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RN73B1ETD1001F Datasheet(PDF) 2 Page - MERITEK ELECTRONICS CORPORATION |
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RN73B1ETD1001F Datasheet(HTML) 2 Page - MERITEK ELECTRONICS CORPORATION |
2 / 5 page Rev. 7 Precision Thin Film Chip Resistors RN73 Series Standard Electrical Specifications Item Type Power Rating at 70°C Operating Temp. Range Max. Operating Voltage Max. Overload Voltage Resistance Range TCR (PPM/°C) ±0.05% ±0.1% ±0.25% ±0.5% ±1% 1H (0201) 1/32W -55 ~ +155°C 15V 30V - 49.9Ω - 5KΩ ±25 49.9Ω - 33KΩ ±50 1E (0402) 1/16W -55 ~ +155°C 25V 50V - 10Ω - 205KΩ ±25 10Ω - 205KΩ 1Ω - 205KΩ ±50 1J (0603) 1/16W -55 ~ +155°C 50V 100V 4.7Ω -332KΩ 4.7Ω - 1MΩ 2Ω - 1MΩ ±25 1Ω - 1MΩ ±50 2A (0805) 1/10W -55 ~ +155°C 100V 200V 4.7Ω -511KΩ 4.7Ω - 2MΩ 1Ω - 2MΩ ±25 ±50 2B (1206) 1/8W -55 ~ +155°C 150V 300V 4.7Ω - 1MΩ 4.7Ω - 2.5MΩ 1Ω - 2.5MΩ ±25 ±50 2E (1210) 1/4W 2H (2010) 1/4W -55 ~ +155°C 150V 300V 4.7Ω - 1MΩ 4.7Ω - 3MΩ 1Ω - 3MΩ ±25 ±50 3A (2512) 1/2W Operating Voltage=√(P*R) or Max. operating voltage listed above, whichever is lower. Overload Voltage=2.5*√(P*R) or Max. overload voltage listed above, whichever is lower. Viking is capable of manufacturing the optional spec based on customer’s requirement. Lower Resistance:1~10Ω Special Electrical Specifications Item Type Power Rating at 70°C Operating Temp. Range Max. Operating Voltage Max. Overload Voltage Resistance Range TCR (PPM/°C) ±0.01% ±0.05% ±0.1% 1E (0402) 1/16W -55 ~ +155°C 25V 50V 49.9Ω - 5KΩ ±5 49.9Ω - 12KΩ ±10 49.9Ω - 12KΩ 49.9Ω - 70KΩ ±15 1J (0603) 1/16W -55 ~ +155°C 50V 100V 24.9Ω - 15KΩ ±5 24.9Ω - 100KΩ 4.7Ω - 332KΩ ±10 ±15 2A (0805) 1/10W -55 ~ +155°C 100V 200V 24.9Ω - 30KΩ ±5 24.9Ω - 200KΩ 4.7Ω - 511KΩ ±10 ±15 2B (1206) 1/8W -55 ~ +155°C 150V 300V 24.9Ω - 50KΩ ±5 24.9Ω - 500KΩ 4.7Ω - 1MΩ ±10 ±15 2E (1210) 1/ 4W -55 ~ +155°C 150V 300V 24.9Ω - 50KΩ ±5 24.9Ω - 500KΩ 4.7Ω - 1MΩ ±10 ±15 2H (2010) 1/4W -55 ~ +155°C 150V 300V 24.9Ω - 100KΩ ±5 24.9Ω - 500KΩ 4.7Ω - 1MΩ ±10 ±15 3A (2512) 1/2W -55 ~ +155°C 150V 300V 24.9Ω - 100KΩ ±5 24.9Ω - 500KΩ 4.7Ω - 1MΩ ±10 ±15 Operating Voltage=√(P*R) or Max. operating voltage listed above, whichever is lower. Overload Voltage=2.5*√(P*R) or Max. overload voltage listed above, whichever is lower. |
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