Datenblatt-Suchmaschine für elektronische Bauteile |
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MC10319P Datenblatt(PDF) 2 Page - Motorola, Inc |
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MC10319P Datenblatt(HTML) 2 Page - Motorola, Inc |
2 / 20 page MC10319 2 MOTOROLA ANALOG IC DEVICE DATA ABSOLUTE MAXIMUM RATINGS Rating Symbol Value Unit Supply Voltage VCC(A),(D) VEE + 7.0 – 7.0 Vdc Positive Supply Voltage Differential VCC(D)– VCC(A) – 0.3 to + 0.3 Vdc Digital Input Voltage (Pins 18 to 20) VI(D) – 0.5 to + 7.0 Vdc Analog Input Voltage (Pins 1, 14, 23, 24) VI(A) – 2.5 to + 2.5 Vdc Reference Voltage Span (Pin 24 to Pin 23) – 2.3 Vdc Applied Output Voltage (Pins 4 to 10, 21 in 3–State) – – 0.3 to + 7.0 Vdc Junction Temperature TJ + 150 °C Storage Temperature Tstg – 65 to + 150 °C Devices should not be operated at these values. The “Recommended Operating Limits” table provides guidelines for actual device operation. RECOMMENDED OPERATING LIMITS Characteristic Symbol Min Typ Max Unit Power Supply Voltage (Pin 15) Power Supply Voltage (Pins 11, 17) VCC(A) VCC(D) + 4.5 + 5.0 + 5.5 Vdc VCC(D) – VCC(A) ∆VCC – 0.1 0 + 0.1 Vdc Power Supply Voltage (Pin 13) VEE – 6.0 – 5.0 – 3.0 Vdc Digital Input Voltages (Pins 18 to 20) VI(D) 0 – + 5.0 Vdc Analog Input (Pin 14) VI(A) – 2.1 – + 2.1 Vdc Voltage @ VRT (Pin 24) VRT – 1.0 – + 2.1 Vdc Voltage @ VRB (Pin 23) VRB – 2.1 – + 1.0 Vdc VRT – VRB ∆VR + 1.0 – + 2.1 Vdc VRB – VEE – 1.3 – – Vdc Applied Output Voltage (Pins 4 to 10, 21 in 3–State) Vo 0 – 5.5 Vdc Clock Pulse Width – High Clock Pulse Width – Low tCKH tCKL 5.0 15 20 20 – – ns Clock Frequency fCLK 0 – 25 MHz Operating Ambient Temperature TA 0 – + 70 °C ELECTRICAL CHARACTERISTICS (0 ° t TA t 70°C, VCC = 5.0 V, VEE = – 5.2 V, VRT = +1.0 V, VRB = – 1.0 V, unless noted.) Characteristic Symbol Min Typ Max Unit TRANSFER CHARACTERISTICS (fCKL = 25 MHz) Resolution N – – 8.0 Bits Monotonicity MON Guaranteed Bits Integral Nonlinearity INL – ± 1/4 ± 1.0 LSB Differential Nonlinearity DNL – – ± 1.0 LSB Differential Phase (See Figure 16) DP – 1 – Deg. Differential Gain (See Figure 16) DG – 1 – % Power Supply Rejection Ratio PSRR LSB/V (4.5 V t VCC t 5.5 V, VEE = – 5.2 V) – 0.1 – (– 6.0 V t VEE t – 3.0 V, VCC = + 5.0 V) – 0 – |
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