欧姆龙时间继电器h2f_d

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omron D2F基本开关 说明书

omron D2F基本开关 说明书

D 2 F
mm
5.8 1.5 3.5 3.15 6.5 5.08 12.8
0.1
0.15
1.5 3.4 0.4 5.8
0.15
3-φ1.2 1.6 1.5
0.05 0.15 0.15
5.08 0.1 12.8 0.15
0.9
3.15
6.5 5.08 12.8
0.1
0.9 0.4 1.25
5.08
0.15
D2F-FL2 D2F-01FL2 0.39N 0.02N 0.55mm 0.5mm
1 4 OP FPFra bibliotekOT MD FP OP
D 2 F
1. 2.
16.5mm 13±2mm
·将导线焊接到端子上时,请先将导体穿过端子孔后再进行操作。 钎焊烙铁的容量应为30W以下,烙铁头温度在300℃左右(最大请 控制在350℃以下),时间在3s之内。焊接不良的情况下使用开关, 可能导致异常发热和烧损。瓦数超过30W且加热超过3s,可能导致 开关特性劣化。 · 印刷基板用端子与基板的连接 使用自动焊接槽时,建议在260℃±5℃5秒以内完成作业。此外, 请注意勿使焊锡或助焊剂溢出基板。 手工焊接时,利用烙铁头温度在350℃以下的烙铁进行作业,作业 时间以3秒内为大致标准。钎焊后1分钟内请勿对其施加外力。此 外,请在离开开关盒一定距离处供应焊锡,避免焊锡和助焊剂流 入开关盒一侧。
D2F-L□ D2F-01L□ 0.78N 0.05N 0.55mm 0.5mm
D2F-FL□ D2F-01FL□ 0.25N 0.02N 0.55mm 0.5mm
*不锈钢摆杆
10mm 6.8±1.5mm
●R形摆杆型(R1.3)
D2F-L3□ D2F-01L3□ D2F-FL3□ D2F-01FL3□

欧姆龙时间继电器h3ba_n_n8h

欧姆龙时间继电器h3ba_n_n8h
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ᯊ䯈ऩԡߛᤶᓔ݇ ˄Ң金ǃߚǃᇣᯊǃ
10ᇣᯊЁ䗝ᢽ˅
998 固态定时器 H3BA-N/N8H
额定值/性能
动作电压范围 电源恢复
项目
消耗电力
接点容量
无电压输入
动作时间精度 设定误差 电压影响 温度影响 绝缘阻抗
输出控制
耐电压
脉冲阻抗
耐噪声 抗静电 振动
冲击 周围温度 周围湿度
寿命
保护构造 重量
ᡔᴃᣛफ
78 63.7
13.6
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䴶ᵓ 3*ൟ 㚠䴶䖲᥹ᦦᑻ˄঺ଂ˅
䴶ᵓ
䴶ᵓ㺕ߛ
1004 固态定时器 H3BA-N/N8H
●Y92F-71安装时的尺寸
䴶ᵓ
P3GA-11ൟ 㚠䴶䖲᥹ᦦᑻ
H3BA-N
H3BA-N8H
112.2
109.9
101.3
99
P2CF-11ൟ 注. 安装尺寸因DIN导轨而不同。
耐久 误动作 耐久 误动作
机械 电气
H3BA-N
H3BA-N8H
85%~110%额定电压
最低动力起动时间:0.1s
110VAC约4.6VA(1.5W)
110VAC约3.6VA(1.6W)
220VAC约7.9VA(1.3W)
220VAC约5.4VA(1.4W)
24VDC约0.6W
24VDC约0.9W
接点输出:5A在250VAC,阻性负载cosφ =1
tˉa
tˉa tˉa
t
t
t
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t ⬉⑤ĸ-ŀ
䍋ࡼĸ-ļ
໡ԡĸ-Ľ
ķ-ĺ 䰤ᯊ᥹⚍gNC (ŀ11-ľ)
ķ-Ĺ 䰤ᯊ᥹⚍gNO(ŀ11-Ŀ)

欧姆龙数字定时开关H5S

欧姆龙数字定时开关H5S
8kV大气中 EN60730-2-7(IEC61000-4-3):10V/m AM调频(80~1,000、1,400~2,000MHz)
10V/m 脉冲调频(900MHz) EN60730-2-7(IEC61000-4-6):10V(0.15~80MHz) EN60730-2-7(IEC61000-4-4):2kV(电源线)
在设定的ON时刻内进行一定时间的脉冲输出。 • 脉冲宽度:1~59s(1s单位)、1~60min(1min单位)
脉冲宽度可以在各步独立设定。
ᕾ⦃ࡼ԰
OFFᯊ䯈
䍋ࡼᯊࠏ ONᯊ䯈 ‫ذ‬ℶᯊࠏ
在定时器动作中,从循环起动时刻到停止时刻的期间内,在以ON时间、OFF时间显示的时间带反复ON/OFF 动作。
〈行业首创〉 *1 • 可减小设定值, 实现快速设定! • 内置温度补偿回路, 即使在较大的温度范围内, 也可实现高计时
精度。 *2 • 内置时间计数器/统计计数器。 *3 • 内置BANK功能, 通过外部输入实现程序切换。 *4 • 追加DIN72×72mm、 输出4通道型的小型系列。
*1. 基于本公司2005年12月的调查结果。 *2. 年度式中附带。 *3. 2通道型号中附带。 *4. 星期式中附带。
更换锂电池 (更换电路板) 时登记的内容将消失, 敬请谅解。
■ 适用标准
安全标准
EMC
CURUS:UL508/CSA C22.2 No.14 EN60730-2-7:污染度2、过电压类别Ⅱ VDE0106/part100 电气用品安全法
(EMI) 放射妨害电场强度 噪音端子电压(连续) 噪音端子电压(不连续) 高谐波电流 电压变化/闪烁 (EMS) 静电放电抗扰性
一年4通道(H5S-Y□4)

