B59773B0120A070
PTC Thermistor, 500 ohm, 550 V, -40 °C to 125 °C, Through Hole, Radial Leaded, B59773 Series
- Manufacturer: TDK
- Product type: PTC Thermistors
- Zero Power Resistance at 25°C:500ohm; Thermistor Mounting:Through Hole; Product Range:B59773 Series; Operating Voltage Max:550V; Applications:Over Current Protection, Short Circuit
- SVHC: No SVHC (25-Jun-2025)
- Applications: Over Current Protection, Short Circuit Protection
- Trip Current: 48mA
- Product Range: B59773 Series
- Qualification: -
- Thermistor Type: PTC
- Resistance (25°C): 500ohm
- Holding Current Max: 24mA
- Thermistor Mounting: Through Hole
- Operating Voltage Max: 550V
- PTC Thermistor Diameter: 8.5mm
- Operating Temperature Max: 125°C
- Operating Temperature Min: -40°C
- Switching Temperature Max: -
- Switching Temperature Min: -
- Resistance Tolerance (25°C): ± 25%
| Delivery and price | |
|---|---|
| Units per pack | 1000 |
| Price | 0.724 € |
| Current stock | 10+ |
| Lead time | 30 days |
## **PTC thermistors for overcurrent protection** Leaded disks, uncoated, 380 to 1000 V **Series/Type: B597**** Date: June 2011 © EPCOS AG 2011. Reproduction, publication and dissemination of this publication, enclosures hereto and the information contained therein without EPCOS' prior express consent is prohibited. **Leaded disks, uncoated, 380 V to 1000 V** **B750 ... B774** ## **Overcurrent protection** ## **Applications** Overcurrent protection Short circuit protection **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** ## **Dimensional drawing** ## **Features** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** Lead-free terminals - Manufacturer's logo, date code and type designation stamped on in black - UL approval to UL 1434 with Vmax = 420 V and VR = 380 V (file number E69802), except B758 RoHS-compatible ## **Delivery mode** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** - Cardboard strips (standard) Cardboard tape reeled or in Ammo pack on request ## **Dimensions (mm)** |Type|wmax<br>h|max|thmax| |---|---|---|---| |B750<br>B751<br>B752<br>B753<br>B754<br>B755<br>B758<br>B770<br>B771<br>B772<br>B773<br>B774|12.5<br>1<br>12.5<br>1<br>12.5<br>1<br>12.5<br>1<br>12.5<br>1<br>12.5<br>1<br>12.5<br>1<br>8.5<br>1<br>8.5<br>1<br>8.5<br>1<br>8.5<br>1<br>8.5<br>1|6.5<br>6.5<br>6.5<br>6.5<br>6.5<br>6.5<br>6.5<br>2.0<br>2.0<br>2.0<br>2.0<br>2.0|5.0<br>7.0<br>7.0<br>7.0<br>7.0<br>7.0<br>7.0<br>7.0<br>7.0<br>7.0<br>7.0<br>7.0| ## **General technical data** |Switching cycles<br>N<br>Operating temperature range<br>(V = 0)<br>T<br>Operatingtemperature range<br>(V = Vmax)<br>T|op<br>op|100<br>�40/+12<br>0/+60|5<br>°C<br>°C| |---|---|---|---| Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 2 of 13 |**Overcurrent protection**|| |---|---| |**Leaded disks, uncoated, 380 V to 1000 V**|**B750 ... B774**| ## **Electrical specifications and ordering codes** |Type|IR<br>mA|IS<br>mA|ISmax<br>(V = Vmax)<br>A|tS<br>(Vmax,<br>ISmax)<br>s|Ir<br>(typ.)<br>(V = Vmax)<br>mA|RR<br>Ω|Rmin<br>Ω|Approvals|Ordering code| |---|---|---|---|---|---|---|---|---|---| |Vmax=|440 V,|VR= 380 V, Tref=||120°C,∆RR=±25 %|||||| |B750<br>B751<br>B752<br>B753<br>B754<br>B770<br>B771<br>B772|123<br>87<br>69<br>56<br>50<br>64<br>49<br>43|245<br>173<br>137<br>112<br>100<br>127<br>97<br>86|4.0<br>4.0<br>4.0<br>4.0<br>4.0<br>2.8<br>2.8<br>2.8|< 6<br>< 4<br>< 4<br>< 3<br>< 3<br>< 4<br>< 3<br>< 3|4.0<br>3.5<br>3.5<br>3.0<br>3.0<br>3.5<br>2.5<br>2.5|25<br>50<br>80<br>120<br>150<br>70<br>120<br>150|13<br>26<br>42<br>63<br>68<br>45<br>76<br>96|X<br>X<br>X<br>X<br>X<br>X<br>X<br>X|B59750B0120A070<br>B59751B0120A070<br>B59752B0120A070<br>B59753B0120A070<br>B59754B0120A070<br>B59770B0120A070<br>B59771B0120A070<br>B59772B0120A070| |Vmax=|550 V,|VR= 500 V, Tref=||115°C,∆RR=±25 %|||||| |B755<br>B774|28<br>16|55<br>32|1.4<br>1.0|< 3<br>< 2|2.0<br>1.5|500<br>1100|230<br>700|X<br>X|B59755B0115A070<br>B59774B0115A070| |Vmax=|550 V,|VR= 500 V, Tref=||120°C,∆RR=±25 %|||||| |B773|24|48|1.0|< 