K3HBCNB 24VACVDC
METER, COUNT, 50KHZ, NPN, 24ACDC
- Manufacturer: OMRON INDUSTRIAL AUTOMATION
- Product type:
- No. of Digits / Alpha:5; Supply Voltage Max:24V; Operating Temperature Min:-10°C; Operating Temperature Max:55°C; Approval Bodies:CE, cRUus; Display:Backlit LCD Display; External Depth:9
- Supply Voltage Max: 24V
- No. of Digits / Alpha: 5
- Operating Temperature Max: 55°C
- Operating Temperature Min: -10°C
| Delivery and price | |
|---|---|
| Units per pack | 1 |
| Price | 376.09 € |
| Current stock | 10+ |
| Lead time | 30 days |
**Up/Down Counting Pulse Indicator K3HB-C** CSM_K3HB-C_DS_E_16_1 ## **Measure High-speed Up/down Pulses with this Up/down Pulse Meter.** - Visual conf0rmation of judgement results through display colors that switch between red and green. * 1 - Perfect for Measuring Rotary Encoder and ON/OFF Pulse Signals at High Speed - Cumulative pulse input is 50 kHz, quadrature pulse inputs are 25 kHz, and up/ down pulse inputs are 30 kHz. **Note:** No-voltage contacts of up to 30 Hz are supported. - The count value can be converted to any value. The length equivalent for any pulse can be set to any desired value. This is effective for feed amount and position monitor displays. - DeviceNet models added to the series. * 2 - *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_ . For the most recent information on models that have been certified for safety standards, refer to your OMRON website. ## **Model Number Structure** ## ■ **Model Number Legend** Base Units and Optional Boards can be ordered individually or as sets. ## **Base Units** **K3HB-C** @ Co **1 5** **1. Input Sensor Code** NB: NPN input/voltage pulse input **5. Supply Voltage** 100-240 VAC:100 to 240 VAC 24 VAC/VDC: 24 VAC/VDC ## **Optional Board** ## **Sensor Power Supply/Output Boards** ## **K33-** @ **2** ## **Relay/Transistor Output Boards** **K34-** @ **3** ## **Base Units with Optional Boards** **K3HB-C** @ ~~oe~~ **-** @@@ **1 2 3 4 5 2. Sensor Power Supply/Output Type Code** None: None CPA: Relay output (PASS: SPDT) + Sensor power supply (12 VDC±10%, 80 mA) (See note 1.) L1A: Linear current output (0 to 20 or 4 to 20 mA DC) + Sensor power supply (12 VDC±10%, 80 mA) (See note 2.) 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) FLK1A: Communications (RS-232C) + Sensor power supply (12 VDC±10%, 80 mA) (See note 2.) FLK3A: Communications (RS-485) + Sensor power supply (12 VDC±10%, 80 mA) (See note 2.) **Note: 1.** CPA can be combined with relay outputs only. **2.** Only one of the following can be used by each Digital Indicator: RS-232C/ RS-485 communications, a linear output, or DeviceNet communications. ## **3. Relay/Transistor Output Type Code** None:None ## **Event Input Boards** **K35-** @ **4** C2: Relay contact (HH/H/LL/L: SPST-NO each) T1: Transistor (NPN open collector: HH/H/PASS/L/LL) T2: Transistor (PNP open collector: HH/H/PASS/L/LL) BCD ∗ :BCD output + transistor output (NPN open collector: HH/H/PASS/L/LL) DRT: DeviceNet (See note 2.) - ∗ A Special BCD Output Cable (sold separately) is required. ## **4. Event Input Type Code** ## None:None - 1: 5 inputs (M3 terminal block), NPN open collector - 2: 8 inputs (10-pin MIL connector), NPN open collector - 3: 5 inputs (M3 terminal block), 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** omRON ~~a~~ **K3HB-C** ## **Accessories (Sold Separately)** K32-DICN: Special Cable (for event inputs with 8-pin connector) K32-BCD: Special BCD Output Cable ## **Watertight Cover** **Model** Y92A-49N ## **Rubber Packing** **Model** K32-P1 **Note:** Rubber packing is provided with the Controller. ## **S ecifications p** ## ■ **Ratings** |■**Ratings**|■**Ratings**|| |---|---|---| |**Supply voltage**||100 to 240 VAC, 24 VAC/VDC, DeviceNet power supply: 24 VDC| |**Allowable power supply voltage**<br>**range**||85% to 110% of the rated power supply voltage, DeviceNet power supply: 11 to 25 VDC| |**Power consumption**<br>**(See note 1.)**||100 to 240 VAC: 18 VA max. (max. load)<br>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| |**Event inputs**|**Hold input**|NPN open collector or no-voltage contact signal<br>ON residual voltage: 2 V max.<br>ON current at 0Ω: 4 mA max.<br>Max. applied voltage: 30 VDC max.<br>OFF leakage current: 0.1 mA max.| ||**Reset input**|| ||**Bank input**|| |**Output ratings**<br>**(depends on**<br>**the model)**|<br>**Relay output**|250 VAC, 30 VDC, 5 A (resistive load)<br>Mechanical life expectancy: 5,000,000 operations, Electrical life expectancy: 100,000 operations| ||**Transistor output**|Maximum load voltage: 24 VDC, Maximum load current: 50 mA, Leakage current: 100μA max.| ||**Linear output**|Linear output 0 to 20 mA DC, 4 to 20 mA DC:<br>Load: 500Ωmax, Resolution: Approx. 10,000, Output error: ±0.5% FS<br>Linear output 0 to 5 VDC, 1 to 5 VDC, 0 to 10 VDC:<br>Load: 5 kΩmax, Resolution: Approx. 10,000, Output error: ±0.5% FS<br>(1 V or less: ±0.15 V; no output for 0 V or less)| |**Display method**||Negative LCD (backlit LED) display<br>7-segment digital display (Character height: PV: 14.2 mm (green/red); SV: 4.9 mm (green))| |**Main functions**||Scaling function, measurement operation selection, output hysteresis, output OFF delay, output test, and power in-<br>terruption memory (See note 2.), display value selection, display color selection, key protection, bank selection, dis-<br>play refresh period, maximum/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.