H3DE选型样本

H3DE选型样本

Solid-state Timer H3DE DIN Track Mounted, Standard 22.5-mm Width Timer RangeA wide AC/DC power supply range (24 to 230 VAC/DC) reduces the number of timer models kept in stock.(except for H3DE-H)12-VDC model available for a specific application. (H3DE-M2)Nameplate provided for easy timer identification and management.Terminal clamp left open when delivered.Finger protection terminal block to meet VDE0106/P100.Enables easy sequence checks through instantaneous outputs for a zero set value at any time range.Incorporates environment-friendly, cadmium-free contacts. (except for H3DE-H)High immunity to inverter noise.Approved by UL and CSA.Conforms to EN61812-1 and IEC60664-1 (VDE0110) 4 kV/2 for Low Voltage and EMC Directives.H3DEStandard TimerH3DE-MH3DE-STwin TimerH3DE-FStar-delta TimerH3DE-GPower OFF-delay TimerH3DE-H H3DE-M/S H3DE-F H3DE-G H3DE-HContentsSolid-state TimerH3DE-M/S5. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .H3DE-F14. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .H3DE-G20. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .H3DE-H26. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .Common to ALL TimersAccessories32. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .Precautions33. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .Solid-state Multi-functional Timer H3DE-M/-S Eight operating modes (H3DE-M) and fouroperating modes (H3DE-S) cover a wide range ofapplications.Programmable contact enables the building of aself-holding relay circuit (-j2 models).A wide time setting range of 0.10 s to 120 h.Note:Can be mounted to 35-mm DIN track with a plate thickness of 1 to 2.5 mm.Note:When the main dial is set to “0” for all settings, the output will operate instantaneously.RatingsNote: 1.DC ripple rate: 20% max.2.Since an inrush current of 0.25 A will occur when using the power supply voltage at 24 VDC, pay careful attention when turning on oroff the power supply to the T imer with a solid-state output such as a sensor.3.The power consumption is for mode A after the T imer counts the time-up time and for the AC input at 50 Hz. The power consumptionof the H3DE-M j includes the input circuit with the B1 and A1 terminals short-circuited.CharacteristicsNote: 1.With the H3DE-M j, if the voltage exceeds 26.4 V AC/DC, the following hold at signal OFF for C, D, and G modes: Accuracy of operating time: ±1% ±50 ms max. at 1.2-s rangeSetting error: ±10% +100/–50 ms max.Signal input time: 100 ms min.2.For reference : A maximum current of 0.15 A can be switched at 125 VDC (cosφ=1).A maximum current of 0.1 A can be switched if L/R is 7 ms.In both cases, a life of 100,000 operations can be expected.The minimum applicable load is 10 mA at 5 VDC (failure level: P).Output type selector switch for H3DE-M2/-S2 (default setting is time-limit output)Setting Output typeTime-limit output (terminal numbers 25, 26 and28) (default setting)Instantaneous output(terminal numbers 21, 22 and 24)Output Type Selector Switch Settings(Bottom View)H3DE-S1/-S2I/O FunctionsNote:When the output type selector switch on the bottom of the T imer is set to the instantaneous side, the relay R2 (terminal numbers 21/25,22/26, and 24/28) becomes an instantaneous contact and turns ON/OFF in synchronization with the changes in the power supply .Setting of SelectorThe selectors can be turned clockwise and counterclockwise to se -lect the desired time unit, time scale, or operating mode.Each selector has a snap mechanism that secures the selector at a given position. Set the selector at a position at which it is secured.Do not set it midway between two securing positions or a malfunc -tion could result from improper setting.Operating mode selectorOperating mode display windowSelection of Operating ModeThe H3DE-M/-S can be set to any one of the operating modes A to J.Turn the operating mode selector with a screwdriver until the de-sired operating mode (A, B, C, B2, D, E, J, or G for the H3DE-M and A, E, J, or B2for the H3DE-S) appears in the operating mode display window located below the selector .Selection of T ime Unit and T ime ScaleThe desired time unit (s, m, h, or 10h) can be displayed in the time unit display window above the time setting dial by turning the time unit selector located at the upper right corner of the front panel. T ime scale (0.1 or 1) is selected with the time scale selector at the upper left corner of the front panel, it appears in the time scale display win -dow above the selector .T ime unit selectorNote: 1.The minimum power reset time is 0.1 s and the minimum signal input time is 0.05 s.2.The letter “t” in the timing charts stands for the set time and “t–a” means that the period is less than the time set.tFor power-on operation, impose voltage to theStart input. The Timer starts operating at themoment the power is turned on.Start input is invalid while the Timer is in opera-tion.**Basic operationt t t tFor power-on operation, impose voltage to theStart input. The Timer starts operating at themoment the power is turned on.Start input is invalid while the Timer is in opera-tion.**Basic operationOutputt t t tFor power-on operation, impose voltage to theStart input. The Timer starts operating at themoment the power is turned on.Start input is invalid while the Timer is in opera-tion.**Basic operationOutputtt t tStart input is invalid while the Timer is in opera-tion.*Note:The start input of the H3DE-M1 or H3DE-M2 model is activated by applying a voltage to B1 and A2 terminals.The voltage can be applied by turning on the contact between B1 and A1 (Refer to T erminal Arrangement).tStart input is valid and re-triggerable while theTimer is in operation.*tBasic operationFor power-on operation, impose voltage to theStart input. The Timer starts operating at themoment the power is turned on.Start input is valid and re-triggerable while theTimer is in operation.**Basic operationt t t t*t t tt–a t–aApprox. 1±0.6 s (fixed)Approx.1±0.6 s(fixed) Approx.1±0.6 s(fixed)Note:The start input of the H3DE-M1 or H3DE-M2 model is activated by applying a voltage to B1 and A2 terminals.The voltage can be applied by turning on the contact between B1 and A1 (Refer to T erminal Arrangement).H3DE-M/-STerminal block (black)Surface color:Light gray 5Y7/1 (OMRON)Output type selector switch (default setting: Time-limit output) 15R118161816A2B1A115(see note 2)(see note 2)(see note 2)(see note 2)------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------Note: 1.The relay R2 can be set to either instantaneous or time-limit contact using the switch located on the bottom of the T imer.2.DC supply voltage does not require the designation of polarity.3.The contact symbol for the H3DE is indicated withThe inputs of the H3DE-M1/-M2 are voltage (voltage imposition or open) inputs.No-contact Input(Connection to PNP output sensor .)Contact InputV oltage Input Signal LevelsNo-contact inputContact input1. T ransistor ONResidual voltage: 1 V max.(V oltage between terminals B 1 and A 2 must be more than the rated “H-level” voltage (20.4 VDC min.).)2. T ransistor OFFLeakage current: 0.01 mA max.(V oltage between terminals B 1 and A 2 must be less than the rated “L-level” voltage (2.4 VDC max.).)Use contacts that can adequately switch 0.1 mA at each voltage to be imposed. (When the contacts are ON orOFF , voltage between terminals B 1 and A 2 must be within the following ranges:When contacts are ON:20.4 to 253 V AC/DC When contacts are OFF:0 to 2.4 V AC/DCOperates with PNP transistor ONOperates with relay ONNo-contact Input(Connection to NPN output sensor .)SensorA 1B 1A 224 VDC (+)(–)Operates with NPN transistor ONTimerSolid-state Twin Timer H3DE-F Operates in flicker-OFF or flicker-ON start modewith one Unit.Independent ON- and OFF-time settings.Combinations of long ON- or OFF-time and shortOFF- or ON-time setting are possible.Long time range from 0.1 s to 12 h for both ON andOFF time settings.H3DE -11.F:Twin timersNote:Can be mounted to 35-mm DIN track with a plate thickness of 1 to 2.5 mm.Note: 1.T ime scale display is applied commonly for ON and OFF time.2.When the main dial is set to “0” for all settings, the output will operate instantaneously. RatingsNote:DC ripple rate: 20% max.CharacteristicsNote:For reference:A maximum current of 0.15 A can be switched at 125 VDC (cosφ=1).A maximum current of 0.1 A can be switched if L/R is 7 ms.In both cases, a life of 100,000 operations can be expected.The minimum applicable load is 10 mA at 5 VDC (failure level: P).Time scale display windowTime scale selector (select 0.1 or 1)Output ON indicator (orange)Output OFF indicator (green)Nameplate for user use (20 x 5.4 mm white panel)ON-time unit display windowTime unit selector(select one from s, 10s, min, or h for output ON)ON-time setting dial OFF-time setting dialOFF-time unit display windowON/OFF start selector(default is flicker-OFF start)OFF-time unit selector(select one from s, 10s, min, or h)Time Unit SelectionThe time unit display window for output ON is located on the upper-right side of the front panel above the corresponding time unit selec -tor.The time unit display window for output OFF is located on the lower-right side of the front panel belowthe corresponding time unit selec -tor.According to the setting of each time unit selector , “sec” for seconds,“10s” for 10 seconds, “min” for minutes, or “hrs” for hours will appear in the corresponding time unit display window .ON-time unit display window ON-time unit selector (select one from s, 10s, min, or h)OFF-time unit selector (select one from s, 10s, min, or h)OFF-time unit display windowTime Scale SelectionThe time scale selector on the upper-left side of the front panel can be set to 0.1 or 1 as a magnification coef ficient.Time scale display window Time scale selectorON-time setting dialOFF-time setting dialTime SettingUse the ON/OFF-time setting dial to set the ON/OFF time.t ON : ON set time t OFF : OFF set time0.1 s min.t ON : ON set time t OFF : OFF set time0.1 s min.Note: 1.The reset time requires a minimum of 0.1 s.2.When power is supplied in flicker-ON start mode, the OFF indicator lights momentarily . This, however , has no ef fect on the perfor -mance of the T imer.Terminal block (black)Surface color:Light gray 5Y7/1(OMRON)Terminal block (black)Note:DC supply voltage does not require the designation of polarity.Solid-state Star-delta Timer H3DE-G A wide star-time range (up to 120 seconds) andstar-delta transfer time range (up to 0.5 seconds)H3DE -11.G:Star-delta timerNote:Can be mounted to 35-mm DIN track with a plate thickness of 1 to 2.5 mm.RatingsNote:DC ripple rate: 20% max.CharacteristicsNote:For reference:A maximum current of 0.15 A can be switched at 125 VDC (cosφ=1).A maximum current of 0.1 A can be switched if L/R is 7 ms.In both cases, a life of 100,000 operations can be expected.The minimum applicable load is 10 mA at 5 VDC (failure level: P).Star operation indicator (green)Delta operation indicator (orange)Time setting dial (for setting star operation time)Star-delta transfer time selectorStar-delta transfer time display windowTime scale display window Star operation time scale selector (select 1 or 10)Nameplate for user use (20 x 5.4 mm white panel)(Front View)AC (DC) inputPower supply circuitStar operation indicator Delta operation indicatorIndicator circuitOutput circuitStar opera-tion time counting circuitStar-delta transfer timeselectionStar-delta transfer time oscilla-tion circuitStar-delta transfer time countingcircuitStar operationDelta operationStar opera-tion time oscillation circuit Staroperation time scale selectorTime Unit SettingThe star-delta transfer time is set to 0.05, 0.1, 0.25 or 0.5 with the star-delta transfer time selector on the lower-right side of the front panel and the set value appears in the star-delta transfer time dis -play window below the selector .Star-delta transfer time selectorStar-delta transfer time dis-play windowTime Scale SelectionThe star operation time scale selector on the upper-left side of the front panel can be set to 1 or 10 as a magnification.Star operation time scale display window Star operation time scale selectorTime setting dialTime SettingThe operation time of the T imer is set with the time setting dial.t 1: Star operation time setting t 2: Star-delta transfer time0.5 sNote:The reset time requires a maximum of 0.5 s.H3DE-GTerminal block (black)Surface color: Light gray 5Y7/1(OMRON)Terminal block (black)Note:DC supply voltage does not require the designation of polarity .Solid-state Power OFF-delay Timer H3DE-H Two delay-time models available.0.1 to 12 seconds (S Series)1 to 120 seconds (L Series)Covers wide range of supply voltage.Conforms to EMC Standard (EN50081-2 andEN50082-2).Note:Specify both the model number and supply voltage when ordering.Example: H3DE-H 24 V AC/DC ST ime span codeSupply voltageH3DE -11.H:Power OFF-delay timerNote:Can be mounted to 35-mm DIN track with a plate thickness of 1 to 2.5 mm.Note:The Timer will not operate if the specified power-on time is not kept. Be sure to supply power for at least the period specified. RatingsNote:The ripple in DC power supply must be 20% max. A single-phase, full-wave rectifying power supply can be connected if the ripple output of the power supply is a maximum of 20% of the whole output.CharacteristicsNote:For reference:A maximum current of 0.15 A can be switched at 125 VDC (cosφ=1).A maximum current of 0.1 A can be switched if L/R is 7 ms.In both cases, a life of 100,000 operations can be expected.The minimum applicable load is 100 mA at 5 VDC (failure level: P).Time scaledisplay window Time scale selectorS Series: Set to 0.1 or 1L Series: Set to 1 or 10Power indicator (green)Lit when the Timer is turned ON.Time setting dial (for setting power OFF-delay time)Nameplate for user use (20 x 5.4 mm white panel)(Front View)AC (DC) inputPower supply circuit Indicator circuit Output circuitPower failure detection circuitOscillation circuit Counting circuit Time scale selectorTime Scale SelectionThe time scale selector on the upper left-hand side of the front panel of the S Series can be set to 0.1 or 1 and that of the L Series can be set to 1 or 10 as magnification coef ficients.Time scale display windowTime scale selectorTime setting dialTime SettingThe operating time of the T imer is set with the time setting dial.Rt: Minimum power-on time (S-series: 0.1 s min.; L-series: 0.3 s min.)(The output may never turn ON if this time or more is not ensured.)H3DE-H Terminal block (black)Surface color:Light gray 5Y7/1(OMRON)Terminal block (black)Note:DC supply voltage does not require the designation of polarity.Note:All units are in millimeters unless otherwise indicated.Mounting TrackPFP-100N, PFP-50N PFP-100N2L: Length1 m PFP-100N50 cm PFP-50N1 m PFP-100N2End Plate PFP-M Spacer PFP-S4.51525252525*1010L 7.3±0.1535±0.327±0.1514.51525252525151010L35±0.327241629.21 1.55011.5M4 x 8pan headscrew 106.21.8135.535.31.81.34.85161244.316.51034.8NOTICE: Do not change the time unit, time scale, operating mode,or output type selector switch while the T imer is in opera -tion or malfunction could result.The H3DE should be mounted as horizontally as possible.When mounting the H3DE on a socket mounting track, hook portion (A) of the Timer to an edge of the track first, and then depress the T imer in the direction of (B).(B)When dismounting the H3DE, pull out portion (C) with a flat-blade screwdriver and remove the T imer from the mounting track.Rail stopperThe H3DE can be mounted and dismounted with ease if a distance of 30 mm or more is kept between the H3DE and the top surface of other equipment located below the H3DE.The H3DE Series is provided with a transformerless power supply system. An electric shock may be received if the input terminal or the output type selector switch is touched while power is being sup -plied.Use the bar terminal for wiring the H3DE. Using a stranded-wire ter -minal may cause a short-circuit due to a stray wire entering into the Timer.Both AC and DC power supplies can be connected to the power in -put terminals without regarding polarity .With the H3DE only, a DC power supply must be connected to the power input terminals as designated according to the polarity of the terminals.A DC power supply can be connected if its ripple factor is 20% or less and the mean voltage is within the rated operating voltage range of the T imer.Connect the power supply voltage through a relay or switch in such a way that the voltage reaches a fixed value at once or the Timer may not be reset or a timer error could result.For the power supply of an input device, use an isolating transform -er, of which the primary and secondary windings are mutually iso-lated and the secondary winding is not grounded.Power supplyThe H3DE-H has a large inrush current; provide sufficient power supply capacity. If the power supply capacity is too small, there may be delays in turning ON the output.If the load current is continuously being supplied to the T imer for a long period of time, be sure to provide the mounting clearance as shown in the figure below. If used under the conditions other than those specified below , the life of internal components may be short -ened due to an excessive rise in the internal temperature.DIN trackt: Mounting clearance (mm)34Switching Current vs. Ambient T emperature(When Mounting T wo or More H3DE Units Side-by-Side)A m b i e n t t e m p e r a t u r e ( C )(Measurement Condition: Input voltage of 230 V AC)0123457060504030200 mmMaximum range of operating ambient temperature°Relationship between Input and Power Supply CircuitsSince the input circuit and the power supply circuit are configured independently, the input circuit can be turned on or of f irrespective of the on/of f state of the power supply .It must be noted that a voltage equivalent to the power supply volt -age is applied to the input circuit.When connecting a relay or a transistor as an external signal input device, pay attention to the following points to prevent short-circuit -ing due to a sneak current to the transformerless power supply .If a relay or transistor is connected to two or more T imers, the input terminals of those T imers must be wired properly so that they will not be different in phase or the terminals will be short-circuited to one another (refer to the figures below).IncorrectContact or transistor forCorrectPower supplycurrentContact or transistor for Power supplycurrentThe H3DE Series is provided with a transformerless power supply system.The input wires must be as short as possible. If the floating capacity of wires exceeds 2,000 pF (approx. 17 m for cables with 120 pF/m),the operation will be affected. Pay particular attention when using shielded cables.The H3DE has a high impedance circuit. Therefore, the H3DE may not be reset if the H3DE is influenced by inductive voltage. In order to eliminate any influence of inductive voltage, the wires connected to the H3DE must be as short as possible and should not be installed alongside power lines. If the H3DE is influenced by induc -tive voltage that is 30% or more of the rated voltage, connect a CR filter with a capacitance of approximately 0.1 µF and a resistance of approximately 120 Ω or a bleeder resistor between the power sup -ply terminals. If there is any residual voltage due to current leakage,connect a bleeder resistor between the power supply terminals.35An interval of 3 s minimum is required to turn on the H3DE after the H3DE is turned of f. If the H3DE is turned on and of f repeatedly with an interval of shorter than 3 s, the internal parts of the H3DE may deteriorate and the H3DE may malfunction.PowerOutput state 1Output state 2If it is required that the output be turned on repeatedly with an inter -val of shorter than 3 s, consider use of the H3DE-M2/-M1 in mode D (signal OFF-delay).The H3DE as a built-in timer conforms to VDE 0435/P2021 provided that the following conditions are satisfied:The output section of the H3DE is provided only with basic isolation.To ensure reinforced isolation required by the VDE standards, pro -vide supplementary basic isolation on the load side connected to the output.The H3DE itself is designed according to the following:•Overvoltage category III •Pollution degree 2On the above basis:Operation parts on the front and bottom: Reinforced isolation–With clearance of 5.5 mm and creepage distance of 5.5 mm at 230 V ACOutput: Basic isolation–With clearance of 3 mm and creepage distance of 3 mm at 230 V ACWhen using the T imer in an area with excess electronic noise, sepa -rate the T imer , wiring, and the equipment which generates the input signals as far as possible from the noise sources. It is also recom -mended to shield the input signal wiring to prevent electronic inter -ference.Organic solvents (such as paint thinner), as well as very acidic or basic solutions can damage the outer casing of the T imer.Do not use the T imer in places where it is exposed to dust, corrosive gas, or direct sunlight.When storing the Timer, make sure that the ambient temperature and humidity are within the rated values. Leave the T imer at room temperature for at least three hours before using the T imer if it has been stored at an ambient temperature of –10°C or below .If the T imer is mounted on a control board, dismount the T imer from the control board or short-circuit the circuitry of the power board be -fore carrying out a voltage withstand test between the electric cir-cuitry and non current-carrying metal part of the Timer, in order to prevent the internal circuitry of the T imer from damage.It must be noted that although the electrical life expectancy of the H3DE T imer shown in the catalog is the same as the H3DR T imer shown in the catalog, the actual performance varies because the built-in relays are different as follows:Built-in relay for the H3DR:G2R; 100,000 operations min.(10 A for SPDT and 5 A for DPDT at 250 VAC, resistive load at 1,800 operations/h.)Built-in relay for the H3DE:G6RN; 50,000 operations min.(8 A at 250 VAC, resistive load at 360 operations/h.)36OMRON CorporationIndustrial Automation CompanyMeasuring and Supervisory Controls Department Shiokoji Horikawa, Shimogyo-ku,Kyoto, 600-8530 JapanTel: (81)75-344-7108/Fax: (81)75-344-7189ALL DIMENSIONS SHOWN ARE IN MILLIMETERS.To convert millimeters into inches, multiply by 0.03937. T o convert grams into ounces, multiply by 0.03527.Cat. No. L092-E1-4In the interest of product improvement, specifications are subject to change without notice.Printed in Japan 0301-1.5M (A)。

