OMRON AUTOMATION K3HBRNB100240VAC
Specifications
Manufacturer
Omron Automation
Manufacturers Part #
K3HBRNB100240VAC
Lead Time
4 Week Lead Time
Industry Aliases
K3HB-RNB100-240 VAC
Sub-Categories
Miscellaneous Tools and Supplies
Factory Pack Quantity
1
Datasheet
Extracted Text
Rotary Pulse Indicator
K3HB-R
CSM_K3HB-R_DS_E_15_2
Digital Rotary Pulse Meter Capable of 50 kHz Measurements
• Visual confirmation of judgement results through display colors that switch
between red and green. *1
• Measures High-speed Pulses at 50 kHz.
Provides high-speed pulse measurements up to 50 kHz of rotary encoder or ON/OFF pulse
signals and can perform rotating measurement of high-speed rotating objects.
Note: No-voltage contacts of up to 30 Hz are supported.
• Six Measurement Operations Including Rotation (rpm)/Circumferential
Speed, Ratio, and Cumulative
One Rotary Pulse Meter has 6 rotary pulse measurement functions to support a variety
of pulse measurement applications. Select the best function for your application from the
following: Rotation (rpm)/circumferential speed/instantaneous flowrate (value
proportional to frequency), absolute ratio, error ratio, error, flow rate ratio, and passing
speed (value inversely proportional to frequency).
• DeviceNet models added to the series. *2 For the most recent information on models that have been
certified for safety standards, refer to your OMRON website.
*1 Visual confirmation of judgement results is not supported on models that do not have an output
or models that do not support DeviceNet.
You can change the display color by setting it, but you cannot switch it based on the judgement results.
*2 DeviceNet models have a depth of 97 mm.
Refer to Safety Precautions for All Digital Panel
Meters.
Model Number Structure
■ Model Number Legend
Base Units and Optional Boards can be ordered individually or as sets.
Base Units Base Units with Optional Boards
K3HB-R @ K3HB-R@-@@@
15 1234 5
2. Sensor Power Supply/Output Type Code
1. Input Sensor Code
NB: NPN input/voltage pulse input None: None
CPA: Relay output (PASS: SPDT) + Sensor power supply
PB: PNP input
(12 VDC±10%, 80 mA) (See note 1.)
5. Supply Voltage
L1A: Linear current output (0 to 20 or 4 to 20 mA DC) + Sensor power supply
100-240 VAC:100 to 240 VAC
(12 VDC±10%, 80 mA) (See note 2.)
24 VAC/VDC: 24 VAC/VDC
L2A: Linear voltage output (0 to 5, 1 to 5, or 0 to 10 VDC) + Sensor power supply
(12 VDC±10%, 80 mA) (See note 2.)
A: Sensor power supply (12 VDC ±10%, 80 mA)
Optional Boards
FLK1A: Communications (RS-232C) + Sensor power supply
Sensor Power Supply/Output Boards
(12 VDC±10%, 80 mA) (See note 2.)
FLK3A: Communications (RS-485) + Sensor power supply
(12 VDC±10%, 80 mA) (See note 2.)
K33-@
Note: 1. CPA can be combined with relay outputs only.
2
2. Only one of the following can be used by each Digital Indicator: RS-232C/RS-
485 communications, a linear output, or DeviceNet communications.
Relay/Transistor Output Boards
3. Relay/Transistor Output Type Code
K34-@ None: None
C1: Relay contact (H/L: SPDT each)
3
C2: Relay contact (HH/H/LL/L: SPST-NO each)
T1: Transistor (NPN open collector: HH/H/PASS/L/LL)
Event Input Boards
T2: Transistor (PNP open collector: HH/H/PASS/L/LL)
BCD *:BCD output + transistor output (NPN open collector: HH/H/PASS/L/LL)
K35-@
DRT: DeviceNet (See note 2.)
* A Special BCD Output Cable (sold separately) is required.
4
4. Event Input Type Code
None: None
1: 5 inputs (M3 terminal blocks), NPN open collector
2: 8 inputs (10-pin MIL connector), NPN open collector
3: 5 inputs (M3 terminal blocks), PNP open collector
4: 8 inputs (10-pin MIL connector), PNP open collector
Note: The following combinations are not possible.
