3-*MCR01 110 VAC – 346 Ω (purely resistive load) TRS5-*BCR00V, TRS5-*BLR00V, TRS5-*BSR01EV and TRS5-*BCR01V 240 VAC – 1,143 Ω (purely resistive load) TRS3-*MCR00V, TRS3-*MLR00V, TRS3-*MSR01EV and TRS1-*MCR01V 200 VAC – 4,445 Ω (purely resistive load) TRS5-*BLRVU 240 VAC – 952 Ω (purely resistive load) M-TRS5-*B 100 VAC – 200 Ω (purely resistive load) Judgement All types 1) No stick 2) Contact resistance be within 500 mΩ Dip Washing TRS5-*BCR01, TRS3-*MCR01, TRS5-*BCR01V, TRS1-*MCR01V and M-TRS5-*B Using isopropyl alcohol at normal temperature for 90 seconds Lead Wire Material TRS3-*MLR00, TRS5-*BCR00V, TRS5-*BLR00V, and TRS5-*BLRVU Silicone rubber glass braided wire TRS5-*BSR01E, TRS3-*MSR01E, TRS5-*BSR01EV and TRS3-*MSR01EV Vinyl chloride wire Lead Wire Size TRS3-*MLR00, TRS5-*BCR00V, TRS5-*BLR00V, and TRS5-*BLRVU 0.5 mm2 TRS5-*BSR01E, TRS3-*MSR01E, TRS5-*BSR01EV and TRS3-*MSR01EV 0.3 mm2 Lead Wire Color TRS3-*MLR00, TRS5-*BCR00V, TRS5-*BLR00V, TRS3-*MCR00V and TRS3-*MLR00V Red and white TRS5-*BSR01E, TRS3-*MSR01E, TRS5-*BSR01EV and TRS3-*MSR01EV Black TRS5-*BLRU and TRS5-*BLRVU White
9© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Insulation & Temperature Characteristics Shape Type Insulation Withstand Voltage1 Minimum Insulation Resistance1 Operating Temperature Range Switching Temperature Range Switching Temperature Precision2 Differential Temperature3 CR00 1,500 VAC/1 minute or 1,800 VAC/1 second
500 VDC to 100 MΩ
−20°C to +130°C 0°C to +130°C ±2.5°C 10°C Maximum" CR01 LR00 LRU SR01E −20°C to +100°C −10°C to +100°C M-TRS 1,000 VAC/1 minute or 1,200 VAC/1 second −20°C to +150°C −10°C to +130°C 1 Between wire harness and mounting resin surface. 2 Switching temperature precision does not include measurement error. 3 The differential temperature is also referred to as the hysteresis temperature on thermal sensors. Table 1 – Ratings & Part Number Reference Part Number Switching Temperature (°C) Maximum Differential Temperature (°C) Contact Type Maximum Opening/ Closing Voltage (V) Maximum Opening/ Closing Current (A) Maximum Opening/ Closing Power (W) Minimum Opening/ Closing Current Maximum Contact Resistance (mΩ) Weight (g) Approval TRS1-0MCR00V 0°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-10MCR00V 10°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-20MCR00V 20°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-30MCR00V 30°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-40MCR00V 40°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-50MCR00V 50°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-60MCR00V 60°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-70MCR00V 70°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-80MCR00V 80°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-90MCR00V 90°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-100MCR00V 100°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-110MCR00V 110°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-120MCR00V 120°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.1 - TRS1-0MCR01V 0°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-10MCR01V 10°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-20MCR01V 20°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-30MCR01V 30°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-40MCR01V 40°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-50MCR01V 50°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-60MCR01V 60°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-70MCR01V 70°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 -
10© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Table 1 – Ratings & Part Number Reference cont. Part Number Switching Temperature (°C) Maximum Differential Temperature (°C) Contact Type Maximum Opening/ Closing Voltage (V) Maximum Opening/ Closing Current (A) Maximum Opening/ Closing Power (W) Minimum Opening/ Closing Current Maximum Contact Resistance (mΩ) Weight (g) Approval TRS1-80MCR01V 80°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-90MCR01V 90°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-100MCR01V 100°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-110MCR01V 110°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-120MCR01V 120°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 3.4 - TRS1-0MLR00V 0°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-10MLR00V 10°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-20MLR00V 20°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-30MLR00V 30°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-40MLR00V 40°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-50MLR00V 50°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-60MLR00V 60°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-70MLR00V 70°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-80MLR00V 80°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-90MLR00V 90°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-100MLR00V 100°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-110MLR00V 110°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-120MLR00V 120°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-130MLR00V 130°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 150 8.5 - TRS1-M10MSR01EV -10°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-0MSR01EV 0°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-10MSR01EV 10°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-20MSR01EV 20°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-30MSR01EV 30°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-40MSR01EV 40°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-50MSR01EV 50°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-60MSR01EV 60°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-70MSR01EV 70°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-80MSR01EV 80°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-90MSR01EV 90°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 - TRS1-100MSR01EV 100°C ±2.5°C 10°C Make 220 AC 0.045 AC 10.0 AC 1 mA/5 VDC 300 7.2 -
11© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Table 1 – Ratings & Part Number Reference cont. Part Number Switching Temperature (°C) Maximum Differential Temperature (°C) Contact Type Maximum Opening/ Closing Voltage (V) Maximum Opening/ Closing Current (A) Maximum Opening/ Closing Power (W) Minimum Opening/ Closing Current Maximum Contact Resistance (mΩ) Weight (g) Approval
12© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Table 1 – Ratings & Part Number Reference cont. Part Number Switching Temperature (°C) Maximum Differential Temperature (°C) Contact Type Maximum Opening/ Closing Voltage (V) Maximum Opening/ Closing Current (A) Maximum Opening/ Closing Power (W) Minimum Opening/ Closing Current Maximum Contact Resistance (mΩ) Weight (g) Approval TRS5-0BCR00V 0°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-10BCR00V 10°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-20BCR00V 20°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-30BCR00V 30°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-40BCR00V 40°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-50BCR00V 50°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-60BCR00V 60°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-70BCR00V 70°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-80BCR00V 80°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-90BCR00V 90°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-100BCR00V 100°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-110BCR00V 110°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-120BCR00V 120°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 6.8 - TRS5-0BCR01V 0°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 -
13© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Table 1 – Ratings & Part Number Reference cont. Part Number Switching Temperature (°C) Maximum Differential Temperature (°C) Contact Type Maximum Opening/ Closing Voltage (V) Maximum Opening/ Closing Current (A) Maximum Opening/ Closing Power (W) Minimum Opening/ Closing Current Maximum Contact Resistance (mΩ) Weight (g) Approval TRS5-10BCR01V 10°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-20BCR01V 20°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-30BCR01V 30°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-40BCR01V 40°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-50BCR01V 50°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-60BCR01V 60°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-70BCR01V 70°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-80BCR01V 80°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-90BCR01V 90°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-100BCR01V 100°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-110BCR01V 110°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-120BCR01V 120°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 3.1 - TRS5-0BLR00V 0°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-10BLR00V 10°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-20BLR00V 20°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-30BLR00V 30°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-40BLR00V 40°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-50BLR00V 50°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-60BLR00V 60°C ±2.5°C 10°C Break 264 AC 0. 275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-70BLR00V 70°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-80BLR00V 80°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-90BLR00V 90°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-100BLR00V 100°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-110BLR00V 110°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-120BLR00V 120°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-130BLR00V 130°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 7.3 - TRS5-0BLRU 0°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA
14© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Table 1 – Ratings & Part Number Reference cont. Part Number Switching Temperature (°C) Maximum Differential Temperature (°C) Contact Type Maximum Opening/ Closing Voltage (V) Maximum Opening/ Closing Current (A) Maximum Opening/ Closing Power (W) Minimum Opening/ Closing Current Maximum Contact Resistance (mΩ) Weight (g) Approval TRS5-5BLRU 5°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-10BLRU 10°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-15BLRU 15°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-20BLRU 20°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-25BLRU 25°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-30BLRU 30°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-35BLRU 35°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-40BLRU 40°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-45BLRU 45°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-50BLRU 50°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-55BLRU 55°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-60BLRU 60°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-65BLRU 65°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-70BLRU 70°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-75BLRU 75°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-80BLRU 80°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-85BLRU 85°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-90BLRU 90°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-95BLRU 95°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-100BLRU 100°C ±2.5°C 10°C Break 140 AC 0.500 AC 50.0 AC 1 mA/5 VDC 150 8.5 UL & CSA TRS5-0BLRVU 0°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-5BLRVU 5°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-10BLRVU 10°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-15BLRVU 15°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-20BLRVU 20°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-25BLRVU 25°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-30BLRVU 30°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-35BLRVU 35°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-40BLRVU 40°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-45BLRVU 45°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-50BLRVU 50°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-55BLRVU 55°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-60BLRVU 60°C ±2.5°C 10°C Break 264 AC 0. 275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-65BLRVU 65°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-70BLRVU 70°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-75BLRVU 75°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-80BLRVU 80°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-85BLRVU 85°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-90BLRVU 90°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-95BLRVU 95°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL TRS5-100BLRVU 100°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 150 8.5 UL
15© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Table 1 – Ratings & Part Number Reference cont. Part Number Switching Temperature (°C) Maximum Differential Temperature (°C) Contact Type Maximum Opening/ Closing Voltage (V) Maximum Opening/ Closing Current (A) Maximum Opening/ Closing Power (W) Minimum Opening/ Closing Current Maximum Contact Resistance (mΩ) Weight (g) Approval TRS5-M10BSR01EV -10°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-0BSR01EV 0°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-10BSR01EV 10°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-20BSR01EV 20°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-30BSR01EV 30°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-40BSR01EV 40°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-50BSR01EV 50°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-60BSR01EV 60°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-70BSR01EV 70°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-80BSR01EV 80°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-90BSR01EV 90°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 - TRS5-100BSR01EV 100°C ±2.5°C 10°C Break 264 AC 0.275 AC 60.5 AC 1 mA/5 VDC 300 6.6 -
16© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Table 2 – Ratings & Part Number Reference Part Type Packaging Type Pieces per Tray Pieces per Box LR00 Rubber Band 50 500 CR00 600LRU LRVU SR01E 25 500 CR01 Tray 30 600 M-TRS 50 1,000 Soldering TRS1-*MCR01V, TRS3-*MCR01, TRS5-*BCR01 and TRS5-*BCR01V Flow Soldering Preheating Temperature 100 – 150°C Preheating Time Within 60 seconds Heating Temperature 260°C Heating Time 10 ±1 seconds Iron Soldering Temperature of Tip 350°C or lower Worktime Within 5 seconds M-TRS5-***B Flow Soldering Preheating Temperature 100 – 150°C Preheating Time Within 60 seconds Heating Temperature 260°C Heating Time 10 ±1 seconds Iron Soldering Temperature of Tip 320°C or lower Worktime Within 4 seconds
17© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Marking CR01 LR00 SR01E LOT CODELOT CODE LOT CODE Lot Code 12345 Operating Temperature (1) 1-3 digits M10 = –10°C 65 = 65°C 100 = 100°C Contact Type (2) 1 digit B = Break M = Make Month of the Year (3) 1 digit 1 = January 9 = September X = October Y = November Z = December Last Digit of the Year (4) 1 digit 0 = xxx0 1 = xxx1 9 = xxx9 Voltage (5) 0-1 digit Blank = 100 V V = 200 V
18© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Marking cont. LRU & LRVU LOT CODE Lot Code 1234556 Operating Temperature (1) 1-3 digits 0 = 0°C 65 = 65°C 100 = 100°C Contact Type (2) 1 digit B = Break Contact Power (3) 0-1 digit Blank = 100 V (LRU) G = 200 V (LRVU) Month of the Year (4) 1 digit 1 = January 9 = September X = October Y = November Z = December
2 Last Digits of the Year (5) 2 digits
10 = xx10 11 = xx11 19 = xx19 Factory ID (6) 1 digit 5 = Japan
19© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch Marking cont. M-TRS LOT CODE Lot Code 1–2345 Model (1) 1 digit Last Digit of Part Number Operating Temperature (2) 1-3 digits M10 = –10°C 60 = 60°C 100 = 100°C Contact Type (3) 1 digit B = Break Month of the Year (4) 1 digit 1 = January 9 = September X = October Y = November Z = December Last Digit of the Year (5) 1 digit 0 = xxx0 1 = xxx1 9 = xxx9 Handling Precautions Precautions to be taken when using Thermal Reed Switches (Please read these precautions before using our products) Do N OT use in close proximity to strong magnetic parts.
- Do N OT use product under mechanical weight load.
- Do N OT use if dropped or severely shocked.
- Do N OT use with a greater load than specified.
- Av oid stress (especially torsion) in case of additional processing.
- Th ermal Reed Switches have a specific resonance frequency. Please contact a KEMET representative if an oscillation is added.
20© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard SE 0201_TRS • 11/2/2021 Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com Thermal Sensors – TRS Thermal Reed Switch KEMET Electronics Corporation Sales Offices For a complete list of our global sales offices, please visit www.kemet.com/sales. Disclaimer All product specifications, statements, information and data (collectively, the “Information”) in this datasheet are subject to change. The customer is responsible for checking and verifying the extent to which the Information contained in this publication is applicable to an order at the time the order is placed. All Information given herein is believed to be accurate and reliable, but it is presented without guarantee, warranty, or responsibility of any kind, expressed or implied. Statements of suitability for certain applications are based on KEMET Electronics Corporation’s (“KEMET”) knowledge of typical operating conditions for such applications, but are not intended to constitute – and KEMET specifically disclaims – any warranty concerning suitability for a specific customer application or use. The Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise provided by KEMET with reference to the use of KEMET’s products is given gratis, and KEMET assumes no obligation or liability for the advice given or results obtained. Although KEMET designs and manufactures its products to the most stringent quality and safety standards, given the current state of the art, isolated component failures may still occur. Accordingly, customer applications which require a high degree of reliability or safety should employ suitable designs or other safeguards (such as installation of protective circuitry or redundancies) in order to ensure that the failure of an electrical component does not result in a risk of personal injury or property damage. Although all product–related warnings, cautions and notes must be observed, the customer should not assume that all safety measures are indicted or that other measures may not be required. When providing KEMET products and technologies contained herein to other countries, the customer must abide by the procedures and provisions stipulated in all applicable export laws and regulations, including without limitation the International Traffic in Arms Regulations (ITAR), the US Export Administration Regulations (EAR) and the Japan Foreign Exchange and Foreign Trade Act.