OMRON-h3y-时间继电器(固态继电器)

OMRON-h3y-时间继电器(固态继电器)

H3Y-4 DC12V DC24V ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- DC48V AC AC DC 100~120V 200~230V 100~110V 50/60Hz 50/60Hz -- -- --
固态定时器
相关信息
H3Y
内置专用IC的时序控制用 超小型定时器
• 重复误差在±1%, 实现高精度 (包括初始值在内) 。 • 复位时间包括中途复位在内在100ms以下。 • 螺丝刀共用大型旋钮时间设定变得相当容易。 • 实现电源电压的半多联化。 • 标准品通过UL、 CSA标准认证。 符合EN61812-1、 对应CE标记。
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*1. 请将定时器输出作为电源使用。详情请参见996页的 「定时器共通注意事项 ●关于电源」 。 *2. 可以使用范围至单相全波整流电源。 *3. DC12V只有H3Y-2、 H3Y-2-0系列。 *4. 在使用环境温度为50℃下连续使用时,请在电源电压的90~110% (DC12V为95~110%)下使用。 *5. 为了切实复位,请将AC100~120V时控制在AC10V以下, AC200~230V时控制在AC20V以下, DC100~ 110V时控制在DC10V以下。
■种类
动作方式/复位方式 限时接点 电源外加 ・ 时间上升灯亮显示 表面安装 (插入端子) 表面安装 (印刷基板用端子) 2c H3Y-2 H3Y-2-0 限时动作/自动复位 4c H3Y-4 *
H3Y-4-0 *
注. H3Y型中没有附属连接插座、固定配件。 (另售) *当需要以微小负载开关时,请使用H3Y-4、 H3Y-4-0系列。 型号 电源电压 0.5s 1s 5s 10s 30s 最大 刻度 时间 60s 120s 3min 5min 10min 30min 60min 3h AC AC 100~120V 200~230V 50/60Hz 50/60Hz ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ H3Y-2 DC12V DC24V ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ -- -- -- -- -- -- -- -- -- -- -- -- -- -- ◎ ◎ ◎ ◎ ◎ ◎ ◎ ◎ -- -- -- -- -- -- -- DC48V AC AC DC 100~120V 200~230V 100~110V 50/60Hz 50/60Hz -- H3Y-2-0 DC12V DC24V DC48V -- --

H3YN-2时间继电器-欧姆龙

H3YN-2时间继电器-欧姆龙

Solid-state Timer H3YN Miniature Timer with Multiple TimeRanges and Multiple Operating ModesMinimizes stock.Pin configuration compatible with MY Power Relay.Standard multiple operating modes and multipletime ranges.Conforms to VDE 0435/P2021 and approved by ULand CSA.Conforms to EMC standards.RCNote: 1.Single-phase, full-wave-rectified power supplies can be used.2.When using the H3YN continuously in any place where the ambient temperature is in a range of 45°C to 50°C, supply 90% to 110%of the rated supply voltages (supply 95% to 110% with 12 VDC type).3.Set the reset voltage as follows to ensure proper resetting.100 to 120 V AC:10 V AC max.200 to 230 V AC:20 V AC max.100 to 110 VDC:10 VDC max.Note:T erminal screw sections are excluded.Electrical Life Expectancy (Reference Value)H3YN-2/-21H3YN-4/-41H3YN-4-Z/-41-ZS w i t c h i n g o p e r a t i o n s (x 10 )3Load current (A)S w i t c h i n g o p e r a t i o n s (x 10 )3Load current (A)S w i t c h i n g o p e r a t i o n s (x 10 )3Load current (A)S w i t c h i n g o p e r a t i o n s (x 10 )3Load current (A)Reference:A maximum current of 0.6 A can be switched at 125 VDC (cos φ = 1).Maximum current of 0.2 A can be switched if L/R is 7 ms. In both cases,a life of 100,000 operations can be expected.The minimum applicable load is 1 mA at 5 VDC (P reference value).Reference:A maximum current of 0.5 A can be switched at 125 VDC (cos φ = 1).Maximum current of 0.2 A can be switched if L/R is 7 ms. In both cases,a life of 100,000 operations can be expected.The minimum applicable load is 1 mA at 1 VDC (P reference value).S w i t c h i n g o p e r a t i o n s (x 10 )3Load current (A)Reference:A maximum current of 0.5 A can be switched at 125 VDC (cos φ = 1).Maximum current of 0.2 A can be switched if L/R is 7 ms. In both cases, a life of 100,000 operations can be expected.The minimum applicable load is 0.1 mA at 1 VDC (P reference value).250 VAC, cos φ = 124 VDC, cos φ = 1250 VAC, cos φ = 0.424 VDC, L/R = 7 ms250 VAC, resistive load24 VDC, re-sistive load 250 VAC, cos φ = 124 VDC, cos φ = 1250 VAC, cos φ = 0.424 VDC, L/R = 7 ms5,0001,0005002005,0001,0005002005,0001,0005002005,0001,0005002005,0001,00050010060Run/Power Indicator (Green)(Lit: Power ON)Output Indicator (Orange)(Lit: Output ON)Main DialSet the desired time according to time range selectable by DIP switch.Power OutputIntervalRun/Power indica-Flicker OFF-startPowerOutputTime limit contact Run/Power indicator Time limit contact Flicker ON-startPower OutputTime limit contact Run/Power indica-Time limit contact Note:t:Set time Rt:Reset timeThe 1-s range and ON-delay mode for H3YN-2/-4/-4-Z, the 1-min range and ON-delay mode for H3YN-21/-41/-41-Z are factory-set before shipping.Time RangesH3YN-41-ZNote:The top two DIP switch pins are used to select the time ranges.Operating ModesH3YN-2/-21 Front MountingH3YN-4/-41 Front Mounting H3YN-4-Z/-41-ZMounting HeightPYF08A/PYF08A-N/PYF08A-E (PYF14A/PYF14A-N/PYF14A-E (see note))PY08 (PY14 (see note))PY08QN (PY14QN (see note))Note:Models in parentheses are Sockets connecting to the H3YN-4/-4-Z.Fourteen, 3 ×1.2 elliptic holes28 max.21.5 max28 max.21.5 maxH3YN Series H3YN SeriesH3YN SeriesPY08 (PY14)PY08QN (PY14QN)PYF08A (PYF14A)6.4(63)Connecting SocketsUse the PYF j A, PY j , PY j -02, or PY j QN(2) to mount the H3YN. When ordering any one of these Sockets, replace “j ” with “08” or “14.”Terminal Arrangement (T op V iew)Track Mounting/Front Connecting Sockets PYF08AEight, M3 ×8 semsTwo, 4.2 × 5mounting holesTwo, 4.5 dia.M4 or M3Mounting Holes672 max.23 max.30 max.16.535.43.44659±0.315±0.2PYF j A90.586.6H3YN SeriesTerminal Arrangement (T op V iew)PYF-14AMounting HolesFourteen, M3 ×8 semsTwo, 4.2 × 5mounting holesTwo, 4.5 dia.M4 or M3672 max.29.5 max.30 max.16.535.43.44659±0.322±0.2PYF-08A-NTerminal ArrangementMounting Holes(for Surface Mounting)4185129141413424412144111A2A2A1423222124434241441312111A2A2A1Terminal ArrangementMounting Holes(for Surface Mounting)PYF08A-E31 max.72 max.23 max.(Top V iew)PYF14A-E31 max.72 max.29.5 max.(TopView)Eight, M3 ×8 semsTwo, 4.2 × 5mounting holesTwo, 4.5 dia.M4 or M3Two, 4.5 dia.M4 or M3Two, 4.2 × 5mounting holesEight, M3 ×8 semsPanel CutoutBack Connecting Sockets PY08, PY14Terminal Arrangement (Bottom View)PY08QN, PY14QNPY08QN(2), PY14QN(2)PY08-02, PY14-02Eight, 3×1.2 dia. holes only for PY08 (Fourteen, 3×1.2 dia. holes)(See note)Note:With PY j QN(2)(-3), dimension * should read 20 max. and dimension ** 36.5 max.29.5max.25.5max.24 max.0.32.77.720 max.2.62.729.5 max.41.5 max.(see note)25 max. *24 max.22 max.**H3YNSeriesPY j , PY j -02,PY j QN(2)29.5max.25.5max.22 max.0.32.74.316.5 max.2PY08j -02PY14j -0259.321.4+0.2Terminal Arrangement (Bottom View)T erminal Arrangement (Bottom View)PY08QN PY08QN(2)PY14QN PY14QN(2)PY08PY141 x 1Socket Mounting PlatesThe PYP-1 is a Socket Mounting Plate for a single Socket and the PYP-18 is a Socket Mounting Plate for 18 Sockets. The PYP-18 can be cutappropriately according to the number of Sockets to be used.PYP-1Two, 3.4-dia. holesPYP-18Square holet = 1.6492872, elliptic holest = 1.642±0.14949217 x 27.4 = 465.8±0.613.121.64.53.427.4±0.15Hold-down ClipsThe Hold-down Clip makes it possible to mount the H3YN securely and prevent the H3YN from falling out due to vibration or shock.Y92H-3 forPYF j A SocketY92H-4 for PY j SocketY92H-3Y92H-49R5 max.534.54.533.71.22.520(84°)30.524.511H3YN-2/-21H3YN-4/-41H3YN-4-Z/-41-ZDIN IndicationDIN IndicationUPPWTimer circuit UPPWTimer circuit Pulse OperationA pulse output for a certain period can be obtained with a random external input e the H3YN in interval mode as shown in the following timing charts.H3YN-2/-21Note:t:Set time Rt:Reset timeH3YN-4/-41H3YN-4-Z/-41-ZNote:t:Set time Rt:Reset timeTimer circuitExternal inputPower (9-14)External short circuit (5-13)External input (9-13)Time limit contact NO (12-8)Time limit contact NC (12-4)Run/Power indicator (PW)Output indicator (UP)50 ms min.Power (9-14)External short circuit (5-13)External input (9-13)Time limit contact NO (10-6, 11-7, 12-8)Time limit contact NC (10-2, 11-3, 12-4)Run/Power indicator (PW)Output indicator (UP)Timer circuitExternal input50 ms min.Be careful when connecting wires.12ously in any place where the ambient temperature is in a range of 45°C to 50°C. Supply 90% to 110% of the rated voltages (at 12 VDC: 95% to 110%).Do not leave the H3YN in time-up condition for a long period of time (for example, more than one month in any place where the ambient temperature is high), otherwise the internal parts (aluminum elec-trolytic capacitor) may become damaged. Therefore, the use of the H3YN with a relay as shown in the following circuit diagram is rec -ommended to extend the service life of the H3YN.MY RelayH3YN The H3YN must be disconnected from the Socket when setting the DIP switch, otherwise the user may touch a terminal imposed with a high voltage and get an electric shock.Do not connect the H3YN as shown in the following circuit diagram on the right hand side, otherwise the H3YN’s internal contacts dif fer-ent from each other in polarity may become short-circuited.CorrectIncorrectUse the following safety circuit when building a self-holding or self-resetting circuit with the H3YN and an auxiliary relay , such as an MY Relay, in combination.Auxiliary relay:MY Relay: H3YN In the case of the above circuit, the H3YN will be in pulse operation.Therefore, if the circuit shown on page 11 is used, no auxiliary relay will be required.contact may become damaged.Be careful not to apply any voltage to the terminal screws on the back of the Timer. Mount the product so that the screws will not come in contact with the panel or metal parts.Do not use the H3YN in places where there is excessive dust, corro -sive gas, or direct sunlight.Do not mount more than one H3YN closely together , otherwise the internal parts may become damaged. Make sure that there is a space of 5 mm or more between any H3YN models next to each oth -er to allow heat radiation.The internal parts may become damaged if a supply voltage other than the rated ones is imposed on the H3YN.Precautions for VDE ConformanceThe H3YN as a built-in timer conforms to VDE 0435/P2021 provided that the following conditions are satisfied.HandlingDo not touch the DIP switch while power is supplied to the H3YN.Before dismounting the H3YN from the Socket, make sure that no voltage is imposed on any terminal of the H3YN.WiringThe power supply for the H3YN must be protected with equipment such as a breaker approved by VDE.Only a load with basic isolation can be connected to the output con -tact. The H3YN is a model with basic isolation. Therefore, the H3YN and the load will ensure reinforced isolation, thus meeting VDE standards.Insulation requirement:Overvoltage category II,pollution degree 2(with a clearance of 1.5 mm and a creep -age distance of 2.5 mm at 240 V AC)Output terminals next to each other on the H3YN-4, H3YN-41,H3YN-4Z, or H3YN-41-Z must have the same electric potential.OMRON CorporationSupervisory Control Devices Division 28th Fl., Crystal T ower Bldg.,1-2-27, Shiromi, Chuo-ku,Osaka 540-6028 JapanPhone: (81)6-949-6035 Fax: (81)6-949-6069ALL DIMENSIONS SHOWN ARE IN MILLIMETERS.To convert millimeters into inches, multiply by 0.03937. T o convert grams into ounces, multiply by 0.03527.Cat. No. L089-E1-1A In the interest of product improvement, specifications are subject to change without notice.Printed in Japan 1298-1M (0296) a。

