NJM3775E3 NJR, NJM3775E3 Datasheet

Motor / Motion / Ignition Controllers & Drivers Dual Stepper

NJM3775E3

Manufacturer Part Number
NJM3775E3
Description
Motor / Motion / Ignition Controllers & Drivers Dual Stepper
Manufacturer
NJR
Type
Stepper Motor Controller/Driverr
Datasheet

Specifications of NJM3775E3

Product
Stepper Motor Controllers / Drivers
Operating Supply Voltage
10 V to 45 V
Supply Current
50 mA to 70 mA
Mounting Style
SMD/SMT
Package / Case
EMP-24
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
NJM3775E3
Manufacturer:
JRC
Quantity:
20 000
Company:
Part Number:
NJM3775E3-TE2
Quantity:
15 000
current driver with two channels: one for each winding
of a two-phase stepper motor. NJM3775 is equipped
with a Disable input to simplify half-stepping operation.
The NJM3775 contains a clock oscillator, which is
common for both driver channels, a set of comparators
and flip-flops implementing the switching control, and
two output H-bridges, including recirculation diodes.
Voltage supply requirements are + 5 V for logic and +
10 to + 45 V for the motor. Maximum output current is
750mA per channel.
• Dual chopper driver
• 750 mA continuous output current per channel
• Digital filter on chip eliminates external filtering components
• Packages
Figure 1. Block diagram
The NJM3775 is a switch-mode (chopper), constant-
FEATURES
GENERAL DESCRIPTION
BLOCK DIAGRAM
DIP22 / PLCC28 / EMP24(batwing)
V
RC
CC
NJM3775
DUAL STEPPER MOTOR DRIVER
V
CC
+
Phase
Phase
2
1
Dis
Dis
1
2
V
V
R1
R2
C
C
1
2
+
+
GND
S
R
R
S
Q
Q
PACKAGE OUTLINE
Logic
Logic
NJM3775D2
NJM3775FM2
E
E
1
2
NJM3775E3
M
M
V
V
M
M
MM1
MM2
A1
B1
B2
A2
NJM3775

Related parts for NJM3775E3

NJM3775E3 Summary of contents

Page 1

... Digital filter on chip eliminates external filtering components • Packages DIP22 / PLCC28 / EMP24(batwing) BLOCK DIAGRAM NJM3775 Figure 1. Block diagram DUAL STEPPER MOTOR DRIVER Phase Dis — — — Dis Phase V C GND NJM3775 PACKAGE OUTLINE NJM3775E3 NJM3775D2 NJM3775FM2 Logic B1 V MM1 V MM2 M B2 Logic ...

Page 2

PIN CONFIGURATIONS VMM VMM 5 NJM 1 2 GND GND 6 19 3775E3 GND 7 18 GND ...

Page 3

FUNCTIONAL DESCRIPTION Each channel of the NJM3775 consists of the following sections: an output H-bridge with four transistors and four recirculation diodes, capable of driving up to 750 mA continuous current to the motor winding, a logic section that controls ...

Page 4

ABSOLUTE MAXIMUM RATINGS Parameter Voltage Logic supply Motor supply Logic inputs Analog inputs Current Motor output current Logic inputs Analog inputs Temperature Operating junction temperature Storage temperature Power Dissipation (Package Data) Power dissipation +25 C, DIP and ...

Page 5

ELECTRICAL CHARACTERISTICS Electrical characteristics over recommended operating conditions, unless otherwise noted Parameter General Supply current Supply current Total power dissipation Total power dissipation Thermal shutdown junction temperature Turn-off delay Logic Inputs Logic HIGH input voltage Logic LOW ...

Page 6

APPLICATIONS INFORMATION Current control The regulated output current level to the motor winding is determined by the voltage at the reference input and the value of the sensing resistor expressed as 0.1• [A] M,peak ...

Page 7

Current sense filtering At turn-on a current spike occurs, due to the recovery of the recirculation diodes and the capacitance of the motor winding. To prevent this spike from reseting the flip-flops through the current sensing comparators, the clock oscillator ...

Page 8

Dis (Disable) inputs A logic HIGH on the Dis inputs will turn off all four transistors of the output H-bridge, which results in a rapidly decreasing output current to zero. V (Reference) inputs R The Vref inputs of the NJM3775 ...

Page 9

Full-step mode. Both windings are energized at all the time with the same current, I direction (and the magnetic field direction) in one phase is reversed. The next step is then taken when the other phase current reverses. The current ...

Page 10

TYPICAL CHARACTERISTICS P (W) D 3.0 2.0 1 0.20 0.40 0.60 0.80 I (A) M Figure 10. Power dissipation vs. motor current ( 1.2 1.0 0.8 0.6 0.4 0 ...

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