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LC87F76C8A Datasheet(PDF) 21 Page - Sanyo Semicon Device |
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LC87F76C8A Datasheet(HTML) 21 Page - Sanyo Semicon Device |
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21 / 24 page ![]() LC87F76C8A No.A0858-21/24 Characteristics of a Sample Main System Clock Oscillation Circuit Given below are the characteristics of a sample main system clock oscillation circuit that are measured using a SANYO-designated oscillation characteristics evaluation board and external components with circuit constant values with which the oscillator vendor confirmed normal and stable oscillation. Table 1 Characteristics of a Sample Main System Clock Oscillator Circuit with a Ceramic Oscillator Circuit Constant Oscillation Stabilization Time Nominal Frequency Vendor Name Oscillator Name C1 [pF] C2 [pF] Rf1 [ Ω] Rd1 [ Ω] Operating Voltage Range [V] typ [ms] max [ms] Remarks 12MHz MURATA CSTCE12M0G52-R0 (10) (10) Open 2.2k 2.8 to 5.5 Built-in C1, C2 CSTCE8M00G52-R0 (10) (10) Open 1.0k 8MHz MURATA CSTLS8M00G52-R0 (15) (15) Open 1.0k 2.5 to 5.5 Built-in C1, C2 CSTCR4M00F53-R0 (15) (15) Open 2.2k 4MHz MURATA CSTLS4M0053-B0 (15) (15) Open 2.2k 2.1 to 5.5 Built-in C1, C2 The oscillation stabilization time refers to the time interval that is required for the oscillation to get stabilized after VDD goes above the operating voltage lower limit (see Figure 4). Characteristics of a Sample Subsystem Clock Oscillator Circuit Given below are the characteristics of a sample subsystem clock oscillation circuit that are measured using a SANYO- designated oscillation characteristics evaluation board and external components with circuit constant values with which the oscillator vendor confirmed normal and stable oscillation. Table 2 Characteristics of a Sample Subsystem Clock Oscillator Circuit with a Crystal Oscillator Circuit Constant Oscillation Stabilization Time Nominal Frequency Vendor Name Oscillator Name C3 [pF] C4 [pF] Rf2 [ Ω] Rd2 [ Ω] Operating Voltage Range [V] typ [s] max [s] Remarks 32.768kHz The oscillation stabilization time refers to the time interval that is required for the oscillation to get stabilized after the instruction for starting the subclock oscillation circuit is executed and to the time interval that is required for the oscillation to get stabilized after the HOLD mode is reset (see Figure 4). Caution: The components that are involved in oscillation should be placed as close to the IC and to one another as possible because they are vulnerable to the influences of the circuit pattern. Figure 1 CF Oscillator Circuit Figure 2 XT Oscillator Circuit Figure 3 AC Timing Measurement Point 0.5VDD CF2 CF1 C3 Rd2 C4 X’tal XT2 XT1 Rf2 C1 Rd1 C2 CF Rf1 |
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