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CTF-224R/UC24V

CTF系列继电器为无微处理器的强制引导式多功能定时继电器,专为铁路领域安全相关应用而开发。镀金触点确保在低中电流下实现可靠的开关性能。该系列继电器提供2个常闭触点或1个常开触点+1个常闭触点配置,具备多种时间功能、时间间隔及额定电压规格。可根据需求定制配置方案。

通用参数 basic
控制电路 PA / PC

可用的触点材料 AgNi + 0.2 μ Au
强制引导的接触次数 2 CO (Type B)
最小负载 10 mA, 12 V
机械耐久性(循环) 20 000 000
浪涌电流 16 A, 10 ms
联系次数 2 CO
额定电压 250 V
额定电流 6 A
额定负载 AC-1 1500 VA

侵入防护 IP 20
外壳材料 PA / PC
存储温度(无冰) -40 ... 85 °C
安装 DIN 导轨 (IEC 60715)
工作温度 -40 ... 70 °C
相对湿度,无凝露 10 ... 95 %
运行位置 any
运行高度 最大 海拔 2'000 米(无降额)
重量 75 g
颜色 灰色

授权 CE,UKCA,Railway
标准 IEC/EN 61812-1, IEC/EN 61810-3
铁路 EN 50155, EN 45545-2

0.5 Nm / 4.425 lbf in
剥线长度控制/主回路 8 mm / 0.3 "
双套管控制 / 主回路 1
导体截面控制/主电路 4 mm2 / AWG12 (Wire), 2.5 mm2 / AWG14 (Stranded), 1.00 mm2 / AWG17 (Ferrule). Use copper conductors only.
最大线数控制/主回路 2
螺丝刀控制 / 主回路 PZ2
触点类型控制/主电路 Screw terminal

≥ 20 ms
交流/直流功耗 1.6 VA / 1.2 W
包含微处理器
工作电压范围 0.7 UN … 1.25 UN
控制输入端 B1 的电流损耗 AC / DC < 2 mA
浪涌电流 < 250 mA
电压输入端A1-A2 的电流损耗 AC / DC < 55 mA
阈值电压逻辑0 ≤ 7 V AC / 8 V DC
阈值电压逻辑1 ≥ 12 V AC / 14 V DC
频率范围 0, 50 ... 60 Hz
额定电压 24 V AC/DC

定时刻度 0.2 s / 0.8 s / 2 s / 8 s / 20 s / 80 s / 200 s / 8 min / 20 min / 80 min / 200 min / 8 h / 20 h / 80 h
定时功能 Schrittschaltend (S),Schrittschaltend (Treppenhaus-Lichtschalter) | mit Zeitablauf (LS),Impulsformung | Retrigger (L)
定时范围 40 ms ... 200 ms / 0.16 s ... 0.8 s / 0.4 s ... 2 s / 1.6 s ... 8 s / 4 s ... 20 s / 16 s ... 80 s / 40 s ... 200 s / 1.6 min ... 8 min / 4 min ... 20 min / 16 min ... 80 min / 40 min ... 200 min / 1.6 h ... 8 h / 4 h ... 20 h / 16 h ... 80 h

交流功耗 YES VA

污染等级 2
绝缘类型 basic
过电压类别 III
额定测试电压 控制/主电路 2 kV rms / 1 min
额定测试电压开路触点 1 kV rms / 1 min

