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High Power Thick Film Chip Resistors 1773204-1 Rev. F 02/2020 VersioDate Dimensions in millimetres unless otherwise specified Dimensions Shown for reference purposes only. Specifications subject to change For Email, phone or live chat, go to: www.te.com/help Key Features Thick Film Resistors with high power to size ratio, ideally suited to industrial and general purpose use Value range from ϭΩ to ϭϬMΩ Seven package sizes Terminal finish matte Sn over Ni Type CRGH Series The resistive element is screen printed and fired, and a passivation layer added. Each resistor is trimmed to tolerance by laser. The pre-scribed tile is then broken into strips, the end plating fired on, and the strips broken into individual components. Final termination finish is electroplated matte Sn over a Ni barrier layer. Characteristics – Electrical Size 0402 0603 0805 1206 1210 2010 2512 Power Rating (W) @70°C Resistance Range 1R0 ~ 10M R10 ~ 10M R10 ~ 10M R10 ~ 10M R10 ~ 10M R10 ~ 10M R10 ~ 10M Tolerance 1% 5% Max. Working Voltage (V) 50 50 150 200 200 200 250 Max. Overload Voltage (V) 100 100 300 400 500 500 500 Dielectric strength 100 300 500 500 500 500 500 Temperature Range -55°C ~ 155°C

High Power Thick Film Chip Resistors 1773204-1 Rev. F 02/2020 VersioDate Dimensions in millimetres unless otherwise specified Dimensions Shown for reference purposes only. Specifications subject to change For Email, phone or live chat, go to: www.te.com/help Power Rating: Resistors shall have a power rating based on continuous load operation at an ambient temperature of 70 ℃ . For temperature in excess of 70 ℃ , The load shall be derated as shown below: Voltage Rating Resistors shall have a rated direct-current (DC) continuous working voltage or an approximate sine-wave root-mean-square (RMS) alternating-current (AC) continuous working voltage at commercial-line frequency and waveform corresponding to the power rating, as determined from the following formula: RCWV = √P x R Where: RCWV = Rated DC or RMS AC continuous working voltage at commercial-line frequency and waveform (volt) P = Power Rating (watt) R = Nominal Resistance (ohm) In no case shall the rated DC or RMS AC continuous working voltage be greater than the applicable maximum value.

High Power Thick Film Chip Resistors 1773204-1 Rev. F 02/2020 VersioDate Dimensions in millimetres unless otherwise specified Dimensions Shown for reference purposes only. Specifications subject to change For Email, phone or live chat, go to: www.te.com/help Construction: Dimensions: Type Dimensions (mm) L W H l 1 l 2

High Power Thick Film Chip Resistors 1773204-1 Rev. F 02/2020 VersioDate Dimensions in millimetres unless otherwise specified Dimensions Shown for reference purposes only. Specifications subject to change For Email, phone or live chat, go to: www.te.com/help Performance Specification Characteristic Limits Test Methods ( JIS C 5201-1 ) Dielectric Withstand Voltage No evidence of flashover mechanical damage, arcing or insulation break down

4.7 Clamped in the trough of a 90℃

metallic v-block and shall be tested at ac potential respectively specified in the type for 60-70 seconds Temperature Coefficient Ϭ.ϭΩ≤R≤Ϭ.ϵϳϲΩ ±100 (CRGH0603 = ±200) ϭΩ ~ ϭϬΩ: ±200PPM/℃ ϭϬ.ϭΩ ~ ϭϬMΩ: ±100PPM/℃ CRGH0402: ϭΩ ~ ϭϬΩ: ± ϰϬϬPPM/℃ ϭϬ.ϭΩ ~ ϭϬϬΩ: ±200PPM/℃ >ϭϬϬΩ: ±100PPM/℃ 4.8 Natural resistance change per temp. degree centigrade R2 -R1 R1(t2-t1) R1: Resistance value at room temperature (T1) R2: Resistance value at room temp. plus 100 ℃(T2) Test pattern: room temp. (T1), room temp. +100℃(T2) Short time overload Resistance change rate is ± ϱ% ;Ϯ.Ϭ% + Ϭ.ϭΩͿ Max. ± ϭ% ;ϭ.Ϭ% + Ϭ.ϭΩͿ Max.

4.13 Permanent resistance change after

the application of a potential of 2.5 times RCWV for 5 seconds Solderability 95 % coverage Min. Wave Solder: Test temperature of solder: 245°C ±3°C dipping time in solder : 2-3 seconds. Soldering heat Resistance change rate is: ± ;ϭ.Ϭ%+Ϭ.ϬϱΩͿ Max.

4.18 Dip the resistor into a solder bath

having a temperature of 260°C±3°C and hold it for 10±1 seconds. Temperature cycling Resistance change rate is ± ϱ% ;ϭ.Ϭ% + Ϭ.ϬϱΩͿ Max. ± ϭ% ;Ϭ.ϱ% + Ϭ.ϬϱΩͿ Max.

4.19 Resistance change after continuous

5 cycles for duty cycle specified below : Step Temperature Time 1 -55℃ ± 3℃ 30 mins 2 Room temp. 10~15 mins 3 +155℃ ± 2℃ 30 mins 4 Room temp. 10~15 mins Humidity Resistance change rate is ± ϱ% ;ϯ.Ϭ% + Ϭ.ϭΩͿ Max. ± 1% (0.5% + Ϭ.ϭΩͿ Max.

