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DRV3204-Q1 Datasheet, PDF (5/38 Pages) Texas Instruments – DRV3204-Q1 Three-Phase Brushless Motor Driver
Not Recommended for New Designs
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6.3 Thermal Information
THERMAL METRIC
θJA
θJCtop
θJB
ψJT
ψJB
θJCbot
Junction-to-ambient thermal resistance
Junction-to-case (top) thermal resistance
Junction-to-board thermal resistance
Junction-to-top characterization parameter
Junction-to-board characterization parameter
Junction-to-case (bottom) thermal resistance
6.4 Electrical Characteristics
VB = 12 V, TA = -40°C to 125℃ (unless otherwise specified)
PARAMETER
TEST CONDITIONS
WATCHDOG
VSTN(1) Function start VCC voltage RES
tON (1)
tOFF (1)
tRL (1)
tRH (1)
tRES (1)
Pwth (1)
Power-on time RES
Clock-off reset time RES
Reset-pulse low time RES
Reset-pulse high time RES
Reset delay time RES
Pulse duration PRN
SPI
See Figure 1
fop
SPI clock frequency
tlead
Enable lead time
twait
Wait time between two successive
communications
tlag
Enable lag time
tpw
SCLK pulse duration
tsu
Data setup time
th
Data hold time
tdis
Data-output disable time
ten
Data-output enable time
tv
Data delay time, SCK to DOUT
CHARGE PUMP
CL = 50 pF, see Figure 23.
Vchv1_0 Output voltage, PDCPV
VB = 5.3 V, Iload = 0 mA, C1 = C2 =
47 nF,
CCP = 2.2 µF, R1 = R2 = 0 Ω
Vchv1_1 Output voltage, PDCPV
VB = 5.3 V, Ioad = 5 mA, C1 = C2 =
47 nF,
CCP = 2.2 µF, R1 = R2 = 0 Ω
Vchv1_2 Output voltage, PDCPV
VB = 5.3 V, Ioad = 8 mA, C1 = C2 =
47 nF,
CCP = 2.2 µF, R1 = R2 = 0 Ω
Vchv2_0 Output voltage, PDCPV
VB = 12 V, Ioad = 0 mA, C1 = C2 =
47 nF,
CCP = 2.2 µF, R1 = R2 = 0 Ω
Vchv2_1 Output voltage, PDCPV
VB = 12 V, Ioad = 11 mA, C1 = C2 =
47 nF,
CCP = 2.2 µF, R1 = R2 = 0 Ω
DRV3204-Q1
SLVSBT3C – MARCH 2013 – REVISED JULY 2016
DRV3204-Q1
PHP (HTQFP)
48 PINS
26.1
11.5
7.2
0.2
7.1
0.4
UNIT
°C/W
°C/W
°C/W
°C/W
°C/W
°C/W
MIN
TYP
MAX UNIT
-
0.8
2.5
3
64
80
16
20
64
80
30
71.5
2
-
1.3
V
3.5
ms
96
ms
24
ms
96
ms
90
µs
-
µs
-
4 MHz
200
-
-
ns
5
-
-
µs
100
-
-
ns
100
-
-
ns
100
-
-
ns
100
-
-
ns
-
-
200
ns
-
-
100
ns
0
-
100
ns
VB+7
VB+8
-
V
VB+5.5 VB+6.5
-
V
VB+4.5 VB+5.5
-
V
VB+10
VB+12
VB+14
V
VB+9.5 VB+11.5 VB+13.5
V
(1) Specified by design
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