background image

1-8

  

Figure 3. Current Limit Characteristic of the 6V Supply

this region. If the line voltage is maintained in the upper end
of the input voltage range, however, the supply probably will
operate within its specifications

Connecting Load

Each load should be connected to the power supply output
terminals using separate pairs of connecting wires. This will
minimize mutual coupling effects between loads and takes full
advantage of the low output impedance of the supply. Load
wires must be of adequately heavy gauge to maintain satis-
factory regulation at the load. 

Each pair of connecting wires should be as short as possible
and twisted or shielded to reduce noise pick-up. If a shield is
used, connect one end to the supply  ground terminal and
leave the other end unconnected.

If load considerations require locating output power distribu-
tion terminals at a distance from the power supply, then the
power supply output terminals should be connected to the
remote distribution terminals by a pair of twisted or shielded
wires and each load should be connected to the remote distri-
bution terminals separately.

Parallel Operation

Two or more supplies can be connected in parallel to obtain a
total output current greater than that available from one sup-
ply. The  total output current is the sum of the output currents
of the individual supplies. The output voltage controls of one
power supply should be set to the desired output voltage, and
the other supply set for a slightly larger output voltage. The
supply set to the lower output voltage will act as a constant
voltage source, while the supply set to the higher output will
act as a current-limited source, dropping its output voltage
until it equals that of the other supply. The constant voltage
source will deliver only that fraction of its rated output current

necessary to fulfill the total current demand.

Series Operation

Series operation of two or more power supplies can be
accomplished up to the output isolation rating of any one sup-
ply to obtain a higher voltage than that available from a single
supply. Series connected supplies can be operated with one
load across both supplies or with a separate load for each
supply. The power supply has a reverse polarity diode con-
nected across the output terminals so that if operated in
series with other supplies, damage will not occur if the load is
short-circuited or if one supply is turned on separately from its
series partners. When this connection is used, the output volt-
age is the sum of the voltages of the individual supplies. Each
of the individual supplies must be adjusted in order to obtain
the total output voltage. 

LOAD CONSIDERATIONS

This section provides information on operating  your supply
with various types of loads connected to its output.

PULSE LOADING

The power supply will automatically cross over from constant-
voltage to current-limit operation in response to an increase in
the output current over the preset limit. Although the preset
limit may be set higher than the average output current, high
peak currents (as occur in pulse loading) may exceed the
preset current limit and cause crossover to occur and
degrade performance.

REVERSE CURRENT LOADING

An active load connected to the supply may actually deliver a
reverse current to the supply during a portion of its operating
cycle. An external source can not be allowed to pump current
into the supply without risking loss of regulation and possible
damage to the output capacitor of the supply. To avoid these
effects, it is necessary to preload the supply with a dummy
load resistor so that the supply delivers current through the
entire  operating cycle of the load devices.

OUTPUT CAPACITANCE

An internal capacitor across the output terminals of the supply
helps to supply high-current pulses of short duration during
constant-voltage operation. Any capacitance added exter-
nally will improve the pulse current capability, but will
decrease the load protection provided by the current limiting
circuit. A high-current pulse may damage load components
before the average output current is large enough to cause
the current limiting circuit to operate.

REVERSE VOLTAGE PROTECTION

A diode is connected across the output terminals with reverse
polarity. This diode protects the output electrolytic capacitors
and the series regulator transistors from the effects of a
reverse voltage applied across the output terminals. Since
series regulator transistors can not withstand reverse voltage
either, diodes are also connected across them. When operat-
ing supplies in parallel, these diodes protect an unenergized
supply that is in parallel with an energized supply.

Содержание E3630A

Страница 1: ... 287387 32 5 6833 3 02 6963 23 5 7 1 0 18 25 167580 176 7 6 5 180 56 5 834785 1 29 RU LQVWUXPHQWV ZLWK 6HULDO 1XPEHUV DERYH 5 834785 D FKDQJH SDJH PD EH LQFOXGHG1 0DQXDO 3DUW 1R1 8 8 0865 ü XJXVW 4 GLWLRQ 9 ...

Страница 2: ... personnel Do not replace compo nents with power cable connected Under certain conditions dangerous voltages may exist even with the power cable removed To avoid injuries always disconnect power dis charge circuits and remove external voltage sources before touching components DO NOT SERVICE OR ADJUST ALONE Do not attempt internal service or adjustment unless another person capable of rendering fi...

