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R5F10RF8AFP 데이터시트(PDF) 41 Page - Renesas Technology Corp |
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R5F10RF8AFP 데이터시트(HTML) 41 Page - Renesas Technology Corp |
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41 / 76 page ![]() RL78/L12 2. ELECTRICAL SPECIFICATIONS (TARGET) Page 41 of 73 R01DS0157EJ0001 Rev.0.01 2012.02.20 Under development Preliminary document Specifications in this document are tentative and subject to change. Caution The pins mounted depend on the product. Refer to 1.3.1 32-pin products to 1.3.5 64-pin products. (4) Communication at different potential (2.5 V, 3 V) (UART mode) (dedicated baud rate generator output) (2/2) (TA = −40 to +85°C, 1.8 V ≤ EVDD = VDD ≤ 5.5 V, VSS = EVSS = 0 V) Parameter Symbol Conditions MIN. TYP. MAX. Unit Notes 1, 2 bps 4.0 V ≤ EVDD ≤ 5.5 V, 2.7 V ≤ Vb ≤ 4.0 V Theoretical value of the maximum transfer rate Cb = 50 pF, Rb = 1.4 k Ω, Vb = 2.7 V 2.8 Note 3 Mbps Notes 2, 4 bps 2.7 V ≤ EVDD < 4.0 V, 2.3 V ≤ Vb ≤ 2.7 V Theoretical value of the maximum transfer rate Cb = 50 pF, Rb = 2.7 k Ω, Vb = 2.3 V 1.2 Note 5 Mbps Notes 2, 6, 7 bps Transfer rate transmission 1.8 V ≤ EVDD < 3.3 V, 1.6 V ≤ Vb ≤ 2.0 V Theoretical value of the maximum transfer rate Cb = 50 pF, Rb = 5.5 k Ω, Vb = 1.6 V 0.43 Notes 8 Mbps Notes 1. The smaller maximum transfer rate derived by using fMCK/6 or the following expression is the valid maximum transfer rate. Expression for calculating the transfer rate when 4.0 V ≤ EVDD ≤ 5.5 V and 2.7 V ≤ Vb ≤ 4.0 V 1 Maximum transfer rate = [bps] { −Cb × Rb × ln (1 − 2.2 Vb )} × 3 1 Transfer rate × 2 − {−C b × Rb × ln (1 − 2.2 Vb )} Baud rate error (theoretical value) = × 100 [%] ( 1 Transfer rate ) × Number of transferred bits * This value is the theoretical value of the relative difference between the transmission and reception sides. 2. Transfer rate in the SNOOZE mode : MAX. 9600 bps, MIN. 4800 bps 3. This value as an example is calculated when the conditions described in the “Conditions” column are met. Refer to Note 1 above to calculate the maximum transfer rate under conditions of the customer. 4. The smaller maximum transfer rate derived by using fMCK/6 or the following expression is the valid maximum transfer rate. Expression for calculating the transfer rate when 2.7 V ≤ EVDD < 4.0 V and 2.3 V ≤ Vb ≤ 2.7 V 1 Maximum transfer rate = { −Cb × Rb × ln (1 − 2.0 Vb )} × 3 [bps] 1 Transfer rate × 2 − {−C b × Rb × ln (1 − 2.0 Vb )} Baud rate error (theoretical value) = × 100 [%] ( 1 Transfer rate ) × Number of transferred bits * This value is the theoretical value of the relative difference between the transmission and reception sides. 5. This value as an example is calculated when the conditions described in the “Conditions” column are met. Refer to Note 4 above to calculate the maximum transfer rate under conditions of the customer. |
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