VDDA = VDDB= 15 V, VCCI = 3.3 V,
TA = 25°C, No load unless otherwise noted.
Figure 5-6 Per
Channel Current Consumption (IVDDA/B) vs Frequency (no load, VDD
= 15V or 25V) Figure 5-8 Per
Channel Current Consumption (IVDDA/B) vs Frequency (10-nF load,
VDD = 15V or 25V) Figure 5-10 Per
Channel (IVDDA/B) Quiescent Supply Current vs Temperature (no
load, input low, no switching) Figure 5-12 Rising and Falling Times vs Load (VDD = 15V) Figure 5-14 Propagation Delay vs Temperature Figure 5-16 Pulse
Width Distortion vs Temperature Figure 5-18 Propagation Delay Matching (tDM) vs Temperature Figure 5-20 VDD
5-V UVLO Hysteresis vs Temperature Figure 5-22 VDD
8-V UVLO Hysteresis vs Temperature Figure 5-24 VDD
12-V UVLO Hysteresis vs Temperature Figure 5-26 IN/DIS Low Threshold Figure 5-28 Dead
Time vs Temperature (with RDT = 20kΩ and 100kΩ) Figure 5-30 Typical Output Waveforms Figure 5-7 Per
Channel Current Consumption (IVDDA/B) vs Frequency (1-nF load,
VDD = 15V or 25V) Figure 5-9 Per
Channel (IVDDA/B) Supply Current vs Temperature (no load,
different switching frequencies) Figure 5-11 IVCCI Quiescent Supply Current vs Temperature (no load,
input low, no switching) Figure 5-13 Output Resistance vs Temperature Figure 5-15 Propagation Delay vs VCCI Figure 5-17 Propagation Delay Matching (tDM) vs VDD Figure 5-19 VDD
5-V UVLO Threshold vs Temperature Figure 5-21 VDD
8-V UVLO Threshold vs Temperature Figure 5-23 VDD
12-V UVLO Threshold vs Temperature Figure 5-25 IN/DIS Hysteresis vs Temperature Figure 5-27 IN/DIS High Threshold Figure 5-29 Dead
Time Matching vs Temperature (with RDT = 20kΩ and 100kΩ)