| |**Accessories**||Watertight packing, 2 fixtures, terminal cover, unit stickers, instruction manual. DeviceNet models also include a De-<br>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.** The five displayed digits are stored in memory. **3.** For K3HB-series DeviceNet models, use only the DeviceNet Connector included with the product. The crimp terminals provided are for Thin Cables. **==> picture [539 x 34] intentionally omitted <==** **2** **K3HB-C** ## ■ **Characteristics** |■**Characteristics**|■**Characteristics**|| |---|---|---| |**Display range**||−19,999 to 99,999| |**Measurement range**||Functions F1, F2: ±2 gigacounts<br>Functions F3:<br>0 to 4gigacounts| |**Input signals**||**•** Contact input (dry contact input) (30 Hz max. with ON/OFF pulse width of 15 ms min.)<br>**•** No contact<br>voltage pulse<br>**•** Open collector<br>**Mode**<br>**Input frequency**<br>**range**<br>**ON/OFF**<br>**pulse width**<br>**ON voltage**<br>**OFF voltage**<br>**Input**<br>**impedance**<br>F1<br>0 to 30 kHz<br>16μs min.<br>4.5 to 30 V<br>−30 to 2 V<br>10 kΩ<br>F2<br>0 to 25 kHz<br>20μs min.<br>F3<br>0 to 50 kHz<br>9μs min.<br>**Mode**<br>**Input frequency**<br>**range**<br>**ON/OFF**<br>**pulse width**<br>**Note:**The Up/Down Counting Pulse<br>Meter will malfunction if a pulse<br>greater than the input frequency<br>range is input. SYSERR may<br>appear on the display.<br>F1<br>0 to 30 kHz<br>16μs min.<br>F2<br>0 to 25 kHz<br>20μs min.<br>F3<br>0 to 50 kHz<br>9μs min.| |**Connectable sensors**||ON residual voltage: 3 V max.<br>OFF leakage current: 1.5 mA max.<br>Load current:<br>Must have a switching capacity of 20 mA or higher.<br>Must be able to properly switch load currents of 5 mA or less.| |**Max. No. of display digits**||5 (−19999 to 99999)| |**Comparative output response**<br>**time**||1 ms max.: Transistor output; 10 ms max.: Relay contact output<br>(time until the comparative output is made when there is a forced sudden change in the input signal from 15%<br>to 95% or 95% to 15%)| |**Linear output response time**||10 ms max. (time until the final analog output value is reached when there is a forced sudden change in the<br>input signal from 15% to 95% or 95% to 15%)| |**Display error when using**<br>**prescale**||±1 digit| |**Insulation resistance**||20 MΩmin.(at 500 VDC)| |**Dielectric strength**||2,300 VAC for 1 min between external terminals and case| |**Noise immunity**||100 to 240 VAC models:<br>±1,500 V at power supply terminals in normal or common mode<br>(waveform with 1-ns rising edge and pulse width of 1μs/100 ns)<br>24 VAC/VDC models:<br>±1,500 V at power supply terminals in normal or common mode<br>(waveform with 1-ns risingedge andpulse width of 1μs/100 ns)| |**Vibration resistance**||Frequency: 10 to 55 Hz; Acceleration: 50 m/s2, 10 sweeps of 5 min each in X, Y, and Z directions| |**Shock resistance**||150 m/s2(100 m/s2for relayoutputs) 3 times each in 3 axes, 6 directions| |**Weight**||Approx. 300g(Base Unit only)| |**Degree of**<br>**protection**|**Front panel**|Conforms to NEMA 4X for indoor use (equivalent to IP66)| ||**Rear case**|IP20| ||**Terminals**|IP00 + finger protection (VDE0106/100)| |**Memory protection**||EEPROM (non-volatile memory)<br>Number of rewrites: 100,000| |**Applicable standards**||UL61010-1, CSA C22.2 No. 61010-1-04<br>EN61010-1 (IEC61010-1): Pollution degree 2/Overvoltage category II<br>EN61326-1| |**EMC**||EMI: EN61326-1 Industrial electromagnetic environment<br>Electromagnetic radiation interference<br>CISPR 11 Group 1, Class A<br>Terminal interference voltage<br>CISPR 11 Group 1, Class A<br>EMS: EN61326-1 Industrial electromagnetic environment<br>Electrostatic Discharge Immunity<br>EN61000-4-2: 4 kV (contact), 8 kV (in air)<br>Radiated Electromagnetic Field Immunity<br>EN61000-4-3: 10 V/m sine wave amplitude modulation (80 MHz to 1 GHz, 1.4 to 2 GHz)<br>Electrical Fast Transient/Burst Noise Immunity<br>EN61000-4-4: 2 kV (power line), 1 kV (I/O signal line)<br>Surge Immunity<br>EN61000-4-5: 1 kV with line (power line), 2 kV with ground (power line)<br>Conducted Disturbance Immunity<br>EN61000-4-6: 3 V (0.15 to 80 MHz)<br>Power Frequency Magnetic Immunity<br>EN61000-4-8: 30 A/m (50 Hz) continuous time<br>Voltage Dips and Interruptions Immunity<br>EN61000-4-11: 0.5 cycle, 0°/180°,100%(rated voltage)| **==> picture [539 x 34] intentionally omitted <==** **3** **K3HB-C** ## **O eration p** ## ■ **Functions (Operating Modes)** ## **F1 to F3** **==> picture [512 x 476] intentionally omitted <==** **----- Start of picture text -----**<br> Function name Function No.<br>Individual inputs f1<br>Phase differential inputs f2<br>Pulse counting input f3<br>Function Operation Operation image (application)<br>F1 Counts input A as incremental pulses and input B as Counting the number of people entering an area<br>Individual decremental pulses. The count is incremented on the<br>inputs rising edge of input A and decremented on the rising<br>edge of input B. If both inputs rise at the same time, the<br>count is not changed. The count is incremented when Photoelectric sensor Input ABCD output To<br>input B is later than input A and decremented when input Programmable<br>B is earlier than input A. Controller<br>Input A HL Input B<br>Input B HL Increment<br>HOLD input HL Decrement<br>3 3<br>2 2 2<br>1 1 1<br>Count 0<br>F2 This function is normally used when connected to an Detecting position and speed on a semiconductor wafer conveyor line<br>Phase dif-ferential in- incremental rotary encoder. The count is incremented on the falling edge of input B when input A is OFF. The count Wafer<br>puts is decremented on the rising edge of input B when input<br>A is OFF.