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FAN8082 (KA3082N)
Bi-directional DC Motor Driver
Features
* Built-in brake function for stable brake characteristics. * Built-in element to absorb a surge current derived from changing motor direction and braking motor drive. * Motor speed control by an external voltage. * Stable motor direction change. * Interfaces with CMOS devices. * Built-in the thermal shut down circuit (165C). * Low standby current. (6.5mA)
Description
The FAN8082 is a monolithic integrated circuit designed for driving bi-directional DC motor with braking and speed control, and it is suitable for the loading motor driver of VCR, CDP, and TOY systems. The speed control can be achieved by adjusting the external voltage of the speed control pin. It has two pins of logic inputs for controlling the forward/ reverse and braking.
8-DIP-300
Typical Applications
* Compact disk player (CDP) tray or changer * Low current DC motor such as audio or video equipment. * General DC motor
Ordering Information
Device FAN8082 Package 8-DIP-300 Operating Temp. -25C ~ +75C
Rev. 1.0.1 February. 2000.
(c)2000 Fairchild Semiconductor International
1
FAN8082 (KA3082N)
Pin Assignments
GND VO1
1
8
VO2
2
7
PVCC
FAN8082
VCTL
3 6
SVCC
VIN1
4
5
VIN2
Pin Definitions
Pin Number 1 2 3 4 5 6 7 8 Pin Name GND VO1 VCTL VIN1 VIN2 SVCC PVCC VO2 I/O O I I I O Ground Output 1 Motor speed control Input 1 Input 2 Supply voltage (Signal) Supply voltage (Power) Output 2 Pin Function Description
Internal Block Diagram
GND VO1
1
DRIVER OUT
8
VO2
2
7
PVCC
PRE DRIVER VCTL
3
TSD
BIAS
6
SVCC
VIN1
4
LOGIC SWITCH
5
VIN2
2
FAN8082 (KA3082N)
Equivalent Circuit
Description Output Pin No. 2, 8
Vcc
Internal circuit
Vcc
2 8
Speed control
3
Vcc Vcc
VCC
3
Input
4, 5
Vcc Vcc
VCC
4 5
SVCC PVCC
6 7
VCC
6 7
3
FAN8082 (KA3082N)
Absolute Maximum Ratings (Ta = 25C)
Parameter Supply voltage Maxium Output current Power dissipation Operating temperature Storage temperature Symbol VCCmax IOmax Pd TOPR TSTG Value 18 1.6
note1
Unit V A W C C
Remark -
1.0note2 -25 ~ +75 -55 ~ +125
NOTES: 1. Duty 1 / 100, pulse width 500s 2. 1) When mounted on glass epoxy PCB (76.2 x 114 x 1.57mm) 2) Power dissipation reduces 9.6mV / C for using above Ta=25C. 3) Do not exceed Pd and SOA(Safe Operating Area).
Power Dissipation Curve
Pd (mW)
1, 0 SOA
0
0
25
50
75
100
150 125 15 Ambient temperature, Ta [C]
Recommened Operating Conditions (Ta = 25C)
Parameter Operating supply voltage
note
Symbol SVCC,PVCC
Operating voltage range 7 ~ 18
Unit V
NOTE: Caution 1) PVCC SVCC Caution 2) When PVCC is above 16V, the VCTL must be opened or 8.5 VCTL PVCC
4
FAN8082 (KA3082N)
Electrical Characteristics (Ta = 25C)
Parameter Quiescent current Min. input-on current 1 Min. input-on current 2 Input threshold voltage 1 Input threshold voltage 2 Output leakage current 1 Output leakage current 2 Zener current 1 Zener current 2 Output voltage 1 Output voltage 2 Saturation voltage 1 (Upper) Saturation voltage 2 (Upper) Saturation voltage 1 (Lower) Saturation voltage 2 (Lower) Symbol ICC IIN1 IIN2 VITH1 VITH2 IOL1 IOL2 IZ1 IZ2 VO1 VO2 V SAT1 VSAT2 VSAT3 VSAT4 Conditions Pin4 & 6: GND, RL= RL=, Pin4=IIN1, Pin5=L RL=, Pin4=L, Pin5=IIN RL=, Pin4=VIN, Pin5=L RL=, Pin4=L, Pin5=VIN RL=, Pin4 & 6=GND RL=, Pin4 & 6=GND RL=, Pin4=H, Pin5=L RL=, Pin4=L, Pin5=H RL=60, Pin4=H, Pin5=L RL=60, Pin4=L, Pin5=H IO=300mA IO=500mA IO=300mA IO=500mA Min. 4 1.0 1.0 6.6 6.6 Typ. 6.5 10 10 1.3 1.3 0.01 0.01 0.85 0.85 7.2 7.2 1.9 1.9 0.25 0.4 Max. 9.5 30 30 1.6 1.6 1 1 1.5 1.5 7.4 7.4 2.3 2.3 0.5 0.65 Units mA A A V V mA mA mA mA V V V V V V
