| Part Numbert | Mfg | Packt | D/C | Descriptiont | Qty | Company/Contact | |
| 512856-003 4136 | CLEENET | 01+ | 1430 |
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| 512856-003 4136 | CLEENET | SOP28 | 07+ | 1430 |
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| 512856-003 4136 | CLEENET | stock | SOP28 | 01+ |
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| 512856-003 4136 | CLEENET | SOP28 | 01+ | LEAD TIME 1day | 1430 |
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| 512856-003 4136 | CLEENET | Real Stock | 01+ | 1535 |
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| 512856-003 4136 | CLEENET | SOP28 | 09+ | ORIGINAL | 1430 |
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| 512856-003 4136 | CLEENET | SOP28 | 01+ | ORIGINEL | 1430 |
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| 512856-003 4136 | CLEENET | SOP28 | 5 | 原装现货,品质为先! | 1430 |
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| 512856-003 4136 | CLEENET | SOP28 | 1428 |
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| 512856-003 4136 | CLEENET |
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| 512856-003 4136 | CLEENET | SOP28 | 01+ | Qriginal and in our | 1430 |
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| 512856-003 4136 | CLEENET | SOP28 | 09+ | 原装现货特价出售 | 6030 |
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| 512856-003 4136 | SOP28 | 1321 | CLEENET |
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| 512856-003 4136 | CLEENET | 2008 | 11000 |
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| 512856-003 4136 | SOP28 | CLEENET | 01+ |
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| 512856-003 4136 | SOP28 | CLEENET | 01+ |
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| 512856-003 4136 | CLEENET | SOP28 | 01+ | 1430 |
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| 512856-003 4136 | 1430 | CLEENET |
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| 512856-003 4136 | CLEENET | N/A | 07+08+09+ | 1430 |
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| 512856-003 4136 | CLEENET | SOP28 | Original!! | 1430 |
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| 512856-003 4136 | SOP28 | CLEENET | 01+ |
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| 512856-003 4136 | CLEENET | SOP28 | 1430 |
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| 512856-003 4136 | CLEENET | SOP28 | Original!! | 1430 |
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| 512856-003 4136 | CLEENET | SOP28 | 01+ | NEW AND ORIIGINAL ST | 1430 |
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512856-003 4136 Price
512856-003 4136 on stock 55, 54 1:0yr :i 61, 59 1:0y , 23 toy =ov , 25 I:o:i =5V 30 33 l:o:i=34 toy=SREF 55,54 l:o:i 61, 59 1:0y , 23 toy =ov, 25 I:o:i =OV 33 l:o:i=34 toy=SREF 55, 54 l:o:i 61, 59 1:0y , 23 toy =sv, 25 l:o:i =OV 3.9 33 1:0:i=34 toy=SREF 55, 54 1:0:i 61, 59 1:0y , 23 toy =ov , 25 l:o :i =OV 17.4 33 l:o:1=34 toy=SREF 55,54 l:o:i 61 to =130m V p-p, 59 1:0 =P R E F, SR E F 23 1:0:i=Ov,25 1:0y=OV, + 0.5 33 1:0:i=34 koy=SREF, 24 1:0 :i =Ov , 50 1:0y 61 P:i =130m V p-p, 59 1:0 :i =P R E F, SR E F 23 1:o=OV,25 I:oy =OV, - 0.23 33 l:o)1=34 koy=SREF, Although oscillators provide the cleanest source for REFCLK, oscillators over 100 MHz often cost more than may be acceptable for a specific design. In this case, customers have used clock generator chips to provide REFCLK at a lower cost than an oscillator. Un- fortunately, the cost reduction is accompanied by a sig- nificant increase in REFCLK jitter, which adds jitter to the transmitted serial data resulting in a reduction in the maximum transmission distance. pulls down A and B, causing the intervention of the hardware protection shown in Fig. 4; at the same time the OVV signal is sent to yC, which executes the switch off sequence. The LiC must reject any command to the bridge during the over- voltage conditions. With the values showed in Fig. 7, a 1V hysteresis is provided. It is possible to enhance the performances of the system just described avoiding the braking of the motor also tor short duration voltage transients; to do this the yC, once received the overvoltage di- agnostic signal (OVV), put at low level the commands to the upper transistors of the two half bridges (L1 and L2 in Fig. 4), allowing the free running of the motor. The system holds this condition until OVV is ac- tive; when the OW signal is released the jiC re- stores the previous commands to the bridge. |