Bild
- 单股线 16 A, 10 ms
- 多线(压接) 10 mA, 12 V
- 多股线(未压接) 6
导体截面控制/主电路 250 V
尺寸 CE|UKCA|Railway
额定负载下的最大开关频率 0000|0011|0005
相对湿度,无凝露 1 kV rms / 1 min
最小脉冲长度 接通/断开 0.2 s / 0.8 s / 2 s / 8 s / 20 s / 80 s / 200 s / 8 min / 20 min / 80 min / 200 min / 8 h / 20 h / 80 h
外壳材料 EN 50155, EN 45545-2
额定螺钉扭矩 1500
重量 IEC/EN 61812-1, IEC/EN 61810-3
安装位置 LS
运行位置 40 ms ... 200 ms / 0.16 s ... 0.8 s / 0.4 s ... 2 s / 1.6 s ... 8 s / 4 s ... 20 s / 16 s ... 80 s / 40 s ... 200 s / 1.6 min ... 8 min / 4 min ... 20 min / 16 min ... 80 min / 40 min ... 200 min / 1.6 h ... 8 h / 4 h ... 20 h / 16 h ... 80 h
侵入防护 20 000 000
导线截面笼式夹 AgNi + 0.2 μ Au
导体截面 螺钉端子 0003_gruen
存储温度(无冰) 2 kV rms / 1 min
释放时间 2 CO (Type B)
释放时间/弹跳时间 0
释放时间 AC / DC 2
吸合时间 2
吸合时间 AC / DC 0
有关 "CTF-224R/UC24V"
三维模型 "CTF-224R/UC24V"
文件 "CTF-224R/UC24V"

通用参数 basic
控制电路 PA / PC

可用的触点材料 AgNi + 0.2 μ Au
强制引导的接触次数 2 CO (Type B)
最小负载 10 mA, 12 V
机械耐久性(循环) 20 000 000
浪涌电流 16 A, 10 ms
联系次数 2 CO
额定电压 250 V
额定电流 6 A
额定负载 AC-1 1500 VA

侵入防护 IP 20
外壳材料 PA / PC
存储温度(无冰) -40 ... 85 °C
安装 DIN 导轨 (IEC 60715)
工作温度 -40 ... 70 °C
相对湿度,无凝露 10 ... 95 %
运行位置 any
运行高度 最大 海拔 2'000 米(无降额)
重量 75 g
颜色 灰色

授权 CE,UKCA,Railway
标准 IEC/EN 61812-1, IEC/EN 61810-3
铁路 EN 50155, EN 45545-2

0.5 Nm / 4.425 lbf in
剥线长度控制/主回路 8 mm / 0.3 "
双套管控制 / 主回路 1
导体截面控制/主电路 4 mm2 / AWG12 (Wire), 2.5 mm2 / AWG14 (Stranded), 1.00 mm2 / AWG17 (Ferrule). Use copper conductors only.
最大线数控制/主回路 2
螺丝刀控制 / 主回路 PZ2
触点类型控制/主电路 Screw terminal

≥ 20 ms
交流/直流功耗 1.6 VA / 1.2 W
包含微处理器
工作电压范围 0.7 UN … 1.25 UN
控制输入端 B1 的电流损耗 AC / DC < 2 mA
浪涌电流 < 250 mA
电压输入端A1-A2 的电流损耗 AC / DC < 55 mA
阈值电压逻辑0 ≤ 7 V AC / 8 V DC
阈值电压逻辑1 ≥ 12 V AC / 14 V DC
频率范围 0, 50 ... 60 Hz
额定电压 24 V AC/DC

定时刻度 0.2 s / 0.8 s / 2 s / 8 s / 20 s / 80 s / 200 s / 8 min / 20 min / 80 min / 200 min / 8 h / 20 h / 80 h
定时功能 Schrittschaltend (S),Schrittschaltend (Treppenhaus-Lichtschalter) | mit Zeitablauf (LS),Impulsformung | Retrigger (L)
定时范围 40 ms ... 200 ms / 0.16 s ... 0.8 s / 0.4 s ... 2 s / 1.6 s ... 8 s / 4 s ... 20 s / 16 s ... 80 s / 40 s ... 200 s / 1.6 min ... 8 min / 4 min ... 20 min / 16 min ... 80 min / 40 min ... 200 min / 1.6 h ... 8 h / 4 h ... 20 h / 16 h ... 80 h

交流功耗 YES VA

污染等级 2
绝缘类型 basic
过电压类别 III
额定测试电压 控制/主电路 2 kV rms / 1 min
额定测试电压开路触点 1 kV rms / 1 min

