PTFR RESI | Alldatasheet

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eaicis ee = P=) Date: 2023/04/20 NES] (= hm Precision Thin Film Chip Resistor Resistance 100~10MQ Tolerance +0.01% TCR +5ppm/°C Load Life +0.01%

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Precision Thin Film Chip Resistor Precision Thin Film Chip Resistor High Reliability, Low Noise, Moisture Resistance Introduction The long-term stability of thin film chip resistors is the most important. Tight tolerance without good long-term stability is meaningless. The long-term stability of resistors is related to time, power, and temperature. The higher power, higher temperature, and longer time lead to the greater change of resistance. PTFR series launched by Resi have excellent long-term stability. Under rated power at an ambient temperature of +70 °C, the typical change in resistance after 2000 hours is less than 0.01%. In addition, PTFR has excellent TCR performance in temperature range of -55°C to +155°C. ~ r ° In terms of moisture resistance, PTFR adopts an enhanced protective coating to prevent resistive layer from moisture. Under test condition of 85°C, 85%RH and loading 1000 hours, the maximum shift of resistance is less than 500ppm. Larger size, higher rated power, higher resistance, and TCR as low as + 2ppm/°C are available for custom requirements. If the standard specifications cannot meet your needs, please contact our sales. Resi is committed to providing customers with the best precision resistor solutions to meet the needs of GZ customers in instrument, medical, automotive, railway, electric power, and other fields. @ AEC-Q200 Electrical Parameters Size Rated Power Max. Operating Operating E-Series TCR Resistance Tolerance (+70°C) Voltage Temperature Value ppm/"C 2 % 100 tosR<a7 +05 50ST OSS errnoso3 o1w soov geceetsec baa, ggg 251 210, 425 1005R<5.1K 20.01, 10.02, +005, 20.1, 205 £50 osr<a7 «+05 225 475K<R<2.7M +01, £05

XR P=) PTFR em Precision Thin Film Chip Resistor Dimensions Unit: mm Resistor Solder Pad er x jo w 4 T tl - - a - Size L w T D a b © Packaging Quantity —_— Net Weight Per Reel Part Number Information Example: PTFRO402A10KON9 ( PTFR 0402 +0.05% 10KQ +10ppm/°C Standard ) Series Size Tolerance Resistance TCR Code PTFR 0402 T=+40.01% 10RO=10Q V=t5ppm/°C 9=Standard 0603 Q=+0.02% 1K00=10000 N=+10ppm/°C 0-8=Custom 0805 A=40.05% 1M00=10000000 P=+25ppm/°C 1206 B=+0.1% 10M0=100000000 Q=+50ppm/"C D=+#0.5% K=+100ppm/°C For higher/lower resistance, tighter tolerance, higher power, lower TCR and larger size, please contact us.

