CC1512FC RHOPOINT | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 2
Technical content
Sales and Corporate Office
1717 Chicago Avenue
Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K
5 Meg
8 Meg
10 Meg
20 Meg
50 Meg
75 Meg
150 Meg
100 Meg
200 Meg
250 Meg
300 Meg
500 Meg
750 Meg
1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min.
6.5 Meg
26 Meg
70 Meg
17 Meg
51 Meg
77 Meg
40 Meg
178 Meg
64 Meg
288 Meg
128 Meg
192 Meg
320 Meg
400 Meg
384 Meg
Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004 Sales and Corporate Office
Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K 1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004 Sales and Corporate Office
Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K 1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004 UK & Ireland Distributors Hurst Green • Surrey • RH8 9AX • UK Email • sales@rhopointcomponents.com Web • www.rhopointcomponents.com Tel: +44 (0) 870 608 1188 Sales and Corporate Office
Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K 1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004 RHOPOINT COMPONENTS LTD. Holland Road Hurst Green Oxted, Surrey, RH8 9AX Tel: +44 (0)1883 717988 Fax: +44 (0)1883 712938 e-mail: sales@rhopointcomponents.com web: www.rhopointcomponents.comRHOPOINT COMPONENTS LTD. IL-110.019 CBA1.500 ± .125 (38.10 ± 3.18) RATED POWER OR RATED VOLTAGE, % AMBIENT TEMPERATURE, °C 100 25 75 125 175 225 275 For immediate engineering assistance in developing Low Ratio TC matched high voltage resistor sets, call or write our Applications Engineering and we will be pleased to offer the best solution from our high voltage resistor product capabilities. Derating Curve: DIMENSIONS IN INCHES AND (MILLIMETERS) Design Assistance in Developing High Voltage Resistor Sets with Low TC Tracking. Model Number: Resistor Value: Tolerance MG680 MG712 MG714 MG715 MG725 MG720 MG660 MG716 MG721 MG745 MG810 MG815 MG735 MG730 MG717 MG785 MG731 MG740 Most models are available with Caddock's Non-inductive Serpentine Pattern MG650 MG710 MG750 MG780 Certain products shown in this catalog are covered by one or more patents, there are also patents pending. N Non-inductive performance with Caddock's exclusive design MG655 Type MG Precision High Voltage Resistors Page 2 of 2 RHOPOINT COMPONENTS LTD. Holland Road Hurst Green Oxted, Surrey, RH8 9AX Tel: +44 (0)1883 717988 Fax: +44 (0)1883 712938 e-mail: sales@rhopointcomponents.com web: www.rhopointcomponents.com RHOPOINT COMPONENTS LTD. IL-110.019 C B A 1.500± .125 (38.10± 3.18) RATED POWER OR RATED VOLTAGE, % AMBIENT TEMPERATURE, °C 100 25 75125 175 225 275 For immediate engineering assistance in developing Low Ratio TC matched high voltage resistor sets, call or write our Applications Engineering and we will be pleased to offer the best solution from our high voltage resistor product capabilities. Derating Curve: DIMENSIONS IN INCHES AND (MILLIMETERS) Design Assistance in Developing High Voltage Resistor Sets with Low TC Tracking. Model Number: Resistor Value: Tolerance MG680 MG712 MG714 MG715 MG725 MG720 MG660 MG716 MG721 MG745 MG810 MG815 MG735 MG730 MG717 MG785 MG731 MG740 Most models are available with Caddock's Non-inductive Serpentine Pattern MG650 MG710 MG750 MG780 Certain products shown in this catalog are covered by one or more patents, there are also patents pending. N Non-inductive performance with Caddock's exclusive design MG655 Type MG Precision High Voltage Resistors Page 2 of 2 RHOPOINT COMPONENTS LTD. Holland Road Hurst Green Oxted, Surrey, RH8 9AX Tel: +44 (0)1883 717988 Fax: +44 (0)1883 712938 e-mail: sales@rhopointcomponents.com web: www.rhopointcomponents.comRHOPOINT COMPONENTS LTD. IL-110.0201 Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Temperature Coefficient: Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds . Thermal Shock: Mil-Std-202, Method 107, Cond. C, ∆R 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ∆R 0.4% max. Load Life: 1,000 hours at +125 °C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High Temperature Silicone Conformal. Resistance Range Tolerance ±1% St'd with "-15" rating Extended Range ±1% Resistance Range Overload/Overvoltage, ∆R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating ±80 ppm/°C from +25°C to +105°C, -200 ppm/°C to +50 ppm/°C from -15°C to +25°C. Resistance Range ±80 ppm/°C from -15°C to +105°C, referenced to +25°C. TC Specifications Extended Range Resistance Range Load Life, ∆R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 ±.020 (7.95 ±.51) .094 ±.015 (2.39 ±.38) .025 ±.002 (.64 ±.05) MG655 .313 ±.030 (7.95 ±.76) .109 ±.025 (2.77 ±.64) .025 ±.002 (.64 ±.05) MG660 .500 ±.030 (12.70 ±.76) .094 ±.015 (2.39 ±.38) .025 ±.002 (.64 ±.05) MG680 .750 ±.030 (19.05 ±.76) .094 ±.015 (2.39 ±.38) .025 ±.002 (.64 ±.05) MG710 1.000 ±.040 (25.40 ±1.02) .094 ±.015 (2.39 ±.38) .025 ±.002 (.64 ±.05) MG712 .400 ±.060 (10.16 ±.152) .140 ±.030 (3.56 ±.76) .025 ±.002 (.64 ±.05) MG714 .562 ±.060 (14.27 ±1.52) .150 ±.030 (3.81 ±.76) .032 ±.002 (.81 ±.05) MG715 .750 ±.060 (19.05 ±1.52) .140 ±.030 (3.56 ±.76) .025 ±.002 (.64 ±.05) MG716 1.000 ±.060 (25.40 ±1.52) .140 ±.030 (3.56 ±.76) .025 ±.002 (.64 ±.05) MG717 .710 ±.050 (18.03 ±1.27) .240 ±.030 (6.10 ±.76) .040 ±.002 (1.02 ±.05) MG720 1.500 ±.080 (38.10 ±2.03) .140 ±.030 (3.56 ±.76) .025 ±.002 (.64 ±.05) MG721 1.000 ±.050 (25.40 ±1.27) .240 ±.030 (6.10 ±.76) .040 ±.002 (1.02 ±.05) MG725 2.000 ±.080 (50.80 ±2.03) .140 ±.030 (3.56 ±.76) .025 ±.002 (.64 ±.05) MG730 1.500 ±.080 (38.10 ±2.03) .240 ±.030 (6.10 ±.76) .040 ±.002 (1.02 ±.05) MG731 1.000 ±.060 (25.40 ±1.52) .315 ±.030 (8.00 ±.76) .040 ±.002 (1.02 ±.05) MG735 2.000 ±.080 (50.80 ±2.03) .240 ±.030 (6.10 ±.76) .040 ±.002 (1.02 ±.05) MG740 1.500 ±.060 (38.10 ±1.52) .315 ±.030 (8.00 ±.76) .040 ±.002 (1.02 ±.05) MG745 3.000 ±.100 (76.20 ±2.54) .240 ±.030 (6.10 ±.76) .040 ±.002 (1.02 ±.05) MG750 2.125 ±.060 (53.98 ±1.52) .315 ±.030 (8.00 ±.76) .040 ±.002 (1.02 ±.05) MG780 3.125 ±.060 (79.38 ±1.52) .315 ±.030 (8.00 ±.76) .040 ±.002 (1.02 ±.05) MG785 4.000 ±.120 (101.60 ±3.05) .315 ±.030 (8.00 ±.76) .040 ±.002 (1.02 ±.05) MG810 5.000 ±.120 (127.00 ±3.05) .315 ±.030 (8.00 ±.76) .040 ±.002 (1.02 ±.05) MG815 6.000 ±.120 (152.40 ±3.05) .350 ±.040 (8.89 ±1.02) .040 ±.002 (1.02 ±.05) 1.0 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 Ω 200 Ω 400 Ω 600 Ω 800 Ω 800 Ω 200 Ω 400 Ω 600 Ω 600 Ω 1 K 200 Ω 1.5 K 500 Ω 200 Ω 750 Ω 300 Ω 1 K 400 Ω 600 Ω 800 Ω 1 K 1 K
1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability, and Precision Tolerances. Caddock's Micronox® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" Ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/ °C in combination with resistance tolerances as tight as ±0.1%.