3|2.0|500|320|X|B59773B0120A070| |Vmax=|1000 V, VR= 1000 V, Tref= 110°C,∆RR=±33 %||||||||| |B758|8|17|0.5|< 3|3.0|7500|3380|�|B59758B0110A070| Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 3 of 13 |**Overcurrent protection**|| |---|---| |**Leaded disks, uncoated, 380 V to 1000 V**|**B750 ... B774**| ## **Reliability data** |Test|Standard|Test conditions|�∆R25/R25�| |---|---|---|---| |Electrical endurance,<br>cycling|IEC 60738-1|Room temperature, ISmax; Vmax<br>Number of cycles: 100|< 25%| |Electrical endurance,<br>constant|IEC 60738-1|Storage at Vmax/Top,max(Vmax)<br>Test duration: 1000 h|< 25%| |Damp heat|IEC 60738-1|Temperature of air: 40°C<br>Relative humidity of air: 93%<br>Duration: 56 days<br>Test accordingto IEC 60068-2-78|< 10%| |Rapid change<br>of temperature|IEC 60738-1|T1= Top,min(0 V), T2= Top,max(0 V)<br>Number of cycles: 5<br>Test duration: 30 min<br>Test accordingto IEC 60068-2-14, Test Na|< 10%| |Vibration|IEC 60738-1|Frequency range: 10 to 55 Hz<br>Displacement amplitude: 0.75 mm<br>Test duration: 3×2 h<br>Test accordingto IEC 60068-2-6, Test Fc|< 5%| |Shock|IEC 60738-1|Acceleration: 390 m/s2<br>Pulse duration: 6 ms; 6×4000pulses|< 5%| |Climatic sequence|IEC 60738-1|Dry heat: T = Top,max(0 V)<br>Test duration: 16 h<br>Damp heat first cycle<br>Cold: T = Top,min(0 V)<br>Test duration: 2 h<br>Damp heat 5 cycles<br>Tests performed according to<br>IEC 60068-2-30|< 10%| Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 4 of 13 **Overcurrent protection Leaded disks, uncoated, 380 V to 1000 V B750 ... B774** **Characteristics (typical)** PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) **==> picture [155 x 186] intentionally omitted <==** PTC current IPTC versus PTC voltage VPTC (measured at 25 ° C in still air) **==> picture [68 x 47] intentionally omitted <==** Switching time tS versus switching current IS (measured at 25 ° C in still air) Rated current IR versus ambient temperature TA (measured in still air) **==> picture [141 x 154] intentionally omitted <==** Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 5 of 13 **Overcurrent protection Leaded disks, uncoated, 380 V to 1000 V B750 ... B774** ## **Characteristics (typical)** PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) PTC current IPTC versus PTC voltage VPTC (measured at 25 ° C in still air) **==> picture [155 x 188] intentionally omitted <==** Switching time tS versus switching current IS (measured at 25 ° C in still air) Rated current IR versus ambient temperature TA (measured in still air) **==> picture [141 x 154] intentionally omitted <==** Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 6 of 13 **Overcurrent protection Leaded disks, uncoated, 380 V to 1000 V B750 ... B774** ## **Characteristics (typical)** PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) PTC current IPTC versus PTC voltage VPTC (measured at 25 ° C in still air) **==> picture [154 x 186] intentionally omitted <==** Switching time tS versus switching current IS (measured at 25 ° C in still air) Rated current IR versus ambient temperature TA (measured in still air) **==> picture [141 x 154] intentionally omitted <==** Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 7 of 13 **Overcurrent protection Leaded disks, uncoated, 380 V to 1000 V B750 ... B774** **Characteristics (typical)** PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) PTC current IPTC versus PTC voltage VPTC (measured at 25 ° C in still air) **==> picture [155 x 188] intentionally omitted <==** Switching time tS versus switching current IS (measured at 25 ° C in still air) Rated current IR versus ambient temperature TA (measured in still air) **==> picture [141 x 154] intentionally omitted <==** Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 8 of 13 |**Overcurrent protection**|| |---|---| |**Leaded disks, uncoated, 380 V to 1000 V**|**B750 ... B774**| ## **Cautions and warnings** ## **General** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** - EPCOS thermistors are designed for