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ADUM1233 Datasheet(PDF) 3 Page - Analog Devices |
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ADUM1233 Datasheet(HTML) 3 Page - Analog Devices |
3 / 12 page ADuM1233 Rev. A | Page 3 of 12 SPECIFICATIONS ELECTRICAL CHARACTERISTICS All voltages are relative to their respective ground. 4.5 V ≤ VDD1 ≤ 5.5 V, 12 V ≤ VDDA ≤ 18 V, 12 V ≤ VDDB ≤ 18 V. All min/max specifications apply over the entire recommended operating range, unless otherwise noted. All typical specifications are at TA = 25°C, VDD1 = 5 V, VDDA = 15 V, VDDB = 15 V. Table 1. Parameter Symbol Min Typ Max Unit Test Conditions DC SPECIFICATIONS Input Supply Current, Quiescent IDDI(Q) 3.0 4.2 mA Output Supply Current A or Output Supply Current B, Quiescent IDDA(Q), IDDB(Q) 0.3 1.2 mA Input Supply Current, 10 Mbps IDDI(10) 6.0 9.0 mA Output Supply Current A or Output Supply Current B, 10 Mbps IDDA(10), IDDB(10) 16 22 mA CL = 200 pF Input Currents IIA, IIB, IDISABLE −10 +0.01 +10 μA 0 ≤ VIA, VIB, VDISABLE ≤ VDD1 Logic High Input Threshold VIH 2.0 V Logic Low Input Threshold VIL 0.8 V Logic High Output Voltages VOAH,VOBH VDDA − 0.1, VDDB − 0.1 VDDA, VDDB V IOA, IOB = −1 mA Logic Low Output Voltages VOAL,VOBL 0.1 V IOA, IOB = +1 mA Output Short-Circuit Pulsed Current1 IOA(SC), IOB(SC) 100 mA SWITCHING SPECIFICATIONS Minimum Pulse Width2 PW 100 ns CL = 200 pF Maximum Switching Frequency3 10 Mbps CL = 200 pF Propagation Delay4 tPHL, tPLH 97 124 160 ns CL = 200 pF Change vs. Temperature 100 ps/°C CL = 200 pF Pulse Width Distortion, |tPLH − tPHL| PWD 8 ns CL = 200 pF Channel-to-Channel Matching, Rising or Falling Edges5 5 ns CL = 200 pF Channel-to-Channel Matching, Rising vs. Falling Edges6 13 ns CL = 200 pF Part-to-Part Matching, Rising or Falling Edges7 55 ns CL = 200 pF, Input tR = 3 ns Part-to-Part Matching, Rising vs. Falling Edges8 63 ns CL = 200 pF, Input tR = 3 ns Output Rise/Fall Time (10% to 90%) tR/tF 25 ns CL = 200 pF 1 Short-circuit duration less than 1 second. 2 The minimum pulse width is the shortest pulse width at which the specified timing parameters are guaranteed. 3 The maximum switching frequency is the maximum signal frequency at which the specified timing parameters are guaranteed. 4 tPHL propagation delay is measured from the 50% level of the falling edge of the VIx signal to the 50% level of the falling edge of the VOx signal. tPLH propagation delay is measured from the 50% level of the rising edge of the VIx signal to the 50% level of the rising edge of the VOx signal. 5 Channel-to-channel matching, rising or falling edges is the magnitude of the propagation delay difference between two channels of the same part when the inputs are either both rising or falling edges. The supply voltages and the loads on each channel are equal. 6 Channel-to-channel matching, rising vs. falling edges is the magnitude of the propagation delay difference between two channels of the same part when one input is a rising edge and the other input is a falling edge. The supply voltages and loads on each channel are equal. 7 Part-to-part matching, rising or falling edges is the magnitude of the propagation delay difference between the same channels of two different parts when the inputs are either both rising or falling edges. The supply voltages, temperatures, and loads of each part are equal. 8 Part-to-part matching, rising vs. falling edges is the magnitude of the propagation delay difference between the same channels of two different parts when one input is a rising edge and the other input is a falling edge. The supply voltages, temperatures, and loads of each part are equal. |
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