Resistors High Voltage High Voltage Welwyn Components Thick Film Resistors Thick Film Resistors VRW Series VRW Series VRW37 meets the requirements of BS / EN / IEC 60065 VRW37 meets requirements of BS / EN / IEC 60065 High working voltage to 10kV in compact High working voltage to 10kV in compact size size High ohmic range to 68M High ohmic range to 68M High pulse load capability High pulse load capability Robust flameproof coating material Robust flameproof coating material Surface mount ZI-form option RoHS compliant AllAll Pb-Pb-frfreeee partsparts ccomplyomply withwith EUEU DirDirectivectivee 2011/65/EU2011/65/EU amended amended b yb y(EU) (EU) 2015/863 2015/863 (R (RoHS3)oHS3) Electrical Data VRW25 VRW37 VRW68 Power rating at 70C watts 0.25 0.5 1.0 Resistance range (Ohms) 100K to 30M 100K to 30M 100K to 68M Limiting element voltage volts dc or ac peak 1600 3500 10000 Isolation voltage volts 700 TCR ppm/C 200 Resistance Tolerance % 1, 2, 5 Standard Values E24 or E96 Thermal Impedance C/watt 140 112 70 Ambient temperature range -55 to +155C C Physical Data (Dimensions (mm) & Weight (g) Type L D f d PCB Min Wt. d Max Max min Nom mount bend nom centres radius VRW25 6.2 2.5 21 0.60.05 10.2 0.6 0.3 d D L f 9.0 3.7 19.6 0.80.05 12.5 1.2 0.5 VRW37 VRW68 15.5 5.0 27 0.80.05 20.3 1.2 1.15 Construction Terminations Resistive thick film material is applied to high-grade ceramic Material: Hot tin dipped copper wire rods. Tin-plated steel caps are force fitted and the Strength: The terminations meet the requirements termination wires are welded to the caps. The value is of IEC 68.2.21 obtained by a helical cut in the film and finally the resistor Solderability: The terminations meet the requirements body is protected by a cement coating. of IEC 115-1 Clause 4.17.3.2 Solvent Resistance Marking The body protection and marking are resistant to all normal 1% tolerance resistors are colour coded with 5 bands. 2% industrial cleaning solvents suitable for printed circuits. and 5% tolerance have 4 bands. IEC62 colours are used. Flammability The resistor coating will not burn under any condition of applied temperature or power overload. General Note General Note BI Technologies IRC Welwyn TT Electronics reserves the right to make changes in product specification without notice or liability. Welwyn Components reserves the right to make changes in product specification without notice or liability. All information is subject to TT Electronics own data and is considered accurate at time of going to print. All information is subject to Welwyns own data and is considered accurate at time of going to print. A subsidiary of www.ttelectronics.com/resistors TT electronics plc Welwyn Components Limited Bedlington, Northumberland NE22 7AA, UK TT Electronics plc 05.08 Telephone: +44 (0) 1670 822181 Facsimile: +44 (0) 1670 829465 Email: info welwyn-tt.com Website: www.welwyn-tt.com Issue C 07.06 11.20 70High Voltage High Voltage Thick Film Resistors High Voltage High Voltage Thick Film Resistors High Voltage Thick Film Resistors Welwyn Components SQP Series VRW Series Thick Film Resistors Welwyn Components High Voltage Thick Film Resistors VSRQW SeriesP Series Welwyn Components VRW Series VSRQW SeriesP Series Welwyn Components Thick Film Resistors VSRQW SeriesP Series Performance Data Welwyn Components VSRQW SeriesP Series Performance Data Maximum Typical Performance Data Performance Data Maximum Typical Load at rated voltage (1000hrs at 70C) R% 1.5* 0.4 Maximum Typical Performance Data LoadDera tatin grated from voltage rated p (1000hrsower at 7 at0 C70C) R% 1.5* zero at 155 C 0.4 Maximum Typical Load at rated voltage (1000hrs at 70C) R% 1.5* 0.4 Derating from rated power at 70 C zero at 155 C Overload (10 x 5s at 6.25 x Pr not exceeding 2 x LEV or 10kV in air)Overload (10 x 5s at 6.25 x Pr not exceeding 2 x LEV) R% 12 0.15 Load at rated voltage (1000hrs at 70C) R% M1.a5*ximum Ty0p.4ical Derating from rated power at 70 C zero at 155 C Overload (10 x 5s at 6.25 x Pr not exceeding 2 x LEV or 10kV in air)DampOverload heat (10 steady x 5s atstate 6.25 (56 x Prdays, not 40C, exceeding90% 2 RH)x LEV) RR%% 112.5 00.1.15 Load at rated voltage (1000hrs at 70C) R% 1.5* 0.4 Derating from rated power at 70 C zero at 155 C Overload (10 x 5s at 6.25 x Pr not exceeding 2 x LEV or 10kV in air)Overload (10 x 5s at 