欧姆龙时间继电器h3de

欧姆龙时间继电器h3de
固态定时器
相关信息
H3DE
DIN22.5mm宽度的盘内用 标准定时器系列
• 通过AC/DC自由电源化 (AC/DC24~230V) , 大幅度减少库存机种数目。 • 通过UL、 CSA标准,符合EN61812-1。对应CE标记。 • 凭借对EN61812-1的EMC标准的适合性,除了工业环境, 还可以在住宅、商业、轻工业环境中使用。 (H3DE-H除外) • 使用了环保型无镉接点 (AgNi接点)的继电器。 (H3DE-H除外) • 装备了特制的用户用铭牌。 •「螺钉不脱落」 「手接触不到」 的端子结构 (以VDE0106/P100为标准) 。
1066
固态定时器
H3DE
H3DE-M/H3DE-S 多联定时器
• 可设定时间范围、 多种动作模式对应各种用途。 • 通过切换开关, 可以将接点输出2c切换成限时2c或 限时1c+瞬时1c后使用。 • 通过0设定瞬时输出, 可方便地检查时序。 • 启动信号控制 (H3DE-M)
LR
种类
■种类
H3DE 电源电压 控制输出 接点输出2c 限时2c或 限时1c+瞬时1c 通过开关进行切换 接点输出1c (限时1c) 型号 多联型 H3DE-M2 标准型 H3DE-S2
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⬉ᄤ⏽᥻఼
H3DE-M1
铭牌
᭄ᄫ䴶ᵓ㸼
H3DE-S2
H3DE-S1
A : 接通延迟 B2 : 闪烁接通启动 E : 间隔 J : 单稳输出
ᡔᴃᣛफ
额定值/性能
■时间规格
刻度数字 12 时间范围 ×0.1 ×1 时间单位 设定时间 范围 sec(秒) min(分) 0.1~1.2 1~12 hrs(小时) ×10h(小时) 1~12 10~120

欧姆龙继电器型号 文档 (2)

欧姆龙继电器型号 文档 (2)

公司是欧姆龙一级代理商,价格优势明显,质量有保证,有大量库存,供货期短。

欢迎新老客户来电查询联系人:1 3 5 2 0 1 1 5 8 9 1 传0 1 0- 8 0 1 1 5 5 5 5转7 5 9 7 1 13F88L-RS173G3IV-PLKEB45P53G3JV-MANUAL3G3JZ-AB0223G3MV-A4075(YES)3G3MZ-A2004-ZV23G3MZ-A2007-ZV23G3MZ-A2015-ZV23G3MZ-A2055-ZV23G3RV-B418K-ZV13G3RV-B422K-ZV13G3RV-B4900-ZV13G3RX-A4220-Z43767-0010 MC374005-3066 UM5-3066C200H-ATT01C200H-BC101-V2C200H-CP114C200H-DA001C200H-DA002C200H-ID218C200H-ID501C200H-NC111C200H-OD501C200H-TS001C200HW-COM01C200HW-COM05-EV1C200HW-DRM21-V1C200HW-NC213C500-CE405CJ1W-OD263CP1W-20EDT1(Q)CP1W-40EDT1CPM1A-20EDT1CPM1A-40CDT-A-V1 CPM2A-20CDR-DCPM2A-20CDT-DCPM2A-30CDR-DCQM1-ID211CQM1-ME04RCQM1H-PLB21CRT1-AD04CS1D-CPU44SCS1H-CPU66HCS1H-CPU67HCS1W-BAT01CS1W-BI033CS1W-CN224CS1W-OC201CS1W-PDC55CS1W-SCU31-V1D4N-212GDRT1-232C2DRT2-AD04E2E-X10D1S DC12-24 2ME3X-DAC21-S 2ME5AZ-C3E5AZ-Q3E5AZ-R3E5CN-Q2HBT AC100-240 (Q)E5CN-R2HBT AC100-240 (Q)E5CN-R2T AC100-240 (Q)E5CZ-Q2 AC100-240E5CZ-R2MT AC100-240E5EZ-C3E6C2-CWZ6C 1024P/R 2M BY OMSG3JA-C425B AC100-240 FOR CHINA G3JA-C430B AC100-240 FOR CHINA G3JA-C437B AC100-240 FOR CHINA G3JA-D420B AC100-240 FOR CHINA G3JA-D425B AC100-240 FOR CHINA G3JA-D432B AC100-240 FOR CHINA G3JA-D451B AC100-240 FOR CHINA G3PB-535B-2N-VD DC12-24H5CN-XCN AC100-240H5F-BMKS2P DC12MKS3P-5 DC48MPT-CN550NS10-TV01B-V2R7A-CNB01S-ZR7A-CNB01SB-ZR7A-CNZ01C-ZR7D-AP04HR7D-AP08HR7D-BP01H-ZR7D-BP02H-ZR7D-BP02HH-ZR7D-BP04H-ZR7D-ZP01HR7D-ZP02HR7M-A40030-S1R7M-A75030-S1R7M-Z10030-S1ZR7M-Z20030-S1ZR88A-CNG01SB-ZR88D-GN01H-ML2-ZR88D-GN02H-ML2-ZR88D-GN04H-ML2-ZR88D-GN08H-ML2-ZR88D-GN10H-ML2-ZR88D-GN15H-ML2-ZR88D-GN20H-ML2-ZR88D-GN50H-ML2-ZR88D-GN75H-ML2-ZR88D-GT50H-ZR88D-GT75H-ZR88D-WN08H-ML2R88D-WN10H-ML2R88M-G10030H-BS2-Z R88M-G10030H-ZR88M-G1K020H-S2-Z R88M-G1K020H-ZR88M-G1K020T-BS2-Z R88M-G1K020T-S2-Z R88M-G1K020T-ZR88M-G1K030H-BS2-Z R88M-G1K030H-S2-Z R88M-G1K030H-ZR88M-G1K030T-S2-Z R88M-G1K520H-BS2-Z R88M-G1K520H-S2-Z R88M-G1K520H-ZR88M-G1K520T-BS2-Z R88M-G1K520T-S2-Z R88M-G1K520T-ZR88M-G1K530H-S2-Z R88M-G1K530T-S2-Z R88M-G20030H-BS2-Z R88M-G20030T-BS2-Z R88M-G20030T-S2-Z R88M-G2K010H-S2-Z R88M-G2K010H-ZR88M-G2K010T-S2-Z R88M-G2K010T-ZR88M-G2K020H-BS2-Z R88M-G2K020H-S2-Z R88M-G2K020H-ZR88M-G2K020T-S2-ZR88M-G2K030H-S2-Z R88M-G2K030T-S2-Z R88M-G3K010H-BS2-Z R88M-G3K010H-S2-Z R88M-G3K010H-ZR88M-G3K010T-S2-Z R88M-G3K020H-BS2-Z R88M-G3K020H-S2-Z R88M-G3K020H-ZR88M-G3K020T-S2-Z R88M-G3K020T-ZR88M-G3K030H-BS2-Z R88M-G3K030H-S2-Z R88M-G3K030H-ZR88M-G40030H-B-ZR88M-G40030H-BS2-Z R88M-G40030H-ZR88M-G40030T-BS2-Z R88M-G40030T-S2-Z R88M-G4K020H-BS2-Z R88M-G4K020H-S2-Z R88M-G4K020T-S2-Z R88M-G4K030H-BS2-Z R88M-G4K030H-S2-Z R88M-G4K510H-BS2-Z R88M-G4K510H-S2-Z R88M-G4K510T-S2-Z R88M-G5K020H-BS2-ZR88M-G5K030H-BS2-ZR88M-G5K030H-S2-ZR88M-G6K010H-BS2-ZR88M-G6K010H-S2-ZR88M-G75030H-BS2-ZR88M-G75030T-BS2-ZR88M-G75030T-S2-ZR88M-G7K515H-BS2-ZR88M-G7K515H-S2-ZR88M-G7K515T-S2-ZR88M-G90010T-S2-ZR88M-GP10030H-ZR88M-GP40030H-ZR88M-W10030T-S1SH-001-01MSH-001-03MSH-001-05MSH-001-10MV400-W23 3MV400-W24 3MWLCA32-41ZR-RX20A-CHROZR-RX40A-CHROZR-XRB1ZR-XRE1我公司是欧姆龙一级代理商,价格优势明显,质量有保证,有大量库存,供货期短。

时间继电器的作用及功能原理

时间继电器的作用及功能原理

时间继电器的作用及功能原理2011年11月04日 11:30来源:本站整理作者:秩名我要评论(0)时间继电器是一种使用在较低的电压或较小电流的电路上,用来接通或切断较高电压、较大电流的电路的电气元件,也许可以这样说:用来控制较高电压或较大功率的电路的电动开关:给继电器工作线圈一个控制电流,继电器就吸合,对应的触点就接通或断开。

在供电电路中,继电器也被称为接触器。

关键字:时间继电器,继电器从驱动时间继电器工作的电源要求(驱动线包工作电压)来分,一般继电器分交流继电器与直流继电器,分别用于交流电路和直流电路,另外,依据其工作电压的高低,有6、9、12、24、36、110、220、380等不同的工作电压,使用于不同的控制电路上。

时间继电器另一个区分点是它的触点(执行接通或断开被控制电路的开关),分别有常开、常闭、转换的区别,另外还有触点多少的区别,可以控制多大的工作电压及电流(即触点允许控制的功率)的区别,供不同用途选用;另外特殊触点还有带自锁(动作后即使控制电压消失,触点自己保持失去控制时的状态),带延时吸合或延时释放功能等种类,供特殊情况下使用。

1.时间继电器当吸引线圈通电或断电后其触点经过一定延时再动作的继电器。

(1)结构(图2-3)(2)时间继电器的符号(图2-4)(3)时间继电器认识类型认识:电磁式、空气阻尼式、电动式、电子式①直流电磁式时间继电器——用于直流电气控制电路中,只能直流断电延时动作。

优点:结构简单、运行可靠、寿命长;缺点:延时时间短。

②空气阻尼式时间继电器——利用空气阻尼作用获得延时。

分:通电延时、断电延时两种。

③电子式时间继电器——分R-C式晶体管和数字式时间继电器。

优点:延时范围宽、精度高、体积小、工作可靠。

晶体管式时间继电器以RC电路电容充电时电容器上的电压逐步上升的原理为基础。

电路有单结晶体管电路和场效应管电路两种。

分类:断电延时、通电延时、带瞬动触点延时三种。

结构认识:空气阻尼式时间继电器组成认识:电磁系统、延时机构、工作触点动作原理分析:空气阻尼式时间继电器(通电延时型)当线圈1通电后,衔铁3吸合,微动开关16受压其触点动作无延时,活塞杆6在塔形弹簧8的作用下,带动活塞12及橡皮膜10向上移动,但由于橡皮膜下方气室的空气稀薄,形成负压,因此活塞杆6只能缓慢地向上移动,其移动的速度视进气孔的大小而定,可通过调节螺杆13进行调整。