- Typical extended life stability of 0.02% per 1,000 hours for standard resistance range as demonstrated by reliability testing. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments and medical electronics Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre-stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non- Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Page 1 of 2 RHOPOINT COMPONENTS LTD web: www.rhopointcomponents.com e-mail: sales@rhopointcomponents.com RHOPOINT COMPONENTS LTD Holland Road, Hurst Green, Oxted, Surrey, RH8 9AX Phone: +44 (0) 1883 717988 Fax: +44 (0) 1883 712938 CC1512FC Standard Resistance Values: Tolerance CC1512FC ±1% Standard (except as noted). CC2015FC Standard Resistance Values: Tolerance CC2015FC ±1% Standard (except as noted). CC2520FC Standard Resistance Values: 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% Tolerance CC2520FC ±1% Standard (except as noted). 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω Custom resistance values and non-standard tolerances can be manufactured for high quantity applications. Please contact Caddock Applications Engineering. Recommended Circuit Board Layout (current and sense connections): Fig. 1A: Kelvin layout recom- mended for values below 0.20Ω Fig. 1B: Kelvin layout recommended for higher resistance values.
- Style FC - Flip Chip version for surface mount applications. Style WB - Wire Bond version for hybrid applications with metallized back surface for solder down heat sinking of the chip, includes bondable termination pads to receive aluminum wire bonds.
- Thermal resistance is provided to optimize high power designs when utilizing higher thermal conductivity circuit board substrates such as IMS or Alumina.
- Resistance range down to 0.010 ohm at ±5%, 0.050 ohm at ±2%, and 0.10 ohm at ±1%.
- Low inductance provides excellent high frequency and pulse response
- High pulse handling and overload capability.
- Best choice for switching power supplies, motor speed controls, and high current sensing applications. Type CC Low Resistance Precision Chip Resistors Style FC - Flip Chip Version is a surface mount version with solderable pads for flip chip soldering. Note 1: General Applications - The power rating for general applications is based upon 0.5 sq. in. (300 mm2) of termination pad or trace area (2 oz. copper) connected to each end of the resistor. Maximum chip temperature is 150 °C. Use Derating Curve to derate appropriately for the maximum ambient temperature and for the temperature limitations of the adjacent materials. Note 2: Thermal Resistance - In High Power Applications where the circuit board material provides high heat sinking benefits (such as IMS, Alumina, or other) the thermal resistance of the chip resistor is useful to establish the maximum power capability of the chip resistor in the application. The film temperature is measured at the center of the resistor element and the solder pad temperature is measured at the center of the termination pad (point X in the recommended circuit layouts shown below). Maximum temperature of the chip resistor (at the center of chip) should not exceed 150 °C through the temperature range of the application . Style FC Derating Curve For General Application 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω S S X X C C C X X SS C C C = Current connection S = Sense connection Note: Actual width of current trace is based on magnitude of current. Point of connection should be in the area shown. 0.015 Ω0.010 Ω Model Resistance Min. Max. Power Capability Information CC1512FC CC2015FC CC2520FC 10.0 Ω0.020 Ω 10.0 Ω 0.020 Ω 10.0 Ω 0.020 Ω 0.010 Ω 0.025 Ω 150°C0.75 Watt Max. Chip Temperature General Applications High Power Applications Thermal Resistance - RθJC Film (J) to Solder Pad (C) (see note 2) 22.7°C/Watt Power Rating at 70° C (see note 1) 22.7°C/Watt 16.0°C/Watt 13.0°C/Watt 11.5°C/Watt 150°C 150°C 150°C 150°C Dimensions in inches and (millimeters) .150 ±.007 (3.81 ±.18) A B D .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) C .027 ±.005 (.69 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .065 min. (1.66 min.) .032 ±.005 (.81 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .040 min. (1.02 min.) .041 ±.004 (1.04 ±.10) .200 ±.007 (5.08 ±.18) .150 ±.007 (3.81 ±.18) .050 min. (1.27 min.) .027 ±.003 (.69 ±.08) .150 ±.007 (3.81 ±.18) .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) .022 ±.003 (.56 ±.08) Comments Solder Coated Pads Solderable Pads Solderable Pads Solder Coated Pads Solderable Pads
0.75 Watt
1.0 Watt
1.5 Watts
AMBIENT TEMPERATURE, C RATED LOAD, % o 100 25 100 15070 Page 1 of 2 27.1 IL106.0802 RHOPOINT COMPONENTS LTD web: www.rhopointcomponents.com e-mail: sales@rhopointcomponents.com RHOPOINT COMPONENTS LTD Holland Road, Hurst Green, Oxted, Surrey, RH8 9AX Phone: +44 (0) 1883 717988 Fax: +44 (0) 1883 712938 CC1512FC Standard Resistance Values: Tolerance CC1512FC ±1% Standard (except as noted). CC2015FC Standard Resistance Values: Tolerance CC2015FC ±1% Standard (except as noted). CC2520FC Standard Resistance Values: 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% Tolerance CC2520FC ±1% Standard (except as noted). 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω Custom resistance values and non-standard tolerances can be manufactured for high quantity applications. Please contact Caddock Applications Engineering. Recommended Circuit Board Layout (current and sense connections): Fig. 1A: Kelvin layout recom- mended for values below 0.20Ω Fig. 1B: Kelvin layout recommended for higher resistance values.
- Style FC - Flip Chip version for surface mount applications. Style WB - Wire Bond version for hybrid applications with metallized back surface for solder down heat sinking of the chip, includes bondable termination pads to receive aluminum wire bonds.
- Thermal resistance is provided to optimize high power designs when utilizing higher thermal conductivity circuit board substrates such as IMS or Alumina.
- Resistance range down to 0.010 ohm at ±5%, 0.050 ohm at ±2%, and 0.10 ohm at ±1%.
- Low inductance provides excellent high frequency and pulse response
- High pulse handling and overload capability.