<br>Input A HL<br>(See note 2.)<br>Input B HL<br>HOLD H E6L<br>input L<br>3<br>2 2<br>1 1 1<br>Count 0 0<br>F3 Counted on the rising edge of input A Counting the number of workpieces<br>Pulse<br>counting Input A HL<br>input HOLD H<br>input L<br>6 BCD output To<br>5 Programmable<br>Controller<br>4<br>3<br>2<br>1<br>Count 0<br>**----- End of picture text -----**<br> ## **Note: 1.** Meaning of H and L in Display |**Symbol**<br>**Input method **|**No-voltage input**| |---|---| |**H**<br>|Short-circuit| |**L**<br>|Open| **2.** Requires at least half the minimum signal width. If there is less than half, a ±1 count error may occur. ## **Input Type Setting** |**Input Type Setting**|| |---|---| ||**NO: Voltage pulse high**| |No-contact or voltage pulse inp|ut 00| |Contact|10| **==> picture [539 x 34] intentionally omitted <==** **4** **K3HB-C** ## ■ **What Is Prescaling?** Prescaling converts the count value to any numeric value. To display @@@@.@ mm in a system that outputs 250 pulses for a 0.5-m feed, the length per pulse = 500 mm (0.5 m) ÷ 250 = 2. **1.** The prescale value for the K3HB-C is set using the mantissa X × exponent Y, so the prescale value = 2.0000 × 10°, - X = 2.000, and Y = 00. **2.** Next, set the decimal point position for one digit to the right of the decimal point: **==> picture [205 x 96] intentionally omitted <==** **----- Start of picture text -----**<br> 0.5 m<br>250 pulses<br>K3HB-C<br>Encoder<br>**----- End of picture text -----**<br> **==> picture [539 x 34] intentionally omitted <==** **5** **K3HB-C** ## **Common S ecifications p** ## ■ **Event Input Ratings** |**K3HB-P/-C**|HOLD, RESET, BANK1, BANK2, BANK4| |---|---| |**Contact**|ON: 1 kΩmax., OFF: 100 kΩmin.| |**No-contact**|ON residual voltage:<br>2 V max.<br>OFF leakage current:<br>0.1 mA max.<br>Load current:<br>4 mA max.<br>Maximum applied voltage: 30 VDC max.| ## ■ **Output Ratings** ## **Contact Output** |**Item**|**Resistive loads**<br>**(250 VAC, cos**φ**=1;**<br>**30 VDC, L/R=0 ms)**|**Inductive loads**<br>**(250 VAC, closed**<br>**circuit, cos**φ**=0.4;**<br>**30 VDC, L/R=7 ms)**| |---|---|---| |**Rated load**|5 A at 250 VAC<br>5 A at 30 VDC|1 A at 250 VAC<br>1 A at 30 VDC| |**Rated through**<br>**current**|5 A|| |**Mechanical life**<br>**expectancy**|5,000,000 operations|| |**Electrical life**<br>**expectancy**|100,000 operations|| ## **Transistor Outputs** |**Maximum load voltage**|24 VDC| |---|---| |**Maximum load current**|50 mA| |**Leakage current**|100μA max.| ## **Linear Output** |**Linear Output**|||||| |---|---|---|---|---|---| |**Item**<br>**Outputs**|**0 to 20 mA**|**4 to 20 mA**|**0 to 5 V**|**1 to 5 V**|**0 to 10 V**| |**Allowable load impedance**|500Ωmax.||5 kΩmin.||| |**Resolution**|Approx. 10,000||||| |**Output error**|±0.5% FS||±0.5% FS<br>(±0.15 V for 1 V or less and no output for 0 V)||| ## **Serial Communications Output** |**Item**<br>**Type**|**RS-232C, RS-485**| |---|---| |**Communications method**|Half duplex| |**Synchronization method**|Start-stop synchronization (asynchronous)| |**Baud rate**|9600/19200/38400 bps| |**Transmission code**|ASCII| |**Data length**|7 bits or 8 bits| |**Stop bit length**|2 bits or 1 bit| |**Error detection**|Vertical parity and FCS| |**Parity check**|Odd, even| ## **BCD Output I/O Ratings (Input Signal Logic: Negative)** |**I/O signal name**|**I/O signal name**|**Item**|**Item**|**Rating**| |---|---|---|---|---| |**Inputs**|REQUEST<br>CCOMPEN-<br>SATION<br>RESET|Input signal||No-voltage<br>contact input| |||Input current for no-voltage input||10 mA| |||Signal level|ON voltage|1.5 V max.| ||||OFF voltage|3 V min.| |**Outputs**|DATA<br>POLARITY<br>OVER<br>DATA VALID<br>RUN|Maximum load voltage||24 VDC| |||Maximum load current||10 mA| |||Leakage current||100μA max.| ||OUT1<br>OUT2<br>OUT3<br>OUT4<br>OUT5|Maximum load voltage||24 VDC| |||Maximum load current||50 mA| |||Leakage current||100μA max.| Refer to the _K3HB Communications User's Manual_ (Cat. No. N129) for details on serial and DeviceNet communications. **==> picture [539 x 34] intentionally omitted <==** **6** **K3HB-C** ## **DeviceNet Communications** |**Communications protocol**|**Communications protocol**|Conforms to DeviceNet| |---|---|---| |**Supported**<br>**communications**|**Remote I/O**<br>**communications**|Master-Slave connection (polling, bit-strobe, COS, cyclic)<br>Conforms to DeviceNet communications standards.| ||**I/O allocations**|Allocate any I/O data using the Configurator.<br>Allocate any data, such as DeviceNet-specific parameters and variable area for Digital Indicators.<br>Input area: 2 blocks, 60 words max.<br>Output area: 1 block, 29 words max.<br>(The first word in the area is always allocated for the Output Execution Enabled Flags.)| ||**Message**<br>**communications**|Explicit message communications<br>CompoWay/F communications commands can be executed<br>(usingexplicit 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**||The values in parentheses are for Thick Cable.<br>**Baud rate**<br>**Network length**<br>**(max.)**<br>**Drop line length**<br>**(max.)**<br>**Total drop line length**<br>**(max.)**<br>500 Kbps<br>100 m max.<br>(100 m max.)<br>6 m max.<br>39 m max.<br>250 Kbps<br>100 m max.<br>(250 m max.)<br>6 m max.<br>78 m max.<br>125 Kbps<br>100 m max.<br>(500 m max.)<br>6 m max.<br>156 m max.