Nes] SB PTFR erm Precision Thin Film Chip Resistor Performance Test Test Method Standards Typical Max. High Temperature 1000h@+155°C, unpowered AEC-Q200 TEST 3 9R£0.01% ®RL0.1% Storage MIL-STD-202 Method 108 Temperature Cycling -55°C, 30min ~ambient temperature<1min~+125°C, 30min, AEC-Q200 TEST 4 R0.01% ARL0.1% 1000 cycles JESD22 Method JA-104 Bias Humidity +85°C, 85%RH, powered no less than 10% rated power for AEC-Q200 TEST 7 4R+0.025% AR£0.1% 1000h MIL-STD-202 Method 103 Load Life 2000h @ +70°C, rated power, 90min on, 30min off AEC-Q200 TEST 8 ®R+0.01% ARt0.1% MIL-STD-202 Method 108 Resistance to Immerse in solvent for 3 min and wipe 10 times. Three cycles of AEC-Q200 TEST 12 Clear marking. No visible Solvent three solvents. Dry at ambient temperature after cleaning MIL-STD-202 Method 215 damage Mechanical Shock Half Sine Wave, peak acceleration 100g's, pulse duration 6ms, 3 AEC-Q200 TEST 13 R£0.01% ARt0.1% times in each of six directions, on three different axes MIL-STD-202 Method 213 Vibration 10-2KHz, 5g's, 20min/cycle, 12 cycles in each directions of X Y Z AEC-Q200 TEST 14 oR£0.01% oR40.1% MIL-STD-202 Method 204 Resistance to +270°C tin bath for 10s AEC-Q200 TEST 15, 9R£0.01% ®RL0.1% Solder Heat MIL-STD-202 Method 210 Thermal Shock -55°C, 15min~ambient temperature <20s~+155°C, 15min, 300 ‘AEC-Q200 TEST 16 ®RE0.01% sR£0.1% cycles MIL-STD-202 Method 107 Solderability +245°C tin bath for 3s AEC-Q200 TEST 18 No visible damage. VEC 60115-1 4.17 95% minimum coverage TCR -55°C and +85°C, +25°C Ref. AEC-Q200 TEST 19 Within the nominal value range IEC 60115-1 4.8 AEC-Q200 TEST 20 Incomplete burnout, thin pad Fi iit iF fc P| 5 pac lammabilty Flame the sg for 10.c62o0S7 wwicg UL-94 V-0 or V-1 is acceptable and paper not ignited, pine board does not require electrical testing not charred Substrate Bending 0805 and below: 5mm, 1206 1210: 4mm, 2010 2512: 2mm, AEC-Q200 TEST 21 ®R20.01% ARL0.1% duration: 60s AEC-Q200-005 Terminal Strength Apply force 17.7N for 60s AEC-Q200 TEST 22 ®RE0.01% »R£0.1% AEC-Q200-006 Flame Retardance 9-32 VDC (clamping current up to 500A), increment of 1.0VDC, AEC-Q200 TEST 24 Non inflammable at least th for each voltage level ‘AEC-Q200-001 Insulation Apply a DC voltage of 100V between the electrode and the IEC 60115 -1.4.6 1000M0, minimum Resistance substrate for 60s Withstand Apply a AC voltage with an effective maximum overload voltage IEC 60115-1.4.7 No breakdown or flashover Voltage between the electrode and the substrate at a speed of approximately 100V/s for 60s Short Time 2.5x rated voltage, 5s IEC 60115-1 4.13 R0.01% AR£0.1% Overload Low Temperature Unpowered for 1h, powered rated voltage for 45min, IEC 60115-1 4.36 6R£0.01% oR£0.1% Operation Unpowered for 15min

Precision Thin Film Chip Resistor Derating Curve too 55° Tore Poot bo \\ gs. TTT TINT BET Nese Ambient Temperature (°C) Te m pe rat ure Cycl i n g PTFRO805A100RN9 PTFRO805A10KON9 Test Method: CI TTT Tn | 1 a “S84 amin 125% 30min Peg ec FET COT 100 cycles Bo IM opel TT PTT soo soo) LENT TTI TTT vo II IIIS J A EEE sooo L_—LLTTTIa TTI TT fg 40 Loa d Life “so PTFROB0SA100RN9 woos PTFROBOSA10KON9 fle a TT = eee Test Method: CT TT = 70, rated power ig 6 og ' j eee ET en e Co Oh 90min on 30min off, 2000h Ea at Th & Co erin Se Ser steer 2 Tr Sea ae HH HH ec ae FE HE

2 CLE Oo a Co eit i

° 70 so 1000 200 oun ¢ 20s 00 2000 om H ig h Tem pe ratu re PTFRO805A100RN9 PTFRO80SA10KON9 v0 00 Storage 0 0 Test Method: — wo = wo I 4+155°C, unpowered, 1000h. g° “Tt g° a oO 250 500 1000, (Hour) me 0 250 500 1000 (Hour), Bi asHum id ity “so PTFRO80SA100RN9- so PTFRO8OSA10KON9 a = ooo +85°C, 85%RH, 1/10 rated power = 100 Hi = 1000 THEIL 30min on, 30min off, 2000 a” HH Ht 3 1 Pa