Страница 3: ...lectrical Check 1 6 INSTALLATION DATA 1 6 Location and Cooling 1 6 Outline Diagram 1 6 Rack Mounting 1 6 INPUT POWER REQUIREMENTS 1 6 Power Cable 1 6 OPERATING INSTRUCTIONS 1 6 INTRODUCTION 1 6 TURN ON CHECKOUT PROCEDURE 1 7 OPERATION 1 7 Tracking Ratio Control 1 7 Overload Protection Circuits 1 7 Operation Beyond Rated Output 1 7 Connecting Load 1 8 Parallel Operation 1 8 Series Operation 1 8 LOA...

Страница 4: ...erence between your instrument and the instrument described by this manual The Change Sheet may also contain information for correcting errors in the manual OPTIONS Options OE3 and OE9 determine which line voltage is selected at the factory The standard unit is configured for 115 Vac 10 47 63 Hz input Option No Description OE3 230 Vac 10 47 63 Hz Input OE9 100 Vac 10 47 63 Hz Input 910 One additio...

Страница 5: ...ROWDJH VHWWLQJ1 8QEDODQFHG ORDGV ZLWKLQ FXUUHQW UDWLQJ DUH SHUPLWWHG1 3 WR 9 9 2XWSXW 0D LPXP UDWHG RXWSXW FXUUHQW LV 518 DW 9 91 7KH PD LPXP DYDLODEOH RXWSXW FXUUHQW GHFUHDVHV ZLWK WKH RXWSXW YROWDJH VHWWLQJ1 FXUUHQW IROGEDFN FLUFXLW OLPLWV WKH RXWSXW WR 51 8 8 DW 9 YROWV DQG ZLWK GHFUHDVLQJ YROWDJH UHGXFHV WKH FXUUHQW OLPLW OLQHDUO WR 4 48 DW HUR YROWV VKRUW FLUFXLWHG 1 75 1 85 7KH 53 9 DQG 053 ...

Страница 6: ...Diagram Figure 1 illustrates the outline shape and dimensions of the supply Rack Mounting This supply may be rack mounted in a standard 19 inch rack panel either by itself or alongside a similar unit Please see the ACCESSORY page 1 4 for available rack mounting accessory The rack mounting kit includes complete installa tion instructions INPUT POWER REQUIREMENTS Depending on the line voltage option...

Страница 7: ...voltage add the voltmeter readings of the 20V and 20V output and use either the 20V or the 20V meter to measure the current Tracking Ratio Control With the Tracking Ratio control in the Fixed position the volt age of the 20V supply tracks that of the 20V supply within 1 for convenience in varying the symmetrical voltages needed by operational amplifiers and other circuits using bal anced positive ...

Страница 8: ...ity diode con nected across the output terminals so that if operated in series with other supplies damage will not occur if the load is short circuited or if one supply is turned on separately from its series partners When this connection is used the output volt age is the sum of the voltages of the individual supplies Each of the individual supplies must be adjusted in order to obtain the total o...

Страница 9: ...1 9 Figure 4 Reverse Current Loading Solution ...

Страница 10: ......

Страница 11: ...URP DQRWKHU FRXQWU 3 VKDOO SD IRU UHWXUQ RI SURGXFWV WR XVWRPHU1 DUUDQW VHUYLFHV RXWVLGH WKH FRXQWU RI LQLWLDO SXUFKDVH DUH LQFOXGHG LQ 3 V SURGXFW SULFH RQO LI XVWRPHU SD V 3 LQWHUQD0 WLRQDO SULFHV GHILQHG DV GHVWLQDWLRQ ORFDO FXUUHQF SULFH RU 8161 RU HQHYD SRUW SULFH 1 I 3 LV XQDEOH ZLWKLQ D UHDVRQDEOH WLPH WR UHSDLU RU UHSODFH DQ SURGXFW WR FRQGLWLRQ DV ZDUUDQWHG WKH XVWRPHU VKDOO EH HQWLWOHG W...

Страница 12: ...e Manual of the E3630A Triple Output Lab Bench DC Power supply Manual Part Number 5959 5329 Manual Print Date August 1999 Edition 6 For Instruments with Serial Numbers KR71810198 Change 1 On page 1 5 change the Meter Accuracy Specification at the Table 1 as follows From 0 5 of full scale 2 counts at 25 C 5 C To 0 5 of output 2 counts at 25 C 5 C E3630 90092 E3630 90092 Ó Copyright Hewlett Packard ...

Отзывы: