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TCF6000 Datasheet(PDF) 2 Page - Motorola, Inc |
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TCF6000 Datasheet(HTML) 2 Page - Motorola, Inc |
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2 / 6 page ![]() TCF6000 2 MOTOROLA ANALOG IC DEVICE DATA MAXIMUM RATINGS (TA = 25°C, unless otherwise noted, Note 1.) Rating Symbol Value Unit Supply Voltage VCC 6.0 V Supply Current Ii 300 mA Clamping Current IIK ±50 mA Junction Temperature TJ 150 °C Power Dissipation (TA = + 85°C) PD 400 m/W Thermal Resistance (Junction–Ambient) θJA 100 °C/W Operating Ambient Temperature Range TA –40 to +85 °C Storage Temperature Range Tstg –55 to + 150 °C NOTE: 1. Values beyond which damage may occur. ELECTRICAL CHARACTERISTICS (TA = 25°C, 4.5 ≤ VCC ≤ 5.5 V, unless otherwise noted.) Characteristics Symbol Min Max Unit Positive Clamping Voltage (Note 2) (IIK = 10 mA, –40°C ≤ TA ≤ + 85°C) V(IK) – VCC + 1.0 V Positive Peak Clamping Current IIK(P) – 20 mA Negative Peak Clamping Voltage (IIK = –10 mA, –40°C ≤ TA ≤ + 85°C) V(IK) –0.3 – V Negative Peak Clamping Current IIK(P) –20 – mA Output Leakage Current (0 V ≤ Vin ≤ VCC) (0 V ≤ Vin ≤ VCC, –40°C ≤ TA ≤ + 85°C) IL ILT – – 1.0 5.0 µA Channel Crosstalk (ACT = 20 log IL/IIK) ACT 100 – dB Quiescent Current (Package) IB – 2.0 mA NOTE: 2. The device might not give 100% protection in CMOS applications. CIRCUIT DESCRIPTION To ensure the reliable operation of any integrated circuit based electronics system, care has been taken that voltage transients do not reach the device I/O pins. Most NMOS, HMOS and Bipolar integrated circuits are particularly sensitive to negative voltage peaks which can provoke latch–up or otherwise disturb the normal functioning of the circuit, and in extreme cases may destroy the device. Generally the maximum rating for a negative voltage transients on integral circuits is –0.3 V over the whole temperature range. Classical protection units have consisted of diode/resistor networks as shown in Figures 2a and 2b. The arrangement in Figure 2a does not, in general, meet the specification and is therefore inadequate. The problem with the solution shown if Figure 2b lies mainly with the high current drain through the biassing devices R1 and D3. A second problem exists if the input line carries an analog signal. When Vin is close to the ground potential, currents arising from leakage and mismatch between D3 and D2 can be sourced into the input line, thus disturbing the reading. (a) (b) Figure 2. Classical Protection Circuits VCC D1 Vin Rin D2 Cin Gnd Gnd µC D3 Vin Rin Cin R1 VCC D2 µC D1 Figure 3 shows the clamping characteristics which are common to each of the six cells in the Peripheral Clamping Array. As with the classical protection circuits, positive voltage transients are clamped by means of a fast diode to the VCC supply line. |
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