4.24 Temporary resistance change after

240 hours exposure in a humidity test chamber controlled at 40±2°C and 90- 95% relative humidity Load life in humidity Resistance change rate is ± ϱ% ;ϯ.Ϭ% + Ϭ.ϭΩͿ Max. ± ϭ% ;ϭ.Ϭ% + Ϭ.ϭΩͿ Max.

7.9 Resistance change after 1,000 hours

(1.5 hours "on", 0.5 hour "off" ) at RCWV in a humidity chamber controlled at 40℃ ± 2℃ and 90 to 95 % relative humidity

High Power Thick Film Chip Resistors 1773204-1 Rev. F 02/2020 VersioDate Dimensions in millimetres unless otherwise specified Dimensions Shown for reference purposes only. Specifications subject to change For Email, phone or live chat, go to: www.te.com/help Performance Specification (continued) Characteristic Limits Test Methods ( JIS C 5201-1 ) Load Life Resistance change rate is ± ϱ% ;ϯ.Ϭ% + Ϭ.ϭΩͿ Max. ± ϭ% ;ϭ.Ϭ% + Ϭ.ϭΩͿ Max.

4.25.1 Permanent resistance change after

1,000 hours operating at RCWV, with duty cycle of (1.5 hours"on", 0.5 hour"off") at 70℃ ± 2℃ ambient Terminal bending Resistance change rate is ± ;ϭ.Ϭ% + Ϭ.ϬϱΩͿ Max.

4.33 Twist of Test Board:

Y/X = 3/90 mm for 60 seconds Marking E24 series 0603 – 2512 3 Digits – first two digits denote significant figures of resistance and third digit denotes number of zeros thereafter. EG 222 = 2K2 Marking for E96 Series 0805 – 2512 4 digits – First three digits denote significant figures of resistance and fourth digit denotes number of zeros thereafter. EG. 1000 = 100R For ohŵiĐ ǀalues ďeloǁ ϭϬϬR letter ͞R͟ deŶotes decimal point. EG 1R80 = ϭRϴ / ϭ.ϴΩ 0402 size chips are not marked 0603 E96 3 digit marking. Resistance Code from table on next page, and Multiplier code from table below Multiplier Code Code A B C D E F G H X Y Z Mult. 10⁰ 10¹ 10² 10³ 10Ϻ 10ϻ 10ϼ 10Ͻ 10⁻¹ 10⁻² 10⁻³ Coding Formula Example 10K2 = 102 X 10² = 02C ↓ ↓ XX X 02 C Res. Code Multiplier Code 33R2 = 332 X ϭϬ⁻¹ = 51X ↓ ↓ 51 X

High Power Thick Film Chip Resistors 1773204-1 Rev. F 02/2020 VersioDate Dimensions in millimetres unless otherwise specified Dimensions Shown for reference purposes only. Specifications subject to change For Email, phone or live chat, go to: www.te.com/help Resistance Code Label Label shall be marked with the following item : A. Nominal Resistance and Resistance Tolerance B. Power Rating and Size C. Quantity and description D. Part No. E. Lot No. Ex.

High Power Thick Film Chip Resistors 1773204-1 Rev. F 02/2020 VersioDate Dimensions in millimetres unless otherwise specified Dimensions Shown for reference purposes only. Specifications subject to change For Email, phone or live chat, go to: www.te.com/help Packing Specification: Tape dimensions (mm) A. Paper Taping Type A±0.2 B±0.2 C±0.05 ØD+0.1 Type A±0.2 B±0.2 C±0.05 ØD+0.1 B. Embossed Taping Type A ±0.2 B ±0.2 C ±0.05 ØD+0.1 ØD1+0.1 E ±0.1 F ±0.05 G ±0.1 W ±0.2 T ±0.1 * Peeling Strength of Top Cover Tape Test Condition: 0.1 to 0.7 N at a peel-off speed of 300 mm / min.

High Power Thick Film Chip Resistors 1773204-1 Rev. F 02/2020 VersioDate Dimensions in millimetres unless otherwise specified Dimensions Shown for reference purposes only. Specifications subject to change For Email, phone or live chat, go to: www.te.com/help Reel Dimension (mm) Type Taping Reel Quantity

0402 Paper 10,000 2 13 21 60 178 10

0603 Paper 5,000 2 13 21 60 178 10

0805 Paper 5,000 2 13 21 60 178 10

1206 Paper 5,000 2 13 21 60 178 10

1210 Paper 5,000 2 13 21 60 178 10

2010 Embossed 4,000 2 13 21 60 178 13.8 2512 Embossed 4,000 2 13 21 60 178 13.8 How To Order CRGH 0603 J 10K Common Part Size Tolerance Resistance Value CRGH - High Power Thick Film Chip Resistor 0402 0603 0805 1206 1210 2010 2512 F - ±1% J - ±5% ϭ ohŵ ;ϭΩͿ ϭRϬ ϭK ohŵ ;ϭϬϬϬΩͿ ϭKϬ ϭϬϬK ohŵ ;ϭϬϬϬϬϬΩͿ 100K ϭM ohŵ ;ϭϬϬϬϬϬϬΩͿ ϭMϬ