欧姆龙PLC型号大全之欧阳育创编

欧姆龙PLC型号大全之欧阳育创编

欧姆龙PLC欧姆龙PLC--CPM1A-V1 系列1. CPM1A-10CD R-A-V1 10点CPU单元AC100-220V、6点入, 4 点继电器输出(1A是型号代号;10表示输入输出总点数为10点,具体是6点输入,4点输出;C表示是CPU单元;D表示混合型,也就是有输入也有输出;R表示继电器输出型;A表示工作电压为交流电100~240V)2. CPM1A-10CDR-D-V1 10点CPU单元 DC24V、 6点入, 4 点继电器输出3 CPM1A-10CD T-D-V1 10点CPU单元DC24V、 6点入,4 点晶体管输出.漏型4. CPM1A-20CDR-A-V1 20点CPU单元 AC100-220V 12点入,8 点继电器输出5. CPM1A-20CDR-D-V1 20点CPU单元 DC24V 12点入,8 点继电器输出6. CPM1A-20CDT-D-V1 20点CPU单元 DC24V 12点入,8 点晶体管输出.漏型7. CPM1A-30CDR-A-V1 30点CPU单元 AC100-220V 18点入,12点继电器输出8. CPM1A-30CDR-D-V1 30点CPU单元 DC24V 18点入,12点继电器输出9. CPM1A-30CDT-D-V1 30点CPU单元 DC24V 18点入,12点晶体管输出.漏型10. CPM1A-40CDR-A-V1 40点CPU单元 AC100-220V 24点入,16点继电器输出11. CPM1A-40CDR-D-V1 40点CPU单元 DC24V 24点入,16点继电器输出12. CPM1A-40CDT-D-V1 40点CPU单元 DC24V 24点入,16点晶体管输出.漏型13. CPM1A-40EDR 扩展I/O单元 40点 24点输入16点继电器输出14. CPM1A-20EDR1 扩展I/O单元 20点 12点入, 8 点继电器输出15. CPM1A-8ER 扩展输出单元 8点继电器输出16. CPM1A-8ED 扩展输入单元 8点 DC输入17. CPM1A-40EDT 扩展I/O单元 40点 24点输入16点晶体管输出.漏型18. CPM1A-20EDT 扩展I/O单元 20点 12点入, 8点晶体管输出.漏型19. CPM1A-8ET 扩展输出单元 8点晶体管输出.漏型20. CPM1A-MAD01-NL 模拟量模块输出单元 2入/1出输入:0~10V,1~5V,4~20毫安输出:0~10V,-10~+10V,4~20毫安21. CPM1A-MAD02-CH 模拟量输入输出单元 4入/1出输入:0~10V,1~5V,4~20毫安输出:0~10V,-10~+10V,4~20毫安22. CPM1A-DA001 模拟量输出单元 2路分辨率1/4000 转换速率2.5ms/CH 每个输出通道可独立设置量程输出:-10~10V 0~10V 0~5V 0~20mA 1~5V 4~20mA23. CPM1A-DA002 模拟量输出单元 4路分辨率1/4000 转换速率2.5ms/CH 每个输出通道可独立设置量程输出:-10~10V 0~10V 0~5V 0~20mA 1~5V 4~20mA24. CPM1A-AD041 模拟量输入单元,4路分辨率1/600025. CPM1A-DA041 模拟量输出单元,4路分辨率1/600026. CPM1-CIF01 RS232 适配器27. CPM1-CIF11 RS422 适配器28. CPM1A-CIF12 RS485 适配器29. CQM1-PR001-E 手持编程器电缆长度2米欧姆龙PLC--CPM2A 系列1. CPM2A-20CDR-D 20点CPU单元 DC24V 12点入8点继电器输出自带RS2322. CPM2A-20CDT-D 20点CPU单元 DC24V 12点入8点晶体管输出自带RS2323. CPM2A-30CDR-D 30点CPU单元 DC24V 18点入12点继电器输出自带RS2324. CPM2A-30CDT-D 30点CPU单元 DC24V 18点入12点晶体管输出自带RS2325. CPM2A-40CDR-D 40点CPU单元 DC24V 24点入16点继电器输出自带RS2326. CPM2A-40CDT-D 40点CPU单元 DC24V 24点入16点晶体管输出自带RS2327. CPM2A-60CDR-D 60点CPU单元 DC24V 36点入24点继电器输出自带RS2328. CPM2A-60CDT-D 60点CPU单元 DC24V 36点入24点晶体管输出自带RS2329. CPM2AH-20CDR-A NEW 20点CPU单元 AC100-220V 12点入 8点继电器输出自带RS23210. CPM2AH-30CDR-A NEW 30点CPU单元 AC100-220V 18点入12点继电器输出自带RS23211. CPM2AH-40CDR-A NEW 40点CPU单元 AC100-220V 24点入16点继电器输出自带RS23212. CPM2AH-60CDR-A NEW 60点CPU单元 AC100-220V 36点入24点继电器输出自带RS23213. CPM2AE-60CDR-A 60点CPU单元 AC100-220V 36点入24点继电器输出14. CPM2A-BAT01 锂电池 3.6v欧姆龙PLC--CP1L 系列1. CP1L-L14DR-A 14点CPU单元, AC100-220V 8入 6点继电器输出.2. CP1L-L14DR-D 14点CPU单元, DC24V 8入 6点继电器输出.3. CP1L-L14DT-D 14点CPU单元, DC24V 8入 6点晶体管输出.4. CP1L-L20DR-A 20点CPU单元, AC100-220V 12入 8点继电器输出,5. CP1L-L20DR-D 20点CPU单元, DC24V 12入 8点继电器输出.6. CP1L-L20DT-D 20点CPU单元, DC24V 12入12点晶体管输出.7. CP1L-M30DR-A 30点CPU单元, AC100-220V 18入12点继电器输出.8. CP1L-M30DR-D 30点CPU单元, DC24V 18入12点继电器输出.9. CP1L-M30DT-D 30点CPU单元, DC24V 12入12点晶体管输出.10. CP1L-M40DR-A 40点CPU单元, AC100-220V 24入16点继电器输出.11. CP1L-M40DR-D 40点CPU单元, DC24V 24入16点继电器输出.12. CP1L-M40DT-D 40点CPU单元, DC24V 24入16点晶体管输出.欧姆龙PLC--CP1H 系列1. CP1H-X40DR-A 40点CPU单元,24入16点继电器输出.高速计数50/100khz 4轴 .usb端口编程.2. CP1H-XA40DR-A 40点CPU单元,24入16点继电器输出.高速计数50/100khz 4轴 .usb端口编程. 集成模拟量4入2出.3. CP1H-X40DT-D 40点CPU单元,24入16点晶体管输出.高速计数50/100khz 4轴 .usb端口编程. 脉冲输出100khz 2轴30khz 2轴4. CP1H-XA40DT-D 40点CPU单元,24入16点晶体管输出.高速计数50/100khz 4轴 .usb端口编程.脉冲输出100khz 2轴30khz 2轴 . 集成模拟量4入2出.以下CP1L/CP1H共通5. CP1W-CIF11 CPU单元用 RS-485可选板6. CP1W-CIF01 CPU单元用 RS-232可选板7. CP1W-ME05M 内存盒8. CP1W-40EDR 扩展I/O单元 40点 24点输入16点继电器输出9. CP1W-20EDR1 扩展I/O单元 20点 12点入, 8 点继电器输出10. CP1W-16ER 扩展输出单元 16点继电器输出11. CP1W-8ER 扩展输出单元 8点继电器输出12. CP1W-8ED 扩展输入单元 8点 DC输入13. CP1W-40EDT 扩展I/O单元 40点 24点输入16点晶体管输出.漏型14. CP1W-20EDT 扩展I/O单元 20点 12点入, 8点晶体管输出.漏型15. CP1W-8ET 扩展输出单元 8点晶体管输出.漏型16. CP1W-AD041 模拟量输入单元,4路分辨率1/6000 17. CP1W-DA041 模拟量输出单元,4路分辨率1/6000 18. CP1W-DA021 模拟量输出单元,2路分辨率1/6000 19. CP1W-MAD11 模拟量模块输出单元 2入/1出, 分辨率1/600020. CP1W-TS001 温度传感器单元,热点偶输入 2路21. CP1W-TS002 温度传感器单元,热点偶输入 4路22. CP1W-TS101 温度传感器单元,铂电阻输入 2路23. CP1W-TS102 温度传感器单元,铂电阻输入 4路24. CP1W-CN811 CPM1A扩展单元用I/O连接电缆,80CM25. CP1W-EXT01 CJ1单元用适配器欧姆龙PLC--CQM1H 系列1. CQM1H-CPU11 CPU单元,最大I/O点;256点,程序容量;3.2K字不支持内装板2. CQM1H-CPU21 CPU单元,最大I/O点;256点,程序容量;3.2K字带RS232C口,不支持内装板3. CQM1H-CPU51 CPU单元,最大I/O点;512点,程序容量;7.2K字带RS232C口4. CQM1H-CPU61 CPU单元,最大I/O点;512点,程序容量;15.2K字带RS232C口5. CQM1H-CTB41 内装板,高速计数器板 4点6. CQM1H-PLB21 内装板,脉冲I/O板 2点7. CQM1H-ABB21 内装板,绝对值编码器接口板 2点8. CQM1H-MAB42 内装板,模拟量I/O板 4点9. CQM1H-SCB41 内装板,串行通讯板 RS-232C 一个/RS422/485一个10. CQM1-PA203 电源单元. 100 - 240V AC11. CQM1-PA206 电源单元. 100 - 240V AC. 提供24V DC 0.5A12. CQM1-PD026 电源单元. 24V DC13. CQM1-ME04K 存储器盒(可选)EEPROM 4K字14. CQM1-ME08K 存储器盒(可选)EEPROM 8K字15. CQM1H-ME16K 存储器盒(可选)闪存 16K 字16. CQM1-ME04R 存储器盒(可选)EEPROM 4K字.带时钟17. CQM1-ME08R 存储器盒(可选)EEPROM 8K字.带时钟18. CQM1H-ME16K 存储器盒(可选)闪存 16K字.带时钟19. CS1W-CN114 手持编程器连接电缆.长度:0.05米20. CQM1-PR001-E 编程器(配1.5米连接电缆)如需连CQM1H系列CPU,需加CS1W-CN11421. CQM1-ID211 输入单元 8点. 12 - 24V DC22. CQM1-ID212 输入单元16点. 24V DC23. CQM1-ID213 输入单元32点. 24V DC24 CQM1-ID214 输入单元32点. 24V DC25. CQM1-IA121 输入单元 8点.100 -120V AC26. CQM1-IA221 输入单元 8点.200 -240V AC27. CQM1-OC221 输出单元 8点.继电器 250V AC/24V DC 2A28. CQM1-0C222 输出单元16点.继电器 250V AC/24V DC 2A29. CQM1-OD211 输出单元 8点.晶体管NPN 24V DC 2A30. CQM1-OD212 输出单元16点.晶体管NPN 24V DC 300mA31. CQM1-OD213 输出单元32点.晶体管NPN 24V DC 100mA32. CQM1-OD214 输出单元16点.晶体管PNP 24V DC 300mA33. CQM1-0D215 输出单元 8点.晶体管PNP 24V DC 1A34. CQM1-OA221 输出单元 8点.可控硅 100-240V AC 0.4A35. CQM1-AD041 模拟量输入单元. 4路±10V/0-10V/1-5V/4-20mA36. CQM1-AD042 模拟量输入单元(无需供电单元) 4路37. CQM1-DA021 模拟量输出单元. 2路±10V/0-20mA38. CQM1-DA022 模拟量输出单元(无需供电单元) 2路39. CQM1-IPS01 模拟量供电单元供1单元40. CQM1-IPS02 模拟量供电单元供2单元41 CQM1-IC101 I/O控制单元42 CQM1-II101 I/O接口单元43. CQM1-TC001 温度控制单元两回路44. CQM1-CIF02 上位机通信专用电缆(RS-232C)45. CQM1H-CLK21 CONTROLLER LINK单元,CQM1H系列用欧姆龙PLC--C200HE/C200HG/C200HX系列1. C200HE-CPU11-E CPU单元内存 3.2K最大I/O点数: 640点2. C200HE-CPU32-E CPU单元内存 7.2K最大I/O点数: 880点3. C200HE-CPU42-E CPU单元内存 7.2K最大I/O点数: 880点带RS232C,带时钟4. C200HG-CPU33-E CPU单元内存15.2K最大I/O点数: 880点带时钟5. C200HG-CPU43-E CPU单元内存15.2K最大I/O点数: 880点带RS232C,带时钟6. C200HG-CPU53-E CPU单元内存15.2K最大I/O点数:1184点带时钟7. C200HG-CPU63-E CPU单元内存15.2K最大I/O点数:1184点带RS232C,带时钟8. C200HX-CPU34-E CPU单元内存31.2K最大I/O点数: 880点带时钟9. C200HX-CPU44-E CPU单元内存31.2K最大I/O点数: 880点带RS232C,带时钟10. C200HX-CPU54-E CPU单元内存31.2K最大I/O点数:1184点带时钟11. C200HX-CPU64-E CPU单元内存31.2K最大I/O点数:1184点带RS232C,带时钟12. C200HX-CPU65-ZE CPU单元内存63.2K最大I/O点数:1184点带RS232C,带时钟13. C200HX-CPU85-ZE CPU单元内存63.2K最大I/O点数:1184点带RS232C,带时钟14. C200HW-BC051 CPU底板可安装 5个I/O单元15. C200HW-BC081-V1 CPU底板可安装 8个I/O单元16. C200HW-BC101-V1 CPU底板可安装10个I/O单元17. C200HW-BI051 扩展I/O底板可安装 5个I/O单元18. C200HW-BI081-V1 扩展I/O底板可安装 8个I/O单元19. C200HW-BI101-V1 扩展I/O底板可安装10个I/O单元20. C200HW-PA204 电源单元AC110-120V/200-240V21. C200HW-PA204S 电源单元AC110-120V/200-240V,带24VDC使用电源22. C200HW-PD024 电源单元 DC24V23. C200HW-ME04K EEPROM 存储单元 4K24. C200HW-ME08K EEPROM 存储单元 8K25. C200HW-ME16K EEPROM 存储单元 16K26. C200HW-ME32K EEPROM 存储单元 32K27. C200HW-COM01 通信板SYSMAC LINK与SYSMATE NET链接单元通信端口一个28. C200HW-COM02-V1 通信板RS232端口一个29. C200HW-COM03-V1 通信板一个RS-422/485口30. C200HW-COM04-EV1 通信板与SYSMAC LINK与SYSMAC NET链接单元通信端口RS-232C端口通信协议宏功能各一个31. C200HW-COM05-EV1 二个RS-232C 端口和一个通讯协议宏功能32. C200HW-COM06-EV1 一个RS422/485端口和一个RS232C 端口通信协议宏功能33. C200HW-CLK21 C200HW controller link单元34. C200HW-CE001 C200HW controller link 连接器35. C200H-CN311 扩展连接电缆, 30cm36. C200H-CN711 扩展连接电缆, 70cm37. C200H-CN221 扩展连接电缆, 2m38. C200H-CN521 扩展连接电缆, 5m39. C200H-CN131 扩展连接电缆, 10m40. C200H-PR027-E 编程器41. C200H-CN222 编程器连接电缆,2m42. C200H-CN422 编程器连接电缆,4m43. C200H-ID001 输入单元, 8点, 无电压接NPN44. C200H-ID002 输入单元, 8点, 无电压接点NPN45. C200H-ID211 输入单元, 8点, 12 - 24 VDC46. C200H-ID212 输入单元,16点, 24 VDC47. C200H-IA121 输入单元, 8点, 100 -120 VAC48. C200H-IA122 输入单元,16点, 100 -120 VAC49. C200H-IA221 输入单元, 8点, 200 -240 VAC50. C200H-IA222 输入单元,16点, 200 -240 VAC51. C200H-IM211 输入单元, 8点, 12 - 24 VAC/DC52. C200H-IM212 输入单元,16点, 12 - 24 VAC/DC53. C200H-OC221 输出单元, 8点, 继电器 250VAC/24VDC 2A54. C200H-OC222 输出单元,12点, 继电器同上55. C200H-OC223 输出单元, 5点, 继电器独立接点同上56. C200H-0C224 输出单元, 8点, 继电器独立接点同上57. C200H-OC225 输出单元,16点, 继电器同上58. C200H-OD411 输出单元, 8点, 晶体管 1A 12-48VDC59. C200H-OD211 输出单元,12点, 晶体管 0.3A 12-48VDC60. C200H-OD212 输出单元,16点, 晶体管 0.3A 12-48VDC61. C200H-OA221 输出单元, 8点, 可控硅 1A 200VAC62. C200H-OA222 输出单元,12点, 可控硅 0.3A 200VAC63. C200H-ID215 高密度I/O单元, DC输入 24VDC 32点64. C200H-ID501 高密度I/O单元, TTL输入 5VDC 32点65. C200H-OD215 高密度I/O单元, 晶体管输出24VDC 0.1A 32点66. C200H-OD501 高密度I/O单元, TTL输出 5VDC 35mA 32点67. C200H-MD501 高密度I/O单元, 混合输入/输出, 5VDC输入16点, 5VDC 35mA输出16点68. C200H-MD215 高密度I/O单元, 混合输入/输出,24VDC输入16点,24VDC 0.1A输出16点69. C200H-AD001 模拟量输入单元,4路12位 A/D 4~20mA/1~5V/0~10V&, nbsp; 可选70. C200H-AD002 模拟量输入单元,8路12位 A/D 4~20mA/1~5V/0~10V/-10~+10V 可选71. C200H-AD003 模拟量输入单元,8路12位 A/D 1~5V 0~10V -10~+10V 4~20 mA 可选72. C200H-DA001 模拟量输出单元,2路12位 D/A 4~20mA/1~5V/0~10V 可选73. C200H-DA002 模拟量输出单元,4路12位 D/A 4~20mA/-10~10V 可选74. C200H-DA003 模拟量输出单元,8路12位 D/A 1~5V 0~10V -10~+10V75. C200H-DA004 模拟量输出单元,8路,4~20MA76. C200H-MAD01 模拟量输入/输出单元,2输入和2输出,1~5V/0~10V/-10V~+10V77. C200H-CT001-V1 高速计数器单元,BCD 7位计数速度:50Kpps 1路78. C200H-CT002 高速计数器单元,BCD 7位计数速度:75Kpps 1路79. C200H-CT021 高速计数器单元,BCD 7位计数速度:75Kpps 2路80. C200H-NC111 位置控制单元,脉冲串输出型范围1-100000PPS 1轴81. C200H-NC112 位置控制单元,伺服驱动范围1-250000PPS 1轴82. C200H-TS001 温度传感器单元,热点偶输入(K,J) 4路83. C2OOH-TS101 温度传感器单元,铂电阻信号(Pt) 4路84. C200H-TC003 温度控制单元,热电偶输入2路,电流输出85. C200H-TC103 温度控制单元,铂电阻输入2路,电流输出86. C2OOH-PID03 PID控制单元,2路, 4~20mA/1~5V/0~5V/0~10V电流输出87. C200H-SP001 占空单元88. C200H-COV11 I/O单元盖板89. C200H-BAT09 锂电池 3V90. C200HW-DRM21-V1 COMPOBUS/D主站单元欧姆龙PLC--CJ1系列1. CJ1M-CPU11 CPU单元I/O点数160, 5K程序容量,不可接扩展机架。

