Datasheet 3D Model

CP235RAK Series

Low Profile Chip Inductors

Our CP235RAK Series inductors have a maximum height reduced to 0.45 mm – 30% lower profile than competitive products. 23 inductance values from 1.2 to 56 nH.
  • Maximum height reduced to 0.45 mm – 30% lower profile than competitive products.
  • 23 inductance values from 1.2 to 56 nH.
  • Excellent Q Factor performance – up to 83 at 2.4 GHz.
  • Very high self-resonant frequencies – as high as 27.5 GHz.
  • High current handling capability – up to 2.3 A.
  • Matte tin over nickel over silver-platinum-glass frit terminations.

Looking for the commercial version of this part? See Coilcraft 0402CT Series
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Specifications

Electrical specifications at 25°C.

Part number 1 Inductance (nH) 2 Tolerance (%) 3 900 MHz 1.7 GHz 2.4 GHz Q min
@ 250 MHz 4
SRF min (GHz) 5 DCR max (mΩ) 6 Imax (mA)
Q typ 4 Q typ 4 Q typ 4
CP235RAK1N2JRZ 1.2 5 33 47 58 15 5.0 35 700
CP235RAK2N0_RZ 2.0 5,3,2 40 56 70 16 5.0 40 700
CP235RAK3N0_RZ 3.0 5,3,2 40 60 76 16 5.0 50 700
CP235RAK3N9_RZ 3.9 5,3,2 46 66 83 19 5.0 70 700
CP235RAK4N7_RZ 4.7 5,3,2 42 59 73 17 5.0 60 700
CP235RAK5N6_RZ 5.6 5,3,2 47 68 83 19 5.0 80 700
CP235RAK6N8_RZ 6.8 5,3,2 48 68 82 21 5.0 70 700
CP235RAK7N5_RZ 7.5 5,3,2 47 66 81 20 5.0 80 700
CP235RAK8N2_RZ 8.2 5,3,2 49 68 84 20 5.0 80 700
CP235RAK9N0_RZ 9.0 5,3,2 50 68 82 21 5.0 100 680
CP235RAK9N5_RZ 9.5 5,3,2 47 64 77 20 5.0 100 680
CP235RAK10N_RZ 10 5,3,2 46 61 70 20 5.0 110 630
CP235RAK12N_RZ 12 5,3,2 45 60 68 19 5.0 135 590
CP235RAK15N_RZ 15 5,3,2 48 63 69 21 5.0 150 560
CP235RAK16N_RZ 16 5,3,2 44 58 65 20 5.0 165 530
CP235RAK18N_RZ 18 5,3,2 45 59 64 19 5.0 240 530
CP235RAK20N_RZ 20 5,3,2 45 57 61 20 5.0 300 470
CP235RAK22N_RZ 22 5,3,2 44 56 60 19 4.5 260 420
CP235RAK27N_RZ 27 5,3,2 45 55 58 21 4.0 360 350
CP235RAK33N_RZ 33 5,3,2 46 56 53 21 3.9 400 320
CP235RAK39N_RZ 39 5,3,2 49 58 - 18 3.5 825 180
CP235RAK47N_RZ 47 5,3,2 43 49 - 19 3.3 900 180
CP235RAK56N_RZ 56 5,3,2 45 53 - 20 3.1 1250 140
Notes
  1. When ordering, specify tolerance, termination, and screening codes: e.g. CP235RAK56NJRZ.
  2. Inductance measured at 250 MHz, 0.1 Vrms, 0 Adc using Coilcraft SMD-A fixture in Agilent/HP 4287A impedance analyzer.
  3. Tolerances in bold are stocked for immediate shipment.
  4. Q is measured using Agilent/HP4991A with Agilent/HP 16197 test fixture.
  5. SRF is measured on an Agilent 8753ES (or equivalent) with a Coilcraft CCF1232 test fixture.
  6. DCR is measured on a Keithly 580 micro-ohmmeter (or equivalent) with a Coilcraft CCF1010 test fixture.

Tolerance:

  • G = 2%
  • H = 3%
  • J = 5%

Termination:

  • R = Matte tin over nickel over silver-platinum-glass frit.
  • P = Tin-lead (63/37) over tin over nickel over silverplatinum-glass frit.
  • Q = Tin-silver-copper (95.5/4/0.5) over tin over nickel over silver-platinum-glass frit.

Screening:

  • Z = Unscreened
  • = Coilcraft CP-SA-10001 Group A
  • Screening performed to the document’s latest revision.
  • Lot qualification (Group B) available.
  • Custom testing also available.
  • Country of origin restrictions available; prefix options G or F.
Environmental
Ambient temperature range:
–40°C to +125°C with Irms current.
Storage temperature range:
Component: –55°C to +140°C.
Tape and reel packaging: –55°C to +80°C.
Maximum part temperature:
+140°C (ambient + temp rise).
Failures in Time (FIT) / Mean Time Between Failures (MTBF):

Performance curves

Typical L vs Frequency

Typical Q vs Frequency

Physical characteristics

cp235rak_dim.PNG

General specification

Core Material:
Ceramic
Weight:
0.6 – 0.8 mg
Packaging:
2000/7″reel; Paper tape: 8 mm wide, 0.6 mm thick, 2 mm pocket spacing.
Temperature coefficient of inductance:
+25 to +125 ppm/°C.

Soldering/Washing

Moisture Sensitivity Level (MSL):
1 (unlimited floor life at <30°C / 85% relative humidity).
Resistance to soldering heat:
Max three 40 second reflows at +260°C, parts cooled to room temperature between cycles.
Refer to Soldering Coilcraft Components before soldering.
PCB Washing:
Tested to MIL-STD-202 Method 215 plus an additional aqueous wash.
See Doc787_PCB_Washing.pdf.