• Communications (FLK@A) + DeviceNet (DRT)
• Communications (FLK@A) + BCD output (BCD)
• Linear current/voltage (L@A) + DeviceNet (DRT)
1
K3HB-R
Accessories (Sold Separately)
K32-DICN: Special Cable (for event inputs with 8-pin connector)
K32-BCD: Special BCD Output Cable
Watertight Cover Rubber Packing
Model Model
Y92A-49N K32-P1
Note: Rubber packing is provided with the Controller.
Specifications
■ Ratings
Supply voltage 100 to 240 VAC, 24 VAC/VDC, DeviceNet power supply: 24 VDC
Allowable power supply voltage 85% to 110% of the rated power supply voltage, DeviceNet power supply: 11 to 25 VDC
range
Power consumption 100 to 240 VAC: 18 VA max. (max. load)
(See note 1.) 24 VAC/DC: 11 VA/7 W max. (max. load)
Current consumption DeviceNet power supply: 50 mA max. (24 VDC)
Input No-voltage contact, voltage pulse, open collector
External power supply 12 VDC ±10%, 80 mA (models with external power supply only)
Event inputs Startup compen- NPN open collector or no-voltage contact signal
(See note 2.) sation timer input
ON residual voltage: 2 V max.
ON current at 0 Ω: 4 mA max.
Hold input
Max. applied voltage: 30 VDC max.
Reset input
OFF leakage current: 0.1 mA max.
Bank input
Output ratings Relay output 250 VAC, 30 VDC, 5 A (resistive load)
(depends on
Mechanical life expectancy: 5,000,000 operations, Electrical life expectancy: 100,000 operations
the model)
Transistor output Maximum load voltage: 24 VDC, Maximum load current: 50 mA, Leakage current: 100 μA max.
Linear output Linear output 0 to 20 mA DC, 4 to 20 mA DC:
Load: 500 Ω max, Resolution: Approx. 10,000, Output error: ±0.5% FS
Linear output 0 to 5 VDC, 1 to 5 VDC, 0 to 10 VDC:
Load: 5 kΩ max, Resolution: Approx. 10,000, Output error: ±0.5% FS
(1 V or less: ±0.15 V; no output for 0 V or less)
Display method Negative LCD (backlit LED) display
7-segment digital display (Character height: PV: 14.2 mm (green/red); SV: 4.9 mm (green))
Main functions Scaling function, measurement operation selection, averaging, output hysteresis, output OFF delay, output test,
teaching, display value selection, display color selection, key protection, bank selection, display refresh period, max-
imum/minimum hold, reset
Ambient operating temperature
−10 to 55°C (with no icing or condensation)
Ambient operating humidity
25% to 85%
Storage temperature
−25 to 65°C (with no icing or condensation)
Altitude 2,000 m max.
Watertight packing, 2 fixtures, terminal cover, unit stickers, instruction manual. DeviceNet models also include a De-
Accessories
viceNet connector (Hirose HR31-5.08P-5SC(01)) and crimp terminals (Hirose HR31-SC-121) (See note 3.)
Note: 1. DC power supply models require a control power supply capacity of approximately 1 A per Unit when power is turned ON. Particular
attention is required when using two or more DC power supply models. The OMRON S8VS-series DC Power Supply Unit is
recommended.
2. PNP input types are also available.
3. For K3HB-series DeviceNet models, use only the DeviceNet Connector included with the product. The crimp terminals provided are for
Thin Cables.
2
K3HB-R
■ Characteristics
Display range −19,999 to 99,999
Measurement accuracy Functions F1, F6: ±0.006% rgd ±1 digit (for voltage pulse/open collector sensors)
(at 23±5°C) Functions F2 to F5: ±0.02% rgd ±1 digit (for voltage pulse/open collector sensors)
Measurement range Functions F1 to F6: 0.5 mHz to 50 kHz (for voltage pulse/open collector sensors)
Input signals Contact input (dry contact input) (30-Hz max. with ON/OFF pulse width of 15 ms min.)
No contact voltage pulse (50-KHz max. with ON/OFF pulse width of 9 µs min.; ON voltage: 4.5 to 30 V;
OFF voltage: −30 to 2 V; input impedance: 10 kΩ)
Open collector (50-KHz max. with ON/OFF pulse width of 9 µs min.)
Connectable sensors ON residual voltage: 3 V max.
OFF leakage current:1.5 mA max.
Load current: Must have a switching capacity of 20 mA or higher.
Must be able to properly switch load currents of 5 mA or less.