Bild
- 单股线 16 A, 10 ms
- 多线(压接) 10 mA, 12 V
- 多股线(未压接) 6
导体截面控制/主电路 250 V
尺寸 CE|UKCA|Railway
额定负载下的最大开关频率 0000|0011|0005
相对湿度,无凝露 1 kV rms / 1 min
最小脉冲长度 接通/断开 0.2 s / 0.8 s / 2 s / 8 s / 20 s / 80 s / 200 s / 8 min / 20 min / 80 min / 200 min / 8 h / 20 h / 80 h
外壳材料 EN 50155, EN 45545-2
额定螺钉扭矩 1500
重量 IEC/EN 61812-1, IEC/EN 61810-3
安装位置 LS
运行位置 40 ms ... 200 ms / 0.16 s ... 0.8 s / 0.4 s ... 2 s / 1.6 s ... 8 s / 4 s ... 20 s / 16 s ... 80 s / 40 s ... 200 s / 1.6 min ... 8 min / 4 min ... 20 min / 16 min ... 80 min / 40 min ... 200 min / 1.6 h ... 8 h / 4 h ... 20 h / 16 h ... 80 h
侵入防护 20 000 000
导线截面笼式夹 AgNi + 0.2 μ Au
导体截面 螺钉端子 0003_gruen
存储温度(无冰) 2 kV rms / 1 min
释放时间 2 CO (Type B)
释放时间/弹跳时间 0
释放时间 AC / DC 2
吸合时间 2
吸合时间 AC / DC 0
授权
有关 "CTF-224R/UC24V"
三维模型 "CTF-224R/UC24V"
文件 "CTF-224R/UC24V"
时间继电器

C2和C3型工业继电器可通过时间模块改造成时间继电器。当获得具有所需时间功能的时间模块后,将其插入继电器与底座之间。

底座C12B0和CS-155(S5-M)配备有模块插槽,专用于时间模块/监控模块。因此,除了底座和工业继电器外,只需额外添加一个可插拔的时间模块即可。

几乎所有时间继电器的设置过程都相同。首先,通过电位器选择一个功能。每个字母(A、E、W、K 等)代表一个特定功能,该功能在继电器侧或随附说明书中有所描述。

接下来,选择时间范围,所选范围始终为最大值。最后,使用最后一个电位器进行时间微调。例如,要设置 30 秒的延迟关闭,操作如下:

功能:A

时间范围:60 秒

微调:在 0-6 的刻度上,将电位器调至 3(6= 60 秒,3 = 30 秒,1 = 10 秒)。

E – On delay

The function provides a delayed switching ON of the output.
When S switches ON, the time t starts.
After t expires, the output R switches ON.
If S switches OFF before t ends, R stays OFF.

A – Off delay

The function provides a delayed switching OFF of the output.
When S switches ON, the output R switches ON immediately.
When S switches OFF, the time t starts.
After t expires, the output R switches OFF.

F – On and off delay

The function provides a delayed switching ON and a delayed switching OFF of the output.
When S switches ON, the on delay t₁ starts.
After t₁ expires, the output R switches ON.
When S switches OFF, the off delay t₂ starts.
After t₂ expires, the output R switches OFF.

W – One shot leading edge

The function provides a fixed output pulse on the leading edge of the trigger.
When S switches ON, the output R switches ON for time t.
After t expires, R switches OFF, independent of S.
When S switches OFF, R switches OFF.

N – One shot trailing edge

The function provides a fixed output pulse on the trailing edge of the trigger.
When S switches ON, R does not change.
When S switches OFF, the output R switches ON for t.
After t expires, R switches OFF.

Q – One shot leading and trailing edge

The function provides fixed output pulses on both the leading and trailing edges of the trigger.
When S switches ON, the output R switches ON for t1.
After t1 expires, R switches OFF.
When S switches OFF, the output R switches ON again for t2.
After t2 expires, R switches OFF.

K – Pulse shaping

The function provides a fixed output pulse independent of the input duration.
When S switches ON (pulse or continuous), the output R switches ON for t.
During t, S has no influence on R.
After t expires, R switches OFF.