6.25 x Pr not exceeding 2 x LEV) R% 1 0.15 2 Damp heat steady state (56 days, 40C, 90% RH) R% 1.5 0.1 Climatic sequence R% 1.5 0.2 Derating from rated power at 70 C zero at 155 C Overload (10 x 5s at 6.25 x Pr not exceeding 2 x LEV or 10kV in air)Overload (10 x 5s at 6.25 x Pr not exceeding 2 x LEV) R% 12 0.15 Damp heat steady state (56 days, 40C, 90% RH) R% 1.5 0.1 ClimaticClimatic sequencecategory R% 1.5 55/155/56 0.2 Overload (10 x 5s at 6.25 x Pr not exceeding 2 x LEV or 10kV in air)Overload (10 x 5s at 6.25 x Pr not exceeding 2 x LEV) R% 12 0.15 Damp heat steady state (56 days, 40C, 90% RH) R% 1.5 0.1 Climatic sequence R% 1.5 0.2 Climatic category 55/155/56 Temperature rapid change R% 0.5 0.05 Damp heat steady state (56 days, 40C, 90% RH) R% 1.5 0.1 Climatic sequence R% 1.5 0.2 Climatic category 55/155/56 TResistanceemperatu rtoe rapid solder change heat RR%% 00..55 00..0055 Climatic sequence R% 1.5 0.2 Climatic category 55/155/56 Temperature rapid change R% 0.5 0.05 Resistance to solder heat R% 0.5 0.05 VibrationClimatic category R% 0.5 55/155/56 0.05 Temperature rapid change R% 0.5 0.05 Resistance to solder heat R% 0.5 0.05 VibrationTemperature rapid change R% R% 0.5 0.5 0.00.055 Voltage Proof volts 700 min Resistance to solder heat R% 0.5 0.05 Vibration R% 0.5 0.05 Voltage PResistanceroof to solder heat volts R% 0.5 700 min 0.05 * 2% for ohmic values above 24M Vibration R% 0.5 0.05 Voltage Proof volts 700 min Vibration R% 0.5 0.05 * 2% for ohmic values above 24M Pulse Performace Voltage Proof volts 700 min Pulse Performance Voltage Proof volts 700 min * 2% for ohmic values above 24M Pulse Performace * 2% for ohmic values above 24M 100 Pulse Performance * 2% for ohmic values above 24M Pulse Performace Pulse Performance100 Pulse Performac e Pulse Performace Pulse Performance Pulse Performance100 100 100 VRW25 10 VRW37 VRW25 VRW68 VRW37 10 VRW25 VRW25 VRW25 VRW68 VRW37 10 VRW37 10 10 VRW37 VRW68 VRVWR6W868 1 0.1 1 10 100 1 0.1 1 10 100 1 Value (megohms) 1 1 0.1 1 10 100 Value (megohms) 0.1 1 10 100 0.1 1 10 100 Maximum peak voltage in accordance with IEC 60065 chapter 14.1 Value (megohms) Value (megohms) Value (megohms) 50 discharges from a 1nF capacitor charged to V max. 12 discharges/minute. Maximum peak voltage in accordance with IEC 60065 chapter 14.1 Maximum peak voltage in accordance with IEC 60065 chapter 14.1 50 discharges from a 1nF capacitor charged to V max. 12 discharges/minute. Maximum peak voltage in accordance with IEC 60065 chapter 14.1 Maximum peak voltage in accordance with IEC 60065 chapter 14.1 50 discharges from a 1nF capacitor charged to V max. 12 discharges/minute. 50 discharges from a 1nF capacitor charged to V max. 12 discharges/minute. 50 discharges from a 1nF capacitor charged to V max. 12 discharges/minute. Application Notes Application Notes 1. Due to operating temperature limits imposed by some PCB materials, derating may be necessary. An Application Notes Application Notes estimate of the temperature rise to be expected at the center of the body can be calculated using the 1. Due to operating temperature limits imposed by some PCB materials, derating may be necessary. An Application Notes 1. Due to operating temperature limits imposed by some PCB materials, derating may be necessary. An ther1. Dumea l toimpedan operatinceg f igteumreperatus givenre ulinmdeitsr iEmlecposetricda l bDyata so.me PCB materials, derating may be necessary. An estimate of the temperature rise to be expected at the center of the body can be calculated using the 1. Due to operating temperature limits imposed by some PCB materials, derating may be necessary. An estimate of the temperature rise to be expected at the center of the body can be calculated using the estimate of the temperature rise to be expected at the center of the body can be calculated using the thermal impedance figures given under Electrical Data. 2.2. VR VRW37 cW resisan be supplied with rtors can be supplied wadial, gith radoalposial, got or lancealpost or t prlancete-f ormed leads pre-formed le- see ads. The VRW37 is also estimate of the temperature rise to be expected at the center of the body can be calculated using the thermal impedance figures given under Electrical Data. thermal impedance figures given under Electrical Data. available in ZI-form SMD format packed in blister tape - see