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PE642DT
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HerstellerNIKO Semicon
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Herstellerteil #PE642DT
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Datenblatt PE642DT DataSheet
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Auf Lager16096
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Spezifikationen
| Attribut | Wert |
| Manufacturer | NIKO Semicon |
| Package | DFN-8-EP(3x3) |
| Operating Temperature | -55℃~+150℃ |
| Current - Continuous Drain(Id) | 34A |
| Pd - Power Dissipation | 20W |
| Drain to Source Voltage | 30V |
| RDS(on) | 9mΩ@10V,10A |
| Gate Threshold Voltage (Vgs(th)@Id) | 2.3V |
| Type | 2 N-Channel |
| Gate Charge(Qg) | 9.6nC@10V |
| Input Capacitance(Ciss@Vds) | 782pF@15V |
| Reverse Transfer Capacitance (Crss@Vds) | 139pF@15V |
Übersicht
Equivalent
- PE64100 (Peregrine Semiconductor)
- SKY65111 (Skyworks)
- RFPA3800 (Qorvo)
- TQP7M9102 (Qorvo)
These alternatives offer comparable performance in RF amplification for applications like cellular infrastructure and wireless communication. Always verify datasheet specifications for compatibility.
Features
- Processor: Intel® Atom™ x5-E3940 quad-core (1.6 GHz, up to 1.8 GHz burst)
- Memory: 4GB LPDDR4 (soldered, non-expandable)
- Storage: 64GB eMMC (expandable via M.2 2242 SATA SSD slot)
- Connectivity:
- Dual Gigabit Ethernet (Intel® I211-AT)
- Wi-Fi 5 (802.11ac) & Bluetooth 4.2
- 4x USB 3.0, 1x USB 2.0
- Video Outputs: HDMI 1.4b, DisplayPort 1.2 (supports dual displays)
- Expansion: M.2 Key B (PCIe/SATA) & Mini PCIe slot
- Power: 12V DC input (barrel jack)
- OS Support: Windows 10 IoT, Linux
- Dimensions: 102 x 98 x 40 mm
- Operating Temp.: -20°C to 60°C
Ideal for industrial automation, digital signage, and edge computing due to its rugged design and low power consumption (12W TDP).
Manufacturer
Application
1. Industrial Automation – Real-time control and monitoring.
2. Smart Cameras & Vision Systems – AI-based object detection and recognition.
3. Autonomous Mobile Robots (AMRs) – Navigation and sensor processing.
4. Edge AI Devices – On-device machine learning inference.
5. IoT Gateways – Data aggregation and preprocessing.
6. Medical Devices – Portable diagnostics and imaging.
Its efficiency and processing power make it ideal for latency-sensitive, power-constrained environments.