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STB13NK60Z_05 Datasheet, PDF (5/25 Pages) STMicroelectronics – N-CHANNEL 600V-0.48Ω-13A-TO-220/FP-D²/I²PAK-TO-247 Zener-Protected SuperMESH™ MOSFET
UCC1895
UCC2895
UCC3895
SLUS157L − DECEMBER 1999 − REVISED APRIL 2008
ELECTRICAL CHARACTERISTICS VDD = 12 V, RT = 82 kΩ, CT = 220 pF, RDELAB = 10 kΩ, RDELCD = 10 kΩ, CREF = 0.1 µF,
CVDD = 0.1 µF and no load on the outputs, TA = TJ. TA = 0°C to 70°C for UCC3895x, TA = −40°C to 85°C for UCC2895x and TA = −55°C to 125°C
for the UCC1895x. (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN TYP MAX
CURRENT SENSE
ICS(bias) Current sense bias current
Peak current threshold
0 V < CS < 2.5 V, 0 V ADS < 2.5 V
−4.5
20
1.90 2.00 2.10
Overcurrent threshold
2.4 2.5 2.6
Current sense to output delay
0V ≤ CS ≤ 2.3 V,
DELAB=DELCD=REF
75 110
SOFT-START/SHUTDOWN
ISOURCE
ISINK
Softstart source current
Softstart sink current
Softstart/disable comparator threshold
SS/DISB = 3.0 V,
SS/DISB = 3.0 V,
CS = 1.9 V
CS = 2.6 V
−40 −35 −30
325 350 375
0.44 0.50 0.56
ADAPTIVE DELAY SET (ADS)
tDELAY
DELAB/DELCD output voltage
Output delay(1)(3)
ADS bias current
ADS = CS = 0 V
ADS = 0 V,
ADS = CS = 0 V
0 V < ADS < 2.5 V,
CS = 2.0 V
0 V < CS < 2.5 V
0.45 0.50 0.55
1.9 2.0 2.1
450 560 620
−20
20
OUTPUT
VOH
High−level output voltage (all outputs) IOUT = −10 mA,
VDD to output
250 400
VOL
tR
tF
Low-level output voltage (all outputs)
Rise time(1)
Fall time(1)
IOUT = 10 mA
CLOAD = 100 pF
CLOAD = 100 pF
150 250
20
35
20
35
(1) Ensured by design. Not production tested.
(2) Minimum phase shift is defined as:
F + 180
tf (OUTC) * tf (OUTA)
tPERIOD
or
F + 180
tf (OUTC) * tf (OUTB)
tPERIOD
where
tf(OUTA) = falling edge of OUTA signal, tf(OUTB) = falling edge of OUTB signal
tf(OUTC) = falling edge of OUTC signal, tf(OUTD) = falling edge of OUTD signal
tPERIOD = period of OUTA or OUTB signal
(3) Output delay is measured between OUTA/OUTB or OUTC/OUTD. Output delay is defined as shown below where:
tf(OUTA) = falling edge of OUTA signal, tr(OUTB) = rising edge of OUTB signal
UNITS
µA
V
V
ns
µA
µA
V
V
V
ns
µA
mV
mV
ns
ns
tPERIOD
OUTA
tDELAY = tf(OUTC) − tf(OUTA)
Same applies to OUTB and OUTD
OUTC
OUTA
tDELAY = tR(OUTB) − tf(OUTA)
OUTB
Same applies to OUTC and OUTD
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