2 Cn nh 2

sm Ht Ht = Ht i ~ = con Oh Cn Ch ° 330 sto 1000 200 ow) ° 30 500 1000 200 pawn

XR Ps 5) PTFR erm Precision Thin Film Chip Resistor Reflow Soldering Profile temperature ¢*¢)

250 Peak

Resistor Surface Temperature: Pre-Heat: +130°C~ +180°C,60~90sec. 200 Reflow: Above +220°C,30~90sec. 50 Max. Temperature: +240°C~+250°C, within 10sec. Applicable Solder Composition: Sn-Ag-Cu solder "°° Cycles: limited to 2 (cooling between the first and so Pre-Heat Reflow second reflow) Time Flow Soldering Profile Temperature (°C) Resistor Surface Temperature: 260 Peak Pre-Heat: +100°C~+120°C,60~80sec. 0 Max. Temperature: +255°C~ +265'C.within Ssec. Applicable Solder Composition: Sn-Ag-Cu solder °° Cycles: limited to 2 100

50 Pre-Heat Flow

Precision Thin Film Chip Resistor Construction Protective Coating Inner Electrode Ceramic Substrate Middle Electrode Resistive Layer Outer Electrode Marking 0402 size: E24 & E96 no marking. 0603 & 0805 size: E24 is a three-digit marking. First two digits are significant and the third digit is the number of zeros; E96 no marking. 1206 size: E24 and E96 are four-digit marking. When 10O<R < 100R, Ris used as a decimal point, such as the marking of 75R is 75RO. When 10008R, first three digits are significant and the forth digit is the number of zeros. Size E-Series Value Ulustration Demonstration 0402 £24, £96 ; | No Marking £24 182=1800Q 0603 £96 || No Marking E24 183=180000 0805 £96 || No Marking 1804=18000000

1206 E24, E96

75RO=75Q

XR Ps 5) PTFR ern Precision Thin Film Chip Resistor Packaging Tape Specifications Tape & Reel: 2mm Hole Diameter Belt Hole Do Resistor Th + rN Vy E r i & = | i | ' Y Lk. Ad) Ko -! Size A B E do Ko KI G w T Tape Specifications Tape & Reel: 4mm Hole Diameter Belt Hole Do Ko _ K2 T - es + ry a - E ry + G = a | ’ Y al Y LAL Resistor Ki Size A B E D0 Ko KI k2 G w T

Precision Thin Film Chip Resistor Packaging Tape Specifications Tape & Reel: 4mm Hole Diameter Belt Hole Do Ko | Ka. a oD iy £ - E A

1 G =

B y ' y i} « ’ LAI Ly Kia T Resistor Size A B do Dt ko KI k2 E G w T t Reel Specifications Unit: mm Label r SA | are E | @B le ° Y «< > A @B gc gD gE 240.5 1340.2 21408 180-1.5 60+1