Comparative output response Functions F1 to F6: 100 ms max. (time until the comparative output is made when there is a forced sudden
time (transistor output) change in the input signal from 15% to 95% or 95% to 15%.)
Linear output response time Functions F1 to F6: 110 ms max. (time until the final analog output value is reached when there is a forced
sudden change in the input signal from 15% to 95% or 95% to 15%.)
Insulation resistance 20 MΩ min. (at 500 VDC)
Dielectric strength 2,300 VAC for 1 min between external terminals and case
Noise immunity 100 to 240 VAC models:
±1,500 V at power supply terminals in normal or common mode
(waveform with 1-ns rising edge and pulse width of 1 μs/100 ns)
24 VAC/VDC models:
±1,500 V at power supply terminals in normal or common mode
(waveform with 1-ns rising edge and pulse width of 1 μs/100 ns)
2
Vibration resistance
Frequency: 10 to 55 Hz; Acceleration: 50 m/s , 10 sweeps of 5 min each in X, Y, and Z directions
2 2
Shock resistance 150 m/s (100 m/s for relay outputs) 3 times each in 3 axes, 6 directions
Weight Approx. 300 g (Base Unit only)
Degree of Front panel Conforms to NEMA 4X for indoor use (equivalent to IP66)
protection
Rear case IP20
Terminals IP00 + finger protection (VDE0106/100)
Memory protection EEPROM (non-volatile memory)
Number of rewrites: 100,000
Applicable standards UL61010-1, CSA C22.2 No.61010-1-04
EN61010-1 (IEC61010-1): Pollution degree 2/Overvoltage category II
EN61326-1
EMC EMI: EN61326-1 Industrial electromagnetic environment
Electromagnetic radiation interference
CISPR 11 Group 1, Class A
Terminal interference voltage
CISPR 11 Group 1, Class A
EMS: EN61326-1 Industrial electromagnetic environment
Electrostatic Discharge Immunity
EN61000-4-2: 4 kV (contact), 8 kV (in air)
Radiated Electromagnetic Field Immunity
EN61000-4-3: 10 V/m 1 kHz sine wave amplitude modulation (80 MHz to 1 GHz, 1.4 to 2 GHz)
Electrical Fast Transient/Burst Noise Immunity
EN61000-4-4: 2 kV (power line), 1 kV (I/O signal line)
Surge Immunity
EN61000-4-5: 1 kV with line (power line), 2 kV with ground (power line)
Conducted Disturbance Immunity
EN61000-4-6: 3 V (0.15 to 80 MHz)
Power Frequency Magnetic Immunity
EN61000-4-8: 30 A/m (50 Hz) continuous time
Voltage Dips and Interruptions Immunity
EN61000-4-11: 0.5 cycle, 0°/180°, 100% (rated voltage)
3
K3HB-R
Operation
■ Functions (Operating Modes)
F1 to F6
Functions F1 to F6 provide rpm/circumferential speed and other calculation displays by measuring continuous pulses (frequencies).
Example
Length of
processing stage
F1: Displays rotation (rpm) or circumferential speed for one input.
F2 to F5: Displays the calculation result for two rotation (rpm) speeds.
F6: Displays the passing time calculated from the circumferential speed and the length
of the processing stage for one input.
The basic principle used by the Digital Indicator to calculate the rotation speed (rpm) display is
to count the ON/OFF time (T) for input sensor or other device inputs using the internal system
Function name Function No.
clock, and then automatically calculate the frequency. This frequency (f) is multiplied by 60 and
displayed as the rotation (rpm) speed.
Rpm/circumferential f1
speed
1
Absolute ratio f2
Input sensor or other input pulse ON/OFF time (T) = Frequency (f) =
T
T
Error ratio f3
• Rotation speed (rpm) = f × 60
Rotational difference f4
Circumferential speed = Roll circumference × Rotation speed (rpm)
Flow rate ratio f5
Length of processing stage
Passing time=
Passing time f6
Circumferential speed
These calculations are automatically made internally and displayed whenever any input pulse
is received.