specific applications and should not be used for purposes not identified in our specifications, application notes and data books unless otherwise agreed with EPCOS during the design-in-phase. - Ensure suitability of thermistor through reliability testing during the design-in phase. The thermistors should be evaluated taking into consideration worst-case conditions. ## **Storage** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** - Store thermistors only in original packaging. Do not open the package before storage. Storage conditions in original packaging: storage temperature �25 ° C ... +45 ° C, relative humidity ≤ 75% annual mean, maximum 95%, dew precipitation is inadmissible. - Avoid contamination of thermistors surface during storage, handling and processing. Avoid storage of thermistor in harmful environment with effect on function on long-term operation (examples given under operation precautions). - Use thermistor within the following period after delivery: - Through-hole devices (housed and leaded PTCs): 24 months - Motor protection sensors, glass-encapsulated sensors and probe assemblies: 24 months - Telecom pair and quattro protectors (TPP, TQP): 24 months - Leadless PTC thermistors for pressure contacting: 12 months - Leadless PTC thermistors for soldering: 6 months - SMDs in EIA sizes 3225 and 4032, and for PTCs with metal tags: 24 months - SMDs in EIA sizes 0402, 0603, 0805 and 1210: 12 months ## **Handling** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** PTCs must not be dropped. Chip-offs must not be caused during handling of PTCs. Components must not be touched with bare hands. Gloves are recommended. Avoid contamination of thermistor surface during handling. ## **Soldering (where applicable)** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** - Use rosin-type flux or non-activated flux. Insufficient preheating may cause ceramic cracks. Rapid cooling by dipping in solvent is not recommended. Complete removal of flux is recommended. Standard PTC heaters are not suitable for soldering. Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 9 of 13 |**Overcurrent protection**|| |---|---| |**Leaded disks, uncoated, 380 V to 1000 V**|**B750 ... B774**| ## **Mounting** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** - Electrode must not be scratched before/during/after the mounting process. - Contacts and housing used for assembly with thermistor have to be clean before mounting. Especially grease or oil must be removed. - When PTC thermistors are encapsulated with sealing material, the precautions given in chapter "Mounting instructions", "Sealing and potting" must be observed. - When the thermistor is mounted, there must not be any foreign body between the electrode of the thermistor and the clamping contact. - The minimum force of the clamping contacts pressing against the PTC must be 10 N. - During operation, the thermistor’s surface temperature can be very high. Ensure that adjacent components are placed at a sufficient distance from the thermistor to allow for proper cooling at the thermistors. - Ensure that adjacent materials are designed for operation at temperatures comparable to the surface temperature of thermistor. Be sure that surrounding parts and materials can withstand this temperature. Avoid contamination of thermistor surface during processing. ## **Operation** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** **==> picture [5 x 5] intentionally omitted <==** Use thermistors only within the specified temperature operating range. - Use thermistors only within the specified voltage and current ranges. - Environmental conditions must not harm the thermistors. Use thermistors only in normal atmospheric conditions. Avoid use in deoxidizing gases (chlorine gas, hydrogen sulfide gas, ammonia gas, sulfuric acid gas etc), corrosive agents, humid or salty conditions. Contact with any liquids and solvents should be prevented. - Be sure to provide an appropriate fail-safe function to prevent secondary product damage caused by abnormal function (e.g. use VDR for limitation of overvoltage condition). Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 10 of 13 **Overcurrent protection Leaded disks, uncoated, 380 V to 1000 V B750 ... B774** ## **Symbols and terms** A Area Cth Heat capacity f Frequency I Current Imax Maximum current IR Rated current IPTC PTC current Ir Residual currrent Ir,oil Residual currrent in oil (for level sensors) Ir,air Residual currrent in air (for level sensors) IRMS Root-mean-square value of current IS Switching current ISmax Maximum switching current LCT Lower category temperature N Number (integer) Nc Operating cycles at Vmax, charging of capacitor Nf Switching cycles at Vmax, failure mode P Power P25 Maximum power at 25 ° C Pel Electrical power Pdiss Dissipation power RG Generator internal resistance Rmin Minimum resistance RR Rated resistance ∆ RR Tolerance of RR RP Parallel resistance RPTC PTC resistance Rref Reference resistance RS Series resistance R25 Resistance at 25 ° C R25,match Resistance matching per reel/ packing unit at 25 ° C ∆ R25 Tolerance of R25 T Temperature t Time TA Ambient temperature ta Thermal threshold time TC Ferroelectric Curie temperature Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 11 of 13 |**Overcurrent protection**|| |---|---| |**Leaded disks, uncoated, 380 V to 1000 V**|**B750 ... B774**| |tE||Settling time (for level sensors)| |---|---|---| |TR||Rated temperature| |Tsense||Sensing temperature| |Top||Operating temperature| |TPTC||PTC temperature| |tR||Response time| |Tref||Reference temperature| |TRmin||Temperature at minimum resistance| |tS||Switching time| |Tsurf||Surface temperature| |UCT||Upper category temperature| |V or Vel||Voltage (with subscript only for distinction from volume)| |VRMS||Root-mean-square value of voltage| |VBD||Breakdown voltage| |Vins||Insulation test voltage| |Vlink,max||Maximum link voltage| |Vmax||Maximum operating voltage| |Vmax,dyn||Maximum dynamic (short-time) operating voltage| |Vmeas||Measuring voltage| |Vmeas,max||Maximum measuring voltage| |VR||Rated voltage| |VPTC||Voltage drop across a PTC thermistor| |α||Temperature coefficient| |∆||Tolerance, change| |δth||Dissipation factor| |τth||Thermal cooling time constant| |λ||Failure rate| |||Lead spacing (in mm)| ## **Abbreviations / Notes** Surface-mount devices * To be replaced by a number in ordering codes, type designations etc. + To be replaced by a letter All dimensions are given in mm. The commas used in numerical values denote decimal points. Please read _Cautions and warnings_ and _Important notes_ at the end of this document. Page 12 of 13 ## **Important notes** The following applies to all products named in this publication: 1. Some parts of this publication contain **statements about the suitability of our products for certain areas of application** . These statements are based on our knowledge of typical requirements that are often placed on our products in the areas of application concerned. We nevertheless expressly point out **that such statements cannot be regarded as binding statements about the suitability of our products for a particular customer application** . As a rule, EPCOS is either unfamiliar with individual customer applications or less familiar with them than the customers themselves. For these reasons, it is always ultimately incumbent on the customer to check and decide whether an EPCOS product with the properties described in the product specification is suitable for use in a particular customer application. 2. We also point out that **in individual cases, a malfunction of electronic components or failure before the end of their usual service life cannot be completely ruled out in the current state of the art, even if they are operated as specified** . In customer applications requiring a very high level of operational safety and especially in customer applications in which the malfunction or failure of an electronic component could endanger human life or health (e.g. in accident prevention or lifesaving systems), it must therefore be ensured by means of suitable design of the customer application or other action taken by the customer (e.g. installation of protective circuitry or redundancy) that no injury or damage is sustained by third parties in the event of malfunction or failure of an electronic component. 