Precision Thin Film Chip Resistor Popular Part Numbers Part Number Size Tolerance Resistance TCR Power Max. Operating Voltage PTFRO603B47RON9- 0603 £0.1% 470 £10ppm/°C o1Ww 100V PTFROG603B47ROP9 0603 £0.1% 479 +£25ppm/°C ow 100 PTFROGO3B51RON9 0603 £0.1% 519 £10ppm/°C ow 100V PTFRO603B51ROP9 0603 +£0.1% 519 +25ppm/°C 0.1W 100V PTFRO603B56ROP9 0603 +£0.1% 562 +25ppm/°C 0.1W 100V PTFROGO3BGBROPS 0603 40.1% 680 25ppm/-C ow 100v PTFRO603B75RON9- 0603 £0.1% 750 +£10ppm/°C o.1W 100V PTFROGO3B91ROP9 0603 40.1% 919 £25ppm/°C ow 100V PTFROGO3B100RN9 0603 40.1% 1009 £10ppm/"C o1w 100 PTFRO603B100RP9 0603 £0.1% 1000 +25ppm/°C o.1W 100V PTFRO603B130RP9 0603 +£0.1% 1300 +25ppm/°C o.1W 100 PTFRO603B160RP9 0603 £0.1% 1600 +25ppm/°C 0.1W 100 PTFRO603B200RN9 0603 +£0.1% 2009 £10ppm/°C ow 100 PTFRO603B200RP9 0603 +£0.1% 2002 £25ppm/°C o.1W 100 PTFRO603B330RP9 0603 +£0.1% 33002 +25ppm/°C 0.1W 100V PTFRO603B360RP9 0603 +£0.1% 360 +25ppm/°C 0.1W 100V, PTFRO603B430RP9 0603 +£0.1% 4300 +25ppm/°C 0.1W 100V. PTFRO603B470RP9 0603 £0.1% 4709 +25ppm/°C o.1W 100 PTFRO603B510RN9_ 0603 0.1% 510Q £10ppm/°C 0.1W 100V. PTFRO603B510RP9 0603 (40.1% 5100 +£25ppm/°C O.1W 100V PTFRO603B560RP9 0603 +£0.1% 560 +25ppm/°C 0.1W 100V, PTFRO603B750RP9 0603 +£0.1% 750 +25ppm/°C 0.1W 100V, PTFRO603B820RP9 0603 0.1% 8202 +25ppm/°C 0.1W 100V PTFRO603B910RP9 0603 +£0.1% 9109 +£25ppm/°C o1Ww 100 PTFRO603B1KOON9 0603 40.1% 1kKQ +10ppm/°C ow 100V PTFRO603B1KOOP9 0603 +0.1% 1KQ +£25ppm/°C o.1W 100 PTFRO603B1K30P9 0603 £0.19 13KQ +£25ppm/°C o1Ww 100V PTFRO603B1KSON9 0603 +£0.1% 1,5KQ. £10ppm/°C 0.1W 100V PTFRO603B1KSOP9 0603 40.1% 1.5KQ. +£25ppm/°C o.1W 100 PTFRO603B2KOON9 0603 0.1% 2kQ £10ppm/°C 0.1W 100V PTFRO603B3K60P9 0603 £0.1% 3.6KQ. +25ppm/°C 0.1W 100V, PTFRO603B3K90P9 0603 £0.1% 3.9KQ +25ppm/°C 0.1W 100V PTFRO603B4K70N9 0603 +£0.1% 4.7KQ +10ppm/°C 0.1W 100V PTFRO603B4K70P9 0603 40.1% 4.7KQ +25ppm/°C 0.1W 100V PTFRO603B5K10N9 0603 £0.19 5.1K +10ppm/°C ow 100V PTFRO603B5K10P9 0603 £0.19 5.1K +£25ppm/°C ow 100 PTFRO603B5K60P9 0603 £0.1% 5.6KQ, +25ppm/°C 0.1W 100V. PTFRO603B6K20P9 0603 £0.1% 6.2KQ +25ppm/°C 0.1W 100V. PTFRO603B6K80P9 0603 0.1% 6.8KQ +25ppm/°C 0.1W 100V PTFRO603B7KSOP9 0603 0.1% 7.5KQ +25ppm/°C 0.1W 100V PTFRO603B8K20P9 0603 +0.1% 8.2KQ +25ppm/°C 0.1W 100V PTFRO603B10KON9 0603 +0.1% 10KQ £10ppm/°C 0.1W 100V. PTFRO603B10KOP9 0603 0.1% 10KQ +25ppm/°C 0.1W 100V PTFRO603B11KOP9 0603 0.1% 11KQ +25ppm/°C 0.1W 100V. PTFRO603B18KOP9 0603 £0.1% 18KQ. +25ppm/°C 0.1W 100V. PTFRO603B20KON9 0603 £0.1% 20kKQ £10ppm/°C 0.1W 100V. PTFRO603B20KOP9 0603 £0.1% 20kKQ +25ppm/°C 0.1W 100V. PTFRO603B22KOP9 0603 £0.1% 22kQ +25ppm/°C 0.1W 100V, PTFRO603B24KOP9 0603 £0.19 24KQ +£25ppm/C ow 100