| |**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| **==> picture [539 x 34] intentionally omitted <==** **7** **K3HB-C** ## **Connections** ## ■ **External Connection Diagrams** ## **Terminal Arrangements** **Note:** Refer to _Internal Block Diagram_ on page 10 for information on isolation. **==> picture [451 x 374] intentionally omitted <==** **----- Start of picture text -----**<br> A B C D E<br>A Operating Power Supply 1<br>2<br>100 to 240 VAC 3<br>24 VAC/VDC<br>4<br>5<br>A1<br>6<br>A2<br>*Check the required power supply type.<br>B Sensor Power Supply/Output<br>Sensor power supply + PASS output C Relays, Transistors, BCD and DeviceNet<br>B1<br>PASS B2 Relay Outputs Relay Outputs Transistor Outputs DeviceNet Connector (Included)<br><C1> <C2> <T1> <T2> <DRT><br>B3<br>NPN PNP<br>N/C B4 C1 HH C1 HH C1<br>12 VDC B5 Sensor H C2 H C2 H C2<br>80 mA power<br>B6 supply C3 COM C3 PASS C3<br><CPA> C4 L C4 L C4<br>Sensor power supply + linear output L C5 LL C5 LL C5 2: CAN L (Communications cable: Blue) 1: V− (Power supply cable: Black)<br>0-5/1-5/ N/C + B1 C6 COM C6 COM C6 5: V+ (Power supply cable: Red) 3: Shield 4: CAN H (Communications cable: White)<br>0-10 V − B2 Applicable Connector: HR31-5.08P-5SC (01)<br>N/C 0-20/ + B3 (HIROSE ELECTRIC CO., LTD.) * Attach the provided crimp terminals.<br>4-20 mA − B4 BCD (NPN Open Collector): <BCD>Applicable Connector (Sold separately)<br>12 VDC 12 VDC + B5 Sensor HDR-E50MAG1<br>80 mA 80 mA − B6 power supply (HONDA TSUSHIN KOGYO CO., LTD.)<br>Special Cable (Sold separately)<br><L2A> <L1A> K32-BCD (OMRON)<br>1 2 3 4 5<br>**----- End of picture text -----**<br> (HONDA TSUSHIN KOGYO CO., LTD.) Special Cable (Sold separately) K32-BCD (OMRON) (HDR-E50MAG1 with 0.3-m cable) **==> picture [66 x 98] intentionally omitted <==** **----- Start of picture text -----**<br> Sensor power supply<br>B1<br>B2<br>N/C<br>B3<br>B4<br>12 VDC + B5 Sensor<br>80 mA − B6 power supply<br><A><br>**----- End of picture text -----**<br> The BCD COMMON is shared. The pins indicated in the above diagram as blank (white) boxes have been removed. - *Only one of the following can be used for each Digital Indicator: communications, BCD, or DeviceNet. **==> picture [62 x 9] intentionally omitted <==** **----- Start of picture text -----**<br> Contact Outputs<br>**----- End of picture text -----**<br> **==> picture [272 x 111] intentionally omitted <==** **----- Start of picture text -----**<br> Contact Outputs Transistor Outputs<br>(NPN Open Collector)<br>5 V<br>HH HH<br>H H<br>L L<br>LL LL<br>PASS PASS<br>**----- End of picture text -----**<br> Sensor power supply + communications **==> picture [87 x 96] intentionally omitted <==** **----- Start of picture text -----**<br> B (+) SD B1<br>A (−) RD B2<br>B (+) SG B3<br>A (−) N/C B4<br>12 VDC 12 VDC + B5 Sensor<br>80 mA 80 mA − B6 power supply<br>RS-485 RS-232C<br><FLK3A> <FLK1A><br>**----- End of picture text -----**<br> ## Safety Standards Conformance Always use a EN/IEC-compliant power supply with reinforced insulation or double insulation for the DeviceNet power supply. The product must be used indoors for the above applicable standards to apply. **==> picture [539 x 34] intentionally omitted <==** **8** **K3HB-C** **==> picture [509 x 328] intentionally omitted <==** **----- Start of picture text -----**<br> E Pulse Inputs<br>• Up/Down Counting Pulse Meter: NPN Input Model<br>K3HB-C • NPN input section • Voltage pulse input section<br>NPN Input: PNP Input: 12 V 12 V<br>K3HB-@NB K3HB-@PB<br>Input A E2, E5 510 Ω 510 Ω<br>E1 E1 E1, E4<br>Voltage E2 Input A E2 700 Ω 10 kΩ 700 Ω<br>NPN PNP<br>E3 COM E3 COM COM<br>Input B<br>E4 E4 E3, E6<br>Voltage E5 Input B E5 E3, E6<br>NPN PNP<br>E6 COM E6 COM ON residual voltage: 3 V Connectable ON voltage: 4.5 to 30 V<br>Connectable<br>Note: E3 and E6, Note: E3 and E6, as Sensors OFF leakage current: Sensors OFF voltage: -30 to 2 V<br>as well as B6, well as B5, 1.5 mA max.<br>are internally are internally<br>connected. connected. Note: A 2-wire DC sensor can also be connected. Check the ratings and characteristics tables,<br>however, for the connection conditions.<br>D Event Inputs<br>• Use terminal pin D6 as the common terminal.<br>Models with Terminal Blocks Models with Connectors • Use NPN open collector or no-voltage contacts<br><1> <3> <2> <4> for event input.<br>1: N/C 1 2 2: S-TMR PNP types are also available.<br>N/C 3: HOLD 4: RESET<br>12 V<br>5: COMPENSATION 6: COM<br>N/C 7: BANK4 8: BANK2 HOLD: D3<br>HOLD • Applicable Connector (Sold separately) 9: BANK1 9 10 10: COM COMPENSATION: D5 RESET: D4 4.7 kΩ<br>RESET XG4M-1030 (OMRON)<br>COMPENSATION • Special Cable (Sold separately) K32-DICN (OMRON) 3.9 kΩ<br>COM (XG4M-1030 with 3-m cable)<br>D6<br>COM<br>Note: The actual terminal label abbreviates "COMPENSATION" to "CMP."<br>**----- End of picture text -----**<br> ## **BCD Output Cable** **==> picture [512 x 139] intentionally omitted <==** **----- Start of picture text -----**<br> Model Shape Pin arrangement<br>K32-BCD<br>Cover: Connector: HDR-E50MAG1 K3HB end38 mmHDR-E50LPA5 (manufactured by Honda Tsushin Co., Ltd.)