lv8735v ON Semiconductor, lv8735v Datasheet

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lv8735v

Manufacturer Part Number
lv8735v
Description
Bi-cmos Lsi Pwm Constant-current Control Stepping Motor Driver
Manufacturer
ON Semiconductor
Datasheet

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Ordering number : ENA1848
LV8735V
Overview
Features
Specifications
Absolute Maximum Ratings at Ta = 25°C
Supply voltage
Output peak current
Output current
Logic input voltage
MONI/EMO input voltage
The LV8735V is a 2-channel H-bridge driver IC that can switch a stepping motor driver, which is capable of micro-step
drive and supports 4W 1-2 phase excitation, and two channels of a brushed motor driver, which supports forward, reverse,
brake, and standby of a motor. It is ideally suited for driving brushed DC motors and stepping motors used in office
equipment and amusement applications.
• Single-channel PWM current control stepping motor driver (selectable with DC motor driver channel 2) incorporated.
• BiCDMOS process IC
• Low on resistance (upper side : 0.75Ω ; lower side : 0.5Ω ; total of upper and lower : 1.25Ω ; Ta = 25°C, I O = 1A)
• Excitation mode can be set to 2-phase, 1-2 phase, 2W1-2 phase , or 4W1-2 phase
• Excitation step proceeds only by step signal input
• Motor current selectable in four steps
• Output short-circuit protection circuit (selectable from latch-type or auto-reset-type) incorporated
• Unusual condition warning output pins
• Built-in thermal shutdown circuit
• No control power supply required
Parameter
"standard application", intended for the use as general electronics equipment (home appliances, AV equipment,
Any and all SANYO Semiconductor Co.,Ltd. products described or contained herein are, with regard to
communication device, office equipment, industrial equipment etc.). The products mentioned herein shall not be
intended for use for any "special application" (medical equipment whose purpose is to sustain life, aerospace
instrument, nuclear control device, burning appliances, transportation machine, traffic signal system, safety
equipment etc.) that shall require extremely high level of reliability and can directly threaten human lives in case
of failure or malfunction of the product or may cause harm to human bodies, nor shall they grant any guarantee
thereof. If you should intend to use our products for applications outside the standard applications of our
customer who is considering such use and/or outside the scope of our intended standard applications, please
consult with us prior to the intended use. If there is no consultation or inquiry before the intended use, our
customer shall be solely responsible for the use.
Specifications of any and all SANYO Semiconductor Co.,Ltd. products described or contained herein stipulate
the performance, characteristics, and functions of the described products in the independent state, and are not
guarantees of the performance, characteristics, and functions of the described products as mounted in the
customer
device, the customer should always evaluate and test devices mounted in the customer
equipment.
'
s products or equipment. To verify symptoms and states that cannot be evaluated in an independent
VM max
I O peak
I O max
V IN max
Vmo/Vemo
Symbol
Bi-CMOS LSI
PWM Constant-Current Control
Stepping Motor Driver
tw ≤ 10ms, duty 20%
Conditions
O0610 SY 20100924-S00002 No.A1848-1/26
Ratings
'
s products or
-0.3 to +6
-0.3 to +6
Continued on next page.
1.5
36
1
Unit
V
A
A
V
V

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lv8735v Summary of contents

Page 1

... LV8735V Overview The LV8735V is a 2-channel H-bridge driver IC that can switch a stepping motor driver, which is capable of micro-step drive and supports 4W 1-2 phase excitation, and two channels of a brushed motor driver, which supports forward, reverse, brake, and standby of a motor ideally suited for driving brushed DC motors and stepping motors used in office equipment and amusement applications ...

Page 2

... Vtdac3_4W switching) Vtdac4_4W Vtdac5_4W Vtdac6_4W Vtdac7_4W Vtdac8_4W Vtdac9_4W Vtdac10_4W Vtdac11_4W Vtdac12_4W Vtdac13_4W Vtdac14_4W Vtdac15_4W LV8735V Conditions * Conditions Conditions ST = “L” “H” “L”, with no load -1mA Design guarantee Design guarantee 1A, Upper-side on resistance 1A, Lower-side on resistance ...