- Best choice for switching power supplies, motor speed controls, and high current sensing applications. Type CC Low Resistance Precision Chip Resistors Style FC - Flip Chip Version is a surface mount version with solderable pads for flip chip soldering. Note 1: General Applications - The power rating for general applications is based upon 0.5 sq. in. (300 mm2) of termination pad or trace area (2 oz. copper) connected to each end of the resistor. Maximum chip temperature is 150 °C. Use Derating Curve to derate appropriately for the maximum ambient temperature and for the temperature limitations of the adjacent materials. Note 2: Thermal Resistance - In High Power Applications where the circuit board material provides high heat sinking benefits (such as IMS, Alumina, or other) the thermal resistance of the chip resistor is useful to establish the maximum power capability of the chip resistor in the application. The film temperature is measured at the center of the resistor element and the solder pad temperature is measured at the center of the termination pad (point X in the recommended circuit layouts shown below). Maximum temperature of the chip resistor (at the center of chip) should not exceed 150 °C through the temperature range of the application . Style FC Derating Curve For General Application 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω S S X X C C C X X SS C C C = Current connection S = Sense connection Note: Actual width of current trace is based on magnitude of current. Point of connection should be in the area shown. 0.015 Ω0.010 Ω Model Resistance Min. Max. Power Capability Information CC1512FC CC2015FC CC2520FC 10.0 Ω0.020 Ω 10.0 Ω 0.020 Ω 10.0 Ω 0.020 Ω 0.010 Ω 0.025 Ω 150°C0.75 Watt Max. Chip Temperature General Applications High Power Applications Thermal Resistance - RθJC Film (J) to Solder Pad (C) (see note 2) 22.7°C/Watt Power Rating at 70° C (see note 1) 22.7°C/Watt 16.0°C/Watt 13.0°C/Watt 11.5°C/Watt 150°C 150°C 150°C 150°C Dimensions in inches and (millimeters) .150 ±.007 (3.81 ±.18) A B D .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) C .027 ±.005 (.69 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .065 min. (1.66 min.) .032 ±.005 (.81 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .040 min. (1.02 min.) .041 ±.004 (1.04 ±.10) .200 ±.007 (5.08 ±.18) .150 ±.007 (3.81 ±.18) .050 min. (1.27 min.) .027 ±.003 (.69 ±.08) .150 ±.007 (3.81 ±.18) .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) .022 ±.003 (.56 ±.08) Comments Solder Coated Pads Solderable Pads Solderable Pads Solder Coated Pads Solderable Pads
AMBIENT TEMPERATURE, C RATED LOAD, % o 100 25 100 15070 Page 1 of 2 27.1 IL106.0802 RHOPOINT COMPONENTS LTD web: www.rhopointcomponents.com e-mail: sales@rhopointcomponents.com RHOPOINT COMPONENTS LTD Holland Road, Hurst Green, Oxted, Surrey, RH8 9AX Phone: +44 (0) 1883 717988 Fax: +44 (0) 1883 712938 CC1512FC Standard Resistance Values: Tolerance CC1512FC ±1% Standard (except as noted). CC2015FC Standard Resistance Values: Tolerance CC2015FC ±1% Standard (except as noted). CC2520FC Standard Resistance Values: 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% Tolerance CC2520FC ±1% Standard (except as noted). 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω Custom resistance values and non-standard tolerances can be manufactured for high quantity applications. Please contact Caddock Applications Engineering. Recommended Circuit Board Layout (current and sense connections): Fig. 1A: Kelvin layout recom- mended for values below 0.20Ω Fig. 1B: Kelvin layout recommended for higher resistance values.
- Style FC - Flip Chip version for surface mount applications. Style WB - Wire Bond version for hybrid applications with metallized back surface for solder down heat sinking of the chip, includes bondable termination pads to receive aluminum wire bonds.
- Thermal resistance is provided to optimize high power designs when utilizing higher thermal conductivity circuit board substrates such as IMS or Alumina.
- Resistance range down to 0.010 ohm at ±5%, 0.050 ohm at ±2%, and 0.10 ohm at ±1%.
- Low inductance provides excellent high frequency and pulse response
- High pulse handling and overload capability.
- Best choice for switching power supplies, motor speed controls, and high current sensing applications. Type CC Low Resistance Precision Chip Resistors Style FC - Flip Chip Version is a surface mount version with solderable pads for flip chip soldering. Note 1: General Applications - The power rating for general applications is based upon 0.5 sq. in. (300 mm2) of termination pad or trace area (2 oz. copper) connected to each end of the resistor. Maximum chip temperature is 150 °C. Use Derating Curve to derate appropriately for the maximum ambient temperature and for the temperature limitations of the adjacent materials. Note 2: Thermal Resistance - In High Power Applications where the circuit board material provides high heat sinking benefits (such as IMS, Alumina, or other) the thermal resistance of the chip resistor is useful to establish the maximum power capability of the chip resistor in the application. The film temperature is measured at the center of the resistor element and the solder pad temperature is measured at the center of the termination pad (point X in the recommended circuit layouts shown below). Maximum temperature of the chip resistor (at the center of chip) should not exceed 150 °C through the temperature range of the application . Style FC Derating Curve For General Application 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω S S X X C C C X X SS C C C = Current connection S = Sense connection Note: Actual width of current trace is based on magnitude of current. Point of connection should be in the area shown. 0.015 Ω0.010 Ω Model Resistance Min. Max. Power Capability Information CC1512FC CC2015FC CC2520FC 10.0 Ω0.020 Ω 10.0 Ω 0.020 Ω 10.0 Ω 0.020 Ω 0.010 Ω 0.025 Ω 150°C0.75 Watt Max. Chip Temperature General Applications High Power Applications Thermal Resistance - RθJC Film (J) to Solder Pad (C) (see note 2) 22.7°C/Watt Power Rating at 70° C (see note 1) 22.7°C/Watt 16.0°C/Watt 13.0°C/Watt 11.5°C/Watt 150°C 150°C 150°C 150°C Dimensions in inches and (millimeters) .150 ±.007 (3.81 ±.18) A B D .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) C .027 ±.005 (.69 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .065 min. (1.66 min.) .032 ±.005 (.81 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .040 min. (1.02 min.) .041 ±.004 (1.04 ±.10) .200 ±.007 (5.08 ±.18) .150 ±.007 (3.81 ±.18) .050 min. (1.27 min.) .027 ±.003 (.69 ±.08) .150 ±.007 (3.81 ±.18) .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) .022 ±.003 (.56 ±.08) Comments Solder Coated Pads Solderable Pads Solderable Pads Solder Coated Pads Solderable Pads
AMBIENT TEMPERATURE, C RATED LOAD, % o 100 25 100 15070 Page 1 of 2 27.1 IL106.0802 Sales and Corporate Office Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K 1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004 RHOPOINT COMPONENTS LTD web: www.rhopointcomponents.com e-mail: sales@rhopointcomponents.com RHOPOINT COMPONENTS LTD Holland Road, Hurst Green, Oxted, Surrey, RH8 9AX Phone: +44 (0) 1883 717988 Fax: +44 (0) 1883 712938 CC1512FC Standard Resistance Values: Tolerance CC1512FC ±1% Standard (except as noted). CC2015FC Standard Resistance Values: Tolerance CC2015FC ±1% Standard (except as noted). CC2520FC Standard Resistance Values: 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% Tolerance CC2520FC ±1% Standard (except as noted). 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω Custom resistance values and non-standard tolerances can be manufactured for high quantity applications. Please contact Caddock Applications Engineering. Recommended Circuit Board Layout (current and sense connections): Fig. 1A: Kelvin layout recom- mended for values below 0.20Ω Fig. 1B: Kelvin layout recommended for higher resistance values.
- Style FC - Flip Chip version for surface mount applications. Style WB - Wire Bond version for hybrid applications with metallized back surface for solder down heat sinking of the chip, includes bondable termination pads to receive aluminum wire bonds.
- Thermal resistance is provided to optimize high power designs when utilizing higher thermal conductivity circuit board substrates such as IMS or Alumina.
- Resistance range down to 0.010 ohm at ±5%, 0.050 ohm at ±2%, and 0.10 ohm at ±1%.
- Low inductance provides excellent high frequency and pulse response
- High pulse handling and overload capability.