(manufactured by Honda Tsushin Co., Ltd.)300 mm D-sub connector (37-pin female)Cover: Connector: Equivalent to 17JE-13370-02 Stud: (PLC, display device, etc.)17L-002A (manufactured by DDK)17JE-37H-1A (manufactured by DDK)(manufactured by DDK) Connected device end46.5 mm COMMON 1010101010 [0][1][2][3][4] 124812481248124812 10111213141516171819123456 7 89 273031333436202122232425262829323537 48 10 [4] OVERRUNCOMMONREQUESTMAX REQ.MIN REQ.HOLDRESETPOLARITYHHHPASSL LLCOMMONDATA VALID<br>**----- End of picture text -----**<br> **Note:** The BCD Output Cable has a D-sub plug. Cover: 17JE-37H-1A (manufactured by DDK); Connector: equivalent to 17JE-23370-02 (D1) (manufactured by DDK) ## **- Special Cable (for Event Inputs with 8 pin Connector)** **==> picture [320 x 118] intentionally omitted <==** **----- Start of picture text -----**<br> Model Appearance Wiring<br>K32-DICN Pin No. Signal name<br>1 N/C<br>9 10 2 S-TMR<br>3 HOLD<br>1 2 4 RESET<br>3,000 mm 5 N/C<br>Cable marking (3 m) 6 COM<br>7 BANK4<br>8 BANK2<br>9 BANK1<br>10 COM<br>**----- End of picture text -----**<br> **==> picture [539 x 34] intentionally omitted <==** **9** **K3HB-C** ## ■ **Derating Curve for Sensor Power Supply (Reference Values)** ## **For 12V** **==> picture [162 x 159] intentionally omitted <==** **----- Start of picture text -----**<br> 140<br>1<br>120<br>100<br>80<br>60<br>40<br>20<br>0<br>−20 −10 0 10 20 30 40 50 60<br>Ambient temperature (°C)<br>Maximum current (mA)<br>**----- End of picture text -----**<br> - **Note: 1.** The above values were obtained under test conditions with the standard mounting. The derating curve will vary with the mounting conditions, so be sure to adjust accordingly. **2.** Internal components may be deteriorated or damaged. Do not use the Digital Indicator outside of the derating range (i.e., do not use it in the area labeled A, above). ## ■ **Internal Block Diagram** **==> picture [343 x 239] intentionally omitted <==** **----- Start of picture text -----**<br> Pulse input Pulse inputcircuit shaping circuitWaveform Keys<br>EEPROM Indications<br>BCD<br>BCD I/O ••• Input circuit Output circuit Transistor circuitDrive circuitDrive Transistoroutput<br>output circuit<br>Micro-<br>computer<br>Event input Digital input circuit shaping circuitWaveform circuitDrive X Relay output<br>Linear output Linear outputcircuit circuitDrive circuitDrive DeviceNetcircuit DeviceNet<br>Sensor powersupply Filter circuitDrive Communi-cationsdriver Communications<br>VO VDD VCOM<br>Power supply circuit (isolated) VO DC-DC<br>Converter (isolated)<br>Power supply<br>**----- End of picture text -----**<br> **==> picture [539 x 34] intentionally omitted <==** **10** **K3HB-C** ## ■ **BCD Output Timing Chart** A REQUEST signal from a Programmable Controller or other external device is required to read BCD data. ## **Single Sampling Data Output** **==> picture [224 x 86] intentionally omitted <==** **----- Start of picture text -----**<br> 20-ms pulse min. (50 ms max.)<br>REQ.<br>MAX.MIN.<br>DATA All data "High" Data All data "High"<br>DATA<br>VALID<br>Approx. 30 ms 40 ms 16 ms<br>**----- End of picture text -----**<br> The data is set in approximately 30 ms from the rising edge of the REQUEST signal and the DATA VALID signal is output. When reading the data from a Programmable Controller, start reading the data when the DATA VALID signal turns ON. The DATA VALID signal will turn OFF 40 ms later, and the data will turn OFF 16 ms after that. ## **Continuous Data Output** **==> picture [223 x 85] intentionally omitted <==** **----- Start of picture text -----**<br> REQ.<br>MAX.MIN.<br>DATA All data "High" Data 1 Data 2<br>DATA<br>VALID<br>40 ms 40 ms<br>Approx. 24 ms 24 ms<br>30 ms 64 ms 64 ms<br>**----- End of picture text -----**<br> Measurement data is output every 64 ms while the REQUEST signal remains ON. **Note:** If HOLD is executed when switching between data 1 and data 2, either data 1 or data 2 is output depending on the timing of the hold signal. The data will not go LOW. - The K3HB BCD output model has an open collector output, so wired OR connection is possible **==> picture [409 x 123] intentionally omitted <==** **----- Start of picture text -----**<br> REQ. (1)<br>K3HB<br>(1)<br>Programmable<br>Controller REQ. (2)<br>K3HB<br>(2) REQ. (3)<br>DATA (including POL and<br>OVER) and DATA VALID can<br>be used in a wired OR. DATA (1) (2) (3)<br>K3HB RUN, HH, H, PASS, L, and<br>(3) LL are always output, with or<br>without a REQUEST signal. DATA<br>Do not used a wired OR VALID<br>connect for these signals. (See note.) (See note.) (See note.)<br>Note: Leave 20 ms min. between DATA VALID turning OFF and the REQUEST signal.<br>**----- End of picture text -----**<br> ## **Programmable Controller Connection Example Display Unit Connection Example** **==> picture [511 x 282] intentionally omitted <==** **----- Start of picture text -----**<br> Digital Indicator SYSMAC Programmable Controller Digital Indicator<br>Connector pin No. (See note.) DC Input Unit Connector pin No. (See note.)<br>1.COMMON COM 1.COMMON<br>2.1 IN 2.1<br>3.2 IN 3.2<br>10° 10°<br>4.4 IN 4.4<br>5.8 IN 5.8<br>23.DATA VALID 23.DATA VALID<br>24.RUN IN 24.RUN<br>IN To 10 [1]<br>To 10 [2]<br>25.COMMON Transistor Output Unit 25.COMMON<br>Short-<br>26.REQUEST OUT 26.REQUEST circuit<br>+5 V 240 Ω +5 V 240 Ω<br>240 Ω 240 Ω<br>30.RESET OUT 30.RESET<br>240 Ω 240 Ω<br>240 Ω 31.POLARITY(+/− polarity) COM(0 V) 240 Ω 31.POLARITY(+/− polarity) 8 8 8 SEC<br>24 VDC M7E-01D@N2, 01H@N2<br>+24 V DC power Note: The BCD output connector pin number is the D-sub connector pin number when <M7E Digital Display Unit><br>0 V supply the BCD Output Cable (sold separately) is connected. This number differs from<br>the pin number for the Digital Indicator narrow pitch connector (manufactured by<br>Honda Tsushin Kogyo Co., Ltd.).