Page 3

... Package Dimensions unit : mm (typ) 3333 TOP VIEW 15 0.65 0.22 (0.68) SIDE VIEW LV8735V Conditions Step 0 (When initialized : channel 1 comparator level) Step 2 (Initial state+1) Step 4 (Initial state+2) Step 6 (Initial state+3) Step 8 (Initial state+4) Step 10 (Initial state+5) Step 12 (Initial state+6) Step 14 (Initial state+7) Step 0 (When initialized : channel 1 ...

Page 4

... Substrate Specifications (Substrate recommended for operation of LV8735V) Size : 90mm × 90mm × 1.6mm (two-layer substrate [2S0P]) Material : Glass epoxy Copper wiring density : Copper wiring pattern diagram Cautions 1) The data for the case with the Exposed Die-Pad substrate mounted shows the values when 90% or more of the Exposed Die-Pad is wet ...

Page 5

... CP2 CP1 VREG5 ATT2 ATT1 EMO CEM EMM CHOP MONI RST/BLK STEP/DC22 FR/DC21 MD2/DC12 MD1/DC11 DM OE/CMK ST VREF GND LV8735V LV8735V Top view 44 OUT1A 43 OUT1A 42 PGND VM1 38 VM1 37 RF1 36 RF1 35 ...

Page 6

... Block Diagram LV8735V stage preamplifier Output stage preamplifier Output stage preamplifier Output stage preamplifier Output No.A1848-6/26 ...

Page 7

... VM1 Channel 1 motor power supply pin. 43, 44 OUT1A Channel 1 OUTA output pin. 22 GND Ground. 26, Connection 40,41 (No internal connection to the IC) LV8735V Equivalent Circuit VREG5 10kΩ 100kΩ GND VREG5 20kΩ 10kΩ 80kΩ GND ...

Page 8

... VREF Constant current control reference voltage input pin. 5 VREG5 Internal power supply capacitor connection pin. 8 EMO Output short-circuit state warning output pin. 12 MONI Position detection monitor pin. LV8735V Equivalent Circuit 4 VREG5 GND VREG5 500Ω GND VM GND VREG5 GND 100Ω ...

Page 9

... CHOP Chopping frequency setting capacitor connection pin Output enable signal input pin. 16 MD2/DC12 Excitation mode switching pin 2 (STM) / Channel 1 output control input pin 2 (DCM). LV8735V Equivalent Circuit VREG5 GND VREG5 GND VREG5 GND VREG5 GND 500Ω 500Ω No.A1848-9/26 ...

Page 10

... Position detection monitoring function The MONI position detection monitoring pin open drian type. When the excitation position is in the initial position, the MONI output is placed in the ON state. (Refer to "Examples of current waveforms in each of the excitation modes.") LV8735V Mode Internal regulator Standby ...

Page 11

... In the stepping motor driver mode (DM = Low or Open) of this IC, the blanking time is fixed at approximately 1μs. In the DC motor driver mode (DM = High), the blanking time can be switched to one of two levels using the RST/BLK pin. (Refer to "Blanking time switching function.") LV8735V Current setting reference voltage attenuation ratio 100% ...

Page 12

... When the OE pin is set High, the output is forced OFF and goes to high impedance. However, the internal logic circuits are operating, so the excitation position proceeds when the STEP signal is input. Therefore, when OE is returned to Low, the output level conforms to the excitation position proceeded by the STEP input. LV8735V Operating mode Normal operation Reset state ...

Page 13

... Fchop = Ichop/ (Cchop × Vtchop × 2) (Hz) Ichop : Capacitor charge/discharge current, typ 10μA Vtchop : Charge/discharge hysteresis voltage (Vtup-Vtdown), typ 0.5V For instance, when Cchop is 200pF, the chopping frequency will be as follows : Fchop = 10μA/ (200pF × 0.5V × 50kHz LV8735V Operating mode Clockwise (CW) CW mode CCW mode ...

Page 14

... LV8735V 33.3 Channel2 Phase current ratio (%) 2W1-2 phase (%) Channel 1 Channel 2 Channel 1 0 100 100 66.7 100.0 1-2 phase (%) ...

Page 15

... Typical current waveform in each excitation mode 2-phase excitation (CW mode) STEP MONI (%) 100 l1 0 -100 (%) 100 I2 0 -100 1-2 phase excitation (CW mode) STEP MONI (%) 100 I1 0 -100 (%) 100 I2 0 -100 LV8735V No.A1848-15/26 ...

