TB6575FNG Toshiba, TB6575FNG Datasheet

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TB6575FNG

Manufacturer Part Number
TB6575FNG
Description
Manufacturer
Toshiba
Datasheet

Specifications of TB6575FNG

Function
Controller
Vopmax (vm*)
5.0V (5.5V)
Io (lpeak)
20mA
Sinusoidal Current Wave
no
Sensor-less
yes
Speed Feedback Loop
no
Package
SSOP24
Rohs Compatible†
yes

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PWM Sensorless Controller for 3-Phase Full-Wave BLDC Motors
current control for 3-phase full-wave BLDC motors. It controls
rotation speed by changing a PWM duty cycle by analog voltage.
Features
The TB6575FNG provides sensorless commutation and PWM
3-phase full-wave sensorless drive
PWM chopper drive
PWM duty cycle control by analog input
20-mA current sink capability on PWM output pins
Overcurrent protection
Forward/reverse rotation
Lead angle control (7.5° and 15°)
Overlap commutation
Rotation speed sensing signal
DC excitation mode to improve startup characteristic
DC excitation time and forced commutation time for startup operation can be changed.
Forced commutation frequency can be selected. (f
Output polarity switching (P-channel + N-channel, N-channel + N-channel)
TB6575FNG is a Pb-free product.
The following conditions apply to solderability:
*Solderability
1.
2.
Use of Sn-37Pb solder bath
*solder bath temperature = 230ºC
*dipping time = 5 seconds
*number of times = once
*use of R-type flux
Use of Sn-3.0Ag-0.5Cu solder bath
*solder bath temperature = 245ºC
*dipping time = 5 seconds
*number of times = once
*use of R-type flux
TOSHIBA CMOS Integrated Circuit Silicon Monolithic
TB6575FNG
XT
/(6 × 2
1
16
), f
XT
/(6 × 2
Weight: 0.14 g (typ.)
17
), f
XT
/(6 × 2
18
) )
TB6575FNG
2008-9-11

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TB6575FNG Summary of contents

Page 1

... TOSHIBA CMOS Integrated Circuit Silicon Monolithic PWM Sensorless Controller for 3-Phase Full-Wave BLDC Motors The TB6575FNG provides sensorless commutation and PWM current control for 3-phase full-wave BLDC motors. It controls rotation speed by changing a PWM duty cycle by analog voltage. Features • 3-phase full-wave sensorless drive • ...

Page 2

... Timing control Clock generation GND Tout Tin WAVE SEL_LAP 19 Duty 18 OUT_WN 17 OUT_WP 16 OUT_VN 15 OUT_VP 14 OUT_UN 13 OUT_UP 2 TB6575FNG OS FG_OUT OUT_UP 15 OUT_VP PWM 17 OUT_WP generator 14 OUT_UN 16 OUT_VN 18 OUT_WN Overcurrent 22 OC protection Position 23 WAVE recognition 2008-9-11 ...

Page 3

... V (typ.), the START pin goes low to start DC excitation. When V SP After the IP pin reaches V /2, the TB6575FNG moves from DC excitation to forced DD commutation mode Low or open: Lead angle of 7.5° high: Lead angle of 15° ...

Page 4

... The pin has a pull-up resistor. Forced commutation frequency select pin High or open: Forced commutation frequency Middle: ST Low: The pin has a pull-up resistor. Description = f /(6 × /(6 × 2 Forced commutation frequency /(6 × 2 Forced commutation frequency TB6575FNG 2008-9-11 ...

Page 5

... DC excitation mode and then the rotation is started in forced commutation mode. An external capacitor sets the times that the TB6575FNG stays in DC excitation and forced commutation modes. Those times vary depending on the motor type and motor loading. Thus, they must be adjusted experimentally ...

Page 6

... SC Signal Delay in Rotational Speed Control (V The V input is used to control the motor speed; the TB6575FNG allows the motor to start, stop and SP change the speed according to the voltage at V the voltage applied to the SC input. The voltage at the SC input equals the charging voltage of the capacitor C1, which depends on its charging and discharging times ...

Page 7

... AD converter to control the duty cycle SP Duty cycle 100 ( (typ higher V SP OFF ON ( TB6575FNG ( (typ.) When the SC pin capacitor = 0.47 µ and V SP × − (a): T ...

Page 8

... Motor position detection error A position detection is synchronized with the PWM signal generated in the IC. Thus, a position detection error relative to the PWM signal frequency may occur. Keep this in mind especially when the TB6575FNG is used for a high-speed motor. A detection is performed on the falling edge of the PWM signal. An error is recognized when the pin voltage exceeds the reference voltage. Detection error time < ...

Page 9

... OUT_WN 10. Overlap commutation When SEL_LAP = high, the TB6575FNG is configured to allow for 120° commutation. When SEL_LAP = low configured to allow for overlap commutation. In overlap commutation, there is an overlap period during which both the outgoing transistor and incoming transistor are conducting (as shown in the shaded areas) ...

Page 10

... Oscillation frequency f XT (Ta = 25°C) Symbol Rating Unit V 5 −0 0 OUT P 780 (Note −30 to 105 T °C opr −55 to 150 T °C stg Test Condition ⎯ ⎯ ⎯ 10 TB6575FNG Min Typ. Max Unit 4.5 5.0 5 −0.3 ⎯ 0.3 2.0 4.0 8.0 MHz 2008-9-11 ...

Page 11

... FG_OUT = 5 5 OUT OUT_UP, OUT_VP, OUT_WP ⎯ OUT_UN, OUT_VN, OUT_WN, FG_OUT (L) ⎯ (H) ⎯ SC ⎯ pin = 0.47 µ ⎯ TB6575FNG Min Typ. Max Unit ⎯ 0 ⎯ ⎯ −75 −50 ⎯ µA ⎯ −1 ⎯ ...

Page 12

... WAVE: 450 mV (typ.) 4. OUT_UP, OUT_UN, OUT_VP, OUT_VN, OUT_WP, OUT_WN and FG_OUT pins Internal logic Internal logic 6. OC pin pin Tout OC pin 12 TB6575FNG , F , WAVE and OS pins Internal logic 1 kΩ Output pin DD Internal logic 200 kΩ 2008-9-11 ...

Page 13

... X X GND Tout Tin and GND lines since the IC may be destroyed by short-circuiting between outputs, air contamination faults OUT_UP 13 OUT_VP 15 OUT_WP 17 OUT_UN 14 OUT_VN 16 OUT_WN WAVE 23 TB6575FNG kΩ TA75393P 2008-9-11 ...

Page 14

... Package Dimensions Weight: 0.14 g (typ.) 14 TB6575FNG 2008-9-11 ...

Page 15

... Otherwise, the current or power consumption may exceed the absolute maximum rating, and exceeding the rating(s) may cause the device breakdown, damage or deterioration, and may result injury by explosion or combustion. In addition, do not use any device that is applied the current with inserting in the wrong orientation or incorrectly even just one time. 15 TB6575FNG 2008-9-11 ...

Page 16

... Please contact your sales representative for product-by-product details in this document regarding RoHS compatibility. Please use these products in this document in compliance with all applicable laws and regulations that regulate the inclusion or use of controlled substances. Toshiba assumes no liability for damage or losses occurring as a result of noncompliance with applicable laws and regulations. 16 TB6575FNG 20070701-EN GENERAL 2008-9-11 ...

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