3. **The warnings, cautions and product-specific notes must be observed.** 4. In order to satisfy certain technical requirements, **some of the products described in this publication may contain substances subject to restrictions in certain jurisdictions (e.g. because they are classed as hazardous)** . Useful information on this will be found in our Material Data Sheets on the Internet (www.epcos.com/material). Should you have any more detailed questions, please contact our sales offices. 5. We constantly strive to improve our products. Consequently, **the products described in this publication may change from time to time** . The same is true of the corresponding product specifications. Please check therefore to what extent product descriptions and specifications contained in this publication are still applicable before or when you place an order. We also **reserve the right to discontinue production and delivery of products** . Consequently, we cannot guarantee that all products named in this publication will always be available. The aforementioned does not apply in the case of individual agreements deviating from the foregoing for customer-specific products. 6. Unless otherwise agreed in individual contracts, **all orders are subject to the current version of the "General Terms of Delivery for Products and Services in the Electrical Industry" published by the German Electrical and Electronics Industry Association (ZVEI)** . 7. The trade names EPCOS, BAOKE, Alu-X, CeraDiode, CSMP, CSSP, CTVS, DeltaCap, DigiSiMic, DSSP, FormFit, MiniBlue, MiniCell, MKK, MKD, MLSC, MotorCap, PCC, PhaseCap, PhaseCube, PhaseMod, PhiCap, SIFERRIT, SIFI, SIKOREL, SilverCap, SIMDAD, SiMic, SIMID, SineFormer, SIOV, SIP5D, SIP5K, ThermoFuse, WindCap are **trademarks registered or pending** in Europe and in other countries. Further information will be found on the Internet at www.epcos.com/trademarks. Page 13 of 13
Updated at April 27, 2026
TDK Corporation is a globally recognized leader in electronic components and magnetic materials. Founded in 1935 to commercialize ferrites, the Tokyo-based company has evolved into a comprehensive manufacturer of high-performance passive components, sensors, and power electronics. TDK’s advanced materials technology serves as the foundation for its extensive portfolio, driving innovation across automotive, industrial, consumer electronics, and communication technologies. Our selection of TDK components heavily features their industry-leading passive components, with a primary focus on magnetics. TDK excels in manufacturing reliable inductive solutions, offering a vast array of power inductors and RF inductors optimized for demanding power management and high-frequency applications. Furthermore, their expertise in electromagnetic compatibility is showcased through a comprehensive range of EMC and RFI suppression products. This includes common mode chokes, power line filters, and specialized shielding materials designed to ensure superior signal integrity in complex designs. Beyond inductors and filtering components, TDK provides robust circuit protection and sensing solutions essential for modern engineering. The portfolio includes precision temperature sensing and compensation NTC thermistors, alongside TVS varistors and inrush current limiting components that safeguard sensitive electronics. Complemented by fixed value inductors, supercapacitors, and charging coils, TDK's versatile product offering delivers the reliability and performance required for sophisticated circuit design.
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