Function Operation Operation image (application)
F1 Measures frequency for input A and displays the
Measuring roller winding speed Measuring motor speed
Rpm/ rotation (rpm) or circumferential speed proportional to
(for product testing)
circumfer- the input frequency.
ential
Display value D = fa × 60 × α fa: Input frequency (Hz)
H
speed/
Instanta- PASS
Calculation Display unit Prescale value (α)
neous
L
Rotation rpm 1/N
flowrate
OK/NG
speed
rps 1/60 N
judgment
Frequency Hz 1/60
(of input
kHz 1/60000
pulse)
Circumfer- mm/s 1000 πd/60 N
ential
cm/s 100 πd/60 N
speed
m/s πd/60 N
m/min πd/N
km/h 0.06 πd/N
Instanta- l/min Check the output
neous specifications of the input
l/h
flowrate device and calculate the
prescale value from the
following equation:
Display value D = ƒa × 60
× α
N = Pulses per rotation
πd = Circumferential length per rotation (m)
F2 B Measuring the speed ratio between two rollers
Multiples input B divided by input A ( ) by 100 and
Absolute A
displays the ratio as a percentage (%).
ratio
HH
Display unit: %
H
PASS
L
LL
Warning
4
K3HB-R
Function Operation Operation image (application)
F3 Multiplies the error between input A and input B Measuring the line speed error ratio between two conveyors
Error ratio B
( −1) by 100 and displays the ratio as a percentage
A
(%).
Communications
Display unit: %
output
To computer
(remote monitoring)
F4 Displays the difference between input A and input B Measuring the rotation (rpm)/circumferential speed error (absolute error)
Rotational (B − A) as the rotation (rpm) speed error or between two conveyors
difference circumferential speed error.
HH
H
⎛
Display unit: ⎞
⎜ ⎟
rpm, rps, rph, PASS
⎜ ⎟
Hz, kHz, mm/s, m/s
⎜ ⎟
L
m/min, km/h
⎜ ⎟
⎝ l/min, l/h, etc.
⎠ LL
Warning
F5 Displays the flow rate ratio of B from inputs A and B Monitoring liquid mixture flow rate ratio
Flow rate
B
( ) as a ratio (%).
ratio
A+B
Linear output
Display unit: %
Recording meter
F6 The passing time for the desired distance is displayed Displaying the passing time for a conveyor line
Passing by measuring the frequency of input A.
time
Passing time (s) = 1/ƒa × α
ƒa: Input frequency (Hz)
Set the prescale value for the desired display unit using
the following table for reference.
H
Distance
Calculation Display unit Prescale value (α)
PASS
Passing time s L/(πd/N)
L
Warning
N = Pulses per rotation
output
πd = Circumferential length per rotation (m)
L = Length of process (m)
⎞
⎛ Display unit:
⎜ ⎟
Seconds (s), minutes (min),
⎜ ⎟
hours/minutes/seconds (h.min.s),
⎟
⎜
minutes/seconds/tenths of seconds
⎟
⎜
(min.s.1/10s), etc. ⎠
⎝
5
K3HB-R
■ What Is Prescaling? ■ What Is the Auto-zero Function?
(Set this function before using the Digital Indicator.)
To make calculations using the input pulse to display rotation (rpm)
or circumferential speed, the number of pulses per rotation or the
If a function f1 to f6 is set, the frequency can be force-set to zero if
length of the circumference must be multiplied by a certain
there is no input pulse for a set period. This period is called the auto-
coefficient. This coefficient is called the prescale value.
zero time. Set the auto-zero time to slightly longer than the longest
input pulse interval. (The display will not easily return to zero if the
auto-zero time is too long or left at the default setting.)
K3HB-R
Time Unit Settings
Proximity
sensor
Setting Meaning
Rotation speed (rpm) = f × 60 × a
Invalid
off
f: Input pulse frequency (No. of pulses per second)
scal Prescale value menu setting
a: Prescale value
min Minute display
If there are 5 pulses per rotation, then
h.mm.ss h.mm.ss display
-1
a = 1/5 (= 0.2 = 2 × 10 )
mm.ss.d mm.ss.d display (d = tenths of a second)
and an accurate rotation speed (rpm) can be calculated.
-1
The actual setting is X = 2.0000 (mantissa) and Y = 10 (exponent).
Note: Time unit can be set only when passing time (F6) is selected.
Input Type Setting
NO: Voltage pulse high NC: Voltage pulse low
No-contact or 00 01
voltage pulse
input
Contact 10 11
Note: Set to 10 or 11 when there is a large variation in the display.
The largest measurement range is 30 Hz.
6
K3HB-R
Common Specifications
■ Event Input Ratings
K3HB-R S-TMR, HOLD, RESET, BANK1, BANK2, BANK4
Contact ON: 1 kΩ max., OFF: 100 kΩ min.
No-contact ON residual voltage: 2 V max.