<br>Internal circuit<br>Internal circuit Internal circuit V O D C B A P D E L V O D C B A P D E L V O D C B A P D E L V O<br>**----- End of picture text -----**<br> Refer to the following User's Manual for application precautions and other information required when using the Digital Indicator: K3HB-R/P/C Digital Indicator User's Manual (Cat. No. N136) The manual can be downloaded from the following site in PDF format: OMRON Industrial Web http://www.fa.omron.co.jp **==> picture [539 x 34] intentionally omitted <==** **11** **K3HB-C** ## ■ **Component Names and Functions** ## Max./Min. status indicator Turns ON when the maximum value or minimum value is displayed in the RUN level. ## Level/bank display In RUN level, displays the bank if the bank function is ON. (Turns OFF if the bank function is OFF.) In other levels, displays the current level. **==> picture [114 x 48] intentionally omitted <==** **----- Start of picture text -----**<br> PV display<br>Displays PVs, maximum values,<br>minimum values, parameter<br>names, and error names.<br>**----- End of picture text -----**<br> **==> picture [112 x 38] intentionally omitted <==** **----- Start of picture text -----**<br> Position meter<br>Displays the position of the PV<br>with respect to a desired scale.<br>**----- End of picture text -----**<br> **==> picture [503 x 336] intentionally omitted <==** **----- Start of picture text -----**<br> Comparative output<br>status indicators SV display<br>outputs. Display the status of comparative HH H Max Min Displays SV and monitor values.<br>P B L<br>L CMW HH H<br>LL Hold T LL L<br>Status indicators SV display status indicators<br>Display Function MAX/MIN LEVEL MODE SHIFT UP<br>Indicator Function<br>CMW Lit when communications writing is ON Turns ON when parameters for which<br>(enabled) and not lit when OFF (prohibited). 5 4 3 T teaching can be performed are<br>Hold Turns ON/OFF when hold input turns ON/OFF. T 1 2 5, 4, 3, In RUN level, turn ON when the comparative set value 1, 2, 3, 4, or 5 is displayed.<br>2, 1 displayed.<br>**----- End of picture text -----**<br> ## MAX/MIN Key Used to switch the display between the PV, maximum value, and minimum value and to reset the maximum and minimum values. LEVEL Key MODE Key Used to switch level. Used to switch the parameters displayed. SHIFT Key UP Key Used to change When changing a set parameter settings. value, this key is used When changing a set to change the actual value, this key is used value. to move along the digits. **==> picture [539 x 34] intentionally omitted <==** **12** **K3HB-C** **==> picture [100 x 12] intentionally omitted <==** **----- Start of picture text -----**<br> ■ Dimensions<br>**----- End of picture text -----**<br> **==> picture [371 x 196] intentionally omitted <==** **----- Start of picture text -----**<br> 101.2 Terminal cover (included)<br>91<br>Panel Cutout Dimensions<br>Character Size for Main Display (mm)<br>PV display SV display 120 min. *2<br>14.2 4.9<br>me sy | ,<br>8 oH | 100 po a’ 4 ; ; ;<br>000 pny | in 3.5 i i<br>(112)<br>7.6<br>75 min.<br>- 92 [+0.8] 0<br>12 . 45 [+0.6] 0<br>O00 000 1.3 95 *1 [rptp<br>2<br>96<br>*2. Leave a distance of at least 140 mm when using the Wate<br>Cover Y92A-49N.<br>48 44.8<br>Note: Mounting Recommended Panel Thickness<br> 1 to 8 mm.<br> Mount the product horizontally.<br>**----- End of picture text -----**<br> **==> picture [75 x 5] intentionally omitted <==** **----- Start of picture text -----**<br> *1. DeviceNet models: 97 mm<br>**----- End of picture text -----**<br> **==> picture [128 x 7] intentionally omitted <==** **----- Start of picture text -----**<br> Terminal: M3, Terminal Cover: Accessory<br>**----- End of picture text -----**<br> ## **Wiring Precautions** - For terminal blocks, use the crimp terminals suitable for M3 screws. - Tighten the terminal screws to the recommended tightening torque of approx. 0.5 N·m. - To prevent inductive noise, separate the wiring for signal lines from that for power lines. ## **Wiring** ## ~~a~~ ## **Mounting Method** **1.** Insert the K3HB into the mounting cutout in the panel. **2.** Insert watertight packing around the Unit to make the mounting watertight. **==> picture [28 x 14] intentionally omitted <==** **----- Start of picture text -----**<br> Watertight<br>packing<br>**----- End of picture text -----**<br> - Use the crimp terminals suitable for M3 screws shown below. **==> picture [36 x 36] intentionally omitted <==** **----- Start of picture text -----**<br> 5.8 mm max.<br>5.8 mm max.<br>**----- End of picture text -----**<br> ## **Unit Stickers (included)** - No unit stickers are attached to the Digital Indicator. **3.** Insert the adapter into the grooves on the left and right sides of the rear case and push until it reaches the panel and is fixed in place. **==> picture [23 x 7] intentionally omitted <==** **----- Start of picture text -----**<br> Adaptor<br>**----- End of picture text -----**<br> - Select the appropriate units from the unit sticker sheets provided. ## ~~a~~ **LCD Field of Vision** The K3HB is designed to have the best visibility at the angles shown in the following diagram. **Note:** For measurements for commercial purposes, be sure to use the unit required by any applicable laws or regulations. **==> picture [14 x 20] intentionally omitted <==** **----- Start of picture text -----**<br> 10°<br>30°<br>**----- End of picture text -----**<br> ## **Watertight Cover** ## **Rubber Packing** **Y92A-49N K32-P1** If the rubber packing is lost or damaged, it can be ordered using the following model number: K32-P1. (Depending on the operating environment, deterioration, contraction, or hardening of the rubber packing may