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USER’S MANUAL

AN1899

Rev 0.00

January 8, 2014

HIP2103-4DEMO1Z

HIP2103/HIP2104, 3-phase, Full, or Half Bridge Motor Drive

AN1899 Rev 0.00

Page 1 of 24

January 8, 2014

Introduction

The HIP2103-4DEMO1Z is a general purpose motor drive with 
a microprocessor controller. Three motor drive topologies are 
supported: 3-phase for BLDC motors, and full and half bridge 
for conventional brushed DC motors. Hall effect rotor position 
sensors are used to control the switching sequence of the 
BLDC topology (not required for the brushed DC motors).

The operating bridge voltage can vary between 13V and 50V 
and the maximum motor current is 20A (with sufficient air 
flow). This motor drive can be used as a design reference for 
multiple applications including e-bikes, battery powered tools, 
electric power steering, wheel chairs, or any other application 
where a brushed or brushless DC motors are utilized. Because 
this demonstration board is primarily intended to highlight the 
application of the HIP2103 and HIP2104 3-phase MOSFET 
drivers with no specific motor targeted, the control features 
are limited to simple functions such as start/stop, reverse 
rotation, and braking. Open loop speed control is 
implemented. More advanced control features such as torque 
control, speed regulation and regenerative braking are not 
implemented because these methods require close 
integration with the characteristics of the motor load 
dynamics. 

Important

Because Hall sensor switching logic sequences for BLDC 
motors are not all the same, this demo board supports most, if 
not all, variations of sequence logic. Please refer to the 
sequence charts at the end of this application note to verify 
that your desired sequence is implemented. If you require a 
different sequence for your specific motor application or if you 
need help identifying the correct switching sequence for your 
specific motor, please contact Intersil prior to ordering this 
demo board for possible support for a new switching 
sequence.

Scope

This application note covers the design details of the 
HIP2103-4DEMO1Z with a focus on the design 

implementation of the HIP2103 and HIP2104 drivers including 
recommended support circuits. 

Also covered is the design method of the bipolar current 
sensing feature. Presently, current sensing on this demo board 
is used only for pulse-by-pulse current limiting but an analog 
signal proportional to the motor current is available on board 
as a design reference.

The microcontroller firmware is also provided as a reference 
but the only support offered by Intersil will be for bug 
corrections and for adding more switching sequences. Please 
refer to Microchip for details on the use of the PIC18F2431.

Physical Layout

The HIP2103-4DEMO1Z board is 90mm by 82.5mm. The 
tallest component is a 470µF capacitor. The total height is 
32mm with standoffs. The Hall effect rotor position sensor 
inputs are miniature terminal blocks. The phase terminal 
blocks are high current outputs rated for 20A. 

The controller section is a daughter card which contains push 
buttons for reset, brake, reverse, and start/stop functions. Also 
on the controller card are dip switches for configuration, LEDs 
for status, and a programming port. As an option, a customer 
designed controller daughter card can be substituted for the 
Intersil supplied controller. 

The speed control section includes an on-board potentiometer 
for speed control or an optional external potentiometer can be 
connected to the signal terminal block. 

The current sense section includes current amplifiers, 
comparators, and current sense resistors. 

Specifications

Motor topologies

3-phase BLDC motor with Hall sensors
Full bridge for brushed DC motors 
(bidirectional)
Half bridge for brushed DC motors 
(unidirectional) 

Operating voltage range

13 - 50VDC

Maximum continuous 
bridge current

20A (with sufficient air flow)

Hall sensor bias voltage

3.3V, 15mA

PWM switching frequency ~20kHz

FIGURE 1. HIP2103-4DEMO1Z INPUTS AND OUTPUTS

ON

OFF

Содержание HIP2103-4DEMO1Z

Страница 1: ...e contact Intersil prior to ordering this demo board for possible support for a new switching sequence Scope This application note covers the design details of the HIP2103 4DEMO1Z with a focus on the design implementation of the HIP2103 and HIP2104 drivers including recommended support circuits Also covered is the design method of the bipolar current sensing feature Presently current sensing on th...

Страница 2: ... the decoupling and boot capacitors Controller The microcontroller is located on a daughter card to provide the customer with the option to incorporate their own controller design The features on the controller daughter card are configuration dip switches status LEDs a programming port and 4 push buttons The Hall sensor inputs are decoded by the microcontroller to provide the appropriate switching...

Страница 3: ...ipment Lab supply or battery 13V minimum to 50V maximum The current rating of the lab supply must have sufficient capacity for the motor being tested If a battery is the power source it is highly recommended that an appropriate fuse be used Bench fan likely not needed Test motor 3 phase BLDC or conventional brushed DC motor Multichannel oscilloscope 100MHz or greater Current probe for oscilloscope...