OFF leakage current: 0.1 mA max.
Load current: 4 mA max.
Maximum applied voltage: 30 VDC max.
■ Output Ratings
Contact Output Transistor Outputs
Item Resistive loads Inductive loads
Maximum load voltage 24 VDC
(250 VAC, cosφ=1; (250 VAC, closed
Maximum load current 50 mA
30 VDC, L/R=0 ms) circuit, cosφ=0.4;
30 VDC, L/R=7 ms)
Leakage current 100 μA max.
Rated load 5 A at 250 VAC 1 A at 250 VAC
5 A at 30 VDC 1 A at 30 VDC
Mechanical life 5,000,000 operations
expectancy
Electrical life 100,000 operations
expectancy
Linear Output
Item Outputs 0 to 20 mA 4 to 20 mA 0 to 5 V 1 to 5 V 0 to 10 V
Allowable load impedance 500 Ω max. 5 kΩ min.
Resolution Approx. 10,000
Output error ±0.5% FS ±0.5% FS
(±0.15 V for 1 V or less and no output for 0 V)
Serial Communications Output BCD Output I/O Ratings
Item Type RS-232C, RS-485
(Input Signal Logic: Negative)
Communications method Half duplex
I/O signal name Item Rating
Synchronization method Start-stop synchronization (asynchronous)
Inputs REQUEST Input signal No-voltage
Baud rate 9600/19200/38400 bps contact input
HOLD
MAX
Transmission code ASCII
Input current for no-voltage input 10 mA
MIN
Data length 7 bits or 8 bits Signal level ON voltage 1.5 V max.
RESET
Stop bit length 2 bits or 1 bit
OFF voltage 3 V min.
Error detection Vertical parity and FCS Outputs DATA Maximum load voltage 24 VDC
POLARITY
Parity check Odd, even
OVER
Maximum load current 10 mA
DATA VALID
RUN
Leakage current 100 μA max.
HH Maximum load voltage 24 VDC
H
PASS
Maximum load current 50 mA
L
LL
Leakage current 100 μA max.
Refer to the K3HB Communications User's Manual (Cat. No. N129)
for details on serial and DeviceNet communications.
7
K3HB-R
DeviceNet Communications
Communications protocol Conforms to DeviceNet
Supported Remote I/O Master-Slave connection (polling, bit-strobe, COS, cyclic)
communications communications
Conforms to DeviceNet communications standards.
I/O allocations Allocate any I/O data using the Configurator.
Allocate any data, such as DeviceNet-specific parameters and variable area for Digital Indicators.
Input area: 2 blocks, 60 words max.
Output area: 1 block, 29 words max.
(The first word in the area is always allocated for the Output Execution Enabled Flags.)
Message Explicit message communications
communications
CompoWay/F communications commands can be executed
(using explicit message communications)
Connection methods Combination of multi-drop and T-branch connections (for trunk and drop lines)
Baud rate DeviceNet: 500, 250, or 125 Kbps (automatic follow-up)
Communications media Special 5-wire cable (2 signal lines, 2 power supply lines, 1 shield line)
Communications distance
Baud rate Network length Drop line length Total drop line length
(max.) (max.) (max.)
500 Kbps 100 m max. 6 m max. 39 m max.
(100 m max.)
250 Kbps 100 m max. 6 m max. 78 m max.
(250 m max.)
125 Kbps 100 m max. 6 m max. 156 m max.
(500 m max.)
The values in parentheses are for Thick Cable.
Communications power supply 24-VDC DeviceNet power supply
Allowable voltage fluctuation range 11 to 25-VDC DeviceNet power supply
Current consumption 50 mA max. (24 VDC)
Maximum number of nodes 64 (DeviceNet Configurator is counted as one node when connected.)
Maximum number of slaves 63
Error control checks CRC errors
DeviceNet power supply Supplied from DeviceNet communications connector
8
K3HB-R
Connections
■ External Connection Diagrams
Terminal Arrangements
Note: Refer to Internal Block Diagram on page 11 for information on isolation.
ABC D E
A Operating Power Supply
1
2
100 to 240 VAC
3
24 VAC/VDC
4
5
A1
6
A2
*Check the required power supply type.
B Sensor Power Supply/Output
Sensor power supply + PASS output C Relays, Transistors, BCD and DeviceNet
B1
Relay Outputs Relay Outputs Transistor Outputs DeviceNet Connector (Included)
PASS B2
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