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HT-50-1
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Hirose Electric
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Stripline Mounting Non-reflective Terminations |
Original |
PDF
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309.42KB |
5 |
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HT501/14OG6
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Herrmann
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1.4kV V[drm] Max., 650A I[T] Max. Silicon Controlled Rectifier |
Scan |
PDF
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91.93KB |
2 |
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HT501/16OG6
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Herrmann
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1.6kV V[drm] Max., 650A I[T] Max. Silicon Controlled Rectifier |
Scan |
PDF
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91.93KB |
2 |
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HT501/18OG6
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Herrmann
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1.8kV V[drm] Max., 650A I[T] Max. Silicon Controlled Rectifier |
Scan |
PDF
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91.93KB |
2 |
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HT-50-1(40)
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Hirose Electric
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Non-reflective terminators (Stripline mounting); HRS No: 353-0083-8 40; Connector Type: Board mounting; PCB Mount Type: Through-hole; Impedance (ohm): 50; Frequency Range (GHz): 0 to 5; Power Capacity (W): 50; VSWR (Max): 1.25; Operating Temperature Range (degrees C): -10 to 65; General Description: Tab; Strip line mounting |
Original |
PDF
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209.35KB |
5 |
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HT501/TMP-88
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Hirose Electric
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Modular Plug Connectors Compliant to Enhanced Category 5 Standards |
Original |
PDF
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291.44KB |
8 |
HT5019
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HiTrend Technology (Shanghai) Co Ltd
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Low-power, high-performance single-phase energy metering SoC with 32-bit ARM Cortex-M0 core, 128KB flash, 8KB SRAM, integrated LCD driver, RTC, and hardware EMU for anti-tampering, supporting multiple communication interfaces. |
Original |
PDF
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HT5017
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HiTrend Technology (Shanghai) Co Ltd
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Low-power, high-performance single-phase energy metering SoC with 32-bit ARM Cortex-M0 core, 128KB flash, 8KB SRAM, integrated LCD driver, RTC, and hardware EMU for anti-tampering, supporting multiple communication interfaces. |
Original |
PDF
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HT5015
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HiTrend Technology (Shanghai) Co Ltd
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Low-power, high-performance single-phase energy metering SoC with 32-bit ARM Cortex-M0 core, 128KB flash, 8KB SRAM, integrated LCD driver, RTC, and hardware EMU for anti-tampering, supporting multiple communication interfaces. |
Original |
PDF
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HT5013
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HiTrend Technology (Shanghai) Co Ltd
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Low-power, high-performance single-phase energy metering SoC with 32-bit ARM Cortex-M0 core, 128KB flash, 8KB SRAM, integrated LCD driver, RTC, and hardware EMU for anti-tampering, supporting multiple communication interfaces. |
Original |
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