| Part Numbert | Mfg | Packt | D/C | Descriptiont | Qty | Company/Contact | |
| SKIIP592GH170 | SKIIP | 06+ | in stock | 500 |
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| SKIIP592GH170 | semIkron | MODULE | IN STOCK | 16 |
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| SKIIP592GH170 | semikron | 88 |
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| SKIIP592GH170 | SEMIKRON | 40 |
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| SKIIP592GH170 | SKIIP | 06+ | in stock | 500 |
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| SKIIP592GH170 | semikron | 19 |
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| SKIIP592GH170 | SEMIKRON | 原装正品模块 | 06+ | 100 |
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| SKIIP592GH170 | 654 | SKIIP | 模块 |
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| SKIIP592GH170 | SKIIP |
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| SKIIP592GH170 | MODULE | SKIIP |
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| SKIIP592GH170 | SKIIP | 654 |
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SKIIP592GH170 Datasheet Stresses beyond those listed under absolute maximum ratings may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under recommended operating conditions is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. Tested in accordance with JEDEC Standard 22. Test Method A114-A. SKIIP592GH170 Price Auto-RTS data flow control originates in the receiver block (see : i ' . ' . ). . shows RTS functional timing. The receiver FIFO trigger levels used in Auto-RTS are stored in the TCR. RTS is active if the RX FIFO level is below the halt trigger level in TCR[3:0]. When the receiver FIFO halt trigger level is reached, RTS is de-asserted. The sending device (for example, another UART) may send an additional byte after the trigger level is reached (assuming the sending UART has another byte to send) because it may not recognize the de-assertion of RTS until it has begun sending the additional byte. RTS is automatically reasserted once the receiver FIFO reaches the resume trigger level programmed via TCR[7:4]. This re-assertion allows the sending device to resume transmission. SKIIP592GH170 on stock
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