Precision Thin Film Chip Resistor Popular Part Numbers Part Number Size Tolerance Resistance TCR Power Max. Operating Voltage PTFRO603B30KOP9 0603 40.1% 30KQ £25ppm/°C o1W 100 PTFRO603B33KOP9 0603 £0.1% 33KQ +£25ppm/°C o1W 100V PTFRO603B36KOP9 0603 40.1% 36KQ. +25ppm/°C O.1W 100V PTFRO603B39KOP9 0603 40.1% 39KQ +25ppm/°C o.1W 100V PTFROGO3B43KOP9 0603 20.1% 43KQ £25ppm/"C ow 100V PTFRO603B47KON9 0603 40.1% 4TKO +10ppm/°C o1W 100 PTFRO603B47KOP9 0603 40.1% ATKO +25ppm/°C o1W 100 PTFRO603B51KOP9 0603 40.1% 51KQ +£25ppm/°C o1W 100V PTFRO603B62KOP9 0603 40.1% 62KQ +25ppm/°C ow 100V PTFRO603B91KOP9 0603 40.1% 91K +25ppm/°C o1W 100V PTFRO603B100KN9 0603 40.1% 100K +10ppm/°C o1W 100V PTFRO603B100KP9 0603 40.1% 100K £25ppm/"C o1W 100 PTFRO603B110KP9 0603 40.1% 110KQ +£25ppm/"C o1W 100V PTFRO603B1SOKP9 0603 40.1% 150KQ £25ppm/°C o1W 100V PTFRO603B160KP9 0603 40.1% 160K ++£25ppm/"°C o1Ww 100 PTFRO603B200KN9 0603 40.1% 200K £10ppm/"°C o1Ww 100 PTFRO603B200KP9 0603 40.1% 200K +25ppm/°C o1W 100 PTFRO603B330KP9 0603 40.1% 330KQ +25ppm/°C o1Ww 100V PTFRO80SB47RON9- 0805 40.1% 41a +10ppm/°C 0.13W 150V PTFRO8OSB51RON9- 0805, £0.1% 519 £10ppm/"C 0.13W 150V PTFRO8OSBS6RONO- 0805 40.1% 560 +10ppm/°C 0.13W 150V PTFRO80SB62RON9- 0805 40.1% 620 +10ppm/°C 0.13W 150V PTFRO8OSB68RON9- 0805 40.1% 680 +10ppm/°C 0.13W 150V PTFRO8OSB75RON9- 0805 £0.1% 750 £10ppm/"C 0.13W 150V PTFRO8OSB82RON9- 0805 £0.1% 820 +£10ppm/°C 0.13W 150V PTFRO805B100RN9 0805 40.1% 1000 +10ppm/°C 0.13W 150V PTFRO8OSB100RP9 0805 40.1% 1009 +£25ppm/"°C 0.13W 150V PTFRO805B110RN9- 0805 40.1% 1100 £10ppm/"C 0.13W 150V PTFRO805B120RN9 0805 £0.1% 1200 +10ppm/"C 0.13W 150V PTFRO805B130RN9 0805 40.1% 1300 £10ppm/"C 0.13W 150V PTFRO805B180RN9 0805 £0.1% 1800 +£10ppm/"C 0.13W 150V PTFRO80SB200RN9 0805 40.1% 2000 £10ppm/"C 0.13W 150V PTFRO805B220RN9 0805 £0.1% 2200 £10ppm/"C 0.13W 150V PTFRO80SB240RN9- 0805 £0.1% 2400 £10ppm/"C 0.13W 150V PTFRO805B270RN9 0805 40.1% 2700 £10ppm/"C 0.13W 150V PTFRO80SB300RN9 0805 £0.1% 3000 £10ppm/"C 0.13W 150V PTFRO805SB330RN9 0805 40.1% 3300 £10ppm/"C 0.13W 150V PTFRO80SB390RN9- 0805 £0.1% 3900 £10ppm/"C 0.13W 150V PTFRO80SB430RN9 0805 £0.1% 4300 £10ppm/"C 0.13W 150V PTFRO805B470RN9- 0805 £0.1% 4700 £10ppm/"C 0.13W 150V PTFRO805B510RN9- 0805 £0.1% 5100 £10ppm/"C 0.13W 150V PTFRO80SBSGORN9 0805 40.1% 5600 £10ppm/"C 0.13W 150V PTFRO8OSB680RN9- 0805 40.1% 6800 £10ppm/"C 0.13W 150V PTFRO80SB750RN9 0805 £0.1% 7500 £10ppm/"C 0.13W 150V PTFRO80SB820RN9- 0805 £0.1% 8200 £10ppm/"C 0.13W 150V PTFRO805B910RN9- 0805 £0.1% 9100 £10ppm/°C 0.13W 150V PTFRO805Q1KOOP9 0805 0.02% 1KQ. +25ppm/°C 0.13W 150V PTFRO805B1KOON9 0805 40.1% 1KQ. +10ppm/°C 0.13W 150V PTFRO805B1KOOP9 0805 40.1% 1KQ. +25ppm/°C 0.13W 150V

