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CP15G01 Aluminum Cold Plate with 6-Pass Copper tube, straight fittings

Product information "CP15G01 Aluminum Cold Plate with 6-Pass Copper tube, straight fittings"

152.4 mm x 95.3 mm, 0.004 °C/W, tubed cold plate.
Components can be mounted on both sides of CP15™, making this compact and lightweight cold plate ideal for applications where heat loads are moderating and space is at a premium. The tubes of the CP15™ cold plates are coplanar with the plate to allow for dual-sided mounting. The cold plate's tube side offers higher performance as the copper tubes are in direct contact with the component being cooled. Our range of standard tubed cold plates provide cost-effective thermal solutions for component cooling applications where the heat load is low-to-moderate. These tubed cold plates consist of copper tubes pressed into a channeled aluminum extrusion. This “Press-Lock” technology eliminates the need for performance-limiting epoxy between the tube and the plate, resulting in superior thermal performance. Each tubed cold plate has a single tube with no joint, ensuring leak-free operation.

Manufacturer "Boyd (former Lytron and Aavid)"
Boyd is the world’s leading innovator in sustainable engineered material and thermal solutions that make our customers’ products better, safer, faster, and more reliable. We develop and combine technologies to solve ambitious performance targets in our customers’ most critical applications. By implementing technologies and material science in novel ways to seal, protect, cool, and interface, Boyd has continually redefined the possible and championed customer success for over 90 years. Boyd is also the successor of Lytron and Aavid, continuing their thermal solutions portfolio.
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Boyd Corporation Woburn, Inc.
55 Dragon Court
MA 01801 Woburn, United States
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CP15G06 Aluminum Cold Plate with 6-Pass Copper tube, beaded fittings
CP15G06 Aluminum Cold Plate with 6-Pass Copper tube, beaded fittings

Aluminum Cold Plate 12"x3.75", 30.48 cm x 9.53 cm with 6-Pass 1/4" Copper tube, beaded fittings

Product number: C008689-6
Manufacturer: Boyd (former Lytron and Aavid)

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- Technical compatibility review included.
- Volume discounts available.

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AMS-127-1.4-2.5 (40x40) HT120 E L2 72K Thermoelectric Cooler Qmax 37.4 W
AMS-127-1.4-2.5 (40x40) HT120 E L2 72K Thermoelectric Cooler Qmax 37.4 W

 The AMS-127-1.4-2.5 is a high-performance thermoelectric cooler (TEC) engineered for precision thermal regulation in industrial, scientific, and medical applications. With a Qmax of 37.4W and a maximum temperature differential (dTmax) of 72K, this advanced Peltier module delivers stable and efficient cooling performance for semiconductors, laser systems, medical devices, and industrial electronics.Manufactured using high-quality Al₂O₃ ceramic materials, this 40x40 mm TEC module ensures superior heat dissipation, durability, and long-term operational reliability. The low electrical resistance (Rac 3.2Ω) optimizes power efficiency, making it an ideal choice for critical thermal management applications.Key FeaturesReliable Cooling Performance – Delivers a Qmax of 37.4W, ensuring efficient heat transfer in demanding applications.Optimized Electrical Efficiency – Operates at Umax 16.3V and Imax 3.7A, ensuring stable and energy-efficient cooling.Wide Temperature Differential – With a dTmax of 72K, this TEC module offers excellent thermal control in diverse environments.Durable and Compact Design – Features a 40x40 mm rectangular form factor with a 4.8 mm height, allowing easy integration into compact cooling assemblies.High-Quality Ceramic Construction – Built with Al₂O₃ ceramic, offering superior thermal conductivity and structural stability.Low Electrical Resistance for Maximum Efficiency – With Rac of 3.2Ω, it minimizes power loss while maintaining consistent cooling performance.Reliable Lead Wires – Equipped with 24 AWG wires, with 200mm stripped leads without tinning, ensuring secure electrical connections.ROHS Compliant and Epoxy-Sealed – Designed for long-term durability and environmental safety, ensuring compliance with industry standards.ApplicationsSemiconductor Thermal Management – Provides effective cooling for microprocessors, high-power chips, and sensors, ensuring optimal performance.Medical and Laboratory Equipment – Ensures temperature stability in diagnostic instruments, cryogenic research devices, and laser-based medical systems.Laser and Optoelectronic Systems – Supports efficient heat dissipation for high-power laser diodes, optical sensors, and photonic instruments.Industrial Electronics and Instrumentation – Maintains stable operating temperatures for precision testing equipment, automated systems, and electronic control units.Aerospace and Automotive Thermal Management – Provides reliable cooling solutions for high-performance automotive and aerospace applications.What’s Next?The AMS-127-1.4-2.5 Thermoelectric Cooler is an energy-efficient, reliable, and high-performance TEC module, ideal for critical applications requiring precise thermal regulation. Designed with advanced thermoelectric technology, this module ensures long-term durability and optimal cooling efficiency.For technical support, product availability, or customized thermal solutions, consult a thermal engineering expert to integrate this TEC into your system.