5
FAN8082 (KA3082N)
Application Information
1. THERMAL SHUT DOWN CIRCUIT
I
Q1 V1 R1 Q2 V2 R2 Q3
When Ta = 25C, Q2 & Q3 are Turned-off and output stage operates normally. V1 = I x (R1 + R2) V2 = R2 / (R1 + R2) x V1 = 0.37V When Ta = 165C, Q2 & Q3 Turn-on and it turns-off the output stage. 0.70V - 0.37V = 330mV (When Q2 & Q3 are Turn-on, VbeQ2 = VbeQ3 = 0.70V) And temperature coefficient of Q2 = Q3 = -2mV / C T.S.D: 330mV / 2mV = 165C 2. LOGIC INPUT & OUTPUT TABLE Input Pin #4 Low High Low High INPUT High is above 2.0V. INPUT Low is below 0.7V. *Low : All Power TRs are off-state. But internal Bias makes output Voltage low state. Pin #5 Low Low High High Pin #2 *Low High Low *Low Output Pin #8 *Low Low High *Low Motor Brake Forward Reverse Brake
6
FAN8082 (KA3082N)
3. LOGIC SWITCH CIRCUIT
SVCC V2 5 Q7 Q6 Q5 VCTL 7.4V 3
V1
4
Q4
This circuit define reference voltage of output. When pin #4 is "H" and pin #5 is "L", - V1 = Vzd + VbeQ4 + VbeQ5 *=* 8.9V - V2 = Vbeq 7 + VsatQ6 *=* 0.87V V1 and V2 are related with the output voltage of the motor and change according to the voltage of pin #3 (VCTL).
7
FAN8082 (KA3082N)
4. DRIVE OUTPUT CIRCUIT
PVCC V1 Q1 Q4 V2
Q2 R1 VO1 RL
M
Q5 R2 VO2
Q3
Q6
V1 = 8.9V V2 = 0.87V VO1 = V1 - VBEQ1 - VBEQ2 VO2 = VQ6SAT VO = VO1 - VO2 = V1 - VBEQ1 - VBEQ2 - VQ6SAT IRL = (VO1 - VO2) / RL
8
FAN8082 (KA3082N)
Typical Perfomance Chracteristics
CHARACTERISTICS GRAPHS 1. VCC vs ICC
10 9 8 7 6 5 4 3 2 1 0
2. Temperature vs ICC
10 9 8 7 6 5 4 3 2 1 0 -35
ICC (mA)
ICC (mA)
VIN = 0V
VCC = 12V VIN = 0V
0
2
4
6
8
10
12
14
16
18
20
-15
5
25
Temp. (C)
45
65
85
VCC (V)
3. VCTL vs. VO
12 10 8 VO (V) 6 4 2 0 0
2 4 6 8 10 12 VCC = 12V VIN = 5V/0V RL = 60
4. Temperature vs. VO
7.7 7.6 7.5 7.4 7.3 7.2 7.1 7.0 6.9 6.8 6.7 6.6 6.5 -35
VO (V)
VCC = 12V VCTL = 7.4V VIN = 5V/0V RL = 60
-15
5
25
Temp. (C)
45
65
85
VCTL (V)
5. IO vs. VSAT (UPPER)
3.0 2.5
VSAT (V)
6. IO vs. VSAT (LOWER)
1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0
0.2 0.4 0.6 0.8 IO (A)
1.5 1.0 0.5 0.0 0.2
0.4 0.6 IO (A) 0.8 1.0 1.2 VCC = 12V VCTL = open VIN = 5V/0V
VSAT (V)
2.0
VCC = 12V VCTL = open VIN = 5V/0V 1.0 1.2
9
FAN8082 (KA3082N)
Test Circuits
1
GND
VO2
8
2
VO1
PVCC
7
FAN8082
3
VCTL
SVCC
6
4
VIN1
VIN2
5
A S1 S2 A S5 ZD 7.4V
S3
S4
A
A VCC VIN
10
FAN8082 (KA3082N)
Application Circuits
1
GND
VO2
8
2
VO1
RS
PVCC
7
VCC
FAN8082
3
VCTL
SVCC
6
4
VIN1
VIN2
104
5
ZD
104
M
11
FAN8082 (KA3082N)
DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. LIFE SUPPORT POLICY FAIRCHILD'S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR INTERNATIONAL. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user.
www.fairchildsemi.com 12/1/00 0.0m 001 Stock#DSxxxxxxxx 2000 Fairchild Semiconductor International
2. A critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.


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