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  for further information contact your local stmicroe lectronics sales office. september 2014 docid025788 rev 3 1/7 STEVAL-ILH007V1 150 w hid digital ballast based on the stlux385a data brief features input voltage: 185 - 265 vac rated lamp power: 150 w efficiency: > 92.5% power factor: > 0.996 input current thd: < 10% overtemperature protection for the electronics open load detection short-circuit protection input overvoltage protection emi: en55015 pre-compliance plm remote control ready description the STEVAL-ILH007V1 evaluation board is a 150 w high intensity discharge (hid) digital ballast platform based on the stlux385a digital controller. this solution is designed to drive sodium and metal halide hid lamps. the board is composed of two stages, the power factor corrector (pfc) and the inverter. the pfc is based on a boost topology to correct the ac input current in phase with the ac voltage mains. the inverter is based on a full bridge topology to drive the lamps. the stlux385a digital controller drives both stages. the stlux385a device is part of the stlux? family of stmicroelectronics digital devices tailored for lighting and power conversion applications. the heart of the stlux is the smed (state machine, event driven) technology which allows the device to operate several independently- configurable pwm clocks with up to 1.3 ns resolution. a smed is a powerful autonomous state machine which is programmed to react to both external and internal events and may evolve without any software intervention. the smed even reaction time can be as low as 10 ns, giving the stlux the ability of operating in time critical applications. the smeds are configured and programmed via the stlux internal low-power microcontroller (stm8 for the stlux385a). the STEVAL-ILH007V1 is designed to receive commands by the plm remote control unit, to create a network for street lighting based on power line communication. www.st.com
schematic diagrams STEVAL-ILH007V1 2/7 docid025788 rev 3 1 schematic diagrams figure 1. pfc and input section electric scheme 1 0 5 c d4 1000v 3a d5 1000v 3a d6 1000v 3a r28 1 r29 1 r5 1m r1 1m r2 1m r22 8.2k r10 10k r4 10k c3 220nf 305vac d2 stth2l06 r30 1 cx1 220nf 305vac c2 100nf pfc_ok r21 270 c13 100pf d1 1000v 3a u1 td220 vcc 1 vout 2 nc 3 in 4 gate 5 gnd 6 vsup 7 vcap 8 +425v 12v pfc_zcd cx2 220nf 305vac f1 3.15a t pwm4 l7 2x39 mh 3 2 4 1 c57 n.m. pfc_isens c56 100pf j2 vin plm 1 3 c53 1nf 500vdc a c - i n - n a c - i n - l 1 + c1 100uf 500v j1 vin 1 2 3 l2 2x39 mh 3 2 4 1 vac2 r3 47k l1magnetica 1913.004 3 5 4 1 rv1 s14 vac1 r18 10k c10 100pf r11 22 d7 tmmbat46 vbus q1 stf13nm60n 1 3 2 r15 22 d3 1000v 3a gspg1109141045sg
docid025788 rev 3 3/7 STEVAL-ILH007V1 schematic diagrams 7 figure 2. full bridge electric scheme gspg1109141120sg r51 240k c20 100pf c31 100nf c27 100pf r69 1e 1% 3w c33 220nf 305vac d23 stth1l06a d20 stps1l30a d22 stps1l30a r49 15k 5w r52 100 d18 tmmbat46 r58 270 q4 stf13nm60nd 1 3 2 c32 220pf 630v r39 270 d19 stth1l06a +425v +425v l5 magnetica 1975.0001 5 11 9 3 q3 stf13nm60nd 1 3 2 q2 stf26nm60n 1 3 2 q5 stf26nm60n 1 3 2 pwm0 pwm1 pwm2 pwm3 d17 stps1l30a c35 100nf r103 n.m. r104 n.m. r70 1e 1% 3w r72 1e 1% 3w c30 2.2nf 630v ipeak cp+_pfc brg_zcd c28 100pf c24 100pf d21 stps1l30a r37 47k c36 100nf u7 l6390 lin 1 sd/od 2 hin 3 vcc 4 dt 5 op- 6 opout 7 gnd 8 op+ 9 cp+ 10 lvg 11 nc1 12 nc2 13 out 14 hvg 15 boot 16 12v u6 l6390 lin 1 sd/od 2 hin 3 vcc 4 dt 5 op- 6 opout 7 gnd 8 op+ 9 cp+ 10 lvg 11 nc1 12 nc2 13 out 14 hvg 15 boot 16 12v r105 0 r106 0 gpio3 gpio2 c37 680nf 305v d15 tmmbat46 r43 270 c21 100pf 6kv sd\od_u6 sd\od_u7 j3 vout 1 2 c22 22uf 25v d28 stth1l06a t1 magnetica 1907.0010 5 4 6 1 r48 0 vl1 vl2 r38 100 cp+ c23 4.7uf 50v r47 24k c29 100nf r57 270 d16 lic01