欧姆龙时间继电器h2f_d

欧姆龙时间继电器h2f_d
72 72
16 17
1.3
65.5
(单位 :mm)
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H2F-DF(C) H2F-DMF(C) H2F-31
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65.5 72
95
45
注. 端子螺钉为M3.5。
50
9
6
72
6 29
注. 端子螺钉为M3.5。
2
2
1180 电机式时间开关 H2F-D
·附 带 的 电 池 已 充 满 电,但 是 万 一
因自然放电等原因造成电池能力下降时,180小时的停电补偿功
能能保证电池装入本体后连续通电72小时。但是,电池完全放电
时,有时即使装上电池也不会马上运作。这时请通电3分钟以上
后,再进行时间设置。
·电源的开、关会大大缩短电池寿命,使用时请保持连续通电。
200m/s2 6方向 各1次
接点1万次以上
嵌入安装型:约150g、表面安装型:200g
浅灰(茫赛尔5Y7/1)
详情请参阅标准认证机种一览表(后-42~后-66页)
*1. ON时间或OFF时间的重复精度。 *2. 将指针设置为现在时间时和设置时间和动作前的时
间差。
*3. 第一次使用时通电72小时以上后的值。
H2F-DMF
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*H2F-30 (DC12~24V)端子2为+、 3为-。
注1. 请在负载上连接负载用电源。 注2. 螺钉紧固转矩
最大转矩:0.98N·m max
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欧姆龙继电器g6d-f4b_g3dz-f4b

欧姆龙继电器g6d-f4b_g3dz-f4b

100mΩ以下
动作时间 *2
10ms以下
复位时间 *2
10ms以下
绝缘电阻
1000MΩ以上(DC 500V兆欧表)
耐压
线圈和接点间 同极接点间
AC2,000V 50/60Hz 1min AC750V 50/60Hz 1min
耐冲击电压(线圈接点间) 4,000V(1.2×50μs)
振动
耐久 误动作
10~55~10Hz单振幅0.75mm(双振幅1.5mm) 10~55~10Hz单振幅0.75mm(双振幅1.5mm)
抗振
耐久 误动作
500m/s2 100m/s2
耐久性
机械 电力*2
2,000万次以上 (开关频率18,000次/h)
AC250V 3A(阻性负载)10万次以上 DC 30V 3A(阻性负载)10万次以上 (开关频率18,000次/h)
故障率P水准(参考值*3) DC5V、10mA
使用环境温度,储存温度 -25~+55℃(不结冰、凝露)
最大容许 电压 (V)
功率消耗 (mW)
12 18.7 DC
24 10.5
720 2,880
70%以下 *
10%以上
130%
约200
注1. 额定电流、线圈电阻为线圈温度+23℃时的数值,公差为±10%。 注2. 动作特性为线圈温度+23℃时的数值。 注3. 最大容许电压为继电器线圈操作电源的电压容许变动范围的最大值。不是
10μA(DC125V兆欧表)
绝缘电阻
100MΩ以上(DC500V兆欧表)
输入输出间耐压
AC2,000V 50/60Hz 1min
振动
10~55~10Hz单振幅0.75mm(双振幅1.5mm)

欧姆龙时间继电器h3ba_n_n8h

欧姆龙时间继电器h3ba_n_n8h

耐久 误动作 耐久 误动作
机械 电气
H3BA-N
H3BA-N8H
85%~110%额定电压
最低动力起动时间:0.1s
110VAC约4.6VA(1.5W)
110VAC约3.6VA(1.6W)
220VAC约7.9VA(1.3W)
220VAC约5.4VA(1.4W)
24VDC约0.6W
24VDC约0.9W
接点输出:5A在250VAC,阻性负载cosφ =1
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78 63.7
13.6
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1004 固态定时器 H3BA-N/N8H
●Y92F-71安装时的尺寸
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P3GA-11ൟ 㚠䴶䖲᥹ᦦᑻ
H3BA-N
H3BA-N8H
112.2
109.9
101.3
99
P2CF-11ൟ 注. 安装尺寸因DIN导轨而不同。
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●无电压输入
无接点输入 有接点输入
1.「短路等级」 晶体管ON残留电压1V以下, ON时阻抗1KΩ以下
2.「开放等级」 晶体管OFF OFF时阻抗200KΩ以下
5V,0.1mA可以完全开闭的 接点使用时
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固态定时器
H3BA-N/N8H
丰富的时间范围 操作模式便利、对应各种应用的 畅销机型
• 6种动态模式的多样化,以满足各项要求。 • 设定环的安装,可解除因个人差异而产生的设定偏差。 • 面板护罩的安装,可改变面板的外观设计。 • 取得UL、CSA安全规格认证。