- Best choice for switching power supplies, motor speed controls, and high current sensing applications. Type CC Low Resistance Precision Chip Resistors Style FC - Flip Chip Version is a surface mount version with solderable pads for flip chip soldering. Note 1: General Applications - The power rating for general applications is based upon 0.5 sq. in. (300 mm2) of termination pad or trace area (2 oz. copper) connected to each end of the resistor. Maximum chip temperature is 150 °C. Use Derating Curve to derate appropriately for the maximum ambient temperature and for the temperature limitations of the adjacent materials. Note 2: Thermal Resistance - In High Power Applications where the circuit board material provides high heat sinking benefits (such as IMS, Alumina, or other) the thermal resistance of the chip resistor is useful to establish the maximum power capability of the chip resistor in the application. The film temperature is measured at the center of the resistor element and the solder pad temperature is measured at the center of the termination pad (point X in the recommended circuit layouts shown below). Maximum temperature of the chip resistor (at the center of chip) should not exceed 150 °C through the temperature range of the application . Style FC Derating Curve For General Application 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω S S X X C C C X X SS C C C = Current connection S = Sense connection Note: Actual width of current trace is based on magnitude of current. Point of connection should be in the area shown. 0.015 Ω0.010 Ω Model Resistance Min. Max. Power Capability Information CC1512FC CC2015FC CC2520FC 10.0 Ω0.020 Ω 10.0 Ω 0.020 Ω 10.0 Ω 0.020 Ω 0.010 Ω 0.025 Ω 150°C0.75 Watt Max. Chip Temperature General Applications High Power Applications Thermal Resistance - RθJC Film (J) to Solder Pad (C) (see note 2) 22.7°C/Watt Power Rating at 70° C (see note 1) 22.7°C/Watt 16.0°C/Watt 13.0°C/Watt 11.5°C/Watt 150°C 150°C 150°C 150°C Dimensions in inches and (millimeters) .150 ±.007 (3.81 ±.18) A B D .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) C .027 ±.005 (.69 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .065 min. (1.66 min.) .032 ±.005 (.81 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .040 min. (1.02 min.) .041 ±.004 (1.04 ±.10) .200 ±.007 (5.08 ±.18) .150 ±.007 (3.81 ±.18) .050 min. (1.27 min.) .027 ±.003 (.69 ±.08) .150 ±.007 (3.81 ±.18) .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) .022 ±.003 (.56 ±.08) Comments Solder Coated Pads Solderable Pads Solderable Pads Solder Coated Pads Solderable Pads
AMBIENT TEMPERATURE, C RATED LOAD, % o 100 25 100 15070 Page 1 of 2 27.1 IL106.0802
web: www.rhopointcomponents.com e-mail: sales@rhopointcomponents.com RHOPOINT COMPONENTS LTD Holland Road, Hurst Green, Oxted, Surrey, RH8 9AX Phone: +44 (0) 1883 717988 Fax: +44 (0) 1883 712938 CC 2520 FC - 0.10 - 1% Type CC Physical Size 1512 = 0.150” x 0.120” 2015 = 0.200” x 0.150” 2520 = 0.250” x 0.200” Style: FC or WB Resistor Value ( See charts for availability Tolerance: ± 5% below 0.050Ω ± 2% 0.050Ω to 0.099Ω ± 1% 0.10Ω and above Specifications: Temperature Coefficient: TC referenced to +25°C, ∆R taken at +150°C. 0.50 ohm and above, -20 to +80 ppm/°C 0.050 ohm to 0.49 ohm, 0 to +200 ppm/°C below 0.050 ohm, 0 to +300 ppm/°C Inductance: Less than 5 nH typical Load Life: 1000 hours at rated power, based upon 150°C max. chip temperature, Momentary Overload: 1.5 times rated power, for 5 seconds, ∆R ± (0.5% + 0.0005 ohm) Operating Temperature: -55°C to +150 °C Measurement Note: All measurements are taken using Kelvin connections per the recommended connection locations. Ordering Information: Ko signifies tape thickness and dimension 12mm 0.473” Ao Bo 7” dia. (178 mm) .512” arbor hole (13mm) Packaging information: Style FC, flip chip resistors, are shipped with the bare ceramic side up in the pocket, with the solderable pads fac- ing down. Style WB , wire bondable resistors, are shipped with the wire bondable pads facing up in the pocket. The illustration shows the orientation of the CC1512 and CC2015 chip resistors in the tape. The CC2520 resistors chips are rotated 90 ° from what is shown in the illustration. 0.135” (3.43mm) Carrier Tape and pocket dimensions: Tape is 12mm Carrier Tape (8mm pitch) 0.167” (4.24mm) 0.037” (0.94mm) 0.189” (4.80mm) Size 2015 0.209” (5.31mm) 0.087” (2.21mm) 0.271” (6.88mm) Size 2520 0.216” (5.49mm) 0.066” (1.68mm) Ao Bo Ko Size 1512 Full reel quantities: 1500 pieces per reel for CC1512 1000 pieces per reel for CC2015 and CC2520 Quantities of less than 250 will be shipped in tape without reel and without tape leader at the option of Caddock. Tape dimensions and materials will be consistent with EIA-481-1. Reels will be marked with a label containing Caddock logo, part number, resistor value, tolerance, packaging date, and quantity. CC2015WB Standard Resistance Values: Tolerance CC2015WB±1% Standard (except as noted). CC2520WB Standard Resistance Values: 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% Tolerance CC2520WB ±1% Standard (except as noted). 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω Custom resistance values and non-standard tolerances can be manufactured for high quantity applications. Please contact Caddock Applications Engineering. Style WB - Wire Bond Version Model Resistance Min. Max. Power Capability Information CC2015WB CC2520WB 10.0 Ω 10.0 Ω 0.020 Ω 0.025 Ω Max. Chip Temperature Thermal Resistance RθJC Film (J) to Solder Pad (C) (see note 3) 13.9°C/Watt 8.33°C/Watt 150°C 150°C Dimensions in inches and (millimeters) A B DC .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .040 min. (1.02 min.) .200 ±.007 (5.08 ±.18) .150 ±.007 (3.81 ±.18) .050 min. (1.27 min.) .027 ±.003 (.69 ±.08) Comments Aluminum wire to be used for bonding .027 ±.003 (.69 ±.08) Aluminum wire to be used for bonding Note 3: Thermal Resistance - In High Power Applications where the circuit board material provides high heat sinking benefits (such as IMS, Alumina, or other) the thermal resistance of the chip resistor is useful to establish the maximum power capability of the chip resistor in the application. The film temperature is measured at the center of the resistor element and the solder pad temperature is measured at the soldered interface with the circuit board. Maximum temperature of the chip resistor (at the center of chip) should not exceed 150 °C through the temperature range of the application. WB Resistor mounting Circuit board: IMS, Ceramic (Alumina) , or other. Sense Wire Current Wire Film Temperature Measuring Point Solder pad, soldered interface with circuit board. Sense Wire Current Wire Sense connection shall be made in the crosshatched portion of the termination pad. .055 (1.40) centered Location for Sense (Potential) Connection: General Information for Type CC - Style FC and Style WB - Chip Resistors Solder attachment note: Style FC has a bare ceramic back surface. The recommended solders for flip chip solder attachment are 62Sn / 36Pb / 2Ag, 96.5Sn / 3.5Ag, or standard Sn / Ag / Cu solder alloys. Style WB has a metallized back surface for soldering to a substrate or a heat sink. The recommended solders to be used are 62Sn / 36Pb / 2Ag, 96.5Sn / 3.5Ag, or standard Sn / Ag / Cu solder alloys. A D B C Dimensions in inches and (millimeters) is a hybrid mountable version with metallized pads for wire bonding utilizing aluminum wire and a metallized back surface for solder attachment of the back surface to a heat sinking substrate. Page 2 of 2 Type CC Low Resistance Precision Chip Resistors 27.1 IL106.0802 Sales and Corporate Office Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K 1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004 Sales and Corporate Office
Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K 1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004 Sales and Corporate Office
Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K 1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004 UK & Ireland Distributors Hurst Green • Surrey • RH8 9AX • UK Email • sales@rhopointcomponents.com Web • www.rhopointcomponents.com Tel: +44 (0) 870 608 1188 Sales and Corporate Office
Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K 1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004 RHOPOINT COMPONENTS LTD. Holland Road Hurst Green Oxted, Surrey, RH8 9AX Tel: +44 (0)1883 717988 Fax: +44 (0)1883 712938 e-mail: sales@rhopointcomponents.com web: www.rhopointcomponents.comRHOPOINT COMPONENTS LTD. IL-110.019 CBA1.500 ± .125 (38.10 ± 3.18) RATED POWER OR RATED VOLTAGE, % AMBIENT TEMPERATURE, °C 100 25 75 125 175 225 275 For immediate engineering assistance in developing Low Ratio TC matched high voltage resistor sets, call or write our Applications Engineering and we will be pleased to offer the best solution from our high voltage resistor product capabilities. Derating Curve: DIMENSIONS IN INCHES AND (MILLIMETERS) Design Assistance in Developing High Voltage Resistor Sets with Low TC Tracking. Model Number: Resistor Value: Tolerance MG680 MG712 MG714 MG715 MG725 MG720 MG660 MG716 MG721 MG745 MG810 MG815 MG735 MG730 MG717 MG785 MG731 MG740 Most models are available with Caddock's Non-inductive Serpentine Pattern MG650 MG710 MG750 MG780 Certain products shown in this catalog are covered by one or more patents, there are also patents pending. N Non-inductive performance with Caddock's exclusive design MG655 Type MG Precision High Voltage Resistors Page 2 of 2 RHOPOINT COMPONENTS LTD. Holland Road Hurst Green Oxted, Surrey, RH8 9AX Tel: +44 (0)1883 717988 Fax: +44 (0)1883 712938 e-mail: sales@rhopointcomponents.com web: www.rhopointcomponents.com RHOPOINT COMPONENTS LTD. IL-110.019 C B A 1.500± .125 (38.10± 3.18) RATED POWER OR RATED VOLTAGE, % AMBIENT TEMPERATURE, °C 100 25 75125 175 225 275 For immediate engineering assistance in developing Low Ratio TC matched high voltage resistor sets, call or write our Applications Engineering and we will be pleased to offer the best solution from our high voltage resistor product capabilities. Derating Curve: DIMENSIONS IN INCHES AND (MILLIMETERS) Design Assistance in Developing High Voltage Resistor Sets with Low TC Tracking. Model Number: Resistor Value: Tolerance MG680 MG712 MG714 MG715 MG725 MG720 MG660 MG716 MG721 MG745 MG810 MG815 MG735 MG730 MG717 MG785 MG731 MG740 Most models are available with Caddock's Non-inductive Serpentine Pattern MG650 MG710 MG750 MG780 Certain products shown in this catalog are covered by one or more patents, there are also patents pending. N Non-inductive performance with Caddock's exclusive design MG655 Type MG Precision High Voltage Resistors Page 2 of 2 RHOPOINT COMPONENTS LTD. Holland Road Hurst Green Oxted, Surrey, RH8 9AX Tel: +44 (0)1883 717988 Fax: +44 (0)1883 712938 e-mail: sales@rhopointcomponents.com web: www.rhopointcomponents.comRHOPOINT COMPONENTS LTD. IL-110.019 CBA1.500 ± .125 (38.10 ± 3.18) RATED POWER OR RATED VOLTAGE, % AMBIENT TEMPERATURE, °C 100 25 75 125 175 225 275 For immediate engineering assistance in developing Low Ratio TC matched high voltage resistor sets, call or write our Applications Engineering and we will be pleased to offer the best solution from our high voltage resistor product capabilities.Derating Curve: DIMENSIONS IN INCHES AND (MILLIMETERS) Design Assistance in Developing High Voltage Resistor Sets with Low TC Tracking. Model Number: Resistor Value: Tolerance MG680 MG712 MG714 MG715 MG725 MG720 MG660 MG716 MG721 MG745 MG810 MG815 MG735 MG730 MG717 MG785 MG731 MG740 Most models are available with Caddock's Non-inductive Serpentine Pattern MG650 MG710 MG750 MG780 Certain products shown in this catalog are covered by one or more patents, there are also patents pending. N Non-inductive performance with Caddock's exclusive design MG655 Type MG Precision High Voltage Resistors Page 2 of 2 RHOPOINT COMPONENTS LTD web: www.rhopointcomponents.com e-mail: sales@rhopointcomponents.com RHOPOINT COMPONENTS LTD Holland Road, Hurst Green, Oxted, Surrey, RH8 9AX Phone: +44 (0) 1883 717988 Fax: +44 (0) 1883 712938 CC1512FC Standard Resistance Values: Tolerance CC1512FC ±1% Standard (except as noted). CC2015FC Standard Resistance Values: Tolerance CC2015FC ±1% Standard (except as noted). CC2520FC Standard Resistance Values: 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% Tolerance CC2520FC ±1% Standard (except as noted). 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.010 Ω 5% 0.015 Ω 5% 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω Custom resistance values and non-standard tolerances can be manufactured for high quantity applications. Please contact Caddock Applications Engineering. Recommended Circuit Board Layout (current and sense connections): Fig. 1A: Kelvin layout recom- mended for values below 0.20Ω Fig. 1B: Kelvin layout recommended for higher resistance values.
- Style FC - Flip Chip version for surface mount applications. Style WB - Wire Bond version for hybrid applications with metallized back surface for solder down heat sinking of the chip, includes bondable termination pads to receive aluminum wire bonds.
- Thermal resistance is provided to optimize high power designs when utilizing higher thermal conductivity circuit board substrates such as IMS or Alumina.
- Resistance range down to 0.010 ohm at ±5%, 0.050 ohm at ±2%, and 0.10 ohm at ±1%.
- Low inductance provides excellent high frequency and pulse response
- High pulse handling and overload capability.
- Best choice for switching power supplies, motor speed controls, and high current sensing applications. Type CC Low Resistance Precision Chip Resistors Style FC - Flip Chip Version is a surface mount version with solderable pads for flip chip soldering. Note 1: General Applications - The power rating for general applications is based upon 0.5 sq. in. (300 mm2) of termination pad or trace area (2 oz. copper) connected to each end of the resistor. Maximum chip temperature is 150 °C. Use Derating Curve to derate appropriately for the maximum ambient temperature and for the temperature limitations of the adjacent materials. Note 2: Thermal Resistance - In High Power Applications where the circuit board material provides high heat sinking benefits (such as IMS, Alumina, or other) the thermal resistance of the chip resistor is useful to establish the maximum power capability of the chip resistor in the application. The film temperature is measured at the center of the resistor element and the solder pad temperature is measured at the center of the termination pad (point X in the recommended circuit layouts shown below). Maximum temperature of the chip resistor (at the center of chip) should not exceed 150 °C through the temperature range of the application . Style FC Derating Curve For General Application 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω S S X X C C C X X SS C C C = Current connection S = Sense connection Note: Actual width of current trace is based on magnitude of current. Point of connection should be in the area shown. 0.015 Ω0.010 Ω Model Resistance Min. Max. Power Capability Information CC1512FC CC2015FC CC2520FC 10.0 Ω0.020 Ω 10.0 Ω 0.020 Ω 10.0 Ω 0.020 Ω 0.010 Ω 0.025 Ω 150°C0.75 Watt Max. Chip Temperature General Applications High Power Applications Thermal Resistance - RθJC Film (J) to Solder Pad (C) (see note 2) 22.7°C/Watt Power Rating at 70° C (see note 1) 22.7°C/Watt 16.0°C/Watt 13.0°C/Watt 11.5°C/Watt 150°C 150°C 150°C 150°C Dimensions in inches and (millimeters) .150 ±.007 (3.81 ±.18) A B D .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) C .027 ±.005 (.69 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .065 min. (1.66 min.) .032 ±.005 (.81 ±.13) .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .040 min. (1.02 min.) .041 ±.004 (1.04 ±.10) .200 ±.007 (5.08 ±.18) .150 ±.007 (3.81 ±.18) .050 min. (1.27 min.) .027 ±.003 (.69 ±.08) .150 ±.007 (3.81 ±.18) .120 ±.007 (3.05 ±.18) .035 min. (0.89 min.) .022 ±.003 (.56 ±.08) Comments Solder Coated Pads Solderable Pads Solderable Pads Solder Coated Pads Solderable Pads