occur and so, in order to ensure the level of waterproofing specified in NEMA4, periodic replacement is recommended.) **Note:** Rubber packing is provided with the Controller. **13** **K3HB-C** ## **Main Functions** ## ■ **Main Functions and Features** ## **Measurement** > **Function** func The K3HB-R has the following six functions for receiving and displaying input pulses. ## **Outputs** ## **Comparative Output Pattern** out-p Zone and level comparative output patterns can be selected for comparative outputs. F1: Rotation (rpm)/circumferential speed F2: Absolute ratio F3: Error ratio F4: Rotational difference F5: Flow rate ratio ## off-d ## **Output OFF Delay** Delays turning OFF comparatives for a set period. This can be used to provide sufficient time to read the comparative output ON status when the comparative result changes at short intervals. F6: Passing time The K3HB-P has the following six functions for receiving and displaying input pulses. ## shot ## **Shot Output** Turns ON the comparative output for a specific time. F1: Passing speed F2: Cycle F3: Time difference ## out-n ## **Output Logic** Reverses the output logic of comparative results. F4: Time band F5: Measuring length F6: Interval The K3HB-C has the following three functions for receiving and displaying input pulses. F1: Individual inputs F2: Phase differential inputs F3: Pulse counting input ## test ## **Output Test** Output operation can be checked without using actual input signals by using the keys to set a test measurement value. **Linear Outputs** lset.c **,** lset.v **,** lset.h **,** lset.l A current or voltage proportional to the change in the measurement value can be output. ## **Filters** ## **Input Types** in-ta **,** in-tb **,** in-ta Specify the types of sensor connected to input A and input B. ## stdby ## **Standby Sequence** The comparison outputs can be kept OFF until the measurement value enters the PASS range. ## **Compensation** > **Compensation** compn **,** com-p The display can be changed to a preset compensation value using the compensation input. ## **Key Operations** ## **Teaching** The present measurement value can be used as a scaling value. ## **Key Protection** Key protection restricts level or parameter changes using the keys to prevent unintentional key operations and malfunctions. **==> picture [539 x 34] intentionally omitted <==** **14** **K3HB-C** ## **Display** ## **Display Value Selection** disp The display value can be set to the present value, the maximum value, or the minimum value. ## **Other** ## **Bank Selection** bnk-c Switch between 8 comparative value banks using the keys on the front panel or external inputs. A set of set comparative values can be selected as a group. ## **Display Color Selection** color The present value display color can be set to green or red. The color of the present value can also be switched according to the comparative output. ## **Display Refresh Period** d.ref When the input changes rapidly, the display refresh period can be lengthened to control flickering and make the display easier to read. ## copy ## **Bank Copy** Any bank settings can be copied to all banks. ## memo ## **Interruption Memory** The measured value can be recorded when the power supply is interrupted. ## **Position Meter** ## pos-t **,** pos-h **,** pos-l The present measurement value can be displayed as a position in relation to the scaling width on a 20-gradation position meter. ## **Prescale** ps.ax **,** ps.ay **,** ps.bx **,** ps.by The input signal can be converted and displayed as any value. ## **Comparative Set Value Display** sv.dsp Select whether or not to display the comparative value during operation. ## **Display auto-return** ret Automatically returns the display to RUN level when there are no key operations (e.g., max./min. switching, bank settings using keys). ALL DIMENSIONS SHOWN ARE IN MILLIMETERS. **==> picture [539 x 34] intentionally omitted <==** To convert millimeters into inches, multiply by 0.03937. To convert grams into ounces, multiply by 0.03527. In the interest of product improvement, specifications are subject to change without notice. **15** ## Terms and Conditions Agreement ## Read and understand this catalog. Please read and understand this catalog before purchasing the products. Please consult your OMRON representative if you have any questions or comments. ## Warranties. (a) Exclusive Warranty. Omron’s exclusive warranty is that the Products will be free from defects in materials and workmanship for a period of twelve months from the date of sale by Omron (or such other period expressed in writing by Omron). Omron disclaims all other warranties, express or implied. (b) Limitations. OMRON MAKES NO WARRANTY OR REPRESENTATION, EXPRESS OR IMPLIED, ABOUT NON-INFRINGEMENT, MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE OF THE PRODUCTS. BUYER ACKNOWLEDGES THAT IT ALONE HAS DETERMINED THAT THE PRODUCTS WILL SUITABLY MEET THE REQUIREMENTS OF THEIR INTENDED USE. Omron further disclaims all warranties and responsibility of any type for claims or expenses based on infringement by the Products or otherwise of any intellectual property right. (c) Buyer Remedy. Omron’s sole obligation hereunder shall be, at Omron’s election, to (i) replace (in the form originally shipped with Buyer responsible for labor charges for removal or replacement thereof) the non-complying Product, (ii) repair the non-complying Product, or (iii) repay or credit Buyer an amount equal to the purchase