
Bourns, Inc.
4609M-101-751LF
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4609M-101-751LF Description
4609M-101-751LF Description
The 4609M-101-751LF from Bourns Inc. is an 8-resistor bussed network array designed for precision applications in electronic circuits. With a compact through-hole SIP package (0.898" x 0.098"), it offers a space-saving solution for high-density PCB layouts. Each resistor features a 750Ω resistance with a tight ±2% tolerance and a low ±100ppm/°C temperature coefficient, ensuring stable performance across varying environmental conditions. The array operates at 250mW power per element and is rated for 50ppm/°C resistor-ratio drift, making it suitable for analog signal conditioning and voltage division tasks. Compliant with ROHS3 and REACH Unaffected standards, it is ideal for environmentally conscious designs.
4609M-101-751LF Features
- High-Density Integration: 8 resistors in a 9-pin SIP package (22.81mm x 2.49mm) with a low-profile 6.35mm height.
- Precision Performance: ±2% tolerance and ±100ppm/°C TCR ensure accuracy in harsh environments.
- Bussed Circuit Topology: Simplifies design for common-ground applications like pull-up/down networks.
- Robust Construction: Bulk packaging and "Not Applicable" MSL rating enhance handling durability.
- Compliance: Meets EAR99 and HTSUS 8533.21.0050 for global export flexibility.
4609M-101-751LF Applications
- Industrial Controls: Stable resistance for PLCs and sensor interfaces.
- Consumer Electronics: Space-efficient solution for TVs and set-top boxes.
- Automotive Systems: Reliable performance in infotainment and ECU circuits.
- Test & Measurement Equipment: Precision voltage dividers and calibration networks.
Conclusion of 4609M-101-751LF
The 4609M-101-751LF combines Bourns' reliability with high-density design, offering engineers a cost-effective, precision resistor array for demanding applications. Its low TCR, bussed architecture, and compliance with environmental standards make it a standout choice for industrial, automotive, and consumer electronics where consistency and compactness are critical.



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