AMBIENT TEMPERATURE, C RATED LOAD, % o 100 25 100 15070 Page 1 of 2 27.1 IL106.0802 RHOPOINT COMPONENTS LTD web: www.rhopointcomponents.com e-mail: sales@rhopointcomponents.com RHOPOINT COMPONENTS LTD Holland Road, Hurst Green, Oxted, Surrey, RH8 9AX Phone: +44 (0) 1883 717988 Fax: +44 (0) 1883 712938 CC 2520 FC - 0.10 - 1% Type CC Physical Size 1512 = 0.150” x 0.120” 2015 = 0.200” x 0.150” 2520 = 0.250” x 0.200” Style: FC or WB Resistor Value ( See charts for availability Tolerance: ± 5% below 0.050Ω ± 2% 0.050Ω to 0.099Ω ± 1% 0.10Ω and above Specifications: Temperature Coefficient: TC referenced to +25°C, ∆R taken at +150°C. 0.50 ohm and above, -20 to +80 ppm/°C 0.050 ohm to 0.49 ohm, 0 to +200 ppm/°C below 0.050 ohm, 0 to +300 ppm/°C Inductance: Less than 5 nH typical Load Life: 1000 hours at rated power, based upon 150°C max. chip temperature, Momentary Overload: 1.5 times rated power, for 5 seconds, ∆R ± (0.5% + 0.0005 ohm) Operating Temperature: -55°C to +150 °C Measurement Note: All measurements are taken using Kelvin connections per the recommended connection locations. Ordering Information: Ko signifies tape thickness and dimension 12mm 0.473” Ao Bo 7” dia. (178 mm) .512” arbor hole (13mm) Packaging information: Style FC, flip chip resistors, are shipped with the bare ceramic side up in the pocket, with the solderable pads fac- ing down. Style WB , wire bondable resistors, are shipped with the wire bondable pads facing up in the pocket. The illustration shows the orientation of the CC1512 and CC2015 chip resistors in the tape. The CC2520 resistors chips are rotated 90 ° from what is shown in the illustration. 0.135” (3.43mm) Carrier Tape and pocket dimensions: Tape is 12mm Carrier Tape (8mm pitch) 0.167” (4.24mm) 0.037” (0.94mm) 0.189” (4.80mm) Size 2015 0.209” (5.31mm) 0.087” (2.21mm) 0.271” (6.88mm) Size 2520 0.216” (5.49mm) 0.066” (1.68mm) Ao Bo Ko Size 1512 Full reel quantities: 1500 pieces per reel for CC1512 1000 pieces per reel for CC2015 and CC2520 Quantities of less than 250 will be shipped in tape without reel and without tape leader at the option of Caddock. Tape dimensions and materials will be consistent with EIA-481-1. Reels will be marked with a label containing Caddock logo, part number, resistor value, tolerance, packaging date, and quantity. CC2015WB Standard Resistance Values: Tolerance CC2015WB±1% Standard (except as noted). CC2520WB Standard Resistance Values: 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% Tolerance CC2520WB ±1% Standard (except as noted). 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω Custom resistance values and non-standard tolerances can be manufactured for high quantity applications. Please contact Caddock Applications Engineering. Style WB - Wire Bond Version Model Resistance Min. Max. Power Capability Information CC2015WB CC2520WB 10.0 Ω 10.0 Ω 0.020 Ω 0.025 Ω Max. Chip Temperature Thermal Resistance RθJC Film (J) to Solder Pad (C) (see note 3) 13.9°C/Watt 8.33°C/Watt 150°C 150°C Dimensions in inches and (millimeters) A B DC .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .040 min. (1.02 min.) .200 ±.007 (5.08 ±.18) .150 ±.007 (3.81 ±.18) .050 min. (1.27 min.) .027 ±.003 (.69 ±.08) Comments Aluminum wire to be used for bonding .027 ±.003 (.69 ±.08) Aluminum wire to be used for bonding Note 3: Thermal Resistance - In High Power Applications where the circuit board material provides high heat sinking benefits (such as IMS, Alumina, or other) the thermal resistance of the chip resistor is useful to establish the maximum power capability of the chip resistor in the application. The film temperature is measured at the center of the resistor element and the solder pad temperature is measured at the soldered interface with the circuit board. Maximum temperature of the chip resistor (at the center of chip) should not exceed 150 °C through the temperature range of the application. WB Resistor mounting Circuit board: IMS, Ceramic (Alumina) , or other. Sense Wire Current Wire Film Temperature Measuring Point Solder pad, soldered interface with circuit board. Sense Wire Current Wire Sense connection shall be made in the crosshatched portion of the termination pad. .055 (1.40) centered Location for Sense (Potential) Connection: General Information for Type CC - Style FC and Style WB - Chip Resistors Solder attachment note: Style FC has a bare ceramic back surface. The recommended solders for flip chip solder attachment are 62Sn / 36Pb / 2Ag, 96.5Sn / 3.5Ag, or standard Sn / Ag / Cu solder alloys. Style WB has a metallized back surface for soldering to a substrate or a heat sink. The recommended solders to be used are 62Sn / 36Pb / 2Ag, 96.5Sn / 3.5Ag, or standard Sn / Ag / Cu solder alloys. A D B C Dimensions in inches and (millimeters) is a hybrid mountable version with metallized pads for wire bonding utilizing aluminum wire and a metallized back surface for solder attachment of the back surface to a heat sinking substrate. Page 2 of 2 Type CC Low Resistance Precision Chip Resistors 27.1 IL106.0802 RHOPOINT COMPONENTS LTD web: www.rhopointcomponents.com e-mail: sales@rhopointcomponents.com RHOPOINT COMPONENTS LTD Holland Road, Hurst Green, Oxted, Surrey, RH8 9AX Phone: +44 (0) 1883 717988 Fax: +44 (0) 1883 712938 CC 2520 FC - 0.10 - 1% Type CC Physical Size 1512 = 0.150” x 0.120” 2015 = 0.200” x 0.150” 2520 = 0.250” x 0.200” Style: FC or WB Resistor Value ( See charts for availability Tolerance: ± 5% below 0.050Ω ± 2% 0.050Ω to 0.099Ω ± 1% 0.10Ω and above Specifications: Temperature Coefficient: TC referenced to +25°C, ∆R taken at +150°C. 0.50 ohm and above, -20 to +80 ppm/°C 0.050 ohm to 0.49 ohm, 0 to +200 ppm/°C below 0.050 ohm, 0 to +300 ppm/°C Inductance: Less than 5 nH typical Load Life: 1000 hours at rated power, based upon 150°C max. chip temperature, Momentary Overload: 1.5 times rated power, for 5 seconds, ∆R ± (0.5% + 0.0005 ohm) Operating Temperature: -55°C to +150 °C Measurement Note: All measurements are taken using Kelvin connections per the recommended connection locations. Ordering Information: Ko signifies tape thickness and dimension 12mm 0.473” Ao Bo 7” dia. (178 mm) .512” arbor hole (13mm) Packaging information: Style FC, flip chip resistors, are shipped with the bare ceramic side up in the pocket, with the solderable pads fac- ing down. Style WB , wire bondable resistors, are shipped with the wire bondable pads facing up in the pocket. The illustration shows the orientation of the CC1512 and CC2015 chip resistors in the tape. The CC2520 resistors chips are rotated 90° from what is shown in the illustration. 