Страница 4: ...r is restarted the BRAKE LED will turn off CAUTION This braking method turns on simultaneously all of the low side bridge FETs This will force the motor to a very rapid stop It the motor is loaded or if the motor is not designed for a rapid stop mechanical damage to the motor or to the load can result If you are not sure about using this braking method only apply the brake when the motor speed is ...

Страница 5: ...he actual voltage applied to the motor appears much differently Figure 5 illustrates the bridge status logic vs the actual voltage waveforms applied to each motor lead TABLE 1 SW6 SETUP SWITCH POSITION 4 3 2 1 Motor TOPOLOGY 3 PHASE off off off on FULL BRIDGE off off on off HALF BRIDGE off on off off Factory test on off off off Other settings error FIGURE 3 BASIC BLDC MOTOR POWER TOPOLOGY BLDC MOT...

Страница 6: ...ence Phase Currents The following motor winding diagrams illustrate how currents flow in a 3 phase BLDC motor during each switching period of the 6 step voltage waveform These diagrams are for a very simple motor with only 6 stator poles Most 3 phase motors have more stator poles multiples of 6 to reduce torque modulation cogging but the principles of operation are the same Each phase winding is c...

Страница 7: ...nt Limit There are two current control features in the HIP2103 4DEMO1Z A linear current monitor op amp U2 amplifies the voltage across R21 and R22 This op amp is configured as a true differential amplifier to allow Kelvin connections across the current sensing resistors see Figure 9 R3 and R4 each 32 4kΩ have a Thevenin equivalent value that is the parallel value of R3 and R4 or 1 2 of 32 4kΩ The ...

Страница 8: ...sensing resistors to set the pulse by pulse current limit at a desired level without changing the full scale output voltage swing of the Imotor signal This equation assumes that the only change made to the HIP2103 4DEMO1Z is modifying the values of the current sensing resistors R23 and R24 For example for Ilimit 5A R21 R22 1 65 188 V 16 2K 1 661K 5 R21 R22 0 030Ω An alternative method for changing...

Страница 9: ...d in green boxes FIGURE 12 HALL LOGIC OPTIONS FIRST CHART Hall sensor logic ZLP PLZ PZL ZPL LPZ LZP ZLP PLZ PZL ZPL LPZ LZP Bridge Logic P PWM L Low Z off MB MA MC HC HB HA 101 001 011 010 110 101 001 011 010 110 100 100 HC HB HA 110 010 000 001 101 110 010 000 001 101 111 111 HC HB HA 111 011 001 000 100 111 011 001 000 100 110 110 0010 0001 0000 HC HB HA 100 000 010 011 111 100 000 010 011 111 1...

Страница 10: ...PLZ ZLP Bridge Logic P PWM L Low Z off Bodine 3304 HC HB HA HC HB HA HC HB HA 0101 0100 MB MA MC HC HB HA 0110 LZP LPZ ZPL PZL PLZ ZLP LZP LPZ ZPL PZL PLZ ZLP Bridge Logic P PWM L Low Z off 100 110 010 011 001 100 110 010 011 001 101 101 111 101 001 000 010 111 101 001 000 010 110 110 110 100 000 001 011 110 100 000 001 011 111 111 101 111 011 010 000 101 111 011 010 000 100 100 MB MA MC HC HB HA ...

Страница 11: ...10 5 C8 C10 C38 C40 GENERIC Multilayer Cap H1045 00472 50V10 2 C7 C49 GENERIC Multilayer Cap H1065 00105 100V10 3 C29 C31 C34 GENERIC Multilayer Cap H1082 00225 100V10 1 C6 GENERIC Ceramic Chip Cap H2505 DNP DNP R1 3 R5 R6 RJ3 GENERIC Metal Film Chip Resistor Do Not Populate H2511 00330 1 16W5 6 R19 R26 R27 R36 R37 R40 GENERIC Thick Film Chip Resistor H2511 00R00 1 16W 2 RJ1 RJ2 GENERIC Thick Film...

Страница 12: ...IN SINGLE ROW VERTICAL PCB FEMALE CONNECTOR 90147 1114 1 J3 MOLEX 14 PIN SINGLE ROW VERTICAL PCB FEMALE CONNECTOR B3S 1002 4 SW1 SW4 OMRON Momentary Pushbutton Tactile SMT Switch BAT54A 7 D1 D7 DIODES 30V SCHOTTKY DIODE CSTCE12M5G55 1 U3 MURATA Piezoelectric Resonator GRM21BR71C475KA73L 4 C1 C3 C5 MURATA CERAMIC CAP H1045 00103 50V10 1 C2 GENERIC Multilayer Cap H2511 01001 1 16W1 4 R5 R7 R9 R11 GE...