Precision Thin Film Chip Resistor Popular Part Numbers Part Number Size Tolerance Resistance TCR Power Max. Operating Voltage PTFRO805B1K10N9 0805, +0.1% 1.1KQ. +10ppm/*C 0.13W 150V, PTFRO80SB1K20N9 0805, +0.1% 1.2KQ. +10ppm/*C 0.13W 150V, PTFRO805B1K30N9 0805, ++0.1% 1.3KQ. +10ppm/*C 0.13W 150V, PTFRO805B1KSON9 0805, +0.1% 1.5KQ. +10ppm/*C 0.13W 150V, PTFRO8OSD1K50N9 0805 40.5% 1.5kQ 10ppmrCSS=« BW 1s0ov PTFRO80SB2KOON9 0805, +0.1% 2kQ +10ppm/*C 0.13W 150V, PTFRO80SB2K20N9 0805, +0.1% 2.2K +10ppm/*C 0.13W 150V. PTFRO80SB2K70N9 0805, ++0.1% 2.7kKQ +10ppm/C 0.13W 150V, PTFRO80SB3KOON9 0805, +0.1% 3kKQ +10ppm/*C 0.13W 150V, PTFRO80SB3K60N9 0805, +0.1% 3.6K. +10ppm/°C 0.13W 150V, PTFRO80SB3K90N9 0805, +0.1% 3.9K +10ppm/*C 0.13W 150V, PTFROBOSB4K70N9 0805 £0.1% 47KQ £10ppm/"C 0.13W 150V PTFRO8OSBSK10N9 0805 40.1% 5.1K £10ppm/"C 0.13W 150V PTFRO8OSBSK10P9 0805 £0.1% 5.1K £25ppm/°C 0.13W 150 PTFRO8OSB6K20N9 0805, ++0.1% 6.2KQ +10ppm/*C 0.13W 150V PTFROSOSB6K80N9 0805, ++0.1% 6.8KQ +10ppm/*C 0.13W 150V PTFRO80SB7K50N9 0805 40.1% 75KO £10ppm/°C 0.13W 150V PTFROBOSB8K20N9 0805 40.1% 8.2kKQ £10ppm/"C 0.13W 150V PTFRO80SB10KON9 0805, 40.1% 10KQ. £10ppm/"C 0.13W 150V PTFRO80SB11KON9 0805 £0.1% 11k. £10ppm/"C 0.13W 150V PTFRO80SB13KON9 0805, +0.1% 13KQ. £10ppm/"C 0.13W 150V PTFRO80SB13K7N9 0805, £0.1% 13.7KQ £10ppm/°C 0.13W 150V PTFRO8OSB16KON9 0805, 40.1% 16KQ. £10ppm/"°C 0.13W 150V PTFRO8OSB18KON9 0805 +0.1% 18KQ. £10ppm/"C 0.13W 150V PTFRO80SB24KON9 0805 +£0.1% 24KQ. +10ppm/°C 0.13W 150V PTFRO8OSB33KON9 0805 £0.1% 33KQ. £10ppm/"C 0.13W 150V PTFRO8OSB36KON9 0805 40.1% 36KQ £10ppm/"C 0.13W 150V PTFRO8OSB39KON9 0805 £0.1% 39kKQ £10ppm/"C 0.13W 150V PTFRO80SB47KON9 0805, £0.1% 47KO £10ppm/"C 0.13W 150V PTFRO80SB51KON9 0805, £0.1% 51kKQ. +10ppm/"C 0.13W 150V PTFROBOSBS6KON9 0805, £0.1% 56KQ £10ppm/"C 0.13W 150V PTFRO8OSB62KON9 0805, +0.1% 62kQ +10ppm/"C 0.13W 150V PTFROSOSB68KON9 0805, 40.1% 68KQ +10ppm/°C 0.13W 150V, PTFRO8OSB7SKON9 0805 £0.1% 75kKQ +10ppm/"C 0.13W 150V PTFRO8OSB82KON9 0805 £0.1% 82kQ +10ppm/"C 0.13W 150V PTFRO80SB100KN9 0805 £0.1% 100KQ +10ppm/°C 0.13W 150V PTFRO80SB100KP9 0805 £0.1% 100KQ +25ppm/"°C 0.13W 150V PTFRO80SB110KN9 0805 £0.1% 110KQ +10ppm/"C 0.13W 150V PTFRO80SB120KN9 0805 £0.1% 120KQ +10ppm/"C 0.13W 150V PTFROBOSD15OKN9 0805 405% 150KQ ‘Hoppm/c o13w 150V PTFROBOSB180KN9 0805 40.1% 180KQ ‘HOppm/'c o13w 150 PTFROBOSB200KN9 0805 40.1% 200K2 ‘HOppm/c o13w 150 PTFRO80SB220KN9 0805 £0.1% 220K +10ppm/"C 0.13W 150V PTFRO80SB249KN9 0805 +0.1% 249KO +10ppm/"C 0.13W 150V PTFRO80SB300KN9 0805, +£0.1% 300KQ: +10ppm/°C 0.13W 150V, PTFRO805B330KN9 0805, +£0.1% 330KQ. +10ppm/°C 0.13W 150V, PTFRO8OSB360KN9 0805, +£0.1% 360KQ. £10ppm/°C 0.13W 150V. PTFRO80SB390KN9 0805, +£0.1% 390KQ. £10ppm/°C 0.13W 150V. PTFRO80SB430KN9 0805, +£0.1% 430KQ. +10ppm/°C 0.13W 150V PTFRO80SB470KN9 0805, +£0.1% 470KQ +10ppm/°C 0.13W 150V.

