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LM12L458CIV データシート(PDF) 7 Page - Texas Instruments |
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LM12L458CIV データシート(HTML) 7 Page - Texas Instruments |
7 / 38 page LM12L458 www.ti.com SNAS085B – JULY 1999 – REVISED MARCH 2013 Digital Characteristics The following specifications apply for VA+ = VD+ = +3.3V, unless otherwise specified. Boldface limits apply for TA = TJ = TMIN to TMAX; all other limits TA = TJ = 25°C. (1) (2) (3) Symbol Parameter Conditions Typical(4) Limits(5) Units VIN(1) Logical “1” Input Voltage VA+ = VD+ = +3.6V 2.0 V (min) VA+ = VD+ = +3.0V ALE, 0.7 VIN(0) Logical “0” Input Voltage V (max) Pin 22 0.6 1.0 μA (max) IIN(1) Logical “1” Input Current VIN = +3.3V 0.005 2.0 μA (max) −1.0 IIN(0) Logical “0” Input Current VIN = 0V −0.005 μA (max) −2.0 CIN D0–D15 Input Capacitance 6 pF VA+ = VD+ = 3.0V VOUT(1) Logical “1” Output Voltage IOUT = −360 μA 2.4 V (min) IOUT = −10 μA 2.85 V (min) VA+ = VD+ = +3.0V VOUT(0) Logical “0” Output Voltage IOUT = 1.6 mA 0.4 V (max) IOUT = 10 μA 0.1 V (max) VOUT = 0V −0.01 −3.0 μA (max) IOUT TRI-STATE Output Leakage Current VOUT = +3.3V 0.01 3.0 μA (max) (1) Two on-chip diodes are tied to each analog input through a series resistor, as shown below. Input voltage magnitude up to 5V above VA+ or 5V below GND will not damage the LM12L458. However, errors in the A/D conversion can occur if these diodes are forward biased by more than 100 mV. As an example, if VA+ is 3.0 VDC, full-scale input voltage must be =3.1 VDC to ensure accurate conversions. See Figure 3 (2) VA+ and VD+ must be connected together to the same power supply voltage and bypassed with separate capacitors at each V + pin to assure conversion/comparison accuracy. (3) Accuracy is ensured when operating at fCLK = 6 MHz. (4) Typical figures are at TA = 25°C and represent most likely parametric norm. (5) Limits are specified to AOQL (Average Output Quality Level). Digital Timing Characteristics The following specifications apply for VA+ = VD+ = +3.3V, tr = tf = 3 ns, and CL = 100 pF on data I/O, INT and DMARQ lines unless otherwise specified. Boldface limits apply for TA = TJ = TMIN to TMAX; all other limits TA = TJ = 25°C. (1) (2) (3) Symbol (See Figure 28 Figure 29 Parameter Conditions Typical(4) Limits(5) Units Figure 30) 1, 3 CS or Address Valid to ALE Low Set-Up Time 40 ns (min) 2, 4 CS or Address Valid to ALE Low Hold Time 20 ns (min) 5 ALE Pulse Width 45 ns (min) 6 RD High to Next ALE High 35 ns (min) 7 ALE Low to RD Low 20 ns (min) 8 RD Pulse Width 100 ns (min) 9 RD High to Next RD or WR Low 100 ns (min) 10 ALE Low to WR Low 20 ns (min) 11 WR Pulse Width 60 ns (min) 12 WR High to Next ALE High 75 ns (min) 13 WR High to Next RD or WR Low 140 ns (min) (1) Two on-chip diodes are tied to each analog input through a series resistor, as shown below. Input voltage magnitude up to 5V above VA+ or 5V below GND will not damage the LM12L458. However, errors in the A/D conversion can occur if these diodes are forward biased by more than 100 mV. As an example, if VA+ is 3.0 VDC, full-scale input voltage must be =3.1 VDC to ensure accurate conversions. See Figure 3 (2) VA+ and VD+ must be connected together to the same power supply voltage and bypassed with separate capacitors at each V + pin to assure conversion/comparison accuracy. (3) Accuracy is ensured when operating at fCLK = 6 MHz. (4) Typical figures are at TA = 25°C and represent most likely parametric norm. (5) Limits are specified to AOQL (Average Output Quality Level). Copyright © 1999–2013, Texas Instruments Incorporated Submit Documentation Feedback 7 Product Folder Links: LM12L458 |
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