Product number: C018931-6
Manufacturer: Kryotherm

Regular price: €30.90
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LCP ET 88,9x12,7x150/4Pass_Cu Cold Plate
LCP ET 88,9x12,7x150/4Pass_Cu Cold Plate

150x88.9x12.7 mm; Aluminum; Copper Tubes; 4 -PassLCP ET 88,9x12,7x150/4Pass_Cu is an aluminum cold plate combined with 4-pass copper tubes. The exclusive section shape, pressed in the base plates without glues or resins, maximizes adhesion and minimizes any thermal impedance between the tube coil and the plate, both on the straight and curved parts of the design.We can design embedded tube cold plates to be fully customized for the individual needs of each specific design, regardless of the application for which the plate is designed. Get in touch with our thermal experts to discuss your specific requirements.

Product number: C027138-1
Manufacturer: AMS Technologies

Regular price: €200.00
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pcs
Only 4 available
CP12G01 Aluminum Cold Plate with 4-Pass Copper tube, straight fittings
CP12G01 Aluminum Cold Plate with 4-Pass Copper tube, straight fittings

152 mm x 127 mm, 0.009 °C/W, tubed cold plate.The CP12™ is a dual-sided, copper tubed cold plate that offers high performance and a large mounting area. The tubes of the CP12™ cold plates are coplanar with the plate to allow for dual-sided mounting. The cold plate's tube side offers higher performance as the copper tubes are in direct contact with the component being cooled. Its epoxy-free construction results in 30% better performance than other similar sized cold plates. Our range of standard tubed cold plates provide cost-effective thermal solutions for component cooling applications where the heat load is low-to-moderate. These tubed cold plates consist of copper tubes pressed into a channeled aluminum extrusion. This “Press-Lock” technology eliminates the need for performance-limiting epoxy between the tube and the plate, resulting in superior thermal performance. Each tubed cold plate has a single tube with no joint, ensuring leak-free operation.

Product number: C008682-6
Manufacturer: Boyd (former Lytron and Aavid)

REQUEST PRICING AND AVAILABILITY

- Get your individual quote.
- Technical compatibility review included.
- Volume discounts available.

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UM/LabM/UHSM/MicroM Selected Line Infrared Detection Modules
UM/LabM/UHSM/MicroM Selected Line Infrared Detection Modules