欧姆龙定时器中文资料

欧姆龙定时器中文资料

工作时间精度和设定误差 电源起动: ±0.01% ±50 ms 以下(相对设定值的比例) (含温度及电压影响) (见注1) 信号起动: ±0.005% ±30 ms 以下(相对设定值的比例)
晶体管输出型的信号起动: ±0.005% ±3 ms 以下 (见注2)
启动时, 若设定值设定在传感器等待时间内时, 则H5CX的控制输出不会转ON, 直到传感器等待时间结束后才开始输 出。
数位 定时范围 定时模式 输入信号 输入方法
信号, 复位, gate 系统复位 电源复位 传感器等待时间 输出模式 单稳输出时间 控制输出
按键保护 内存备份 环境温度
环境湿度 外壳颜色 附件
H5CX-A □
H5CX-A11 □
H5CX-L8 □
数字定时器
100 ~ 240 VAC (50/60 Hz), 24 VAC (50/60 Hz)/12 ~ 24 VDC (允许波动: 最大20% (p-p) )
无电压输入 导通阻抗:最大1 kΩ (漏电流: 0Ω时 5 ~ 20 mA) 导通残留电压: 最大3 V 关断阻抗: 最小100 kΩ
最小输入信号宽度: 1 或 20 ms (可选, 所有输入通用)
电源复位( A-3, b-1, 及 F 模式除外), 外部和手动复位
最小电源开放时间: 0.5 s (A-3, b-1, 及 F 模式除外)
H5CX-A/-L
4ԡᰒ冫໮ࡳ㛑᭄ᄫᅮᯊ఼ H5CX-A (ᷛ‫ޚ‬ൟ) H5CX-L (㒣⌢ൟ)
H5CX ㋏߫
H5CX-B
1 2
6ԡᰒ冫ঠ乘㕂᭄ᄫᅮᯊ఼ H5CX-B
目录
多功能数字定时器
H5CX-A/-L........................................................ 2

欧姆龙光电开关的选型手册

欧姆龙光电开关的选型手册

E3S-LS
13.4 30 30
Eliminates influence from background objects and colors so that only the required object is detected. Compact plastic case, small spot
E3X-DA-N
General purpose Monitor output Mark detection
64.3
• ON/OFF output • ON/OFF output • Monitor output
Blue LED Red LED
31.5
10
E3X-DA11-N
Infrared diode Differential output
10 m [500 mm]*
E3S-CT11
1m 500 mm 200 mm [10 mm]* 5 to 30 mm 5 to 15 mm 5 to 30 mm
18.5
24
E3T-ST11
E3T-FD11
E3S-C
50 23
30 m E3S-CT@1 (-M1J) @
@ 3 m E3S-CR@1 (-M1J) @ 700 mm E3S-CD@1 (-M1J) @ 2 m E3S-CD@2 (-M1J)
Sensing range
Setting range Sensing range
40 to 200 mm 5 to 500 mm
E3S-CL2 E3S-LS5C4S E3S-LS5B4S1
Setting range Sensing range Setting range
50 to 500 mm 5 to 60 mm 40 to 60 mm

欧姆龙错误代码

欧姆龙错误代码

错误代码型号品牌错误类型错误原因解决办法Uv 3G3MV 欧姆龙UV( 主回路低电压) 变频器停止时,主回路直流电压低于低电压检测值200V 级:主回路直流电压约为200V 以下时停止( 单相约为160V 以下)400V 级:主回直流电压约为400 以下时停止1.检查电源电压2.检查主回路电源线是否断线3.检查端子螺丝紧固状态ov 3G3MV 欧姆龙OV(主回路过电压)变频器停止时,主回路直流电压超过过电压检测值检测值:约410V 以上(400V级约为820V)检查电源电压oH 3G3MV 欧姆龙OH( 冷却散热座过热,变频器停止,进风温度上升检查进风温度CAL 3G3MV 欧姆龙CAL(MEMOBUS通信待机时) 参数n003( 运行指令选择)=2或参数n004(频率指令选择)=6时,且电源投入后,PLC 的正常数据没有接收到检查通信装置,传送信号oP 3G3MV 欧姆龙OPE□(MEMOBUS通信参数设定时,参数设定复(参数n050~异常)OP1:多功能输入选择的设定值重056)OP2:V/f 参数设定的大小关系有矛盾( 参数n011,013,014,016)OP3:电机额定电流的设定值超过变频器额定的150(%)( 参数n036)OP4:频率指令上限和下限大小相反( 参数n033,034)OP5:跳跃频率1,2,3 的大小关系有矛盾( 参数n083,084,085)OP9:负载频率设定不正确( 参数n080)检查设定值oL3 3G3MV 欧姆龙变频器输出电流超过过力矩检测值( 参数n098:过力矩检测值)降低负载,延长加减速时间SEr 3G3MV 欧姆龙SER( 顺序异常) 变频器运行中接到了面板/远距通信控制回路端子切换信号检查外部回路( 顺控器)bb 3G3MV 欧姆龙BB( 外部基极锁定) 外部基极锁定收到后,变频器输出切断( 注:外部基本延时解除后运行重新开始)检查外部回路( 顺控器)STP 3G3MV 欧姆龙1.STP( 操作器停止) 控制回路端子的正转、反转指令运行中按操作器的STOP/RESET键,此时变频器将按停止方法设定(n005)停止2.STP( 紧急停止) 接到紧急停止报警信号,变频器将按停止方法设定(n005) 停止1.将控制回路端子的正转反转指令设为“开”2.检查外部回路( 顺控器)FAn 3G3MV 欧姆龙FAN( 冷却风扇异常)冷却风扇被卡住了1.检查冷却风扇2.检查冷却风扇的接线CE 3G3MV 欧姆1.CE(MEMOBUS) 通信异常2.通信数据不能正常受信检查通信设备,通信信号龙EF 3G3MV 欧姆龙1.EF( 正转·反转指令同时投入)控制回路端子的正转指令和反转指令同时为“闭”2.500ms以上“闭”时,按停止方法选择的设定(参数n005)变频器停止检查外部回路(顺控器)FbL 3G3MV 欧姆龙1.FBL(PID反馈丧失的检出),PID 所馈值,低于了丧失检出值以下(n137)2.PID 反馈值的丧失被检出后便按参数n136的设定内容动作1.调查机械的使用状态,排除原因2.增大设定值( 参数n137)达到机械的允许值为止bUS 3G3MV 欧姆龙选择卡通信异常,来自通信选择卡的运行指令或频率指令设定模式,通信错误发生了检查通信选择卡,通信信号PF 3G3MV 欧姆龙主回路电压错误,当回馈能量无法释放时,造成直流电压异常波动(n166, n167)1.检查是否出现瞬时停电2.检查是否出现输入电压开路3.检查是否输入电压波动较大4.检查是否输入线电压不平衡5.也可能是因为主回路电容器损坏LF 3G3MV 欧姆龙输出开路错误(n168,n169)1.输出电缆断开时检查电缆接线2.若电机线圈断开则需更换新电机3.输出终端螺丝松动时进行紧固4.变频器输出晶体管损坏时需要更换变频器GF 3G3MV 欧姆龙接地错误,接地电流超过额定输出电流的50(%)以上1.检查电机绝缘电阻以确认电机是否烧损或绝缘受损2.检查电缆与FG之间的绝缘以确认电缆是否受损3.如果电缆超过100m,降低载波频率,或通过输出端连接AC电抗器来降低电缆与FG之间的漂移量SC 3G3MV 欧姆龙负载短路,变频器输出或负载被短路1.检查电机相间电阻,确认是否电机烧损或绝缘受损2.检查电缆间电阻,确认是否电缆受损6FF 3G3MV 欧姆龙电源故障1.确认是否供电2.确认是否有螺丝松动、连接是否正确3.检查是否变频器损坏oC 3G3MV 欧姆龙OC( 过电流),变频器输出电流超过额定电流的约250(%)( 瞬时动作)1.变频输出短路,接地2.负载GD2 过大3.加减速时间设定过短(参数n019~022)4.使用特殊电机5.自由减速的电机的起动6.变频器输出侧的电磁接触器的开闭7.检查原因后复位Uv1 3G3MV 欧姆龙UV1( 主回路低电压)变频运行中,主回路电压低于低电压检测值:1.200V 级主回路直流电压约200V 以下时停止( 单相约160V 以下时停止)2.400V 级主回路直流电压约400V以下时停止1.输入电源电压低2.缺相3.发生瞬间停电1.检查电源电压2.检查主回路电源接线3.检查端子螺丝是否松动Uv2 3G3MV 欧姆龙UV2( 控制电源异常)检测到控制电源的异常1.一旦切断电源后,再投入异常继续发生时,更换变频器2.螺丝是否松动oH 3G3MV 欧姆龙OH( 冷却散热座过热)由变频器过载运行温度上升或进风温度上升1.负载太大2.V/f 特性不好3.加速时,设定时间太短4.进风温度超过50℃5.冷却风扇停止1.检查负载大小2.检查V/f 设定值( 参数)(n011 ~n017)3.检查进风温度oL1 3G3MV 欧姆龙OL1( 电机过载) 变频器内热电子保护进行电机过载保护1.检查负载大?br />诵星遃/f 设定值(n011 ~017)2.将电机铭牌额定电流设定,在参数n036上oL2 3G3MV 欧姆龙OL2( 变频器过载) 变频器内热电子保护进行过载保护1.检查负载大?br />诵星遃/f 设定值(n011 ~017)2.重新设定变频器容量F00 3G3MV 欧姆龙CPF-00电源投入5 秒后,也无法建立与操作器的通信1.切断电源,确认操作器安装状态后,再接入电源2.异常继续发生时,更换操作器或变频器F01 3G3MV 欧姆龙CPF-01与操作器的传输开始后,5 秒以上传送异常发生1.切断电源确认操作器安装状态后,再接入电源2.异常继续发生时,更换操作器或变频器F04 3G3MV 欧姆CPF -04变频器控制回路的EEPROM故障1.记录全部参数, 将参数初始化( 参数的初始龙化参考36 页)2.一时切断电源确认操作器安装状态后, 再接入电源3.异常继续发生时,更换操作器或变频器F05 3G3MV 欧姆龙CPF -05变频器控制回路的A/D 变换器故障一时切断电源再投入,异常继续发生时,更换变频器F06 3G3MV 欧姆龙CPF -061.选择卡接触不良2.被接上方形号不一致的选择卡1.一时切断电源正确联接可选卡后再投入2.确认变频器的软件编号No(n179)F07 3G3MV 欧姆龙CPF -07操作器控制回路(EEPROM,A /D变换器的故障)1.一时切断电源确认操作器联接后,再投入2.异常继续发生时,更换操作器或变频器F21 3G3MV 欧姆龙通信选择卡的自己诊断故障1.通信选择卡的故障2.交换通信选择卡F22 3G3MV 欧姆龙通信选择卡的机种编号故障1.通信选择卡的故障2.交换通信选择卡F23 3G3MV 欧姆龙通信选择卡的相互诊断不良1.通信选择卡的故障2.交换通信选择卡oPr 3G3MV 欧姆龙OPR( 操作器联接故障)切断电源,正确联接操作器后,再投入仅供个人用于学习、研究;不得用于商业用途。

OMRON 数字全天式时间开关H5F 说明书

OMRON 数字全天式时间开关H5F 说明书

商品选择 ........................978共通注意事项 ..................996技术指南 ........................1479用语说明 (1483)相关信息数字全天式时间开关H5F1天的时刻控制可以简单操作(可以选择动作日)•ON/OFF 时刻设定有24步。

•对应CE 标记。

通过UL 、CSA 标准认证。

•采用假日功能,轻松应对国定假日等突发性假日。

•利用测试模式功能,简单确认程序。

•采用半自动动作,可应对突然的日程更改•可以实现脉冲动作,应对夏令时。

•所有机种具有防指触保护。

•具有嵌入式安装、表面安装、协约尺寸型等各种类型。

•跨日动作同全天动作设置一样。

请参见996~997页的「定时器 共通注意事项」以及1195页的「请正确使用」。

P SEH5F-AH5F-FA H5F-KAH5F-KAL型号结构■型号标准(该型号标准中,有些不能制作)H5F-□□□① ② ③种类■机种结构*关于H5F-KAL 的英文表示式样详情请另行垂询。

■选配件(另售)安装方法嵌入式安装表面安装表面/DIN 导轨安装(协约型)项目纵向横向日文规格型号H5F-A H5F-FA H5F-KA H5F-KAL英文规格型号H5F-BH5F-FBH5F-KB*商品名称/规格型号备注软质盖Y92A-48F1防尘盖H5F-A/-B 用Y92A-48H5F-FA/-FB/-KA/-KB/-KAL 用Y92A-48E 协约尺寸型(H5F-K □)附属在本体中。

嵌入式安装用适配器Y92F-30嵌入式安装型(H5F-A/-B )附属在本体中。

①安装方式符号含义无嵌入式安装F 表面安装K表面/DIN 导轨安装(协约型)②表示符号含义A 日文表示B英文表示③安装方向符号含义无纵向L横向额定值/性能■额定值■性能*1.包括动作时间重复精度、设定误差、电压的影响、温度的影响在内的综合误差在(±0.01%±0.05秒)以内。