Страница 13: ... IN OUT OUT OUT OUT OUT OUT 18 4 2 1 10 11 10 28 27 26 25 24 23 22 21 20 19 17 16 15 14 13 12 11 10 9 8 7 6 5 3 2 1 1 13 12 11 14 9 8 7 6 5 4 3 2 1 12 9 8 7 6 5 4 3 2 1 3 2 6 5 1 2 3 4 C2 LED1 LED4 LED3 LED2 SW6 SW5 J4 J1 D8 J1 J1 J1 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J1 J1 J1 J1 J1 J1 J1 J1 U3 J2 RELEASED BY DRAWN BY DATE DATE DATE TESTER FILENAME MASK ENGINEER TITLE UPDATED BY 1 2 2 2 1 1...

Страница 14: ...IOMETER IMOT RC0 FLTA RC2 RC3 RC4 RC5 RC6 RC7 PWM0 PWM1 PWM2 PWM3 PWM5 PWM4 10K 0 V_5 3 3 V_12 0 DNP 10K 10K 10K 10K 10K 10K IN IN IN IN IN IN OUT OUT OUT OUT IN OUT OUT OUT OUT OUT OUT 3 2 2 3 1 2 1 3 2 1 14 13 12 11 10 9 8 7 6 5 4 3 2 1 12 11 10 9 8 7 6 5 4 2 1 R13 RJ1 J1 TB1 TB3 TB2 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J3 J1 J1 J1 J1 J1 J1 J1 J1 J1 J1 J1 RJ3 RJ2 R29 R30 R28 1 3 R33 R32 R31 ...

Страница 15: ... 4 4 4 4 1 3 2 5 6 7 8 3 2 1 8 7 6 5 3 2 1 8 7 6 5 3 2 1 8 7 6 5 3 2 1 8 7 6 5 3 2 1 5 6 7 8 OUT V V OUT V V IN IN IN IN IN IN OUT OUT IN IN OUT OUT C49 C40 C7 2 1 3 2 9 4 5 6 7 8 2 2 1 1 3 2 2 1 3 1 2 8 7 6 5 4 3 2 1 9 12 11 10 8 7 6 5 4 3 2 1 13 7 6 5 4 8 1 2 3 7 6 5 1 2 3 2 1 1 2 1 1 2 1 2 1 1 2 1 2 1 2 9 Q1 D10 GND3 U6 Q5 Q6 TP5 D11 TP4 Q4 Q3 Q2 TP1 D9 R15 R14 GND1 R17 D8 C8 SW1 IMOT GND4 GND2...

Страница 16: ...AN1899 Rev 0 00 Page 16 of 24 January 8 2014 HIP2103 4DEMO1Z Silkscreen Mother Board FIGURE 14 LAYER 1 ...

Страница 17: ...AN1899 Rev 0 00 Page 17 of 24 January 8 2014 HIP2103 4DEMO1Z PCB Mother Board FIGURE 15 TOP LAYER ...

Страница 18: ...AN1899 Rev 0 00 Page 18 of 24 January 8 2014 HIP2103 4DEMO1Z FIGURE 16 LAYER 2 PCB Mother Board Continued ...

Страница 19: ...AN1899 Rev 0 00 Page 19 of 24 January 8 2014 HIP2103 4DEMO1Z FIGURE 17 LAYER 3 PCB Mother Board Continued ...

Страница 20: ...AN1899 Rev 0 00 Page 20 of 24 January 8 2014 HIP2103 4DEMO1Z FIGURE 18 BOTTOM LAYER PCB Mother Board Continued ...

Страница 21: ...P2103 4DEMO1Z Silkscreen Control Card FIGURE 19 SILKSCREEN D3 D5 D6 D2 D4 D1 D7 SW6 SW4 SW1 LED4 LED3 LED2 LED1 SW5 SW3 SW2 R1 R2 U3 C1 C2 C4 R3 R4 J4 R10 R12 R11 R8 R6 C3 R7 R9 R5 C5 U1 J2 PIC18F2431_CNTRL1Z Rev A Pb SPEED START STOP BRAKE REVERSE ...

Страница 22: ...AN1899 Rev 0 00 Page 22 of 24 January 8 2014 HIP2103 4DEMO1Z PCB Control Card FIGURE 20 TOP LAYER ...

Страница 23: ...AN1899 Rev 0 00 Page 23 of 24 January 8 2014 HIP2103 4DEMO1Z FIGURE 21 BOTTOM LAYER PCB Control Card Continued ...

Страница 24: ...cs document Renesas Electronics products are not intended or authorized for use in products or systems that may pose a direct threat to human life or bodily injury artificial life support devices or systems surgical implantations etc or may cause serious property damage space system undersea repeaters nuclear power control systems aircraft control systems key plant systems military equipment etc R...

Страница 25: ...Mouser Electronics Authorized Distributor Click to View Pricing Inventory Delivery Lifecycle Information Renesas Electronics HIP2103 4DEMO1Z HIP2103 4DEMO2Z ...

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