XR P=) PTFR em Precision Thin Film Chip Resistor Revision Version Revised Content Date Approver VO-V1 1.Add a table of the tightest tolerance and lowest TCR corresponding to different 2020/01/16 LFY resistance 2.The tightest tolerance has been optimized from 40.02% to +0.01% 3.Add reliability test charts of load life, bias humidity, temperature cycling and high temperature storage 4.Add a table of Standing Stock Vi-v2 1,.Modify Code in Part Number Information to: 9=standard product, 0-8=custom 2020/02/19 LFY product 2.Upload the latest product image 3.Modify the format of resistance in the table of Standing Stock 4,Unify header and footer V2-V3 1.Add Q=+0.02% in Part Number Information 2020/03/19 YBP v3-V4 1.Add derating curve, with an operating temperature range of -55 °C -+155°C 2020/06/05 LY V4-VS 1.The TCR of 0402 size and greater-than-100Kohm resistance increases 2020/12/09 Lry £10ppm/C V5-V6 1.Temperature of load life: +70°C. Duration: 2000h 2021/11/10 tww v6-v7 1.Change the datasheet style 2023/04/20 LrY 2.Add logo of 3D model diagrams 3.Add packaging dimension information 4.Add resistor structure diagram 5.Add marking information 6.Add recommended solder pad 7.Add reflow soldering curve 8.Add weight information 9.Display revision logs 10.Add disclaimer 11.Temporarily remove 2512 size

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