CHIP NETWORKS - Concave Termination Resistor Arrays
CHIP NETWORKS offers advanced surface-mount resistor arrays designed to improve mounting density and reduce costs by minimizing component mounting times. Available in 2, 4, and 8 element configurations, these resistor arrays provide 1% precision and feature a high self-alignment effect during reflow soldering, making them suitable for automated image recognition mounting. They are compatible with both reflow and flow soldering processes and offer lead-free termination options that meet EU-RoHS requirements. AEC-Q200 qualification is available for specific models.
Product Attributes
- Brand: CHIP NETWORKS
- Product Type: Chip Networks (Concave Termination)
- Coating Color: Black (Resistor, CNZ1E2, CNZ1E4), Green (Jumper)
- Marking: CN1E2, CN1E4, Jumper: No marking
- Certifications: AEC-Q200 Qualified (CN1J4), EU-RoHS Compliant (Lead-free termination)
- Material: Ceramic substrate, Resistive film, Inner electrode, Outer electrode, Protective coating
- Termination Surface Material: Lead-free plating is standard (T:Sn)
Technical Specifications
| Type | Elements | Power Rating (W/Element) | Resistance Range () | Resistance Tolerance | T.C.R. (10/K) | Max. Working Voltage | Max. Overload Voltage | Operating Temp. Range | Rated Ambient Temp. | Rated Terminal Part Temp. | Taping & Q'ty/Reel (pcs) | Dimensions (mm) L x W | Weight (g/1000pcs) |
| CN1E2 | 2 | 0.063 | 10100k | F:1% (E24, E96), G:2% (E24), J:5% (E24) | 200 (R10), 400 (R<10) | 25V | 50V | -55+125 | +70 | - | 10,000 | 1.0 x 1.0 | 1.2 |
| CN1E4 | 4 | 0.063 | 10100k | F:1% (E24, E96), G:2% (E24), J:5% (E24) | 200 (R10), 400 (R<10) | 25V | 50V | -55+125 | +70 | - | 10,000 | 2.0 x 1.0 | 3.1 |
| CN1J2 | 2 | 0.063 | 101M | F:1%, J:5%, G:2% (E24) | 100 (R10) | 50V | 100V | -55+155 | +125 | - | 5,000 | 1.6 x 1.6 | 5.6 |
| CN1J4 | 4 | 0.063 | 11M | F:1%, J:5%, G:2% (E24) | 100 (R10) | 50V | 100V | -55+155 | +125 | - | 5,000 | 3.2 x 1.6 | 10.2 |
| CN1J8 | 8 | 0.063 | 101M | F:1%, J:5%, G:2% (E24) | 200 (R10) | 50V | 100V | -55+155 | +125 | - | 4,000 | 6.4 x 1.6 | 21.3 |
| CN2A2 | 2 | 0.1 | 101M | - | 200 (R10) | 100V | 200V | -55+155 | +125 | - | 4,000 | 2.54 x 2.0 | 9.4 |
| CN2A4 | 4 | 0.1 | 101M | - | 200 (R10) | 100V | 200V | -55+155 | +125 | - | 4,000 | 5.08 x 2.0 | 20.6 |
| CN2A8 | 8 | 0.1 | 101M | - | 200 (R10) | 100V | 200V | -55+155 | +125 | - | 4,000 | 10.16 x 2.0 | 39.4 |
| CN2B2 | 2 | 0.125 | 101M | - | 200 (R10) | 200V | 400V | -55+155 | +125 | - | 2,000 | 2.54 x 3.2 | 17.6 |
| CN2B4 | 4 | 0.125 | 101M | - | 200 (R10) | 200V | 400V | -55+155 | +125 | - | 2,000 | 5.08 x 3.2 | 34.4 |
| CN2B8 | 8 | 0.125 | 101M | - | 200 (R10) | 200V | 400V | -55+155 | +125 | - | 2,000 | 10.16 x 3.2 | 67.8 |
| CNZ1E2 | 2 | - | 50m | - | - | - | 0.5A | 2A | - | - | - | - | - |
| CNZ1E4 | 4 | - | 50m | - | - | - | 0.5A | 2A | - | - | - | - | - |
| CNZ1J2 | 2 | - | 50m | - | - | - | 1A | 3A | - | - | - | - | - |
| CNZ1J4 | 4 | - | 50m | - | - | - | 1A | 3A | - | - | - | - | - |
| CNZ1J8 | 8 | - | 50m | - | - | - | 1A | 3A | - | - | - | - | - |
| CNZ2A2 | 2 | - | 50m | - | - | - | 1A | 4A | - | - | - | - | - |
| CNZ2A4 | 4 | - | 50m | - | - | - | 1A | 4A | - | - | - | - | - |
| CNZ2B2 | 2 | - | 50m | - | - | - | 1A | 4A | - | - | - | - | - |
| CNZ2B4 | 4 | - | 50m | - | - | - | 1A | 4A | - | - | - | - | - |
Features
- Improved mounting density compared to individual chip resistors.
- Reduced mounting costs due to fewer parts mounting times.
- Available in 2, 4, and 8 element SMD resistor arrays.
- 1% precision is available.
- Higher self-alignment effect in reflow-soldering process.
- Suitable for image recognition mounters due to square corner design.
- Compatible with both reflow and flow solderings.
- Lead-free termination products meet EU-RoHS requirements.
- AEC-Q200 Qualified (CN1J4).
Applications
- Resistors for Damping, Pull-up/Pull-down, Termination for digital circuits.
- LED current limiting.
- Terminals for SDRAM (1-10, 5% available).
Reference Standards
- IEC 60115-1
- JIS C 5201-1
2409290933_KOA-CN1J4TTD510J_C240738.pdf
Please Use Our Online Inquiry Contact Form Below If You Have Any Questions, Our Team Will Get Back To You As Soon As Possible