Page 16

... STEP MONI (%) 100 -50 -100 (%) 100 -50 -100 4W1-2 phase excitation (CW mode) STEP MONI (%) 100 -50 -100 (%) 100 -50 -100 LV8735V No.A1848-16/26 ...

Page 17

... Above operations are repeated. Normally, the SLOW (+FAST) DECAY mode continues in the sine wave increasing direction, then entering the FAST DECAY mode till the current is attenuated to the set level and followed by the SLOW DECAY mode. LV8735V Set current FAST CHARGE ...

Page 18

... Example : At VREF of 1.5V, a reference voltage setting of 100% [(ATT1, ATT2) = (L, L)] and an RF resistance of 0.5Ω, the output current is set as shown below. Ilimit = 1.5V/5 × 100%/0.5Ω = 0.6A If, in this state, (ATT1, ATT2) has been set to (H, H), Ilimit will be as follows : Ilimit = 0.6A × 20% = 120mA LV8735V Output Mode OUT1 (2) B OFF ...

Page 19

... The time of the mask of current LIMIT function can be set by connecting capacitor C CMK between CMK pin - GND. Decide the value of capacitor C CMK according to the following expressions. Mask time : T CMK T CMK ≈ -C CMK × R × CMK / (I CMK × (sec) LV8735V brake forward ...

Page 20

... Typical current waveform in each excitation mode when stepping motor parallel input control 2-phase excitation (CW mode) DC11 DC12 DC21 DC22 (%) 100 I1 0 -100 (%) 100 I2 0 -100 1-2 phase excitation full torque (CW mode) DC11 DC12 DC21 DC22 (%) 100 l1 0 -100 (%) 100 l2 0 -100 LV8735V No.A1848-20/26 ...

Page 21

... H-bridge output state CEM voltage Short-circuit Short- Release detection state circuit Internal counter 1st counter 1st counter start stop LV8735V State Latch method Auto reset method Output ON Output OFF Threshold voltage Short-circuit 1st counter 1st counter start end Output ON Standby state ...

Page 22

... The overheating protection circuit doesn't secure protection and the destruction prevention of the set because it becomes operation by the area where ratings Tjmax=150°C of the junction temperature was exceeded. TSD = 180°C (typ) ΔTSD = 40°C (typ) LV8735V EMO : Unusual condition warning output pin MONI : Excitation initial position detection monitoring EMO : Channel 1 warning output pin ...

Page 23

... When the ST pin is set High, the charge pump circuit operates and the VG pin voltage is boosted from the VM voltage to the VM + VREG5 voltage. Because the output is not turned on if VM+4V or more is not pressured, the voltage of the VG pin recommends the drive of the motor to put the time of t ONG or more, and to begin. ST VM+VREG5 VM+4V VM LV8735V tONG VG Pin Voltage Schematic View VG pin voltage No.A1848-23/26 ...

Page 24

... When VREF = 1.5V I OUT = VREF/5/RF resistance = 1.5V/5/0.47Ω = 10.64A Chopping frequency setting Fchop = Ichop/ (Cchop × Vtchop × 10μA/ (200pF × 0.5V × 50kHz Timer latch time when the output is short-circuited Tcem = Ccem × Vtcem/Icem = 100pF × 1V/10μA = 10μs LV8735V 1 VG OUT1A OUT1A 43 ...

Page 25

... When VREF = 1.5V Ilimit = VREF/5/RF resistance = 1.5V/5/0.47Ω = 0.6A Chopping frequency setting Fchop = Ichop/ (Cchop × Vtchop × 10μA/ (200pF × 0.5V × 50kHz Timer latch time when the output is short-circuited Tcem = Ccem × Vtcem/Icem = 100pF × 1V/10μA = 10μs LV8735V 1 VG OUT1A OUT1A 43 ...

Page 26

... SANYO Semiconductor Co.,Ltd. shall not be liable for any claim or suits with regard to a third party's intellctual property rights which has resulted from the use of the technical information and products mentioned above. This catalog provides information as of October, 2010. Specifications and information herein are subject to change without notice. LV8735V PS No.A1848-26/26 ...

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