ZXRE060
0.6V ADJUSTABLE PRECISION SHUNT REGULATOR
ZXRE060
Document number: DS33611 Rev. 6 - 2
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Application Information
The following show some typical application examples for the ZXRE060. It is recommended to include the compensation
capacitor C2 to guarantee stability. C2 may range in value from 0.1µF to 10µF depending on the application. The time constant
formed by C2 and R3 should be greater than 1ms multiplied by the feedback factor R2/(R1 + R2).
Both C1 and C2 should be as close to the ZXRE060 as possible and connected to it with the shortest possible track. In the case
of fig 9 and fig10, it means the opto-coupler will have to be carefully positioned to enable this.
Figure 3. 0.6V Shunt Regulator
Figure 4. 1.0V Shunt Regulator
REF
V
OUT
V =
+=
2R
1R
1
REF
V
OUT
V
3R
I
OUT
V
IN
V
3R
=
Figure 5. 0.6V series LDO regulator
Figure 6. 1.0V series LDO regulator
REF
V
OUT
V =
+=
2R
1R
1
REF
V
OUT
V
Design guides
1. Determine I
OUT
and choose a suitable transistor taking power dissipation into consideration.
2. Determine I
B
from
)1
(min)FE
h(
(max)OUT
I
B
I
+
=
3. Determine I
R3
from
(min)KA
I
B
I
3R
I +
. The design of the ZXRE060 effectively means there is no I
KA(min)
limitation as in
conventional references. There is only an output leakage current which is a maximum of 1µA. Nevertheless, it is
necessary to determine an I
KA(min)
to ensure that the device operates within its linear range at all times. I
KA(min)
10µA should be adequate for this.
4. Determine R3 from
3R
I
)
BE
V
OUT
V(
IN
V
3R
+
=
.
5. Although unlikely to be a problem, ensure that I
R3
15 mA.
1uF
1uF
ZXRE060
0.6V ADJUSTABLE PRECISION SHUNT REGULATOR
ZXRE060
Document number: DS33611 Rev. 6 - 2
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Application Information (Continued)
Figure 7. 1V Current-boosted shunt regulator
+=
2R
1R
1
REF
V
OUT
V
(
BE
VV2.0
OUT
V +
)
3R
I
OUT
V
IN
V
3R
=
Design guides
1. Determine I
OUT
and choose a suitable transistor taking power dissipation into consideration.
2. Determine I
B
from
)1
(min)FE
h(
(max)OUT
I
B
I
+
=
3. Determine I
R3
from
(max)OUT
I
3R
I =
4. Determine R3 from
3R
I
OUT
V
IN
V
3R
=
5. It is best to let the ZXRE060 supply as much current as it can before bringing Q1 into conduction. Not
only does this minimise the strain on Q1, it also guarantees the most stable operation. Choose a nominal
value between 10mA and <15mA for this current, I
R4
.
6. Calculate R4 from
4R
I
BE
V
4R =
Figure 8. 1.15V over-voltage indicator
V
OUT
goes low and LED is lit when monitored supply
+>
2R
1R
1
REF
V
M
V
3R
I
)2.0
F
V(
IN
V
3R
+
=
)MAX(F
I
3R
ImA15
V
F
and I
F
are forward voltage drop and current of LED1.
ZXRE060
0.6V ADJUSTABLE PRECISION SHUNT REGULATOR
ZXRE060
Document number: DS33611 Rev. 6 - 2
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Application Information (Continued)
Figure 9. Opto-isolated 0.6V shunt regulator
Figure 10. Opto-isolated 1.0V shunt regulator
REF
V
OUT
V =
+=
2R
1R
1
REF
V
OUT
V
3R
I
)2.0
F
V(
IN
V
3R
+
=
)MAX(F
I
3R
ImA15
V
F
and I
F
are forward voltage drop and forward current respectively for the optocoupler LED.
More applications information is available in the following publications which can be found on Diodes’ web site.
AN58 - Designing with Diodes’ References – Shunt Regulation
AN59 - Designing with Diodes’ References – Series Regulation
AN60 - Designing with Diodes’ References – Fixed Regulators and Opto-Isolation
AN61 - Designing with Diodes’ References – Extending the operating voltage range
AN62 - Designing with Diodes’ References – Other Applications
AN63 - Designing with Diodes’ References – ZXRE060 Low Voltage Regulator

ZXRE060H5TA

Mfr. #:
Manufacturer:
Diodes Incorporated
Description:
Voltage References 0.6V 0.2-18V 20V
Lifecycle:
New from this manufacturer.
Delivery:
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