2-12 µm; Active Area 0.0025, 1 mm²; Responsivity ≥5.0x101-≥6.5x104 V/W; Detectivity ≥5.0×106-≥2.3×1010 cm·Hz1/2/W; Power Supply +5,+9 VDC Vigo System’s UM, LabM, UHSM and MicroM selected line series of infrared (IR) detection modules integrate the infrared photodetector with signal processing electronics, optics, heat dissipation systems and other components in a common package – resulting in very convenient and user‑friendly devices that can be easily used in a variety of MWIR/LWIR applications. This integration makes the detectors less vulnerable to over-bias, electrostatic discharge, electromagnetic interference (EMI) and other environmental exposures. Additional advantages of the integration are improved high-frequency (HF) performance, output signal standardization, miniaturization, and cost reduction. Vigo System’s selected product line guarantees a short order fulfillment date and an effective price. Vigo System offers detection modules with an infrared detector optimized for uncooled operation or for temperatures achievable with Peltier-coolers in the spectral range from 2 µm to 12 μm. IR radiation emitted by an object is concentrated on the active area of an IR detector, generating photoelectric signals which are sensed by the front-end electronics (FEE). The front-end electronics circuitry is typically used to: Provide optimum conditions for the operation of IR detectors (to achieve high sensitivity, fast response, and a wide dynamic range. This is typically achieved with optimized constant voltage bias and current mode of the photoelectric signal readout.) Protect detector elements against overbias Amplify the signal within the required frequency band. This could be done with a minimized contribution of the preamplifier noise to the resulting noise of the detection module. In addition to front-end electronics, detection modules may include additional electronic blocks for signal conditioning, such as gain blocks, filters, thermoelectric cooler controllers, analog-digital converters (ADC) and other components. Except for MicroM, these IR detection modules feature 3° wedged zinc selenide anti-reflection coated windows preventing unwanted interference effects. Vigo System’s UM series features universal „all-in-one” 3.0 µm to 6.7 μm and DC to 1 MHz (UM-I-6) as well as 2 µm to 12 μm and DC to 70(100) MHz (UM-(I-)10.6) HgCdTe IR detection modules. A thermoelectrically cooled (for some models optically immersed) photovoltaic detector, based on HgCdTe heterostructure, is integrated with a transimpedance, DC-coupled preamplifier, a fan and a thermoelectric cooler controller in a compact housing. Vigo System’s LabM series of programmable detection modules enable control of many parameters, such as bandwidth and gain, even during normal operation. This opens up completely new possibilities to designers of measuring systems. In a fully analogue input circuit, many switching elements are used, even with a variable, digitally-controlled capacitance to compensate the transimpedance input stage. Within the LabM series, 3.0 µm to 7.5 μm and over 200 MHz (LabM-I-6) and 2 µm to 12 μm and DC to 100 MHz (LabM-I-10.6 ) HgCdTe programmable, laboratory IR detection modules are available, with optically immersed photovoltaic detectors based on HgCdTe heterostructure, integrated with a transimpedance, programmable preamplifier. Vigo System’s UHSM series of convenient and user‑friendly ultra-high-speed detection modules aims at LWIR applications requiring high-time-resolution or high-frequency-bandwidth optical detection. Electronics and mechanics have been designed specifically to support the propagation of high-speed signals. Within the UHSM series, 3 µm to 12 µm and over 1 GHz (UHSM-10.6) or 700 MHz (UHSM-I-10.6) HgCdTe ultra high speed „all-in-one” IR detection modules are available. Thermoelectrically cooled, photovoltaic detectors (optically immersed for UHSM-I-10.6), based on HgCdTe heterostructure, are integrated with a transimpedance, AC coupled preamplifier, a fan and a thermoelectric cooler controller in a compact housing. Vigo System’s MicroM is a micro-size detection module with uncooled photovoltaic multiple junction detector. It is optimized for operation in the spectral range from 2 μm to 12 μm and frequency bandwidth from DC to 10 MHz. It is easy to assemble in space-limited measuring systems for long wavelength infrared (LWIR) applications. Key Features: Very High Performance and Reliability Integrated TEC Controller and Fan (UM, UHSM) Very Small Size (MicroM) Single Power Supply: +5 VDC, +9 VDC DC Monitor (UM, SHSM) DC Offset Compensation (LabM) Parameters Configurable by the User (LabM): Output Voltage Offset; Gain (in 40 dB Range); Bandwidth (1.5 MHz/15 MHz/200 MHz); Coupling AC/DC; Detector’s Parameters (Temperature, Reverse Bias etc.) Sensitive to IR Radiation Polarization (UM(-I)-10.6, ) LabM-I-10.6, MicroM) Optimized for Effective Heat Dissipation Wide Frequency Bandwidth Over 1 GHz (UHSM) Compatible With Optical Accessories Cost-effective OEM Version Available Universal, Versatile & Flexible, Convenient to Use Fast Delivery Active Element Material: Epitaxial HgCdTe Hetereostructure Active (Optical) Area: 1x1 mm², 0.05x0.05 mm² Cut-on Wavelength λcut-on (10%): ≤2.0 to 3.0 μm Peak Wavelength λpeak: 5.2 to 9.5 μm Optimum Wavelength λopt: 6.0 to 10.6 μm Cut-off Wavelength λcut-off (10%): 6.7 to 12.5 μm Detectivity D*: ≥1.50x107 to ≥2.3×1010 cm·Hz1/2/W (λpeak), ≥5.0×106 to ≥1.5×1010 cm·Hz1/2/W (λopt) Output Noise Density vn (100 kHz): ≤70 nV/Hz1/2 to ≤400 µV/Hz1/2 Voltage Responsivity Rv: ≥1.2x102 to ≥6.5x104 V/W (λpeak), ≥5.0x101 to ≥3.6x104 V/W (λopt) Low Cut-off Frequency flo: DC to 300 Hz High Cut-off Frequency fhi: ≥1 MHz to ≥1.0 GHz Infrared Windows: None, wZnSeAR Acceptance Angle Φ: ~36° to ~85° Applications: Leak Detection; Gas Detection, Monitoring and Analysis (CO, CO2, NH3, NOx); CO2 Laser Measurements; Laser Power Monitoring & Control; Laser Beam Profiling & Positioning; Laser Calibration; Characterization of Pulsed Laser Sources; Flue Gas Denitrification; Fuel Combustion Monitoring at Power Plants and Other Industrial Facilities; Breath Analysis; Explosion Prevention; Contactless Temperature Measurement & Control; Semiconductor Manufacturing; Glucose Monitoring; Dentistry; Dual-comp Spectroscopy; Heterodyne Detection; LIDAR; Object Scanners; Time-resolved Fluorescence Spectroscopy; Free-space Optical Communication

Product number: SW11684
Manufacturer: Vigo Photonics

REQUEST PRICING AND AVAILABILITY

- Get your individual quote.
- Technical compatibility review included.
- Volume discounts available.

No obligation. Direct access to our engineering team.