L – Pulse shaping, retrigger

The function provides a fixed output pulse that restarts when retriggered.
When S switches ON, the output R switches ON for t.
If S triggers again during t, the time t restarts from zero.
After the final t expires, R switches OFF.

M – Puls shaping

The function provides a fixed output pulse after S switches OFF.
When S switches ON, R remains OFF.
When S switches OFF, the output R switches ON for t.
After t expires, R switches OFF.

B – Indicator, pulse start

The function provides periodic ON and OFF switching starting with an ON pulse.
When S switches ON, the output R switches ON for time t, then switches OFF for time t.
R switches ON and OFF periodically until S switches OFF. R switches OFF with S.

B1 – Indicator, pulse start, trailing pulse

The function provides periodic ON and OFF switching starting with an ON pulse and ending with a trailing pulse.
the output R switches ON for time t, then switches OFF for time t.
R switches ON and OFF periodically until S switches OFF.
When S switches OFF, the output R switches ON once more for t, then R switches OFF.

B2 – Indicator, interval start

The function provides periodic ON and OFF switching starting with an OFF interval.
When S switches ON, the output R remains OFF for t, then R switches ON for time t.
R switches ON and OFF periodically until S switches OFF. R switches OFF with S.

G – On delay single shot

The function provides an output pulse after a delay.
When S switches ON, the delay t₁ starts.
After t₁ expires, the output R switches ON for t₂.
After t₂ expires, R switches OFF.
During t₂, S has no influence on R.

H – On delay single shot

When S switches ON, the delay t₁ starts.
After t₁ expires, the output R switches ON for t₂.
After t₂ expires, R switches OFF.
When S switches OFF, R switches OFF

I – Repeat cycle timer, pulse start

The function provides periodic ON and OFF switching starting with an ON pulse.
When S switches ON, the output R switches ON for t₁.
After t₁ expires, R switches OFF for t₂.
Afterwards R switches ON and OFF periodically according to t₁ and t₂.
When S switches OFF, R switches OFF.

P – Repeat cycle timer, interval start

The function provides periodic ON and OFF switching starting with an OFF interval.
When S switches ON, the delay t₁ starts, and R remains OFF for t₁.
After t₁ expires, the output R switches ON for t₂.
Afterwards R switches ON and OFF periodically according to t₁ and t₂.
When S switches OFF, R switches OFF.

Y - Star–delta timer

The function provides automatic switching from star operation to delta operation.
When S switches ON, the time t starts, and the star output R switches ON.
After t expires, the star output switches OFF and the delta output switches ON.
When S switches OFF, both outputs switch OFF.

S - Step-on / Step-off switch

The function provides stepwise switching with each activation of the trigger.
Each time S switches, the output R changes state for time t.
The trigger has no time-dependent influence.

LS - Step-switching (staircase lighting timer)

The function provides timed activation with optional stop and reset control.
When S is triggered, the time t starts, and the output R switches ON.
When S is triggered again, the time t stops and R switches OFF.
WhenS is triggered again, the time t resets and starts again immediately.
When t expires, the output R switches OFF.

U – Pulse sequence monitoring

The function provides monitoring of pulse separation and triggers an alarm if pulses are too close together. If the separation becomes smaller than the set time tP, an alarm output is activated after an additional delay tV. The monitoring starts with S1 or S2.
If the pulse separation of P is smaller than tP, an alarm output is activated after the alarm delay tV.
If the pulse separation is larger than tP, no alarm is triggered.
The start‑up behaviour depends on the selected input S1 (Monitoring begins immediately with the first pulse. There is no suppression of alarm monitoring during start‑up.) or S2 (Monitoring begins after the short‑out time tA to prevent false alarms during system start-up)

V – Pulse sequence monitoring

The function provides monitoring of pulse separation and triggers an alarm if pulses are too far apart.
The monitoring starts with S1 or S2.
If the pulse separation of P is larger than tP, an alarm output is activated after the alarm delay tV.
If the pulse separation is smaller than tP, no alarm is triggered.
The start‑up behaviour depends on the selected input S1 (without start‑up short‑out tA) or S2 (with start‑up short‑out tA).