欧姆龙一般继电器的原理及使用之欧阳语创编

欧姆龙一般继电器的原理及使用之欧阳语创编

故障解析下表中记载了继电器动作发生问题时的故障分析表。

请根据下表对电路等进行检查。

另外,如果电路检查时没有发现异常,估计故障来自于继电器时,请向本公司销售人员咨询(请不要拆开继电器。

否则会导致故障原因无法确定)。

继电器由线圈部分、接点部分、铁芯部分、其他结构部分组成,但这些部分中最容易出现故障的是接点部位,其次是线圈部位。

可是,这些故障大部分是因为使用方法、使用条件等外部原因造成,因此可以在使用之前进行充分研究,作出正确选择后可以防止大部分故障的发生。

下表列举了有关继电器的主要故障模式,并列出了可能的③线圈层间短路③使用环境的再次确认(4)接点熔接①连接负载设备过大(接点容量不足)②开关频率过大③负载电路的短路④蜂鸣导致接点的异常开关⑤达到规定的耐久次数①负载容量的确认②开关次数的确认③负载电路的确认④参照(7)项的蜂鸣章节⑤接点额定值的确认(5)接触不良①接点表面的氧化②接点的磨损、劣化③使用不良导致端子错位及接点错位① ·使用环境的再次确认·重新选择继电器②达到规定的耐久次数③使用时注意·耐振动、冲击·焊接作业(6)接点的异常消耗①继电器选择不适合②对负载机器考虑不足(特别是马达负载、螺线管负载、灯负载)③无接点保护电路④邻接接点之间耐压不足①重新选择②重新选择③追加火花消弧电路等④重新选择继电器(7)蜂鸣①线圈外加电压的不足②电源纹波过大(直流型)③线圈额定电压选择错误④输入电压缓慢上升⑤铁芯部位的磨损⑥可动铁片和铁芯之间混入异物①线圈端子之间的电压确认②纹波系数的确认③重新选择额定电压④电路的添加更改⑤达到规定的耐久次数⑥除去异物「控制设备的正确使用方法」(NECA发行)控制用继电器篇终端继电器使用注意事项●各产品的个别注意事项,请参见各产品的「请正确使用」栏。

●安装要连接多个进行安装时,考虑继电器自身发热,应使其保持在55 ℃以下,或设置间隔等。

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200m/s2 6方向 各1次
接点1万次以上
嵌入安装型:约150g、表面安装型:200g
浅灰(茫赛尔5Y7/1)
详情请参阅标准认证机种一览表(后-42~后-66页)
*1. ON时间或OFF时间的重复精度。 *2. 将指针设置为现在时间时和设置时间和动作前的时
间差。
*3. 第一次使用时通电72小时以上后的值。
1a
1c
H2F-DF
H2F-DFC
H2F-DF
H2F-DFC
H2F-DMF
H2F-DMFC
——
H2F-31
*1. 本体附带3个ON用 (金色), 3个OFF用 (银色)设定工具。 需要另外的时,请另外订购。
*2. 虽然内置与本体中,但寿命用尽后仍请以左表内型号订购。
■时间规格
种类 每日
周期 24h
最小刻度 15min
⬉∴Ⲫ
发 生 动 作 指 示 灯 闪 烁、
时间误差变大等误动
鼠ߎ
作,因 此 请 务 必 安 装 电
池。
᥻ࠊ䆒໛
ᅮᯊ఼/ ᅮᯊᓔ݇ 䅵఼᭄/ ߌ䕂ᅮԡ఼ ⬉ᄤ⏽᥻఼
·安放电池时请注意电
池极性。请根据时间开关本体电池
匣 内 部 标 示 的 极 性 安 装。安 放 完
⬉∴
毕后请务必将电池盖按原样装
好,再进行使用。
·电池寿命约为3年,使用3年以上后请尽快更换。如果继续使用已
到期的电池,动作指示灯会闪烁、时间误差会变大等。请使用
Ni-Cd充电式5号单电池。
·如果电池装入 H2F 本体后放置时间过长,可能因电池过放电引
起漏液、腐蚀,因此请将电池从本体取出,并保管。
᭄ᄫ䴶ᵓ㸼 ᡔᴃᣛफ
电机式时间开关 H2F-D 1181
100MΩ 以上(DC500V兆欧表)
AC2,000V 50/60Hz 1min(带电金属部位和不带电金属部之间)
AC1,000V 50/60Hz 1min(不连接接点之间)
16.7Hz 单振幅2mm 3方向 各1h
10~55Hz 单振幅0.25mm 3方向 各10min
1,000m/s2 6方向 各5次
<1c输出型> ·如果将正面左下方的手动开关设定为OFF,负载1(④-⑤)、负载
2(⑤-⑥)均为OFF。
OFF
·如果设定为AUTO,则输出根据固定元件设定,进行ON/OFF动 作。如果设定为ON,则负载1(④-⑤)输出为ON,负载2 (⑤- ⑥)输出为OFF。
ON
·返回AUTO时,请确认输出显示。用手触碰旋钮,或因振动、冲 击 造 成 输 出 显 示 异 常 时,请 旋 转 旋 钮 切 换 输 出,然 后 再 返 回 AUTO。
⬉ᴎ⬉䏃 ⬉⑤⬉䏃
⬉ᴎ⬉䏃 ⬉⑤⬉䏃
䋳䕑
䋳䕑
䋳䕑
䋳䕑
*H2F-31(DC12~24V)端子2为+、 3为-。
电机式时间开关 H2F-D 1179
各部分的名称及功能
ᅝ㺙ᄨ ON/OFFࡼ԰ߛᤶᮟ䪂
ࠏᑺⲬᮟ䕀ᮍ৥ ˄ে䕀˅
᠟ࡼᓔ݇
■时间设定
POWER
䗮⬉ᰒ冫˄㑶㡆˅ˆ
请将设定工具插入刻度盘的希望时刻的刻 度。
请正确使用
●关于共通的注意事项,请参阅996~997页。
使用注意事项
●安装方法
埋入面板
①如右图,将附带的适配器向 A
䴶ᵓ
○A 方向变形,然后将○B 部分
向箭头方向(面板切割背面)
推入
②如右图,安装完适配器后,插 入时间开关本体,将附带的 螺钉 (M3×45)紧固到两处 时,请使用 0.58N·m 以下的 力。
ᇣ㶎䩝໻ᇣ 䰘ᏺ
咘㡆ⱘᨚᴚԡ㕂
连接
●同步电机型(1a输出) H2F-D
H2F-DF
●同步电机型(1c输出) H2F-DC
H2F-DFC
᥻ࠊ䆒໛
ᅮᯊ఼/ ᅮᯊᓔ݇ 䅵఼᭄/ ߌ䕂ᅮԡ఼ ⬉ᄤ⏽᥻఼ ᭄ᄫ䴶ᵓ㸼
䋳䕑 ൟ
䋳䕑
ൟ 注. AC100V系列、 AC200V系列机种不同,因此不能共用。
●石英电机型(1a输出) H2F-DM、H2F-30
安装方式 控制输出 型号 型号 型号 型号
■选装件(另售)
商品名称 设定工具(ON用·OFF用1组)*1 电池 *2
型号 Y92S-21 Y92S-22
额定值/性能
1a H2F-D H2F-D H2F-DM H2F-30
嵌入式安装 1c
H2F-DC H2F-DC H2F-DMC
——
表面安装/DIN导轨安装
H2F-DMF
ൟ ൟ
⬉ᴎ⬉䏃 ⬉⑤⬉䏃
⬉ᴎ⬉䏃 ⬉⑤⬉䏃
䋳䕑
䋳䕑
*H2F-30 (DC12~24V)端子2为+、 3为-。
注1. 请在负载上连接负载用电源。 注2. 螺钉紧固转矩
最大转矩:0.98N·m max
䋳䕑 䋳䕑 ൟ

䋳䕑
䋳䕑
ൟ ൟ
ᡔᴃᣛफ
●石英电机型(1a输出) H2F-DMC
H2F-DMFC、H2F-31
• 只需插入设定工具即可简单设定。 • 用刻度盘对准正确的时间。 • 安装方式有3种。 • 还有带停电补偿的产品。 • 通过国际安全标准UL、CSA。(H2F-30、-31除外)
(有关详情,请参看标准认证机种一览表(后-42~后-66页))
H2F-DM/-DMC/-DMF/-DMFC/-30/-31使用镍铬电池。 报废时,请送往附近的回收店。
向也请勿旋转。
●H2F-D/-DF系列(同步电机型)
安装本体前请根据使用地区的频
率调整频率切换装置。 (东日本:50Hz、西日本:60Hz)
50 60
ᯊ䯈ᓔ݇‫ݙ‬ջϞ䚼
●H2F-DM系列、H2F-30/-31
(石英晶体电机型)
·取下时间开关背面的电
ҢϞ䴶ᣝϟ
池 盖,请 务 必 在 附 带 的
电池装入本体后再进行 通 电。电 池 未 安 装 时 会
䗖䜡఼ B A
③在面板前面预先安装导 线 时,将 时 间 开 关本 体 按 在 ○A 部 位,向 ○B 方 向 推入。然后按步骤 2 的方 法拧紧固定螺钉。
䴶ᵓ B
ᇐ㒓
●关于时间设定
A
·设定时间时把中央旋钮向顺 时针方向旋转。逆时针旋转、把手指放 在固定元件上旋转都会引起故障。
·将时与左上方箭头、分与中央旋钮的箭 头对准。
●关于输出显示与ON/OFF动作切换旋钮
·正面左上方的输出显示为手动开关在AUTO时的输出状态。
可以再次将旋钮向顺时针方向
ON
ON
(箭头方向)旋转,手动进行输
出的 ON/OFF 切换。(仅在手动 OFF
OFF
开关为AUTO时有效)
ON⢊ᗕ
OFF⢊ᗕ
·手动开关为OFF或ON时,请勿旋转ON/OFF切换旋钮。逆时针方
72 72
16 17
1.3
65.5
(单位 :mm)
ᅮᯊ఼/ ᅮᯊᓔ݇
䅵఼᭄/ ߌ䕂ᅮԡ఼
⬉ᄤ⏽᥻఼
᭄ᄫ䴶ᵓ㸼
H2F-DF(C) H2F-DMF(C) H2F-31
ᡔᴃᣛफ
65.5 ቤተ መጻሕፍቲ ባይዱ2
95
45
注. 端子螺钉为M3.5。
50
9
6
72
6 29
注. 端子螺钉为M3.5。
2
2
1180 电机式时间开关 H2F-D
*请本体背面的切换轴切换频率。
■性能
分类 项目 动作时间的重复精度*1 电压的影响,温度的影响 设置误差 *2 周期误差 停电补偿时间 绝缘电阻
耐压
振动
冲击
寿命 重量 外壳包装 取得规格
耐久 误动作 耐久 误动作
同步电机型
每日
石英电机型
±3min以下
±3min以下
±3min以下
——
180h以上 *3
ࠏᑺⲬ
䆒ᅮᎹ‫݋‬ 䞥㡆üONᯊࠏ䆒ᅮ⫼ 䫊㡆üOFFᯊࠏ䆒ᅮ⫼
·在想要ON的时刻插入金色的设定 工具,想要OFF的时刻插入银色的设定 工具。
注. 设定工具请勿必确保插到底部。
ᅝ㺙ᄨ
ᯊࠏ䆒㕂ᮟ䪂 *仅石英电机型有通电显示。
外形尺寸
᥻ࠊ䆒໛
H2F-D(C) H2F-DM(C) H2F-30
໛⫼䆒ᅮᎹ‫⫼݋‬ᄨ
最小设定时间 15min
最大设定时间 23h45min
■额定值
电源电压 容许电压变动范围
功率消耗
控制输出 使用环境温度 使用环境湿度
同步电机型 :AC100/110/120V 50/60Hz·AC200/220/240V 50/60Hz * 石英电机型 :AC100~240V 50/60Hz 、DC12~24V 额定电源电压85~110% 同步电机型 :3VA以下 石英电机型 :AC100~120V时 1VA以下、AC200~240V时 4VA以下、DC12~24V 时 1W以下 AC250V 15A 电阻负载 -10~+55℃(不结冰、凝露) 35~85%
1178 电机式时间开关 H2F-D
安装方法
嵌入式安装
表面安装
DIN导轨安装
●关于从DIN导轨将本体的拆卸
请将本体下面内部的黄色摆杆拔至一驱动处 后拆卸。
H72×W72×D45mm (头下29mm) 面板切割尺寸
(DIN43700标准)
䰘ӊ
面板厚度为1~3.2mm 注. 附带安装附件和安装螺钉。
H95×W72×D50mm 安装加工尺寸
电机式时间开关
H2F-D
相关信息 商品选择 ……………………
共通注意事项 ……………… 技术指南 …………………… 用语说明 ……………………
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