参数资料
型号: NCP1217P100G
厂商: ON Semiconductor
文件页数: 10/19页
文件大小: 0K
描述: IC CTRLR PWM CM OVP HV 8DIP
标准包装: 50
输出隔离: 隔离
频率范围: 90kHz ~ 110kHz
输入电压: 8.3 V ~ 16 V
工作温度: 0°C ~ 125°C
封装/外壳: 8-DIP(0.300",7.62mm),7 引线
供应商设备封装: 7-PDIP
包装: 管件
其它名称: NCP1217P100GOS
NCP1217, NCP1217A
VCC ON = 12.8 V
VCC min = 7.6 V
V CC
VCC latch = 5.6 V
DRIVING PULSES
Figure 18. Typical Waveforms in Short Circuit Conditions
Calculating the V CC Capacitor
The V CC capacitor can be calculated knowing the IC
consumption as soon as V CC reaches 12.8 V. Suppose that a
NCP1217P065 is used and drives a MOSFET with a 30 nC
total gate charge (Qg). The total average current is thus
made of ICC1 (750 m A) plus the driver current,
Fsw * Qg = 1.95 mA . The total current is therefore 2.7 mA.
The Δ V available to fully startup the circuit (e.g. never reach
the 8.2 V VCC min during power on) is 13.7--8.2 = 5.5 V
best case or 4.9 V worse case (11.9--7.0) . We have a
capacitor that then needs to supply the NCP1217 with
2.7 mA during a given time until the auxiliary supply takes
The theoretical power transfer is therefore:
2
1 · Lp · Ip2 · Fsw = 4.1 W . If this IC enters skip cycle
mode with a bunch length of 10 ms over a recurrent
period of 100 ms, then the total power transfer is:
4.1 * 0.1 = 410 mW .
To better understand how this skip cycle mode takes place,
a look at the operation mode versus the FB level
immediately gives the necessary insight.
FB
4.2 V, FB Pin Open
CV CC is calculated using the equation C =
or
over. Suppose that this time was measured at around 15 ms.
Δ t · i
Δ V
C ≥ 8.3 m F. Select a 22 m F/25 V and this will fit.
NORMAL CURRENT
MODE OPERATION
3.2 V, Upper
Dynamic Range
Skipping Cycle Mode
The NCP1217 automatically skips switching cycles when
the output power demand drops below a given level. This is
accomplished by monitoring the FB pin. In normal
SKIP CYCLE OPERATION
I P(min) = 333 mV/R SENSE
Figure 19.
1V
Time
operation, pin 2 imposes a peak current accordingly to the
load value. If the load demand decreases, the internal loop
asks for less peak current. When this setpoint reaches a
determined level (Vpin 1), the IC prevents the current from
decreasing further down and starts to blank the output
pulses: the IC enters the so--called skip cycle mode, also
named controlled burst operation. The power transfer now
depends upon the width of the pulse bunches (Figure 20).
Suppose we have the following component values:
Lp, primary inductance = 350 m H
Fsw, switching frequency = 65 kHz
When FB is above the skip cycle threshold (1.0 V by
default), the peak current cannot exceed 1.0 V/Rsense.
When the IC enters the skip cycle mode, the peak current
cannot go below Vpin1/3.3. The user still has the flexibility
to alter this 1.0 V by either shunting pin 1 to ground through
a resistor or raising it through a resistor up to the desired
level. In this later case, care must be taken to keep sufficient
margin between this pin 1 adjustment level and the latchoff
level. Grounding pin 1 permanently invalidates the skip
cycle operation.
Ip skip = 600 mA (or 333 mV/Rsense)
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