price of the non-complying Product; provided that in no event shall Omron be responsible for warranty, repair, indemnity or any other claims or expenses regarding the Products unless Omron’s analysis confirms that the Products were properly handled, stored, installed and maintained and not subject to contamination, abuse, misuse or inappropriate modification. Return of any Products by Buyer must be approved in writing by Omron before shipment. Omron Companies shall not be liable for the suitability or unsuitability or the results from the use of Products in combination with any electrical or electronic components, circuits, system assemblies or any other materials or substances or environments. Any advice, recommendations or information given orally or in writing, are not to be construed as an amendment or addition to the above warranty. See http://www.omron.com/global/ or contact your Omron representative for published information. ## Limitation on Liability; Etc. OMRON COMPANIES SHALL NOT BE LIABLE FOR SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL DAMAGES, LOSS OF PROFITS OR PRODUCTION OR COMMERCIAL LOSS IN ANY WAY CONNECTED WITH THE PRODUCTS, WHETHER SUCH CLAIM IS BASED IN CONTRACT, WARRANTY, NEGLIGENCE OR STRICT LIABILITY. Further, in no event shall liability of Omron Companies exceed the individual price of the Product on which liability is asserted. ## Suitability of Use. Omron Companies shall not be responsible for conformity with any standards, codes or regulations which apply to the combination of the Product in the Buyer’s application or use of the Product. At Buyer’s request, Omron will provide applicable third party certification documents identifying ratings and limitations of use which apply to the Product. This information by itself is not sufficient for a complete determination of the suitability of the Product in combination with the end product, machine, system, or other application or use. Buyer shall be solely responsible for determining appropriateness of the particular Product with respect to Buyer’s application, product or system. Buyer shall take application responsibility in all cases. NEVER USE THE PRODUCT FOR AN APPLICATION INVOLVING SERIOUS RISK TO LIFE OR PROPERTY OR IN LARGE QUANTITIES WITHOUT ENSURING THAT THE SYSTEM AS A WHOLE HAS BEEN DESIGNED TO ADDRESS THE RISKS, AND THAT THE OMRON PRODUCT(S) IS PROPERLY RATED AND INSTALLED FOR THE INTENDED USE WITHIN THE OVERALL EQUIPMENT OR SYSTEM. ## Programmable Products. Omron Companies shall not be responsible for the user’s programming of a programmable Product, or any consequence thereof. ## Performance Data. Data presented in Omron Company websites, catalogs and other materials is provided as a guide for the user in determining suitability and does not constitute a warranty. It may represent the result of Omron’s test conditions, and the user must correlate it to actual application requirements. Actual performance is subject to the Omron’s Warranty and Limitations of Liability. ## Change in Specifications. Product specifications and accessories may be changed at any time based on improvements and other reasons. It is our practice to change part numbers when published ratings or features are changed, or when significant construction changes are made. However, some specifications of the Product may be changed without any notice. When in doubt, special part numbers may be assigned to fix or establish key specifications for your application. Please consult with your Omron’s representative at any time to confirm actual specifications of purchased Product. ## Errors and Omissions. Information presented by Omron Companies has been checked and is believed to be accurate; however, no responsibility is assumed for clerical, typographical or proofreading errors or omissions. **In the interest of product improvement, specifications are subject to change without notice.** ## **OMRON Corporation** ## **Industrial Automation Company** 2016.11 **http://www.ia.omron.com/** (c)Copyright OMRON Corporation 2016 All Right Reserved.
Updated at April 29, 2026
With a legacy spanning over 80 years, Omron Industrial Automation is a globally recognized leader in the manufacture of advanced industrial control and automation components. Renowned for their reliability and engineering excellence, Omron delivers comprehensive solutions that enhance efficiency, machine safety, and precision across a wide range of manufacturing environments. Our extensive portfolio of Omron products is heavily focused on their industry-leading sensing and switching technologies. We offer a vast selection of sensors, excelling specifically in high-performance proximity sensors, light sensors, and temperature sensors. Complementing this range are robust switching solutions, featuring a deep inventory of power relays, solid-state relays, safety relays, and essential relay accessories designed for demanding operational requirements. Beyond sensing and switching, Omron is highly regarded for its precision automation and process control equipment. Our selection features highly accurate temperature controllers, versatile process controllers, and sophisticated panel displays and instrumentation. To support these fundamental systems, we also supply dependable Omron power supplies, notably AC/DC converters, alongside vital connectivity components like DIN rail terminal blocks to ensure secure, efficient, and complete industrial setups.
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