CF18JT200R >
CF18JT200R
Stackpole Electronics Inc
RES 200 OHM 5% 1/8W AXIAL
1413 Pcs New Original In Stock
200 Ohms ±5% 0.125W, 1/8W Through Hole Resistor Axial Flame Retardant Coating, Safety Carbon Film
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CF18JT200R Stackpole Electronics Inc
5.0 / 5.0 - (222 Ratings)

CF18JT200R

Product Overview

6414947

DiGi Electronics Part Number

CF18JT200R-DG
CF18JT200R

Description

RES 200 OHM 5% 1/8W AXIAL

Inventory

1413 Pcs New Original In Stock
200 Ohms ±5% 0.125W, 1/8W Through Hole Resistor Axial Flame Retardant Coating, Safety Carbon Film
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 1 0.0040 0.0040
  • 200 0.0016 0.3200
  • 500 0.0015 0.7500
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CF18JT200R Technical Specifications

Category Through Hole Resistors

Packaging Cut Tape (CT)

Series CF

Product Status Active

Resistance 200 Ohms

Tolerance ±5%

Power (Watts) 0.125W, 1/8W

Composition Carbon Film

Features Flame Retardant Coating, Safety

Temperature Coefficient 0/ -400ppm/°C

Operating Temperature -55°C ~ 155°C

Package / Case Axial

Supplier Device Package Axial

Size / Dimension 0.067" Dia x 0.130" L (1.70mm x 3.30mm)

Height - Seated (Max) -

Number of Terminations 2

Failure Rate -

Datasheet & Documents

HTML Datasheet

CF18JT200R-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) Not Applicable
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8533.10.0065

Additional Information

Other Names
CF1/8200JR
CF1/8200JRTR-DG
CF1/82005%R-DG
CF 1/8 200 5% R
CF1/8200JRCT
CF18JT200RCT
CF18JT200RTR
CF1/82005%R
CF1/8200JRTR
CF1/8200JRCT-DG
CF1/8200JR-DG
Standard Package
5,000

Reviews

5.0/5.0-(Show up to 5 Ratings)
Wil***Free
December 02, 2025
5.0
The website offers an excellent browsing experience, making it easy to find quality products at good prices.
Win***der
December 02, 2025
5.0
Receiving my orders on time and support after sale makes shopping enjoyable.
Brig***uest
December 02, 2025
5.0
Customer service representatives are always courteous and efficient.
Cle***Mind
December 02, 2025
5.0
Every customer interaction demonstrates their commitment to excellence.
Bra***oul
December 02, 2025
5.0
Excellent quality combined with swift delivery—truly a hassle-free experience.
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Frequently Asked Questions (FAQ)

What are the key design-in risks when using the CF18JT200R in high-temperature industrial applications near 125°C and how can they be mitigated?

When using the CF18JT200R in high-temperature environments near 125°C, the primary risk lies in derating its power handling due to its 0.125W (1/8W) rating and negative temperature coefficient (-400ppm/°C). At elevated temperatures, resistance may drift downward, affecting circuit accuracy in precision biasing or feedback networks. To mitigate, operate below 50% of rated power (i.e., ≤15mW) and include margin in voltage divider or pull-up designs. Ensure adequate board spacing for heat dissipation since the axial package lacks thermal pads. Also verify long-term stability in sealed enclosures where ambient can exceed 100°C over time, as carbon film resistors are more prone to drift than metal film alternatives.

Can the CF18JT200R replace metal film resistors like the Vishay Dale CRCW0805 in signal conditioning circuits, and what performance trade-offs should be expected?

The CF18JT200R can replace metal film resistors such as the Vishay Dale CRCW0805 in non-precision signal conditioning circuits, but with key trade-offs. Unlike metal film, the CF18JT200R's carbon film composition offers lower stability under thermal cycling and higher noise, making it less ideal for low-level analog amplification or filter stages. Its ±5% tolerance and -400ppm/°C tempco are significantly worse than typical metal film (±1%, ±100ppm/°C). Use CF18JT200R only where cost is critical and accuracy less so—e.g., LED current limiting or non-critical pull-ups. Avoid in bridge circuits or precision gain stages where drift affects calibration.

How does the axial package of the CF18JT200R impact PCB layout density and mechanical reliability in automated assembly processes?

The axial package of the CF18JT200R (1.70mm dia x 3.30mm L) impacts PCB layout by requiring holes on 0.3” to 0.4” centers, reducing routing flexibility and limiting component density compared to SMT resistors like the Yageo CFR-25JB-52-200R. In automated assembly, axial leads need lead-forming and clinching, increasing placement complexity and risk of board warpage or solder joint stress under vibration. For high-reliability or compact designs, consider SMT alternatives unless through-hole mechanical strength is required. If using CF18JT200R, ensure adequate standoff and conformal coating to prevent micro-cracking in high-shock environments.

Is the CF18JT200R suitable for safety-critical or long-life applications such as medical monitoring devices, and what failure mechanisms should be considered?

The CF18JT200R's flame retardant coating and carbon film safety features make it suitable for safety-enhanced designs, but its long-term reliability in medical monitoring devices must be evaluated carefully. Carbon film resistors like the CF18JT200R are more susceptible to moisture ingress and resistance drift over 10+ years compared to thin-film or hermetically sealed alternatives. No published failure rate (e.g., MIL-HDBK-217) is available, increasing risk in life-critical circuits. Prefer the CF18JT200R in non-signal-path roles—e.g., power rail terminations—rather than sensor interfaces. Implement 50% power derating and environmental sealing to minimize degradation from humidity or thermal cycling.

What are the sourcing and lifecycle risks of designing in the CF18JT200R compared to standard SMT equivalents like the Panasonic ERJ-6GEYJ200V?

The CF18JT200R, while active and stocked, poses sourcing and lifecycle risks due to its axial through-hole format, which is increasingly legacy in modern electronics. Compared to widely available SMT equivalents like the Panasonic ERJ-6GEYJ200V (0805, 200Ω, ±5%, 1/8W), the CF18JT200R has longer lead times during shortages and limited automation compatibility. Designing in CF18JT200R may lead to obsolescence concerns in future revisions as manufacturers shift to surface mount. If through-hole is mandatory for serviceability or power handling, stockpile spares or qualify a dual-source strategy. Otherwise, transition to SMT variants early to ensure supply continuity and reduce assembly costs.

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