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TMP320C2811PBKA 데이터시트(PDF) 89 Page - Texas Instruments |
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TMP320C2811PBKA 데이터시트(HTML) 89 Page - Texas Instruments |
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89 / 147 page ![]() Electrical Specifications 89 June 2004 SPRS257 6.9 Timing Parameter Symbology Timing parameter symbols used are created in accordance with JEDEC Standard 100. To shorten the symbols, some of the pin names and other related terminology have been abbreviated as follows: Lowercase subscripts and their meanings: Letters and symbols and their meanings: a access time H High c cycle time (period) L Low d delay time V Valid f fall time X Unknown, changing, or don’t care level h hold time Z High impedance r rise time su setup time t transition time v valid time w pulse duration (width) 6.10 General Notes on Timing Parameters All output signals from the 28x devices (including XCLKOUT) are derived from an internal clock such that all output transitions for a given half-cycle occur with a minimum of skewing relative to each other. The signal combinations shown in the following timing diagrams may not necessarily represent actual cycles. For actual cycle examples, see the appropriate cycle description section of this document. 6.11 Test Load Circuit This test load circuit is used to measure all switching characteristics provided in this document. Transmission Line 4.0 pF 1.85 pF Z0 = 50 Ω (see note) Tester Pin Electronics Data Sheet Timing Reference Point Output Under Test NOTE: The data sheet provides timing at the device pin. For output timing analysis, the tester pin electronics and its transmission line effects must be taken into account. A transmission line with a delay of 2 ns or longer can be used to produce the desired transmission line effect. The transmission line is intended as a load only. It is not necessary to add or subtract the transmission line delay (2 ns or longer) from the data sheet timing. 42 Ω 3.5 nH Device Pin (see note) Input requirements in this data sheet are tested with an input slew rate of < 4 Volts per nanosecond (4 V/ns) at the device pin. Figure 6−4. 3.3-V Test Load Circuit |
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