0.135” (3.43mm) Carrier Tape and pocket dimensions: Tape is 12mm Carrier Tape (8mm pitch) 0.167” (4.24mm) 0.037” (0.94mm) 0.189” (4.80mm) Size 2015 0.209” (5.31mm) 0.087” (2.21mm) 0.271” (6.88mm) Size 2520 0.216” (5.49mm) 0.066” (1.68mm) Ao Bo Ko Size 1512 Full reel quantities: 1500 pieces per reel for CC1512 1000 pieces per reel for CC2015 and CC2520 Quantities of less than 250 will be shipped in tape without reel and without tape leader at the option of Caddock. Tape dimensions and materials will be consistent with EIA-481-1. Reels will be marked with a label containing Caddock logo, part number, resistor value, tolerance, packaging date, and quantity. CC2015WB Standard Resistance Values: Tolerance CC2015WB±1% Standard (except as noted). CC2520WB Standard Resistance Values: 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% Tolerance CC2520WB ±1% Standard (except as noted). 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω Custom resistance values and non-standard tolerances can be manufactured for high quantity applications. Please contact Caddock Applications Engineering. Style WB - Wire Bond Version Model Resistance Min. Max. Power Capability Information CC2015WB CC2520WB 10.0 Ω 10.0 Ω 0.020 Ω 0.025 Ω Max. Chip Temperature Thermal Resistance RθJC Film (J) to Solder Pad (C) (see note 3) 13.9°C/Watt 8.33°C/Watt 150°C 150°C Dimensions in inches and (millimeters) A B DC .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .040 min. (1.02 min.) .200 ±.007 (5.08 ±.18) .150 ±.007 (3.81 ±.18) .050 min. (1.27 min.) .027 ±.003 (.69 ±.08) Comments Aluminum wire to be used for bonding .027 ±.003 (.69 ±.08) Aluminum wire to be used for bonding Note 3: Thermal Resistance - In High Power Applications where the circuit board material provides high heat sinking benefits (such as IMS, Alumina, or other) the thermal resistance of the chip resistor is useful to establish the maximum power capability of the chip resistor in the application. The film temperature is measured at the center of the resistor element and the solder pad temperature is measured at the soldered interface with the circuit board. Maximum temperature of the chip resistor (at the center of chip) should not exceed 150 °C through the temperature range of the application. WB Resistor mounting Circuit board: IMS, Ceramic (Alumina) , or other. Sense Wire Current Wire Film Temperature Measuring Point Solder pad, soldered interface with circuit board. Sense Wire Current Wire Sense connection shall be made in the crosshatched portion of the termination pad. .055 (1.40) centered Location for Sense (Potential) Connection: General Information for Type CC - Style FC and Style WB - Chip Resistors Solder attachment note: Style FC has a bare ceramic back surface. The recommended solders for flip chip solder attachment are 62Sn / 36Pb / 2Ag, 96.5Sn / 3.5Ag, or standard Sn / Ag / Cu solder alloys. Style WB has a metallized back surface for soldering to a substrate or a heat sink. The recommended solders to be used are 62Sn / 36Pb / 2Ag, 96.5Sn / 3.5Ag, or standard Sn / Ag / Cu solder alloys. A D B C Dimensions in inches and (millimeters) is a hybrid mountable version with metallized pads for wire bonding utilizing aluminum wire and a metallized back surface for solder attachment of the back surface to a heat sinking substrate. Page 2 of 2 Type CC Low Resistance Precision Chip Resistors 27.1 IL106.0802 RHOPOINT COMPONENTS LTD web: www.rhopointcomponents.com e-mail: sales@rhopointcomponents.com RHOPOINT COMPONENTS LTD Holland Road, Hurst Green, Oxted, Surrey, RH8 9AX Phone: +44 (0) 1883 717988 Fax: +44 (0) 1883 712938 CC 2520 FC - 0.10 - 1% Type CC Physical Size 1512 = 0.150” x 0.120” 2015 = 0.200” x 0.150” 2520 = 0.250” x 0.200” Style: FC or WB Resistor Value ( See charts for availability Tolerance: ± 5% below 0.050Ω ± 2% 0.050Ω to 0.099Ω ± 1% 0.10Ω and above Specifications: Temperature Coefficient: TC referenced to +25°C, ∆R taken at +150°C. 0.50 ohm and above, -20 to +80 ppm/°C 0.050 ohm to 0.49 ohm, 0 to +200 ppm/°C below 0.050 ohm, 0 to +300 ppm/°C Inductance: Less than 5 nH typical Load Life: 1000 hours at rated power, based upon 150°C max. chip temperature, Momentary Overload: 1.5 times rated power, for 5 seconds, ∆R ± (0.5% + 0.0005 ohm) Operating Temperature: -55°C to +150 °C Measurement Note: All measurements are taken using Kelvin connections per the recommended connection locations. Ordering Information: Ko signifies tape thickness and dimension 12mm 0.473” Ao Bo 7” dia. (178 mm) .512” arbor hole (13mm) Packaging information: Style FC, flip chip resistors, are shipped with the bare ceramic side up in the pocket, with the solderable pads fac- ing down. Style WB , wire bondable resistors, are shipped with the wire bondable pads facing up in the pocket. The illustration shows the orientation of the CC1512 and CC2015 chip resistors in the tape. The CC2520 resistors chips are rotated 90° from what is shown in the illustration. 0.135” (3.43mm) Carrier Tape and pocket dimensions: Tape is 12mm Carrier Tape (8mm pitch) 0.167” (4.24mm) 0.037” (0.94mm) 0.189” (4.80mm) Size 2015 0.209” (5.31mm) 0.087” (2.21mm) 0.271” (6.88mm) Size 2520 0.216” (5.49mm) 0.066” (1.68mm) Ao Bo Ko Size 1512 Full reel quantities: 1500 pieces per reel for CC1512 1000 pieces per reel for CC2015 and CC2520 Quantities of less than 250 will be shipped in tape without reel and without tape leader at the option of Caddock. Tape dimensions and materials will be consistent with EIA-481-1. Reels will be marked with a label containing Caddock logo, part number, resistor value, tolerance, packaging date, and quantity. CC2015WB Standard Resistance Values: Tolerance CC2015WB±1% Standard (except as noted). CC2520WB Standard Resistance Values: 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% Tolerance CC2520WB ±1% Standard (except as noted). 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω 0.020 Ω 5% 0.025 Ω 5% 0.030 Ω 5% 0.033 Ω 5% 0.040 Ω 5% 0.050 Ω 2% 0.075 Ω 2% 0.10 Ω 0.15 Ω 0.20 Ω 0.25 Ω 0.30 Ω 0.33 Ω 0.40 Ω 0.50 Ω 0.75 Ω 1.00 Ω 1.50 Ω 2.00 Ω 2.50 Ω 3.00 Ω 3.30 Ω 4.00 Ω 5.00 Ω 7.50 Ω 8.00 Ω 10.0 Ω Custom resistance values and non-standard tolerances can be manufactured for high quantity applications. Please contact Caddock Applications Engineering. Style WB - Wire Bond Version Model Resistance Min. Max. Power Capability Information CC2015WB CC2520WB 10.0 Ω 10.0 Ω 0.020 Ω 0.025 Ω Max. Chip Temperature Thermal Resistance RθJC Film (J) to Solder Pad (C) (see note 3) 13.9°C/Watt 8.33°C/Watt 150°C 150°C Dimensions in inches and (millimeters) A B DC .250 ±.007 (6.35 ±.18) .200 ±.007 (5.08 ±.18) .040 min. (1.02 min.) .200 ±.007 (5.08 ±.18) .150 ±.007 (3.81 ±.18) .050 min. (1.27 min.) .027 ±.003 (.69 ±.08) Comments Aluminum wire to be used for bonding .027 ±.003 (.69 ±.08) Aluminum wire to be used for bonding Note 3: Thermal Resistance - In High Power Applications where the circuit board material provides high heat sinking benefits (such as IMS, Alumina, or other) the thermal resistance of the chip resistor is useful to establish the maximum power capability of the chip resistor in the application. The film temperature is measured at the center of the resistor element and the solder pad temperature is measured at the soldered interface with the circuit board. Maximum temperature of the chip resistor (at the center of chip) should not exceed 150 °C through the temperature range of the application. WB Resistor mounting Circuit board: IMS, Ceramic (Alumina) , or other. Sense Wire Current Wire Film Temperature Measuring Point Solder pad, soldered interface with circuit board. Sense Wire Current Wire Sense connection shall be made in the crosshatched portion of the termination pad. .055 (1.40) centered Location for Sense (Potential) Connection: General Information for Type CC - Style FC and Style WB - Chip Resistors Solder attachment note: Style FC has a bare ceramic back surface. The recommended solders for flip chip solder attachment are 62Sn / 36Pb / 2Ag, 96.5Sn / 3.5Ag, or standard Sn / Ag / Cu solder alloys. Style WB has a metallized back surface for soldering to a substrate or a heat sink. The recommended solders to be used are 62Sn / 36Pb / 2Ag, 96.5Sn / 3.5Ag, or standard Sn / Ag / Cu solder alloys. A D B C Dimensions in inches and (millimeters) is a hybrid mountable version with metallized pads for wire bonding utilizing aluminum wire and a metallized back surface for solder attachment of the back surface to a heat sinking substrate. Page 2 of 2 Type CC Low Resistance Precision Chip Resistors 27.1 IL106.0802 Sales and Corporate Office Riverside, California 92507-2364 Phone: (951) 788-1700 Fax: (951) 369-1151 Applications Engineering 17271 North Umpqua Hwy. Roseburg, Oregon 97470-9422 Phone: (541) 496-0700 Fax: (541) 496-0408 e-mail: caddock@caddock.com • web: www.caddock.com For Caddock Distributors listed by country see caddock.com/contact/dist.html © 2004 Caddock Electronics, Inc. C AD KDOC Type MG Precision High Voltage Resistors Specifications: Resistance Tolerance: Resistance Range Tolerance 1%, 0.5%, 0.25%, 0.1%Standard St'd with "-15" rating Extended Range 1% Resistance Range Overload/Overvoltage, R N/A 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Models with low inductance construction are in shaded areas. Models with Caddock's Non-Inductive Resistance Pattern are in non-shaded areas. Standard and St'd with "-15" rating 80 ppm/C from +25C to +105C, -200 ppm/C to +50 ppm/C from -15C to +25C. Resistance Range 80 ppm/C from -15C to +105C, referenced to +25C. TC Specifications Extended Range Resistance Range Load Life, R 0.8% max. 0.5% max.Standard St'd with "-15" rating Extended Range 0.8% max. Dielect. Strength Max. Continuous Oper. Volt. Watt- age Model No. A B C Dimensions in inches and (millimeters)Resistance Standard Max. Extended Max.Min. MG650 .313 .020 (7.95 .51) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG655 .313 .030 (7.95 .76) .109 .025 (2.77 .64) .025 .002 (.64 .05) MG660 .500 .030 (12.70 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG680 .750 .030 (19.05 .76) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG710 1.000 .040 (25.40 1.02) .094 .015 (2.39 .38) .025 .002 (.64 .05) MG712 .400 .060 (10.16 .152) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG714 .562 .060 (14.27 1.52) .150 .030 (3.81 .76) .032 .002 (.81 .05) MG715 .750 .060 (19.05 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG716 1.000 .060 (25.40 1.52) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG717 .710 .050 (18.03 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG720 1.500 .080 (38.10 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG721 1.000 .050 (25.40 1.27) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG725 2.000 .080 (50.80 2.03) .140 .030 (3.56 .76) .025 .002 (.64 .05) MG730 1.500 .080 (38.10 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG731 1.000 .060 (25.40 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG735 2.000 .080 (50.80 2.03) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG740 1.500 .060 (38.10 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG745 3.000 .100 (76.20 2.54) .240 .030 (6.10 .76) .040 .002 (1.02 .05) MG750 2.125 .060 (53.98 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG780 3.125 .060 (79.38 1.52) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG785 4.000 .120 (101.60 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG810 5.000 .120 (127.00 3.05) .315 .030 (8.00 .76) .040 .002 (1.02 .05) MG815 6.000 .120 (152.40 3.05) .350 .040 (8.89 1.02) .040 .002 (1.02 .05) 0.5 0.5 0.6 0.8 1.0 0.6 1.0 1.0 1.5 1.5 2.0 2.0 2.5 3.0 2.6 3.6 3.6 5.0 5.0 7.5 8.0 10.0 15.0 600 600 1,000 2,000 4,000 1,000 1,000 2,000 4,000 2,000 6,000 4,000 10,000 6,000 4,000 10,000 6,000 15,000 10,000 15,000 20,000 25,000 30,000 750 750 750 750 750 750 750 750 750 750 750 750 750 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 1,000 200 200 400 600 800 800 200 400 600 600 1 K 200 1.5 K 500 200 750 300 1 K 400 600 800 1 K 1 K 1,000 Meg 1,250 Meg 2,000 Meg N/A N/A N/A N/A N/A N/A N/A N/A N/A 225 M N/A 300 M N/A 750 M 750 M 1,000 M 1,500 M 1,500 M 2,500 M 3,750 M 5,000 M 6,250 M 10,000 M -15 Min. Now with Extended Resistance Range to 10,000 Megohms and Additional Models Temperature Coefficient as tight as 80 ppm/°C, Combined with Excellent Long-Term Stability and Precision Tolerances. Caddock's Micronox ® resistance films are the source of the Type MG Precision High Voltage Resistors' outstanding combination of performance features:
- Single-resistor values as high as 10,000 Megohms.
- Maximum continuous operating voltages as high as 48,000 volts ("-15" ratings).
- Overvoltage capabilities of 150% of standard working voltages for all models and values, (except "-15" ratings).
- Resistance Tolerances from ±1.0% to ±0.1%.
- Temperature Coefficient, for standard resistance range, of 80 ppm/°C in combination with resistance tolerances as tight as ±0.1%.
- Type MG resistors have demonstrated stability of 0.01% per 1,000 hours in extended load life testing of standard resistance range values. This exceptional performance has been proven through many years of use in equipment that demands the highest reliability and stability, including TWT amplifiers, X-ray systems, geophysical instruments, and medical electronics. Preconditioning for Power and Voltage Ratings All power ratings and maximum operating voltage ratings are for continuous duty. These ratings are based on pre- stress voltage levels applied during the manufacturing process to provide for stable resistor performance even under momentary overload conditions. Maximum operating voltages 60% higher than the values listed in the table may be specified by adding "-15" to the model number (Example: MG750-15). Note that overload and overvoltage ratings do not apply to the "-15" resistors. Resistance ranges for "-15" resistors shown in the table are from "-15 Min." to "Standard Max." Non-Inductive Performance Most models are manufactured with Caddock's Non-Inductive Design which uses a serpentine resistive pattern that provides for neighboring lines to carry current in opposite directions, thereby achieving maximum cancellation of flux fields over the entire length of the resistor. This efficient non-inductive construction is accomplished without derating of any performance advantages. Insulation Resistance: 10,000 Megohms, min. Overload/Overvoltage: 5 times rated power with applied voltage not to exceed 1.5 times max- imum continuous operating voltage for 5 seconds. Type 1: DC Voltage Type 2: DC Voltage or VrmsAC Thermal Shock: Mil-Std-202, Method 107, Cond. C, ΔR 0.25% max. Moisture Resistance: Mil-Std-202, Method 106, ΔR 0.4% max. Load Life: 1,000 hours at +125°C at rated voltage, not to exceed rated power. Solderable Leads Encapsulation: High T emperature Silicone Conformal. Temperature Coefficient: Page 1 of 2 28_IL110.1004