schematic diagrams STEVAL-ILH007V1 4/7 docid025788 rev 3 figure 3. control section electric scheme gspg1109141130sg r54 510k plm_gpio_0 r64 47k vl+ r59 510k sw1 reset r60 510k c38 100pf r61 10k brg_zcd c49 1uf 3.3v 3.3a c41 100nf 3.3a r91 100k resn 3.3v plm_gpio_0 12v dali_tx r90 0 dali_rx r95 0 d26 red d27 green r63 47k c39 100pf r101 n.m. r75 10k r89 1k r94 1k 12v 3.3v pfc_ok r65 10k c40 100nf gnd c42 100pf ipeakout 3.3v ipeak gnd sd\od_u7 r100 n.m. 12v sd\od_u6 gnd d24 tmmbat46 d25 tmmbat46 j8 usb to uart 1 4 5 vin vbus pfc_isens c47 1uf r102 100k dn1 bas70-04wfilm -+ u2b ts272ipt 6 5 7 8 4 uart_rx uart_tx pwm5 r99 10k -+ u3b ts272ipt 6 5 7 8 4 c55 1uf r92 10k r93 10k cp+_pfc -+ u2a ts272ipt 2 3 1 8 4 u8 stlm20 nc 1 gnd 2 vout 3 vcc 4 gnd2 5 c51 100nf 3.3v pfc_isens 3.3v c52 100nf r97 470 digital controller stlux385a gpio1[0]/pwm[0] 1 digin[0]/cco_clk 2 digin[1] 3 gpio1[1]/pwm[1] 4 gpio1[2]/pwm[2] 5 digin[2] 6 digin[3] 7 gpio1[5]/pwm[5] 8 swim 9 nrst 10 vddio 11 gndio 12 vout 13 gpio0[4]/dali_tx 14 gpio0[5]/dali_rx 15 gpio1[4]/pwm[4] 16 digin[4] 17 digin[5] 18 gpio1[3]/pwm[3] 19 gpio0[2]/i2c_sda/hseoscout 20 gpio0[3]/i2c_scl/hseoscin 21 gpio0[0]/uart_tx 22 gpio0[1]/uart_rx 23 cpp[3] 24 cpp[2] 25 cpm[3] 26 cpp[1] 27 cpp[0] 28 vdda 29 gnda 30 adcin[7] 31 adcin[6] 32 adcin[5] 33 adcin[4] 34 adcin[3] 35 adcin[2] 36 adcin[1] 37 adcin[0] 38 pwm0 j4 plm 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 c43 10nf c44 10nf pwm1 pwm3 pwm2 key _dali pwm4 c48 1uf ipeakout pfc_zcd -+ u3a ts272ipt 2 3 1 8 4 r7 510k r19 47k r12 510k r13 510k c6 100pf r14 10k c12 1uf 12v c5 100pf r17 47k r85 0 r84 0 r24 10k 12v c11 100nf j5 con4 1 2 3 4 d10 tmmbat46 c50 22pf d12 tmmbat46 r27 5.6k vlamp resn swim r20 10k 3.3v vl1+ r26 47k r25 10k dn2 bas70-04wfilm r6 510k r9 47k 3.3v vac1 vin c4 100nf vac2 r33 47k r32 10k r8 10k r16 47k vl1- l6 bead 500ma c45 100nf c46 100nf r71 5.6k r83 0 c54 22pf r66 10k uart_tx uart_rx gpio3 gpio2 r68 47k r67 10k 3.3v uart_rx uart_tx j7 dali 1 2 3 4 5 6 7 8 9 10 11 12 r96 0 3.3v dali_tx r53 510k key _dali r56 47k pwm5 vlamp vl1 dali_rx c34 100nf vout3.3 vl2 r74 47k r73 10k r55 10k r62 47k vl-
docid025788 rev 3 5/7 STEVAL-ILH007V1 schematic diagrams 7 figure 4. auxiliary power supply electric scheme gspg1109141140sg r46 24k c17 470nf 50v c8 470nf 50v 4.5v c25 1nf c26 4.7nf + c18 10uf 25v u4 altair04-900 comp 7 drain4 16 iref 5 fb 6 vdd 3 gnd 4 src1 1 src2 2 drain3 15 drain2 14 drain1 13 3.3v 12v l4 magnetica:2198.0008 1 5 4 3 10 8 7 6 d14 tmmbat46 r98 22 d9 stps2150 r45 8.2k r41 33k + c7 470uf 25v r34 33k d13 stps1l30a l3 4.7uh + c9 470uf 25v +425v + c15 10uf 25v + c14 470uf 25v r44 2.7 r40 47k r36 47k d8 sm6t220a vout3.3 u5 ld29080s33r vin 1 gnd 2 vout 3 r42 2.7 c16 470nf 50v c19 470nf d11 stth1l06a
revision history STEVAL-ILH007V1 6/7 docid025788 rev 3 2 revision history table 1. document revision history date revision changes 15-jan-2014 1 initial release. 11-sep-2014 2 updated features and description in cove r page. 18-sep-2014 3 updated: C figure 1 on page 2 and figure 2 on page 3 added: C figure 3 on page 4 and figure 4 on page 5
docid025788 rev 3 7/7 STEVAL-ILH007V1 7 important notice C please read carefully stmicroelectronics nv and its subsidiaries (st) r eserve the right to make changes, corrections, enha ncements, modifications, and improvements to st products and/or to this document at any time without notice. purchasers should obta in the latest relevant information on st products before placing orders. st products are sold pursuant to sts terms and conditions of sale in place at the time of order acknowledgement. purchasers are solely responsible for the choice, s election, and use of st products and st assumes no liability for application assistance or the design of purchasers products. no license, express or implied, to any intellectual property right is granted by st herein. resale of st products with provisions different fro m the information set forth herein shall void any w arranty granted by st for such product. st and the st logo are trademarks of st. all other product or service names are the property of their respective owners. information in this document supersedes and replace s information previously supplied in any prior vers ions of this document. ? 2014 stmicroelectronics C all rights reserved


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